735 lines
29 KiB
JavaScript
735 lines
29 KiB
JavaScript
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/* *
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*
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* (c) 2010-2020 Torstein Honsi
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*
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* License: www.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 Point from '../parts/Point.js';
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import U from '../parts/Utilities.js';
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var addEvent = U.addEvent, arrayMax = U.arrayMax, arrayMin = U.arrayMin, correctFloat = U.correctFloat, isNumber = U.isNumber, objectEach = U.objectEach, pick = U.pick, seriesType = U.seriesType;
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import '../parts/Options.js';
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import '../parts/Series.js';
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import StackItem from '../parts/Stacking.js';
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var Axis = H.Axis, Chart = H.Chart, Series = H.Series, seriesTypes = H.seriesTypes;
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/**
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* Returns true if the key is a direct property of the object.
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* @private
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* @param {*} obj - Object with property to test
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* @param {string} key - Property key to test
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* @return {boolean} - Whether it is a direct property
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*/
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function ownProp(obj, key) {
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return Object.hasOwnProperty.call(obj, key);
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}
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/* eslint-disable no-invalid-this */
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addEvent(Axis, 'afterInit', function () {
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if (!this.isXAxis) {
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this.waterfallStacks = {
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changed: false
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};
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}
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});
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addEvent(Axis, 'afterBuildStacks', function () {
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this.waterfallStacks.changed = false;
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delete this.waterfallStacks.alreadyChanged;
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});
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addEvent(Chart, 'beforeRedraw', function () {
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var axes = this.axes, series = this.series, i = series.length;
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while (i--) {
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if (series[i].options.stacking) {
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axes.forEach(function (axis) {
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if (!axis.isXAxis) {
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axis.waterfallStacks.changed = true;
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}
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});
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i = 0;
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}
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}
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});
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addEvent(Axis, 'afterRender', function () {
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var stackLabelOptions = this.options.stackLabels;
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if (stackLabelOptions && stackLabelOptions.enabled &&
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this.waterfallStacks) {
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this.renderWaterfallStackTotals();
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}
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});
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// eslint-disable-next-line valid-jsdoc
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/**
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* Calls StackItem.prototype.render function that creates and renders stack
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* total label for each waterfall stack item.
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*
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* @private
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* @function Highcharts.Axis#renderWaterfallStackTotals
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*/
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Axis.prototype.renderWaterfallStackTotals = function () {
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var yAxis = this, waterfallStacks = yAxis.waterfallStacks, stackTotalGroup = yAxis.stacking && yAxis.stacking.stackTotalGroup, dummyStackItem = new StackItem(yAxis, yAxis.options.stackLabels, false, 0, void 0);
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yAxis.dummyStackItem = dummyStackItem;
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// Render each waterfall stack total
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objectEach(waterfallStacks, function (type) {
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objectEach(type, function (stackItem) {
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dummyStackItem.total = stackItem.stackTotal;
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if (stackItem.label) {
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dummyStackItem.label = stackItem.label;
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}
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StackItem.prototype.render.call(dummyStackItem, stackTotalGroup);
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stackItem.label = dummyStackItem.label;
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delete dummyStackItem.label;
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});
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});
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dummyStackItem.total = null;
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};
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/**
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* A waterfall chart displays sequentially introduced positive or negative
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* values in cumulative columns.
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*
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* @sample highcharts/demo/waterfall/
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* Waterfall chart
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* @sample highcharts/plotoptions/waterfall-inverted/
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* Horizontal (inverted) waterfall
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* @sample highcharts/plotoptions/waterfall-stacked/
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* Stacked waterfall chart
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*
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* @extends plotOptions.column
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* @product highcharts
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* @requires highcharts-more
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* @optionparent plotOptions.waterfall
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*/
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seriesType('waterfall', 'column', {
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/**
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* @type {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
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* @apioption plotOptions.waterfall.color
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*/
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/**
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* The color used specifically for positive point columns. When not
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* specified, the general series color is used.
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*
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* In styled mode, the waterfall colors can be set with the
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* `.highcharts-point-negative`, `.highcharts-sum` and
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* `.highcharts-intermediate-sum` classes.
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*
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* @sample {highcharts} highcharts/demo/waterfall/
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* Waterfall
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*
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* @type {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
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* @product highcharts
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* @apioption plotOptions.waterfall.upColor
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*/
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dataLabels: {
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inside: true
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},
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/**
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* The width of the line connecting waterfall columns.
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*
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* @product highcharts
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*/
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lineWidth: 1,
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/**
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* The color of the line that connects columns in a waterfall series.
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*
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* In styled mode, the stroke can be set with the `.highcharts-graph` class.
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*
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* @type {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
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* @since 3.0
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* @product highcharts
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*/
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lineColor: '#333333',
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/**
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* A name for the dash style to use for the line connecting the columns
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* of the waterfall series. Possible values: Dash, DashDot, Dot, LongDash,
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* LongDashDot, LongDashDotDot, ShortDash, ShortDashDot, ShortDashDotDot,
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* ShortDot, Solid
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*
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* In styled mode, the stroke dash-array can be set with the
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* `.highcharts-graph` class.
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*
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* @type {Highcharts.DashStyleValue}
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* @since 3.0
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* @product highcharts
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*/
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dashStyle: 'Dot',
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/**
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* The color of the border of each waterfall column.
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*
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* In styled mode, the border stroke can be set with the
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* `.highcharts-point` class.
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*
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* @type {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
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* @since 3.0
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* @product highcharts
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*/
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borderColor: '#333333',
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states: {
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hover: {
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lineWidthPlus: 0 // #3126
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}
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}
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// Prototype members
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}, {
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pointValKey: 'y',
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// Property needed to prevent lines between the columns from disappearing
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// when negativeColor is used.
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showLine: true,
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// After generating points, set y-values for all sums.
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generatePoints: function () {
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var point, len, i, y;
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// Parent call:
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seriesTypes.column.prototype.generatePoints.apply(this);
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for (i = 0, len = this.points.length; i < len; i++) {
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point = this.points[i];
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y = this.processedYData[i];
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// override point value for sums
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// #3710 Update point does not propagate to sum
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if (point.isIntermediateSum || point.isSum) {
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point.y = correctFloat(y);
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}
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}
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},
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// Translate data points from raw values
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translate: function () {
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var series = this, options = series.options, yAxis = series.yAxis, len, i, points, point, shapeArgs, y, yValue, previousY, previousIntermediate, range, minPointLength = pick(options.minPointLength, 5), halfMinPointLength = minPointLength / 2, threshold = options.threshold, stacking = options.stacking, tooltipY, actualStack = yAxis.waterfallStacks[series.stackKey], actualStackX, dummyStackItem, total, pointY, yPos, hPos;
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// run column series translate
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seriesTypes.column.prototype.translate.apply(series);
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previousY = previousIntermediate = threshold;
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points = series.points;
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for (i = 0, len = points.length; i < len; i++) {
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// cache current point object
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point = points[i];
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yValue = series.processedYData[i];
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shapeArgs = point.shapeArgs;
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range = [0, yValue];
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pointY = point.y;
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// code responsible for correct positions of stacked points
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// starts here
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if (stacking) {
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if (actualStack) {
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actualStackX = actualStack[i];
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if (stacking === 'overlap') {
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total =
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actualStackX.stackState[actualStackX.stateIndex--];
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y = pointY >= 0 ? total : total - pointY;
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if (ownProp(actualStackX, 'absolutePos')) {
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delete actualStackX.absolutePos;
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}
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if (ownProp(actualStackX, 'absoluteNeg')) {
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delete actualStackX.absoluteNeg;
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}
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}
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else {
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if (pointY >= 0) {
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total = actualStackX.threshold +
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actualStackX.posTotal;
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actualStackX.posTotal -= pointY;
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y = total;
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}
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else {
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total = actualStackX.threshold +
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actualStackX.negTotal;
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actualStackX.negTotal -= pointY;
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y = total - pointY;
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}
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if (!actualStackX.posTotal) {
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if (ownProp(actualStackX, 'absolutePos')) {
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actualStackX.posTotal =
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actualStackX.absolutePos;
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delete actualStackX.absolutePos;
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}
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}
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if (!actualStackX.negTotal) {
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if (ownProp(actualStackX, 'absoluteNeg')) {
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actualStackX.negTotal =
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actualStackX.absoluteNeg;
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delete actualStackX.absoluteNeg;
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}
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}
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}
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if (!point.isSum) {
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// the connectorThreshold property is later used in
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// getCrispPath function to draw a connector line in a
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// correct place
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actualStackX.connectorThreshold =
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actualStackX.threshold + actualStackX.stackTotal;
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}
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if (yAxis.reversed) {
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yPos = (pointY >= 0) ? (y - pointY) : (y + pointY);
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hPos = y;
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}
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else {
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yPos = y;
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hPos = y - pointY;
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}
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point.below = yPos <= pick(threshold, 0);
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shapeArgs.y = yAxis.translate(yPos, 0, 1, 0, 1);
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shapeArgs.height = Math.abs(shapeArgs.y -
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yAxis.translate(hPos, 0, 1, 0, 1));
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}
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dummyStackItem = yAxis.dummyStackItem;
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if (dummyStackItem) {
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dummyStackItem.x = i;
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dummyStackItem.label = actualStack[i].label;
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dummyStackItem.setOffset(series.pointXOffset || 0, series.barW || 0, series.stackedYNeg[i], series.stackedYPos[i]);
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}
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}
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else {
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// up points
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y =
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Math.max(previousY, previousY + pointY) + range[0];
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shapeArgs.y =
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yAxis.translate(y, 0, 1, 0, 1);
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// sum points
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if (point.isSum) {
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shapeArgs.y = yAxis.translate(range[1], 0, 1, 0, 1);
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shapeArgs.height = Math.min(yAxis.translate(range[0], 0, 1, 0, 1), yAxis.len) - shapeArgs.y; // #4256
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}
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else if (point.isIntermediateSum) {
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if (pointY >= 0) {
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yPos = range[1] + previousIntermediate;
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hPos = previousIntermediate;
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}
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else {
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yPos = previousIntermediate;
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hPos = range[1] + previousIntermediate;
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}
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if (yAxis.reversed) {
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// swapping values
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yPos ^= hPos;
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hPos ^= yPos;
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yPos ^= hPos;
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}
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shapeArgs.y = yAxis.translate(yPos, 0, 1, 0, 1);
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shapeArgs.height = Math.abs(shapeArgs.y -
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Math.min(yAxis.translate(hPos, 0, 1, 0, 1), yAxis.len));
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previousIntermediate += range[1];
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// If it's not the sum point, update previous stack end position
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// and get shape height (#3886)
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}
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else {
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shapeArgs.height = yValue > 0 ?
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yAxis.translate(previousY, 0, 1, 0, 1) - shapeArgs.y :
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yAxis.translate(previousY, 0, 1, 0, 1) - yAxis.translate(previousY - yValue, 0, 1, 0, 1);
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previousY += yValue;
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point.below = previousY < pick(threshold, 0);
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}
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// #3952 Negative sum or intermediate sum not rendered correctly
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if (shapeArgs.height < 0) {
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shapeArgs.y += shapeArgs.height;
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shapeArgs.height *= -1;
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}
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}
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point.plotY = shapeArgs.y =
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Math.round(shapeArgs.y) - (series.borderWidth % 2) / 2;
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// #3151
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shapeArgs.height =
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Math.max(Math.round(shapeArgs.height), 0.001);
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point.yBottom = shapeArgs.y + shapeArgs.height;
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if (shapeArgs.height <= minPointLength && !point.isNull) {
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shapeArgs.height = minPointLength;
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shapeArgs.y -= halfMinPointLength;
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point.plotY = shapeArgs.y;
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if (point.y < 0) {
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point.minPointLengthOffset = -halfMinPointLength;
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}
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else {
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point.minPointLengthOffset = halfMinPointLength;
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}
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}
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else {
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if (point.isNull) {
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shapeArgs.width = 0;
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}
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point.minPointLengthOffset = 0;
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}
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// Correct tooltip placement (#3014)
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tooltipY =
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point.plotY + (point.negative ? shapeArgs.height : 0);
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if (series.chart.inverted) {
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point.tooltipPos[0] = yAxis.len - tooltipY;
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}
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else {
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point.tooltipPos[1] = tooltipY;
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}
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}
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},
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// Call default processData then override yData to reflect waterfall's
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// extremes on yAxis
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processData: function (force) {
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var series = this, options = series.options, yData = series.yData,
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// #3710 Update point does not propagate to sum
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points = options.data, point, dataLength = yData.length, threshold = options.threshold || 0, subSum, sum, dataMin, dataMax, y, i;
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sum = subSum = dataMin = dataMax = 0;
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for (i = 0; i < dataLength; i++) {
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y = yData[i];
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point = points && points[i] ? points[i] : {};
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if (y === 'sum' || point.isSum) {
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yData[i] = correctFloat(sum);
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}
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else if (y === 'intermediateSum' ||
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point.isIntermediateSum) {
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yData[i] = correctFloat(subSum);
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subSum = 0;
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}
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else {
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sum += y;
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subSum += y;
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}
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dataMin = Math.min(sum, dataMin);
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dataMax = Math.max(sum, dataMax);
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}
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Series.prototype.processData.call(this, force);
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// Record extremes only if stacking was not set:
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if (!options.stacking) {
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series.dataMin = dataMin + threshold;
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series.dataMax = dataMax;
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}
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return;
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},
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// Return y value or string if point is sum
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toYData: function (pt) {
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if (pt.isSum) {
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return 'sum';
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}
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if (pt.isIntermediateSum) {
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return 'intermediateSum';
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}
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return pt.y;
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},
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updateParallelArrays: function (point, i) {
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Series.prototype.updateParallelArrays.call(this, point, i);
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// Prevent initial sums from triggering an error (#3245, #7559)
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if (this.yData[0] === 'sum' || this.yData[0] === 'intermediateSum') {
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this.yData[0] = null;
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}
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},
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// Postprocess mapping between options and SVG attributes
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pointAttribs: function (point, state) {
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var upColor = this.options.upColor, attr;
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// Set or reset up color (#3710, update to negative)
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if (upColor && !point.options.color) {
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point.color = point.y > 0 ? upColor : null;
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}
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attr = seriesTypes.column.prototype.pointAttribs.call(this, point, state);
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// The dashStyle option in waterfall applies to the graph, not
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||
|
// the points
|
||
|
delete attr.dashstyle;
|
||
|
return attr;
|
||
|
},
|
||
|
// Return an empty path initially, because we need to know the stroke-width
|
||
|
// in order to set the final path.
|
||
|
getGraphPath: function () {
|
||
|
return [['M', 0, 0]];
|
||
|
},
|
||
|
// Draw columns' connector lines
|
||
|
getCrispPath: function () {
|
||
|
var data = this.data, yAxis = this.yAxis, length = data.length, graphNormalizer = Math.round(this.graph.strokeWidth()) % 2 / 2, borderNormalizer = Math.round(this.borderWidth) % 2 / 2, reversedXAxis = this.xAxis.reversed, reversedYAxis = this.yAxis.reversed, stacking = this.options.stacking, path = [], connectorThreshold, prevStack, prevStackX, prevPoint, yPos, isPos, prevArgs, pointArgs, i;
|
||
|
for (i = 1; i < length; i++) {
|
||
|
pointArgs = data[i].shapeArgs;
|
||
|
prevPoint = data[i - 1];
|
||
|
prevArgs = data[i - 1].shapeArgs;
|
||
|
prevStack = yAxis.waterfallStacks[this.stackKey];
|
||
|
isPos = prevPoint.y > 0 ? -prevArgs.height : 0;
|
||
|
if (prevStack && prevArgs && pointArgs) {
|
||
|
prevStackX = prevStack[i - 1];
|
||
|
// y position of the connector is different when series are
|
||
|
// stacked, yAxis is reversed and it also depends on point's
|
||
|
// value
|
||
|
if (stacking) {
|
||
|
connectorThreshold = prevStackX.connectorThreshold;
|
||
|
yPos = Math.round((yAxis.translate(connectorThreshold, 0, 1, 0, 1) +
|
||
|
(reversedYAxis ? isPos : 0))) - graphNormalizer;
|
||
|
}
|
||
|
else {
|
||
|
yPos =
|
||
|
prevArgs.y + prevPoint.minPointLengthOffset +
|
||
|
borderNormalizer - graphNormalizer;
|
||
|
}
|
||
|
path.push([
|
||
|
'M',
|
||
|
(prevArgs.x || 0) + (reversedXAxis ?
|
||
|
0 :
|
||
|
(prevArgs.width || 0)),
|
||
|
yPos
|
||
|
], [
|
||
|
'L',
|
||
|
(pointArgs.x || 0) + (reversedXAxis ?
|
||
|
(pointArgs.width || 0) :
|
||
|
0),
|
||
|
yPos
|
||
|
]);
|
||
|
}
|
||
|
if (!stacking &&
|
||
|
path.length &&
|
||
|
prevArgs &&
|
||
|
((prevPoint.y < 0 && !reversedYAxis) ||
|
||
|
(prevPoint.y > 0 && reversedYAxis))) {
|
||
|
path[path.length - 2][2] += prevArgs.height;
|
||
|
path[path.length - 1][2] += prevArgs.height;
|
||
|
}
|
||
|
}
|
||
|
return path;
|
||
|
},
|
||
|
// The graph is initially drawn with an empty definition, then updated with
|
||
|
// crisp rendering.
|
||
|
drawGraph: function () {
|
||
|
Series.prototype.drawGraph.call(this);
|
||
|
this.graph.attr({
|
||
|
d: this.getCrispPath()
|
||
|
});
|
||
|
},
|
||
|
// Waterfall has stacking along the x-values too.
|
||
|
setStackedPoints: function () {
|
||
|
var series = this, options = series.options, waterfallStacks = series.yAxis.waterfallStacks, seriesThreshold = options.threshold, stackThreshold = seriesThreshold || 0, interSum = stackThreshold, stackKey = series.stackKey, xData = series.xData, xLength = xData.length, actualStack, actualStackX, totalYVal, actualSum, prevSum, statesLen, posTotal, negTotal, xPoint, yVal, x, alreadyChanged, changed;
|
||
|
// function responsible for calculating correct values for stackState
|
||
|
// array of each stack item. The arguments are: firstS - the value for
|
||
|
// the first state, nextS - the difference between the previous and the
|
||
|
// newest state, sInx - counter used in the for that updates each state
|
||
|
// when necessary, sOff - offset that must be added to each state when
|
||
|
// they need to be updated (if point isn't a total sum)
|
||
|
// eslint-disable-next-line require-jsdoc
|
||
|
function calculateStackState(firstS, nextS, sInx, sOff) {
|
||
|
if (!statesLen) {
|
||
|
actualStackX.stackState[0] = firstS;
|
||
|
statesLen = actualStackX.stackState.length;
|
||
|
}
|
||
|
else {
|
||
|
for (sInx; sInx < statesLen; sInx++) {
|
||
|
actualStackX.stackState[sInx] += sOff;
|
||
|
}
|
||
|
}
|
||
|
actualStackX.stackState.push(actualStackX.stackState[statesLen - 1] + nextS);
|
||
|
}
|
||
|
series.yAxis.stacking.usePercentage = false;
|
||
|
totalYVal = actualSum = prevSum = stackThreshold;
|
||
|
// code responsible for creating stacks for waterfall series
|
||
|
if (series.visible ||
|
||
|
!series.chart.options.chart.ignoreHiddenSeries) {
|
||
|
changed = waterfallStacks.changed;
|
||
|
alreadyChanged = waterfallStacks.alreadyChanged;
|
||
|
// in case of a redraw, stack for each x value must be
|
||
|
// emptied (only for the first series in a specific stack)
|
||
|
// and recalculated once more
|
||
|
if (alreadyChanged &&
|
||
|
alreadyChanged.indexOf(stackKey) < 0) {
|
||
|
changed = true;
|
||
|
}
|
||
|
if (!waterfallStacks[stackKey]) {
|
||
|
waterfallStacks[stackKey] = {};
|
||
|
}
|
||
|
actualStack = waterfallStacks[stackKey];
|
||
|
for (var i = 0; i < xLength; i++) {
|
||
|
x = xData[i];
|
||
|
if (!actualStack[x] || changed) {
|
||
|
actualStack[x] = {
|
||
|
negTotal: 0,
|
||
|
posTotal: 0,
|
||
|
stackTotal: 0,
|
||
|
threshold: 0,
|
||
|
stateIndex: 0,
|
||
|
stackState: [],
|
||
|
label: ((changed &&
|
||
|
actualStack[x]) ?
|
||
|
actualStack[x].label :
|
||
|
void 0)
|
||
|
};
|
||
|
}
|
||
|
actualStackX = actualStack[x];
|
||
|
yVal = series.yData[i];
|
||
|
if (yVal >= 0) {
|
||
|
actualStackX.posTotal += yVal;
|
||
|
}
|
||
|
else {
|
||
|
actualStackX.negTotal += yVal;
|
||
|
}
|
||
|
// points do not exist yet, so raw data is used
|
||
|
xPoint = options.data[i];
|
||
|
posTotal = actualStackX.absolutePos =
|
||
|
actualStackX.posTotal;
|
||
|
negTotal = actualStackX.absoluteNeg =
|
||
|
actualStackX.negTotal;
|
||
|
actualStackX.stackTotal = posTotal + negTotal;
|
||
|
statesLen = actualStackX.stackState.length;
|
||
|
if (xPoint && xPoint.isIntermediateSum) {
|
||
|
calculateStackState(prevSum, actualSum, 0, prevSum);
|
||
|
prevSum = actualSum;
|
||
|
actualSum = seriesThreshold;
|
||
|
// swapping values
|
||
|
stackThreshold ^= interSum;
|
||
|
interSum ^= stackThreshold;
|
||
|
stackThreshold ^= interSum;
|
||
|
}
|
||
|
else if (xPoint && xPoint.isSum) {
|
||
|
calculateStackState(seriesThreshold, totalYVal, statesLen);
|
||
|
stackThreshold = seriesThreshold;
|
||
|
}
|
||
|
else {
|
||
|
calculateStackState(stackThreshold, yVal, 0, totalYVal);
|
||
|
if (xPoint) {
|
||
|
totalYVal += yVal;
|
||
|
actualSum += yVal;
|
||
|
}
|
||
|
}
|
||
|
actualStackX.stateIndex++;
|
||
|
actualStackX.threshold = stackThreshold;
|
||
|
stackThreshold += actualStackX.stackTotal;
|
||
|
}
|
||
|
waterfallStacks.changed = false;
|
||
|
if (!waterfallStacks.alreadyChanged) {
|
||
|
waterfallStacks.alreadyChanged = [];
|
||
|
}
|
||
|
waterfallStacks.alreadyChanged.push(stackKey);
|
||
|
}
|
||
|
},
|
||
|
// Extremes for a non-stacked series are recorded in processData.
|
||
|
// In case of stacking, use Series.stackedYData to calculate extremes.
|
||
|
getExtremes: function () {
|
||
|
var stacking = this.options.stacking, yAxis, waterfallStacks, stackedYNeg, stackedYPos;
|
||
|
if (stacking) {
|
||
|
yAxis = this.yAxis;
|
||
|
waterfallStacks = yAxis.waterfallStacks;
|
||
|
stackedYNeg = this.stackedYNeg = [];
|
||
|
stackedYPos = this.stackedYPos = [];
|
||
|
// the visible y range can be different when stacking is set to
|
||
|
// overlap and different when it's set to normal
|
||
|
if (stacking === 'overlap') {
|
||
|
objectEach(waterfallStacks[this.stackKey], function (stackX) {
|
||
|
stackedYNeg.push(arrayMin(stackX.stackState));
|
||
|
stackedYPos.push(arrayMax(stackX.stackState));
|
||
|
});
|
||
|
}
|
||
|
else {
|
||
|
objectEach(waterfallStacks[this.stackKey], function (stackX) {
|
||
|
stackedYNeg.push(stackX.negTotal + stackX.threshold);
|
||
|
stackedYPos.push(stackX.posTotal + stackX.threshold);
|
||
|
});
|
||
|
}
|
||
|
return {
|
||
|
dataMin: arrayMin(stackedYNeg),
|
||
|
dataMax: arrayMax(stackedYPos)
|
||
|
};
|
||
|
}
|
||
|
// When not stacking, data extremes have already been computed in the
|
||
|
// processData function.
|
||
|
return {
|
||
|
dataMin: this.dataMin,
|
||
|
dataMax: this.dataMax
|
||
|
};
|
||
|
}
|
||
|
// Point members
|
||
|
}, {
|
||
|
getClassName: function () {
|
||
|
var className = Point.prototype.getClassName.call(this);
|
||
|
if (this.isSum) {
|
||
|
className += ' highcharts-sum';
|
||
|
}
|
||
|
else if (this.isIntermediateSum) {
|
||
|
className += ' highcharts-intermediate-sum';
|
||
|
}
|
||
|
return className;
|
||
|
},
|
||
|
// Pass the null test in ColumnSeries.translate.
|
||
|
isValid: function () {
|
||
|
return (isNumber(this.y) ||
|
||
|
this.isSum ||
|
||
|
Boolean(this.isIntermediateSum));
|
||
|
}
|
||
|
});
|
||
|
/**
|
||
|
* A `waterfall` series. If the [type](#series.waterfall.type) option
|
||
|
* is not specified, it is inherited from [chart.type](#chart.type).
|
||
|
*
|
||
|
* @extends series,plotOptions.waterfall
|
||
|
* @excluding dataParser, dataURL
|
||
|
* @product highcharts
|
||
|
* @requires highcharts-more
|
||
|
* @apioption series.waterfall
|
||
|
*/
|
||
|
/**
|
||
|
* An array of data points for the series. For the `waterfall` series
|
||
|
* type, points can be given in the following ways:
|
||
|
*
|
||
|
* 1. An array of numerical values. In this case, the numerical values will be
|
||
|
* interpreted as `y` options. The `x` values will be automatically
|
||
|
* calculated, either starting at 0 and incremented by 1, or from
|
||
|
* `pointStart` and `pointInterval` given in the series options. If the axis
|
||
|
* has categories, these will be used. Example:
|
||
|
* ```js
|
||
|
* data: [0, 5, 3, 5]
|
||
|
* ```
|
||
|
*
|
||
|
* 2. An array of arrays with 2 values. In this case, the values correspond to
|
||
|
* `x,y`. If the first value is a string, it is applied as the name of the
|
||
|
* point, and the `x` value is inferred.
|
||
|
* ```js
|
||
|
* data: [
|
||
|
* [0, 7],
|
||
|
* [1, 8],
|
||
|
* [2, 3]
|
||
|
* ]
|
||
|
* ```
|
||
|
*
|
||
|
* 3. An array of objects with named values. The following snippet shows only a
|
||
|
* few settings, see the complete options set below. If the total number of
|
||
|
* data points exceeds the series'
|
||
|
* [turboThreshold](#series.waterfall.turboThreshold), this option is not
|
||
|
* available.
|
||
|
* ```js
|
||
|
* data: [{
|
||
|
* x: 1,
|
||
|
* y: 8,
|
||
|
* name: "Point2",
|
||
|
* color: "#00FF00"
|
||
|
* }, {
|
||
|
* x: 1,
|
||
|
* y: 8,
|
||
|
* name: "Point1",
|
||
|
* color: "#FF00FF"
|
||
|
* }]
|
||
|
* ```
|
||
|
*
|
||
|
* @sample {highcharts} highcharts/chart/reflow-true/
|
||
|
* Numerical values
|
||
|
* @sample {highcharts} highcharts/series/data-array-of-arrays/
|
||
|
* Arrays of numeric x and y
|
||
|
* @sample {highcharts} highcharts/series/data-array-of-arrays-datetime/
|
||
|
* Arrays of datetime x and y
|
||
|
* @sample {highcharts} highcharts/series/data-array-of-name-value/
|
||
|
* Arrays of point.name and y
|
||
|
* @sample {highcharts} highcharts/series/data-array-of-objects/
|
||
|
* Config objects
|
||
|
*
|
||
|
* @type {Array<number|Array<(number|string),(number|null)>|null|*>}
|
||
|
* @extends series.line.data
|
||
|
* @excluding marker
|
||
|
* @product highcharts
|
||
|
* @apioption series.waterfall.data
|
||
|
*/
|
||
|
/**
|
||
|
* When this property is true, the points acts as a summary column for
|
||
|
* the values added or substracted since the last intermediate sum,
|
||
|
* or since the start of the series. The `y` value is ignored.
|
||
|
*
|
||
|
* @sample {highcharts} highcharts/demo/waterfall/
|
||
|
* Waterfall
|
||
|
*
|
||
|
* @type {boolean}
|
||
|
* @default false
|
||
|
* @product highcharts
|
||
|
* @apioption series.waterfall.data.isIntermediateSum
|
||
|
*/
|
||
|
/**
|
||
|
* When this property is true, the point display the total sum across
|
||
|
* the entire series. The `y` value is ignored.
|
||
|
*
|
||
|
* @sample {highcharts} highcharts/demo/waterfall/
|
||
|
* Waterfall
|
||
|
*
|
||
|
* @type {boolean}
|
||
|
* @default false
|
||
|
* @product highcharts
|
||
|
* @apioption series.waterfall.data.isSum
|
||
|
*/
|
||
|
''; // adds doclets above to transpiled file
|