forked from qwerty/tupali
956 lines
35 KiB
JavaScript
956 lines
35 KiB
JavaScript
/* *
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*
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* This module implements sunburst charts in Highcharts.
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*
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* (c) 2016-2020 Highsoft AS
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*
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* Authors: Jon Arild Nygard
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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 U from '../parts/Utilities.js';
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var correctFloat = U.correctFloat, error = U.error, extend = U.extend, isNumber = U.isNumber, isObject = U.isObject, isString = U.isString, merge = U.merge, seriesType = U.seriesType, splat = U.splat;
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import '../mixins/centered-series.js';
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import drawPoint from '../mixins/draw-point.js';
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import mixinTreeSeries from '../mixins/tree-series.js';
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import '../parts/Series.js';
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import './treemap.src.js';
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var CenteredSeriesMixin = H.CenteredSeriesMixin, Series = H.Series, getCenter = CenteredSeriesMixin.getCenter, getColor = mixinTreeSeries.getColor, getLevelOptions = mixinTreeSeries.getLevelOptions, getStartAndEndRadians = CenteredSeriesMixin.getStartAndEndRadians, isBoolean = function (x) {
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return typeof x === 'boolean';
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}, noop = H.noop, rad2deg = 180 / Math.PI, seriesTypes = H.seriesTypes, setTreeValues = mixinTreeSeries.setTreeValues, updateRootId = mixinTreeSeries.updateRootId;
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// TODO introduce step, which should default to 1.
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var range = function range(from, to) {
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var result = [], i;
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if (isNumber(from) && isNumber(to) && from <= to) {
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for (i = from; i <= to; i++) {
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result.push(i);
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}
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}
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return result;
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};
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/**
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* @private
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* @function calculateLevelSizes
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*
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* @param {object} levelOptions
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* Map of level to its options.
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*
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* @param {Highcharts.Dictionary<number>} params
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* Object containing number parameters `innerRadius` and `outerRadius`.
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*
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* @return {Highcharts.SunburstSeriesLevelsOptions|undefined}
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* Returns the modified options, or undefined.
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*/
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var calculateLevelSizes = function calculateLevelSizes(levelOptions, params) {
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var result, p = isObject(params) ? params : {}, totalWeight = 0, diffRadius, levels, levelsNotIncluded, remainingSize, from, to;
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if (isObject(levelOptions)) {
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result = merge({}, levelOptions);
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from = isNumber(p.from) ? p.from : 0;
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to = isNumber(p.to) ? p.to : 0;
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levels = range(from, to);
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levelsNotIncluded = Object.keys(result).filter(function (k) {
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return levels.indexOf(+k) === -1;
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});
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diffRadius = remainingSize = isNumber(p.diffRadius) ? p.diffRadius : 0;
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// Convert percentage to pixels.
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// Calculate the remaining size to divide between "weight" levels.
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// Calculate total weight to use in convertion from weight to pixels.
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levels.forEach(function (level) {
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var options = result[level], unit = options.levelSize.unit, value = options.levelSize.value;
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if (unit === 'weight') {
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totalWeight += value;
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}
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else if (unit === 'percentage') {
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options.levelSize = {
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unit: 'pixels',
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value: (value / 100) * diffRadius
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};
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remainingSize -= options.levelSize.value;
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}
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else if (unit === 'pixels') {
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remainingSize -= value;
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}
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});
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// Convert weight to pixels.
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levels.forEach(function (level) {
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var options = result[level], weight;
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if (options.levelSize.unit === 'weight') {
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weight = options.levelSize.value;
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result[level].levelSize = {
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unit: 'pixels',
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value: (weight / totalWeight) * remainingSize
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};
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}
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});
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// Set all levels not included in interval [from,to] to have 0 pixels.
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levelsNotIncluded.forEach(function (level) {
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result[level].levelSize = {
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value: 0,
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unit: 'pixels'
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};
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});
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}
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return result;
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};
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/**
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* Find a set of coordinates given a start coordinates, an angle, and a
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* distance.
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*
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* @private
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* @function getEndPoint
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*
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* @param {number} x
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* Start coordinate x
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*
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* @param {number} y
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* Start coordinate y
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*
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* @param {number} angle
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* Angle in radians
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*
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* @param {number} distance
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* Distance from start to end coordinates
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*
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* @return {Highcharts.SVGAttributes}
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* Returns the end coordinates, x and y.
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*/
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var getEndPoint = function getEndPoint(x, y, angle, distance) {
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return {
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x: x + (Math.cos(angle) * distance),
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y: y + (Math.sin(angle) * distance)
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};
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};
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var layoutAlgorithm = function layoutAlgorithm(parent, children, options) {
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var startAngle = parent.start, range = parent.end - startAngle, total = parent.val, x = parent.x, y = parent.y, radius = ((options &&
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isObject(options.levelSize) &&
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isNumber(options.levelSize.value)) ?
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options.levelSize.value :
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0), innerRadius = parent.r, outerRadius = innerRadius + radius, slicedOffset = options && isNumber(options.slicedOffset) ?
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options.slicedOffset :
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0;
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return (children || []).reduce(function (arr, child) {
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var percentage = (1 / total) * child.val, radians = percentage * range, radiansCenter = startAngle + (radians / 2), offsetPosition = getEndPoint(x, y, radiansCenter, slicedOffset), values = {
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x: child.sliced ? offsetPosition.x : x,
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y: child.sliced ? offsetPosition.y : y,
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innerR: innerRadius,
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r: outerRadius,
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radius: radius,
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start: startAngle,
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end: startAngle + radians
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};
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arr.push(values);
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startAngle = values.end;
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return arr;
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}, []);
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};
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var getDlOptions = function getDlOptions(params) {
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// Set options to new object to avoid problems with scope
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var point = params.point, shape = isObject(params.shapeArgs) ? params.shapeArgs : {}, optionsPoint = (isObject(params.optionsPoint) ?
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params.optionsPoint.dataLabels :
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{}),
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// The splat was used because levels dataLabels
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// options doesn't work as an array
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optionsLevel = splat(isObject(params.level) ?
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params.level.dataLabels :
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{})[0], options = merge({
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style: {}
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}, optionsLevel, optionsPoint), rotationRad, rotation, rotationMode = options.rotationMode;
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if (!isNumber(options.rotation)) {
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if (rotationMode === 'auto' || rotationMode === 'circular') {
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if (point.innerArcLength < 1 &&
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point.outerArcLength > shape.radius) {
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rotationRad = 0;
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// Triger setTextPath function to get textOutline etc.
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if (point.dataLabelPath && rotationMode === 'circular') {
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options.textPath = {
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enabled: true
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};
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}
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}
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else if (point.innerArcLength > 1 &&
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point.outerArcLength > 1.5 * shape.radius) {
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if (rotationMode === 'circular') {
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options.textPath = {
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enabled: true,
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attributes: {
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dy: 5
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}
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};
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}
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else {
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rotationMode = 'parallel';
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}
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}
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else {
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// Trigger the destroyTextPath function
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if (point.dataLabel &&
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point.dataLabel.textPathWrapper &&
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rotationMode === 'circular') {
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options.textPath = {
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enabled: false
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};
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}
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rotationMode = 'perpendicular';
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}
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}
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if (rotationMode !== 'auto' && rotationMode !== 'circular') {
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rotationRad = (shape.end -
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(shape.end - shape.start) / 2);
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}
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if (rotationMode === 'parallel') {
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options.style.width = Math.min(shape.radius * 2.5, (point.outerArcLength + point.innerArcLength) / 2);
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}
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else {
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options.style.width = shape.radius;
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}
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if (rotationMode === 'perpendicular' &&
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point.series.chart.renderer.fontMetrics(options.style.fontSize).h > point.outerArcLength) {
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options.style.width = 1;
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}
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// Apply padding (#8515)
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options.style.width = Math.max(options.style.width - 2 * (options.padding || 0), 1);
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rotation = (rotationRad * rad2deg) % 180;
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if (rotationMode === 'parallel') {
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rotation -= 90;
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}
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// Prevent text from rotating upside down
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if (rotation > 90) {
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rotation -= 180;
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}
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else if (rotation < -90) {
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rotation += 180;
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}
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options.rotation = rotation;
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}
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if (options.textPath) {
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if (point.shapeExisting.innerR === 0 &&
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options.textPath.enabled) {
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// Enable rotation to render text
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options.rotation = 0;
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// Center dataLabel - disable textPath
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options.textPath.enabled = false;
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// Setting width and padding
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options.style.width = Math.max((point.shapeExisting.r * 2) -
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2 * (options.padding || 0), 1);
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}
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else if (point.dlOptions &&
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point.dlOptions.textPath &&
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!point.dlOptions.textPath.enabled &&
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(rotationMode === 'circular')) {
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// Bring dataLabel back if was a center dataLabel
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options.textPath.enabled = true;
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}
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if (options.textPath.enabled) {
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// Enable rotation to render text
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options.rotation = 0;
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// Setting width and padding
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options.style.width = Math.max((point.outerArcLength +
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point.innerArcLength) / 2 -
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2 * (options.padding || 0), 1);
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}
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}
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// NOTE: alignDataLabel positions the data label differntly when rotation is
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// 0. Avoiding this by setting rotation to a small number.
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if (options.rotation === 0) {
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options.rotation = 0.001;
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}
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return options;
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};
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var getAnimation = function getAnimation(shape, params) {
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var point = params.point, radians = params.radians, innerR = params.innerR, idRoot = params.idRoot, idPreviousRoot = params.idPreviousRoot, shapeExisting = params.shapeExisting, shapeRoot = params.shapeRoot, shapePreviousRoot = params.shapePreviousRoot, visible = params.visible, from = {}, to = {
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end: shape.end,
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start: shape.start,
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innerR: shape.innerR,
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r: shape.r,
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x: shape.x,
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y: shape.y
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};
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if (visible) {
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// Animate points in
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if (!point.graphic && shapePreviousRoot) {
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if (idRoot === point.id) {
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from = {
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start: radians.start,
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end: radians.end
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};
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}
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else {
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from = (shapePreviousRoot.end <= shape.start) ? {
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start: radians.end,
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end: radians.end
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} : {
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start: radians.start,
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end: radians.start
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};
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}
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// Animate from center and outwards.
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from.innerR = from.r = innerR;
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}
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}
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else {
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// Animate points out
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if (point.graphic) {
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if (idPreviousRoot === point.id) {
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to = {
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innerR: innerR,
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r: innerR
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};
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}
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else if (shapeRoot) {
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to = (shapeRoot.end <= shapeExisting.start) ?
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{
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innerR: innerR,
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r: innerR,
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start: radians.end,
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end: radians.end
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} : {
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innerR: innerR,
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r: innerR,
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start: radians.start,
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end: radians.start
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};
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}
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}
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}
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return {
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from: from,
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to: to
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};
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};
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var getDrillId = function getDrillId(point, idRoot, mapIdToNode) {
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var drillId, node = point.node, nodeRoot;
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if (!node.isLeaf) {
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// When it is the root node, the drillId should be set to parent.
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if (idRoot === point.id) {
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nodeRoot = mapIdToNode[idRoot];
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drillId = nodeRoot.parent;
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}
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else {
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drillId = point.id;
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}
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}
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return drillId;
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};
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var getLevelFromAndTo = function getLevelFromAndTo(_a) {
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var level = _a.level, height = _a.height;
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// Never displays level below 1
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var from = level > 0 ? level : 1;
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var to = level + height;
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return { from: from, to: to };
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};
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var cbSetTreeValuesBefore = function before(node, options) {
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var mapIdToNode = options.mapIdToNode, nodeParent = mapIdToNode[node.parent], series = options.series, chart = series.chart, points = series.points, point = points[node.i], colors = (series.options.colors || chart && chart.options.colors), colorInfo = getColor(node, {
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colors: colors,
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colorIndex: series.colorIndex,
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index: options.index,
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mapOptionsToLevel: options.mapOptionsToLevel,
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parentColor: nodeParent && nodeParent.color,
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parentColorIndex: nodeParent && nodeParent.colorIndex,
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series: options.series,
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siblings: options.siblings
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});
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node.color = colorInfo.color;
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node.colorIndex = colorInfo.colorIndex;
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if (point) {
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point.color = node.color;
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point.colorIndex = node.colorIndex;
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// Set slicing on node, but avoid slicing the top node.
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node.sliced = (node.id !== options.idRoot) ? point.sliced : false;
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}
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return node;
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};
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/**
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* A Sunburst displays hierarchical data, where a level in the hierarchy is
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* represented by a circle. The center represents the root node of the tree.
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* The visualization bears a resemblance to both treemap and pie charts.
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*
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* @sample highcharts/demo/sunburst
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* Sunburst chart
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*
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* @extends plotOptions.pie
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* @excluding allAreas, clip, colorAxis, colorKey, compare, compareBase,
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* dataGrouping, depth, dragDrop, endAngle, gapSize, gapUnit,
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* ignoreHiddenPoint, innerSize, joinBy, legendType, linecap,
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* minSize, navigatorOptions, pointRange
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* @product highcharts
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* @requires modules/sunburst.js
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* @optionparent plotOptions.sunburst
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* @private
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*/
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var sunburstOptions = {
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/**
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* Set options on specific levels. Takes precedence over series options,
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* but not point options.
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*
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* @sample highcharts/demo/sunburst
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* Sunburst chart
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*
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* @type {Array<*>}
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* @apioption plotOptions.sunburst.levels
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*/
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/**
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* Can set a `borderColor` on all points which lies on the same level.
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*
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* @type {Highcharts.ColorString}
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* @apioption plotOptions.sunburst.levels.borderColor
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*/
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/**
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* Can set a `borderWidth` on all points which lies on the same level.
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*
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* @type {number}
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* @apioption plotOptions.sunburst.levels.borderWidth
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*/
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/**
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* Can set a `borderDashStyle` on all points which lies on the same level.
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*
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* @type {Highcharts.DashStyleValue}
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* @apioption plotOptions.sunburst.levels.borderDashStyle
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*/
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/**
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* Can set a `color` on all points which lies on the same level.
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*
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* @type {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
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* @apioption plotOptions.sunburst.levels.color
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*/
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/**
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* Can set a `colorVariation` on all points which lies on the same level.
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*
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* @apioption plotOptions.sunburst.levels.colorVariation
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*/
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/**
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* The key of a color variation. Currently supports `brightness` only.
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*
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* @type {string}
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* @apioption plotOptions.sunburst.levels.colorVariation.key
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*/
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/**
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* The ending value of a color variation. The last sibling will receive this
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* value.
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*
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* @type {number}
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* @apioption plotOptions.sunburst.levels.colorVariation.to
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*/
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/**
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* Can set `dataLabels` on all points which lies on the same level.
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*
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* @extends plotOptions.sunburst.dataLabels
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* @apioption plotOptions.sunburst.levels.dataLabels
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*/
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/**
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* Can set a `levelSize` on all points which lies on the same level.
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*
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* @type {object}
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* @apioption plotOptions.sunburst.levels.levelSize
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*/
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/**
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* Can set a `rotation` on all points which lies on the same level.
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*
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* @type {number}
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* @apioption plotOptions.sunburst.levels.rotation
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*/
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/**
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* Can set a `rotationMode` on all points which lies on the same level.
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*
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* @type {string}
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* @apioption plotOptions.sunburst.levels.rotationMode
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*/
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/**
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* When enabled the user can click on a point which is a parent and
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* zoom in on its children. Deprecated and replaced by
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* [allowTraversingTree](#plotOptions.sunburst.allowTraversingTree).
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*
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* @deprecated
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* @type {boolean}
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* @default false
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* @since 6.0.0
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* @product highcharts
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* @apioption plotOptions.sunburst.allowDrillToNode
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*/
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/**
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* When enabled the user can click on a point which is a parent and
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* zoom in on its children.
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*
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* @type {boolean}
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* @default false
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* @since 7.0.3
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* @product highcharts
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* @apioption plotOptions.sunburst.allowTraversingTree
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*/
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/**
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* The center of the sunburst chart relative to the plot area. Can be
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* percentages or pixel values.
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*
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* @sample {highcharts} highcharts/plotoptions/pie-center/
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* Centered at 100, 100
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*
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* @type {Array<number|string>}
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* @default ["50%", "50%"]
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* @product highcharts
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*/
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center: ['50%', '50%'],
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colorByPoint: false,
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/**
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* Disable inherited opacity from Treemap series.
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*
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* @ignore-option
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*/
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opacity: 1,
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/**
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* @declare Highcharts.SeriesSunburstDataLabelsOptionsObject
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*/
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dataLabels: {
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allowOverlap: true,
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defer: true,
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/**
|
|
* Decides how the data label will be rotated relative to the perimeter
|
|
* of the sunburst. Valid values are `auto`, `circular`, `parallel` and
|
|
* `perpendicular`. When `auto`, the best fit will be
|
|
* computed for the point. The `circular` option works similiar
|
|
* to `auto`, but uses the `textPath` feature - labels are curved,
|
|
* resulting in a better layout, however multiple lines and
|
|
* `textOutline` are not supported.
|
|
*
|
|
* The `series.rotation` option takes precedence over `rotationMode`.
|
|
*
|
|
* @type {string}
|
|
* @sample {highcharts} highcharts/plotoptions/sunburst-datalabels-rotationmode-circular/
|
|
* Circular rotation mode
|
|
* @validvalue ["auto", "perpendicular", "parallel", "circular"]
|
|
* @since 6.0.0
|
|
*/
|
|
rotationMode: 'auto',
|
|
style: {
|
|
/** @internal */
|
|
textOverflow: 'ellipsis'
|
|
}
|
|
},
|
|
/**
|
|
* Which point to use as a root in the visualization.
|
|
*
|
|
* @type {string}
|
|
*/
|
|
rootId: void 0,
|
|
/**
|
|
* Used together with the levels and `allowDrillToNode` options. When
|
|
* set to false the first level visible when drilling is considered
|
|
* to be level one. Otherwise the level will be the same as the tree
|
|
* structure.
|
|
*/
|
|
levelIsConstant: true,
|
|
/**
|
|
* Determines the width of the ring per level.
|
|
*
|
|
* @sample {highcharts} highcharts/plotoptions/sunburst-levelsize/
|
|
* Sunburst with various sizes per level
|
|
*
|
|
* @since 6.0.5
|
|
*/
|
|
levelSize: {
|
|
/**
|
|
* The value used for calculating the width of the ring. Its' affect is
|
|
* determined by `levelSize.unit`.
|
|
*
|
|
* @sample {highcharts} highcharts/plotoptions/sunburst-levelsize/
|
|
* Sunburst with various sizes per level
|
|
*/
|
|
value: 1,
|
|
/**
|
|
* How to interpret `levelSize.value`.
|
|
*
|
|
* - `percentage` gives a width relative to result of outer radius minus
|
|
* inner radius.
|
|
*
|
|
* - `pixels` gives the ring a fixed width in pixels.
|
|
*
|
|
* - `weight` takes the remaining width after percentage and pixels, and
|
|
* distributes it accross all "weighted" levels. The value relative to
|
|
* the sum of all weights determines the width.
|
|
*
|
|
* @sample {highcharts} highcharts/plotoptions/sunburst-levelsize/
|
|
* Sunburst with various sizes per level
|
|
*
|
|
* @validvalue ["percentage", "pixels", "weight"]
|
|
*/
|
|
unit: 'weight'
|
|
},
|
|
/**
|
|
* Options for the button appearing when traversing down in a treemap.
|
|
*
|
|
* @extends plotOptions.treemap.traverseUpButton
|
|
* @since 6.0.0
|
|
* @apioption plotOptions.sunburst.traverseUpButton
|
|
*/
|
|
/**
|
|
* If a point is sliced, moved out from the center, how many pixels
|
|
* should it be moved?.
|
|
*
|
|
* @sample highcharts/plotoptions/sunburst-sliced
|
|
* Sliced sunburst
|
|
*
|
|
* @since 6.0.4
|
|
*/
|
|
slicedOffset: 10
|
|
};
|
|
// Properties of the Sunburst series.
|
|
var sunburstSeries = {
|
|
drawDataLabels: noop,
|
|
drawPoints: function drawPoints() {
|
|
var series = this, mapOptionsToLevel = series.mapOptionsToLevel, shapeRoot = series.shapeRoot, group = series.group, hasRendered = series.hasRendered, idRoot = series.rootNode, idPreviousRoot = series.idPreviousRoot, nodeMap = series.nodeMap, nodePreviousRoot = nodeMap[idPreviousRoot], shapePreviousRoot = nodePreviousRoot && nodePreviousRoot.shapeArgs, points = series.points, radians = series.startAndEndRadians, chart = series.chart, optionsChart = chart && chart.options && chart.options.chart || {}, animation = (isBoolean(optionsChart.animation) ?
|
|
optionsChart.animation :
|
|
true), positions = series.center, center = {
|
|
x: positions[0],
|
|
y: positions[1]
|
|
}, innerR = positions[3] / 2, renderer = series.chart.renderer, animateLabels, animateLabelsCalled = false, addedHack = false, hackDataLabelAnimation = !!(animation &&
|
|
hasRendered &&
|
|
idRoot !== idPreviousRoot &&
|
|
series.dataLabelsGroup);
|
|
if (hackDataLabelAnimation) {
|
|
series.dataLabelsGroup.attr({ opacity: 0 });
|
|
animateLabels = function () {
|
|
var s = series;
|
|
animateLabelsCalled = true;
|
|
if (s.dataLabelsGroup) {
|
|
s.dataLabelsGroup.animate({
|
|
opacity: 1,
|
|
visibility: 'visible'
|
|
});
|
|
}
|
|
};
|
|
}
|
|
points.forEach(function (point) {
|
|
var node = point.node, level = mapOptionsToLevel[node.level], shapeExisting = point.shapeExisting || {}, shape = node.shapeArgs || {}, animationInfo, onComplete, visible = !!(node.visible && node.shapeArgs);
|
|
if (hasRendered && animation) {
|
|
animationInfo = getAnimation(shape, {
|
|
center: center,
|
|
point: point,
|
|
radians: radians,
|
|
innerR: innerR,
|
|
idRoot: idRoot,
|
|
idPreviousRoot: idPreviousRoot,
|
|
shapeExisting: shapeExisting,
|
|
shapeRoot: shapeRoot,
|
|
shapePreviousRoot: shapePreviousRoot,
|
|
visible: visible
|
|
});
|
|
}
|
|
else {
|
|
// When animation is disabled, attr is called from animation.
|
|
animationInfo = {
|
|
to: shape,
|
|
from: {}
|
|
};
|
|
}
|
|
extend(point, {
|
|
shapeExisting: shape,
|
|
tooltipPos: [shape.plotX, shape.plotY],
|
|
drillId: getDrillId(point, idRoot, nodeMap),
|
|
name: '' + (point.name || point.id || point.index),
|
|
plotX: shape.plotX,
|
|
plotY: shape.plotY,
|
|
value: node.val,
|
|
isNull: !visible // used for dataLabels & point.draw
|
|
});
|
|
point.dlOptions = getDlOptions({
|
|
point: point,
|
|
level: level,
|
|
optionsPoint: point.options,
|
|
shapeArgs: shape
|
|
});
|
|
if (!addedHack && visible) {
|
|
addedHack = true;
|
|
onComplete = animateLabels;
|
|
}
|
|
point.draw({
|
|
animatableAttribs: animationInfo.to,
|
|
attribs: extend(animationInfo.from, (!chart.styledMode && series.pointAttribs(point, (point.selected && 'select')))),
|
|
onComplete: onComplete,
|
|
group: group,
|
|
renderer: renderer,
|
|
shapeType: 'arc',
|
|
shapeArgs: shape
|
|
});
|
|
});
|
|
// Draw data labels after points
|
|
// TODO draw labels one by one to avoid addtional looping
|
|
if (hackDataLabelAnimation && addedHack) {
|
|
series.hasRendered = false;
|
|
series.options.dataLabels.defer = true;
|
|
Series.prototype.drawDataLabels.call(series);
|
|
series.hasRendered = true;
|
|
// If animateLabels is called before labels were hidden, then call
|
|
// it again.
|
|
if (animateLabelsCalled) {
|
|
animateLabels();
|
|
}
|
|
}
|
|
else {
|
|
Series.prototype.drawDataLabels.call(series);
|
|
}
|
|
},
|
|
pointAttribs: seriesTypes.column.prototype.pointAttribs,
|
|
// The layout algorithm for the levels
|
|
layoutAlgorithm: layoutAlgorithm,
|
|
// Set the shape arguments on the nodes. Recursive from root down.
|
|
setShapeArgs: function (parent, parentValues, mapOptionsToLevel) {
|
|
var childrenValues = [], level = parent.level + 1, options = mapOptionsToLevel[level],
|
|
// Collect all children which should be included
|
|
children = parent.children.filter(function (n) {
|
|
return n.visible;
|
|
}), twoPi = 6.28; // Two times Pi.
|
|
childrenValues = this.layoutAlgorithm(parentValues, children, options);
|
|
children.forEach(function (child, index) {
|
|
var values = childrenValues[index], angle = values.start + ((values.end - values.start) / 2), radius = values.innerR + ((values.r - values.innerR) / 2), radians = (values.end - values.start), isCircle = (values.innerR === 0 && radians > twoPi), center = (isCircle ?
|
|
{ x: values.x, y: values.y } :
|
|
getEndPoint(values.x, values.y, angle, radius)), val = (child.val ?
|
|
(child.childrenTotal > child.val ?
|
|
child.childrenTotal :
|
|
child.val) :
|
|
child.childrenTotal);
|
|
// The inner arc length is a convenience for data label filters.
|
|
if (this.points[child.i]) {
|
|
this.points[child.i].innerArcLength = radians * values.innerR;
|
|
this.points[child.i].outerArcLength = radians * values.r;
|
|
}
|
|
child.shapeArgs = merge(values, {
|
|
plotX: center.x,
|
|
plotY: center.y + 4 * Math.abs(Math.cos(angle))
|
|
});
|
|
child.values = merge(values, {
|
|
val: val
|
|
});
|
|
// If node has children, then call method recursively
|
|
if (child.children.length) {
|
|
this.setShapeArgs(child, child.values, mapOptionsToLevel);
|
|
}
|
|
}, this);
|
|
},
|
|
translate: function translate() {
|
|
var series = this, options = series.options, positions = series.center = getCenter.call(series), radians = series.startAndEndRadians = getStartAndEndRadians(options.startAngle, options.endAngle), innerRadius = positions[3] / 2, outerRadius = positions[2] / 2, diffRadius = outerRadius - innerRadius,
|
|
// NOTE: updateRootId modifies series.
|
|
rootId = updateRootId(series), mapIdToNode = series.nodeMap, mapOptionsToLevel, idTop, nodeRoot = mapIdToNode && mapIdToNode[rootId], nodeTop, tree, values, nodeIds = {};
|
|
series.shapeRoot = nodeRoot && nodeRoot.shapeArgs;
|
|
// Call prototype function
|
|
Series.prototype.translate.call(series);
|
|
// @todo Only if series.isDirtyData is true
|
|
tree = series.tree = series.getTree();
|
|
// Render traverseUpButton, after series.nodeMap i calculated.
|
|
series.renderTraverseUpButton(rootId);
|
|
mapIdToNode = series.nodeMap;
|
|
nodeRoot = mapIdToNode[rootId];
|
|
idTop = isString(nodeRoot.parent) ? nodeRoot.parent : '';
|
|
nodeTop = mapIdToNode[idTop];
|
|
var _a = getLevelFromAndTo(nodeRoot), from = _a.from, to = _a.to;
|
|
mapOptionsToLevel = getLevelOptions({
|
|
from: from,
|
|
levels: series.options.levels,
|
|
to: to,
|
|
defaults: {
|
|
colorByPoint: options.colorByPoint,
|
|
dataLabels: options.dataLabels,
|
|
levelIsConstant: options.levelIsConstant,
|
|
levelSize: options.levelSize,
|
|
slicedOffset: options.slicedOffset
|
|
}
|
|
});
|
|
// NOTE consider doing calculateLevelSizes in a callback to
|
|
// getLevelOptions
|
|
mapOptionsToLevel = calculateLevelSizes(mapOptionsToLevel, {
|
|
diffRadius: diffRadius,
|
|
from: from,
|
|
to: to
|
|
});
|
|
// TODO Try to combine setTreeValues & setColorRecursive to avoid
|
|
// unnecessary looping.
|
|
setTreeValues(tree, {
|
|
before: cbSetTreeValuesBefore,
|
|
idRoot: rootId,
|
|
levelIsConstant: options.levelIsConstant,
|
|
mapOptionsToLevel: mapOptionsToLevel,
|
|
mapIdToNode: mapIdToNode,
|
|
points: series.points,
|
|
series: series
|
|
});
|
|
values = mapIdToNode[''].shapeArgs = {
|
|
end: radians.end,
|
|
r: innerRadius,
|
|
start: radians.start,
|
|
val: nodeRoot.val,
|
|
x: positions[0],
|
|
y: positions[1]
|
|
};
|
|
this.setShapeArgs(nodeTop, values, mapOptionsToLevel);
|
|
// Set mapOptionsToLevel on series for use in drawPoints.
|
|
series.mapOptionsToLevel = mapOptionsToLevel;
|
|
// #10669 - verify if all nodes have unique ids
|
|
series.data.forEach(function (child) {
|
|
if (nodeIds[child.id]) {
|
|
error(31, false, series.chart);
|
|
}
|
|
// map
|
|
nodeIds[child.id] = true;
|
|
});
|
|
// reset object
|
|
nodeIds = {};
|
|
},
|
|
alignDataLabel: function (point, dataLabel, labelOptions) {
|
|
if (labelOptions.textPath && labelOptions.textPath.enabled) {
|
|
return;
|
|
}
|
|
return seriesTypes.treemap.prototype.alignDataLabel
|
|
.apply(this, arguments);
|
|
},
|
|
// Animate the slices in. Similar to the animation of polar charts.
|
|
animate: function (init) {
|
|
var chart = this.chart, center = [
|
|
chart.plotWidth / 2,
|
|
chart.plotHeight / 2
|
|
], plotLeft = chart.plotLeft, plotTop = chart.plotTop, attribs, group = this.group;
|
|
// Initialize the animation
|
|
if (init) {
|
|
// Scale down the group and place it in the center
|
|
attribs = {
|
|
translateX: center[0] + plotLeft,
|
|
translateY: center[1] + plotTop,
|
|
scaleX: 0.001,
|
|
scaleY: 0.001,
|
|
rotation: 10,
|
|
opacity: 0.01
|
|
};
|
|
group.attr(attribs);
|
|
// Run the animation
|
|
}
|
|
else {
|
|
attribs = {
|
|
translateX: plotLeft,
|
|
translateY: plotTop,
|
|
scaleX: 1,
|
|
scaleY: 1,
|
|
rotation: 0,
|
|
opacity: 1
|
|
};
|
|
group.animate(attribs, this.options.animation);
|
|
}
|
|
},
|
|
utils: {
|
|
calculateLevelSizes: calculateLevelSizes,
|
|
getLevelFromAndTo: getLevelFromAndTo,
|
|
range: range
|
|
}
|
|
};
|
|
// Properties of the Sunburst series.
|
|
var sunburstPoint = {
|
|
draw: drawPoint,
|
|
shouldDraw: function shouldDraw() {
|
|
return !this.isNull;
|
|
},
|
|
isValid: function isValid() {
|
|
return true;
|
|
},
|
|
getDataLabelPath: function (label) {
|
|
var renderer = this.series.chart.renderer, shapeArgs = this.shapeExisting, start = shapeArgs.start, end = shapeArgs.end, angle = start + (end - start) / 2, // arc middle value
|
|
upperHalf = angle < 0 &&
|
|
angle > -Math.PI ||
|
|
angle > Math.PI, r = (shapeArgs.r + (label.options.distance || 0)), moreThanHalf;
|
|
// Check if point is a full circle
|
|
if (start === -Math.PI / 2 &&
|
|
correctFloat(end) === correctFloat(Math.PI * 1.5)) {
|
|
start = -Math.PI + Math.PI / 360;
|
|
end = -Math.PI / 360;
|
|
upperHalf = true;
|
|
}
|
|
// Check if dataLabels should be render in the
|
|
// upper half of the circle
|
|
if (end - start > Math.PI) {
|
|
upperHalf = false;
|
|
moreThanHalf = true;
|
|
}
|
|
if (this.dataLabelPath) {
|
|
this.dataLabelPath = this.dataLabelPath.destroy();
|
|
}
|
|
this.dataLabelPath = renderer
|
|
.arc({
|
|
open: true,
|
|
longArc: moreThanHalf ? 1 : 0
|
|
})
|
|
// Add it inside the data label group so it gets destroyed
|
|
// with the label
|
|
.add(label);
|
|
this.dataLabelPath.attr({
|
|
start: (upperHalf ? start : end),
|
|
end: (upperHalf ? end : start),
|
|
clockwise: +upperHalf,
|
|
x: shapeArgs.x,
|
|
y: shapeArgs.y,
|
|
r: (r + shapeArgs.innerR) / 2
|
|
});
|
|
return this.dataLabelPath;
|
|
}
|
|
};
|
|
/**
|
|
* A `sunburst` series. If the [type](#series.sunburst.type) option is
|
|
* not specified, it is inherited from [chart.type](#chart.type).
|
|
*
|
|
* @extends series,plotOptions.sunburst
|
|
* @excluding dataParser, dataURL, stack, dataSorting
|
|
* @product highcharts
|
|
* @requires modules/sunburst.js
|
|
* @apioption series.sunburst
|
|
*/
|
|
/**
|
|
* @type {Array<number|null|*>}
|
|
* @extends series.treemap.data
|
|
* @excluding x, y
|
|
* @product highcharts
|
|
* @apioption series.sunburst.data
|
|
*/
|
|
/**
|
|
* @type {Highcharts.SeriesSunburstDataLabelsOptionsObject|Array<Highcharts.SeriesSunburstDataLabelsOptionsObject>}
|
|
* @product highcharts
|
|
* @apioption series.sunburst.data.dataLabels
|
|
*/
|
|
/**
|
|
* The value of the point, resulting in a relative area of the point
|
|
* in the sunburst.
|
|
*
|
|
* @type {number|null}
|
|
* @since 6.0.0
|
|
* @product highcharts
|
|
* @apioption series.sunburst.data.value
|
|
*/
|
|
/**
|
|
* Use this option to build a tree structure. The value should be the id of the
|
|
* point which is the parent. If no points has a matching id, or this option is
|
|
* undefined, then the parent will be set to the root.
|
|
*
|
|
* @type {string}
|
|
* @since 6.0.0
|
|
* @product highcharts
|
|
* @apioption series.sunburst.data.parent
|
|
*/
|
|
/**
|
|
* Whether to display a slice offset from the center. When a sunburst point is
|
|
* sliced, its children are also offset.
|
|
*
|
|
* @sample highcharts/plotoptions/sunburst-sliced
|
|
* Sliced sunburst
|
|
*
|
|
* @type {boolean}
|
|
* @default false
|
|
* @since 6.0.4
|
|
* @product highcharts
|
|
* @apioption series.sunburst.data.sliced
|
|
*/
|
|
/**
|
|
* @private
|
|
* @class
|
|
* @name Highcharts.seriesTypes.sunburst
|
|
*
|
|
* @augments Highcharts.Series
|
|
*/
|
|
seriesType('sunburst', 'treemap', sunburstOptions, sunburstSeries, sunburstPoint);
|