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Current File : /var/www/html/temp/code/es-modules/parts/SplineSeries.js
/**
 * (c) 2010-2017 Torstein Honsi
 *
 * License: www.highcharts.com/license
 */
'use strict';
import H from './Globals.js';
import './Utilities.js';
import './Options.js';
import './Series.js';
var pick = H.pick,
    seriesType = H.seriesType;

/**
 * A spline series is a special type of line series, where the segments between
 * the data points are smoothed.
 *
 * @sample    {highcharts} highcharts/demo/spline-irregular-time/
 *            Spline chart
 * @sample    {highstock} stock/demo/spline/
 *            Spline chart
 * @extends   plotOptions.series
 * @excluding step
 * @product   highcharts highstock
 * @apioption plotOptions.spline
 */

/**
 * Spline series type.
 *
 * @constructor seriesTypes.spline
 * @extends     {Series}
 */
seriesType('spline', 'line', {}, /** @lends seriesTypes.spline.prototype */ {
    /**
     * Get the spline segment from a given point's previous neighbour to the
     * given point
     */
    getPointSpline: function (points, point, i) {
        var
            // 1 means control points midway between points, 2 means 1/3 from
            // the point, 3 is 1/4 etc
            smoothing = 1.5,
            denom = smoothing + 1,
            plotX = point.plotX,
            plotY = point.plotY,
            lastPoint = points[i - 1],
            nextPoint = points[i + 1],
            leftContX,
            leftContY,
            rightContX,
            rightContY,
            ret;

        function doCurve(otherPoint) {
            return otherPoint &&
                !otherPoint.isNull &&
                otherPoint.doCurve !== false &&
                !point.isCliff; // #6387, area splines next to null
        }

        // Find control points
        if (doCurve(lastPoint) && doCurve(nextPoint)) {
            var lastX = lastPoint.plotX,
                lastY = lastPoint.plotY,
                nextX = nextPoint.plotX,
                nextY = nextPoint.plotY,
                correction = 0;

            leftContX = (smoothing * plotX + lastX) / denom;
            leftContY = (smoothing * plotY + lastY) / denom;
            rightContX = (smoothing * plotX + nextX) / denom;
            rightContY = (smoothing * plotY + nextY) / denom;

            // Have the two control points make a straight line through main
            // point
            if (rightContX !== leftContX) { // #5016, division by zero
                correction = ((rightContY - leftContY) * (rightContX - plotX)) /
                    (rightContX - leftContX) + plotY - rightContY;
            }

            leftContY += correction;
            rightContY += correction;

            // to prevent false extremes, check that control points are between
            // neighbouring points' y values
            if (leftContY > lastY && leftContY > plotY) {
                leftContY = Math.max(lastY, plotY);
                // mirror of left control point
                rightContY = 2 * plotY - leftContY;
            } else if (leftContY < lastY && leftContY < plotY) {
                leftContY = Math.min(lastY, plotY);
                rightContY = 2 * plotY - leftContY;
            }
            if (rightContY > nextY && rightContY > plotY) {
                rightContY = Math.max(nextY, plotY);
                leftContY = 2 * plotY - rightContY;
            } else if (rightContY < nextY && rightContY < plotY) {
                rightContY = Math.min(nextY, plotY);
                leftContY = 2 * plotY - rightContY;
            }

            // record for drawing in next point
            point.rightContX = rightContX;
            point.rightContY = rightContY;


        }

        // Visualize control points for debugging
        /*
        if (leftContX) {
            this.chart.renderer.circle(
                    leftContX + this.chart.plotLeft,
                    leftContY + this.chart.plotTop,
                    2
                )
                .attr({
                    stroke: 'red',
                    'stroke-width': 2,
                    fill: 'none',
                    zIndex: 9
                })
                .add();
            this.chart.renderer.path(['M', leftContX + this.chart.plotLeft,
                leftContY + this.chart.plotTop,
                'L', plotX + this.chart.plotLeft, plotY + this.chart.plotTop])
                .attr({
                    stroke: 'red',
                    'stroke-width': 2,
                    zIndex: 9
                })
                .add();
        }
        if (rightContX) {
            this.chart.renderer.circle(
                    rightContX + this.chart.plotLeft,
                    rightContY + this.chart.plotTop,
                    2
                )
                .attr({
                    stroke: 'green',
                    'stroke-width': 2,
                    fill: 'none',
                    zIndex: 9
                })
                .add();
            this.chart.renderer.path(['M', rightContX + this.chart.plotLeft,
                rightContY + this.chart.plotTop,
                'L', plotX + this.chart.plotLeft, plotY + this.chart.plotTop])
                .attr({
                    stroke: 'green',
                    'stroke-width': 2,
                    zIndex: 9
                })
                .add();
        }
        // */
        ret = [
            'C',
            pick(lastPoint.rightContX, lastPoint.plotX),
            pick(lastPoint.rightContY, lastPoint.plotY),
            pick(leftContX, plotX),
            pick(leftContY, plotY),
            plotX,
            plotY
        ];
        // reset for updating series later
        lastPoint.rightContX = lastPoint.rightContY = null;
        return ret;
    }
});

/**
 * A `spline` series. If the [type](#series.spline.type) option is
 * not specified, it is inherited from [chart.type](#chart.type).
 *
 * @type      {Object}
 * @extends   series,plotOptions.spline
 * @excluding dataParser,dataURL,step
 * @product   highcharts highstock
 * @apioption series.spline
 */

/**
 * An array of data points for the series. For the `spline` 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, 9],
 *         [1, 2],
 *         [2, 8]
 *     ]
 *  ```
 *
 * 3.  An array of objects with named values. The objects are point
 * configuration objects as seen below. If the total number of data
 * points exceeds the series' [turboThreshold](#series.spline.turboThreshold),
 * this option is not available.
 *
 *  ```js
 *     data: [{
 *         x: 1,
 *         y: 9,
 *         name: "Point2",
 *         color: "#00FF00"
 *     }, {
 *         x: 1,
 *         y: 0,
 *         name: "Point1",
 *         color: "#FF00FF"
 *     }]
 *  ```
 *
 * @type      {Array<Object|Array|Number>}
 * @extends   series.line.data
 * @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
 * @product   highcharts highstock
 * @apioption series.spline.data
 */

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