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Current File : /var/www/html/KPI monitor/node_modules/highcharts/es-modules/Series/Pictorial/PictorialSeries.js
/* *
 *
 *  (c) 2010-2026 Highsoft AS
 *  Author: Torstein Honsi, Magdalena Gut
 *
 *  A commercial license may be required depending on use.
 *  See www.highcharts.com/license
 *
 *
 * */
'use strict';
/* *
 *
 *  Imports
 *
 * */
import '../Column/ColumnSeries.js';
import PatternFill from '../../Extensions/PatternFill.js';
import A from '../../Core/Animation/AnimationUtilities.js';
import Chart from '../../Core/Chart/Chart.js';
import PictorialPoint from './PictorialPoint.js';
import PictorialUtilities from './PictorialUtilities.js';
import Series from '../../Core/Series/Series.js';
import SeriesRegistry from '../../Core/Series/SeriesRegistry.js';
import StackItem from '../../Core/Axis/Stacking/StackItem.js';
import SVGRenderer from '../../Core/Renderer/SVG/SVGRenderer.js';
import U from '../../Core/Utilities.js';
const ColumnSeries = SeriesRegistry.seriesTypes.column;
PatternFill.compose(Chart, Series, SVGRenderer);
const { animObject } = A;
const { getStackMetrics, invertShadowGroup, rescalePatternFill } = PictorialUtilities;
const { addEvent, defined, merge, objectEach, pick } = U;
/* *
 *
 *  Class
 *
 * */
/**
 * The pictorial series type.
 *
 * @private
 * @class
 * @name Highcharts.seriesTypes.pictorial
 *
 * @augments Highcharts.Series
 */
class PictorialSeries extends ColumnSeries {
    /* *
     *
     * Functions
     *
     * */
    /* eslint-disable valid-jsdoc */
    /**
     * Animate in the series. Called internally twice. First with the `init`
     * parameter set to true, which sets up the initial state of the
     * animation. Then when ready, it is called with the `init` parameter
     * undefined, in order to perform the actual animation.
     *
     * @function Highcharts.Series#animate
     *
     * @param {boolean} [init]
     * Initialize the animation.
     */
    animate(init) {
        const { chart, group } = this, animation = animObject(this.options.animation), 
        // The key for temporary animation clips
        animationClipKey = [
            this.getSharedClipKey(),
            animation.duration,
            animation.easing,
            animation.defer
        ].join(',');
        let animationClipRect = chart.sharedClips[animationClipKey];
        // Initialize the animation. Set up the clipping rectangle.
        if (init && group) {
            const clipBox = chart.getClipBox(this);
            // Create temporary animation clips
            if (!animationClipRect) {
                clipBox.y = clipBox.height;
                clipBox.height = 0;
                animationClipRect = chart.renderer.clipRect(clipBox);
                chart.sharedClips[animationClipKey] = animationClipRect;
            }
            group.clip(animationClipRect);
            // Run the animation
        }
        else if (animationClipRect &&
            // Only first series in this pane
            !animationClipRect.hasClass('highcharts-animating')) {
            const finalBox = chart.getClipBox(this);
            animationClipRect
                .addClass('highcharts-animating')
                .animate(finalBox, animation);
        }
    }
    animateDrilldown() { }
    animateDrillupFrom() { }
    pointAttribs(point) {
        const pointAttribs = super.pointAttribs.apply(this, arguments), seriesOptions = this.options, series = this, paths = seriesOptions.paths;
        if (point && point.shapeArgs && paths) {
            const shape = paths[point.index % paths.length], { y, height } = getStackMetrics(series.yAxis, shape), pathDef = shape.definition;
            // New pattern, replace
            if (pathDef !== point.pathDef) {
                point.pathDef = pathDef;
                pointAttribs.fill = {
                    pattern: {
                        path: {
                            d: pathDef,
                            fill: pointAttribs.fill,
                            strokeWidth: pointAttribs['stroke-width'],
                            stroke: pointAttribs.stroke
                        },
                        x: point.shapeArgs.x,
                        y: y,
                        width: point.shapeArgs.width || 0,
                        height: height,
                        patternContentUnits: 'objectBoundingBox',
                        backgroundColor: 'none',
                        color: '#ff0000'
                    }
                };
            }
            else if (point.pathDef && point.graphic) {
                delete pointAttribs.fill;
            }
        }
        delete pointAttribs.stroke;
        delete pointAttribs.strokeWidth;
        return pointAttribs;
    }
    /**
     * Make sure that path.max is also considered when calculating dataMax.
     */
    getExtremes() {
        const extremes = super.getExtremes.apply(this, arguments), series = this, paths = series.options.paths;
        if (paths) {
            paths.forEach(function (path) {
                if (defined(path.max) &&
                    defined(extremes.dataMax) &&
                    path.max > extremes.dataMax) {
                    extremes.dataMax = path.max;
                }
            });
        }
        return extremes;
    }
}
/* *
 *
 *  Static Properties
 *
 * */
PictorialSeries.defaultOptions = merge(ColumnSeries.defaultOptions, 
/**
 * A pictorial chart uses vector images to represents the data.
 * The shape of the data point is taken from the path parameter.
 *
 * @sample       {highcharts} highcharts/demo/pictorial/
 *               Pictorial chart
 *
 * @extends      plotOptions.column
 * @since 11.0.0
 * @product      highcharts
 * @excluding    allAreas, borderRadius,
 *               centerInCategory, colorAxis, colorKey, connectEnds,
 *               connectNulls, crisp, compare, compareBase, dataSorting,
 *               dashStyle, dataAsColumns, linecap, lineWidth, shadow,
 *               onPoint
 * @requires     modules/pictorial
 * @optionparent plotOptions.pictorial
 */
{
    borderWidth: 0
});
/* *
 *
 *  Events
 *
 * */
addEvent(PictorialSeries, 'afterRender', function () {
    const series = this, paths = series.options.paths, fillUrlMatcher = /url\(([^)]+)\)/;
    series.points.forEach(function (point) {
        if (point.graphic && point.shapeArgs && paths) {
            const shape = paths[point.index % paths.length], fill = point.graphic.attr('fill'), match = fill && fill.match(fillUrlMatcher), { y, height } = getStackMetrics(series.yAxis, shape);
            if (match && series.chart.renderer.patternElements) {
                const currentPattern = series.chart.renderer.patternElements[match[1].slice(1)];
                if (currentPattern) {
                    currentPattern.animate({
                        x: point.shapeArgs.x,
                        y: y,
                        width: point.shapeArgs.width || 0,
                        height: height
                    });
                }
            }
            rescalePatternFill(point.graphic, getStackMetrics(series.yAxis, shape).height, point.shapeArgs.width || 0, point.shapeArgs.height || Infinity, series.options.borderWidth || 0);
        }
    });
});
/**
 *
 */
function renderStackShadow(stack) {
    // Get first pictorial series
    const stackKeys = Object
        .keys(stack.points)
        .filter((p) => p.split(',').length > 1), allSeries = stack.axis.chart.series, seriesIndexes = stackKeys.map((key) => parseFloat(key.split(',')[0]));
    let seriesIndex = -1;
    seriesIndexes.forEach((index) => {
        if (allSeries[index] && allSeries[index].visible) {
            seriesIndex = index;
        }
    });
    const series = stack.axis.chart.series[seriesIndex];
    if (series &&
        series.is('pictorial') &&
        stack.axis.hasData() &&
        series.xAxis.hasData()) {
        const xAxis = series.xAxis, options = stack.axis.options, chart = stack.axis.chart, stackShadow = stack.shadow, xCenter = xAxis.toPixels(stack.x, true), x = chart.inverted ? xAxis.len - xCenter : xCenter, paths = series.options.paths || [], index = stack.x % paths.length, shape = paths[index], width = series.getColumnMetrics &&
            series.getColumnMetrics().width, { height, y } = getStackMetrics(series.yAxis, shape), shadowOptions = options.stackShadow, strokeWidth = pick(shadowOptions && shadowOptions.borderWidth, series.options.borderWidth, 1);
        if (!stackShadow &&
            shadowOptions &&
            shadowOptions.enabled &&
            shape) {
            if (!stack.shadowGroup) {
                stack.shadowGroup = chart.renderer.g('shadow-group')
                    .add();
            }
            stack.shadowGroup.attr({
                translateX: chart.inverted ?
                    stack.axis.pos : xAxis.pos,
                translateY: chart.inverted ?
                    xAxis.pos : stack.axis.pos
            });
            stack.shadow = chart.renderer.rect(x, y, width, height)
                .attr({
                fill: {
                    pattern: {
                        path: {
                            d: shape.definition,
                            fill: shadowOptions.color ||
                                '#dedede',
                            strokeWidth: strokeWidth,
                            stroke: shadowOptions.borderColor ||
                                'transparent'
                        },
                        x: x,
                        y: y,
                        width: width,
                        height: height,
                        patternContentUnits: 'objectBoundingBox',
                        backgroundColor: 'none',
                        color: '#dedede'
                    }
                }
            })
                .add(stack.shadowGroup);
            invertShadowGroup(stack.shadowGroup, stack.axis);
            rescalePatternFill(stack.shadow, height, width, height, strokeWidth);
            stack.setOffset(series.pointXOffset || 0, series.barW || 0);
        }
        else if (stackShadow && stack.shadowGroup) {
            stackShadow.animate({
                x,
                y,
                width,
                height
            });
            const fillUrlMatcher = /url\(([^)]+)\)/, fill = stackShadow.attr('fill'), match = fill && fill.match(fillUrlMatcher);
            if (match && chart.renderer.patternElements) {
                chart.renderer.patternElements[match[1].slice(1)]
                    .animate({
                    x,
                    y,
                    width,
                    height
                });
            }
            stack.shadowGroup.animate({
                translateX: chart.inverted ?
                    stack.axis.pos : xAxis.pos,
                translateY: chart.inverted ?
                    xAxis.pos : stack.axis.pos
            });
            invertShadowGroup(stack.shadowGroup, stack.axis);
            rescalePatternFill(stackShadow, height, width, height, strokeWidth);
            stack.setOffset(series.pointXOffset || 0, series.barW || 0);
        }
    }
    else if (stack.shadow && stack.shadowGroup) {
        stack.shadow.destroy();
        stack.shadow = void 0;
        stack.shadowGroup.destroy();
        stack.shadowGroup = void 0;
    }
}
/**
 *
 */
function forEachStack(chart, callback) {
    if (chart.axes) {
        chart.axes.forEach(function (axis) {
            if (!axis.stacking) {
                return;
            }
            const stacks = axis.stacking.stacks;
            // Render each stack total
            objectEach(stacks, function (type) {
                objectEach(type, function (stack) {
                    callback(stack);
                });
            });
        });
    }
}
addEvent(Chart, 'render', function () {
    forEachStack(this, renderStackShadow);
});
addEvent(StackItem, 'afterSetOffset', function (e) {
    if (this.shadow) {
        const { chart, len } = this.axis, { xOffset, width } = e, translateX = chart.inverted ? xOffset - chart.xAxis[0].len : xOffset, translateY = chart.inverted ? -len : 0;
        this.shadow.attr({
            translateX,
            translateY
        });
        this.shadow.animate({ width });
    }
});
/**
 *
 */
function destroyAllStackShadows(chart) {
    forEachStack(chart, function (stack) {
        if (stack.shadow && stack.shadowGroup) {
            stack.shadow.destroy();
            stack.shadowGroup.destroy();
            delete stack.shadow;
            delete stack.shadowGroup;
        }
    });
}
// This is a workaround due to no implementation of the animation drilldown.
addEvent(Chart, 'afterDrilldown', function () {
    destroyAllStackShadows(this);
});
addEvent(Chart, 'afterDrillUp', function () {
    destroyAllStackShadows(this);
});
PictorialSeries.prototype.pointClass = PictorialPoint;
SeriesRegistry.registerSeriesType('pictorial', PictorialSeries);
/* *
 *
 *  Default Export
 *
 * */
export default PictorialSeries;
/* *
 *
 * API Options
 *
 * */
/**
 * A `pictorial` series. If the [type](#series.pictorial.type) option is not
 * specified, it is inherited from [chart.type](#chart.type).
 *
 * @extends   series,plotOptions.pictorial
 * @since 11.0.0
 * @product   highcharts
 * @excluding dataParser, borderRadius, boostBlending, boostThreshold,
 *            borderColor, borderWidth, centerInCategory, connectEnds,
 *            connectNulls, crisp, colorKey, dataURL, dataAsColumns, depth,
 *            dragDrop, edgeColor, edgeWidth, linecap, lineWidth,  marker,
 *            dataSorting, dashStyle, onPoint, relativeXValue, shadow, zoneAxis,
 *            zones
 * @requires  modules/pictorial
 * @apioption series.pictorial
 */
/**
 * An array of data points for the series. For the `pictorial` series type,
 * points can be given in the following ways:
 *
 * 1. 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. The `x` value can also be
 *    omitted, in which case the inner arrays should be of length 2. Then the
 *    `x` value is automatically calculated, either starting at 0 and
 *    incremented by 1, or from `pointStart` and `pointInterval` given in the
 *    series options.
 *    ```js
 *    data: [
 *        [0, 40],
 *        [1, 50],
 *        [2, 60]
 *    ]
 *    ```
 *
 * 2. 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.pictorial.turboThreshold), this option is not
 *    available.
 *    ```js
 *    data: [{
 *        x: 0,
 *        y: 40,
 *        name: "Point1",
 *        color: "#00FF00"
 *    }, {
 *        x: 1,
 *        y: 60,
 *        name: "Point2",
 *        color: "#FF00FF"
 *    }]
 *    ```
 *
 * @type      {Array<Array<(number|string),number>|Array<(number|string),number,number>|*>}
 * @extends   series.column.data
 *
 * @sample {highcharts} highcharts/demo/pictorial/
 *         Pictorial chart
 * @sample {highcharts} highcharts/demo/pictorial-stackshadow/
 *         Pictorial stackShadow option
 * @sample {highcharts} highcharts/series-pictorial/paths-max/
 *         Pictorial max option
 *
 * @excluding borderColor, borderWidth, dashStyle, dragDrop
 * @since 11.0.0
 * @product   highcharts
 * @apioption series.pictorial.data
 */
/**
 * The paths include options describing the series image. For further details on
 * preparing the SVG image, please refer to the [pictorial
 * documentation](https://www.highcharts.com/docs/chart-and-series-types/pictorial).
 *
 * @declare   Highcharts.SeriesPictorialPathsOptionsObject
 * @type      {Array<*>}
 *
 * @sample    {highcharts} highcharts/demo/pictorial/
 *            Pictorial chart
 *
 * @since     11.0.0
 * @product   highcharts
 * @apioption series.pictorial.paths
 */
/**
 * The definition defines a path to be drawn. It corresponds `d` SVG attribute.
 *
 * @type      {string}
 *
 * @sample    {highcharts} highcharts/demo/pictorial/
 *            Pictorial chart
 *
 * @product   highcharts
 * @apioption series.pictorial.paths.definition
 */
/**
 * The max option determines height of the image. It is the ratio of
 * `yAxis.max` to the `paths.max`.
 *
 * @sample {highcharts} highcharts/series-pictorial/paths-max
 *         Pictorial max option
 *
 * @type      {number}
 * @default   yAxis.max
 * @product   highcharts
 * @apioption series.pictorial.paths.max
 */
/**
 * Relevant only for pictorial series. The `stackShadow` forms the background of
 * stacked points. Requires `series.stacking` to be defined.
 *
 * @sample {highcharts} highcharts/demo/pictorial-stackshadow/ Pictorial
 *         stackShadow option
 *
 * @declare   Highcharts.YAxisOptions
 * @type      {*}
 * @since 11.0.0
 * @product   highcharts
 * @requires  modules/pictorial
 * @apioption yAxis.stackShadow
 */
/**
 * The color of the `stackShadow` border.
 *
 * @declare   Highcharts.YAxisOptions
 * @type      {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
 * @default   transparent
 * @product   highcharts
 * @requires  modules/pictorial
 * @apioption yAxis.stackShadow.borderColor
 */
/**
 * The width of the `stackShadow` border.
 *
 * @declare   Highcharts.YAxisOptions
 * @type      {number}
 * @default   0
 * @product   highcharts
 * @requires  modules/pictorial
 * @apioption yAxis.stackShadow.borderWidth
 */
/**
 * The color of the `stackShadow`.
 *
 * @declare   Highcharts.YAxisOptions
 * @type      {Highcharts.ColorString|Highcharts.GradientColorObject|Highcharts.PatternObject}
 * @default   #dedede
 * @product   highcharts
 * @requires  modules/pictorial
 * @apioption yAxis.stackShadow.color
 */
/**
 * Enable or disable `stackShadow`.
 *
 * @declare   Highcharts.YAxisOptions
 * @type      {boolean}
 * @default   undefined
 * @product   highcharts
 * @requires  modules/pictorial
 * @apioption yAxis.stackShadow.enabled
 */
''; // Adds doclets above to transpiled file

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