668 lines
No EOL
25 KiB
JavaScript
668 lines
No EOL
25 KiB
JavaScript
var _excluded = ["id"],
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_excluded2 = ["activeDot", "animationBegin", "animationDuration", "animationEasing", "connectNulls", "dot", "fill", "fillOpacity", "hide", "isAnimationActive", "legendType", "stroke", "xAxisId", "yAxisId"];
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function _extends() { return _extends = Object.assign ? Object.assign.bind() : function (n) { for (var e = 1; e < arguments.length; e++) { var t = arguments[e]; for (var r in t) ({}).hasOwnProperty.call(t, r) && (n[r] = t[r]); } return n; }, _extends.apply(null, arguments); }
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function _objectWithoutProperties(e, t) { if (null == e) return {}; var o, r, i = _objectWithoutPropertiesLoose(e, t); if (Object.getOwnPropertySymbols) { var n = Object.getOwnPropertySymbols(e); for (r = 0; r < n.length; r++) o = n[r], -1 === t.indexOf(o) && {}.propertyIsEnumerable.call(e, o) && (i[o] = e[o]); } return i; }
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function _objectWithoutPropertiesLoose(r, e) { if (null == r) return {}; var t = {}; for (var n in r) if ({}.hasOwnProperty.call(r, n)) { if (-1 !== e.indexOf(n)) continue; t[n] = r[n]; } return t; }
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function ownKeys(e, r) { var t = Object.keys(e); if (Object.getOwnPropertySymbols) { var o = Object.getOwnPropertySymbols(e); r && (o = o.filter(function (r) { return Object.getOwnPropertyDescriptor(e, r).enumerable; })), t.push.apply(t, o); } return t; }
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function _objectSpread(e) { for (var r = 1; r < arguments.length; r++) { var t = null != arguments[r] ? arguments[r] : {}; r % 2 ? ownKeys(Object(t), !0).forEach(function (r) { _defineProperty(e, r, t[r]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(e, Object.getOwnPropertyDescriptors(t)) : ownKeys(Object(t)).forEach(function (r) { Object.defineProperty(e, r, Object.getOwnPropertyDescriptor(t, r)); }); } return e; }
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function _defineProperty(e, r, t) { return (r = _toPropertyKey(r)) in e ? Object.defineProperty(e, r, { value: t, enumerable: !0, configurable: !0, writable: !0 }) : e[r] = t, e; }
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function _toPropertyKey(t) { var i = _toPrimitive(t, "string"); return "symbol" == typeof i ? i : i + ""; }
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function _toPrimitive(t, r) { if ("object" != typeof t || !t) return t; var e = t[Symbol.toPrimitive]; if (void 0 !== e) { var i = e.call(t, r || "default"); if ("object" != typeof i) return i; throw new TypeError("@@toPrimitive must return a primitive value."); } return ("string" === r ? String : Number)(t); }
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import * as React from 'react';
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import { PureComponent, useMemo, useRef } from 'react';
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import { clsx } from 'clsx';
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import { Layer } from '../container/Layer';
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import { CartesianLabelListContextProvider, LabelListFromLabelProp } from '../component/LabelList';
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import { Dots } from '../component/Dots';
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import { interpolate, isNan, isNullish, isNumber, noop } from '../util/DataUtils';
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import { getCateCoordinateOfLine, getNormalizedStackId, getTooltipNameProp, getValueByDataKey } from '../util/ChartUtils';
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import { isClipDot } from '../util/ReactUtils';
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import { ActivePoints } from '../component/ActivePoints';
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import { SetTooltipEntrySettings } from '../state/SetTooltipEntrySettings';
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import { GraphicalItemClipPath, useNeedsClip } from './GraphicalItemClipPath';
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import { selectArea } from '../state/selectors/areaSelectors';
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import { useIsPanorama } from '../context/PanoramaContext';
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import { useCartesianChartLayout, useChartLayout } from '../context/chartLayoutContext';
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import { useChartName } from '../state/selectors/selectors';
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import { SetLegendPayload } from '../state/SetLegendPayload';
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import { useAppSelector } from '../state/hooks';
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import { AnimatedItems, useAnimationCallbacks } from '../animation/AnimatedItems';
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import { matchAnimationItems, matchByIndex } from '../animation/matchBy';
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import { useAnimationStartSnapshot } from '../animation/useAnimationStartSnapshot';
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import { resolveDefaultProps } from '../util/resolveDefaultProps';
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import { usePlotArea } from '../hooks';
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import { RegisterGraphicalItemId } from '../context/RegisterGraphicalItemId';
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import { SetCartesianGraphicalItem } from '../state/SetGraphicalItem';
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import { svgPropertiesNoEvents } from '../util/svgPropertiesNoEvents';
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import { getRadiusAndStrokeWidthFromDot } from '../util/getRadiusAndStrokeWidthFromDot';
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import { svgPropertiesAndEvents } from '../util/svgPropertiesAndEvents';
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import { Shape } from '../util/ActiveShapeUtils';
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import { ZIndexLayer } from '../zIndex/ZIndexLayer';
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import { DefaultZIndexes } from '../zIndex/DefaultZIndexes';
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import { propsAreEqual } from '../util/propsAreEqual';
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import { AreaRevealShape } from './AreaRevealShape';
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/**
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* @inline
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*/
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/**
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* Our base value array has payload in it, and we expose it externally too.
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*/
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/**
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* Internal props, combination of external props + defaultProps + private Recharts state
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*/
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/**
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* External props, intended for end users to fill in
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*/
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var defaultAreaAnimateItems = (items, animationElapsedTime) => {
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if (items == null) {
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// First render: return items as-is, clip-path animation handles the reveal
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return [];
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}
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if (animationElapsedTime === 1) {
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return items.flatMap(item => item.status === 'removed' ? [] : [item.next]);
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}
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return items.flatMap(item => {
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if (item.status === 'matched') {
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return [_objectSpread(_objectSpread({}, item.next), {}, {
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x: interpolate(item.prev.x, item.next.x, animationElapsedTime),
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y: interpolate(item.prev.y, item.next.y, animationElapsedTime)
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})];
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}
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if (item.status === 'added') {
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/*
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* Here we just return the final position without interpolating
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* so that we can allow the default initial animation that is done by clipPath in AreaRevealShape.
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* If you want your own custom animations then you may want to interpolate this one as well.
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*/
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return [item.next];
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}
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// removed: drop
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return [];
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});
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};
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export var defaultAreaProps = {
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activeDot: true,
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animationBegin: 0,
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animationDuration: 1500,
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animationEasing: 'ease',
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animationMatchBy: matchByIndex,
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animationInterpolateFn: defaultAreaAnimateItems,
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connectNulls: false,
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dot: false,
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fill: '#3182bd',
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fillOpacity: 0.6,
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hide: false,
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isAnimationActive: 'auto',
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legendType: 'line',
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stroke: '#3182bd',
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strokeWidth: 1,
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type: 'linear',
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label: false,
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shape: AreaRevealShape,
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xAxisId: 0,
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yAxisId: 0,
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zIndex: DefaultZIndexes.area
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};
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/**
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* Because of naming conflict, we are forced to ignore certain (valid) SVG attributes.
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*/
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function getLegendItemColor(stroke, fill) {
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return stroke && stroke !== 'none' ? stroke : fill;
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}
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var computeLegendPayloadFromAreaData = props => {
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var dataKey = props.dataKey,
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name = props.name,
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stroke = props.stroke,
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fill = props.fill,
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legendType = props.legendType,
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hide = props.hide;
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return [{
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inactive: hide,
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dataKey,
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type: legendType,
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color: getLegendItemColor(stroke, fill),
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value: getTooltipNameProp(name, dataKey),
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payload: props
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}];
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};
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var SetAreaTooltipEntrySettings = /*#__PURE__*/React.memo(_ref => {
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var dataKey = _ref.dataKey,
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data = _ref.data,
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stroke = _ref.stroke,
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strokeWidth = _ref.strokeWidth,
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fill = _ref.fill,
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name = _ref.name,
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hide = _ref.hide,
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unit = _ref.unit,
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formatter = _ref.formatter,
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tooltipType = _ref.tooltipType,
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id = _ref.id;
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var tooltipEntrySettings = {
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dataDefinedOnItem: data,
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getPosition: noop,
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settings: {
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stroke,
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strokeWidth,
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fill,
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dataKey,
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nameKey: undefined,
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name: getTooltipNameProp(name, dataKey),
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hide,
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type: tooltipType,
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color: getLegendItemColor(stroke, fill),
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unit,
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formatter,
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graphicalItemId: id
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}
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};
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return /*#__PURE__*/React.createElement(SetTooltipEntrySettings, {
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tooltipEntrySettings: tooltipEntrySettings
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});
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});
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function AreaDotsWrapper(_ref2) {
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var clipPathId = _ref2.clipPathId,
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points = _ref2.points,
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props = _ref2.props;
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var needClip = props.needClip,
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dot = props.dot,
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dataKey = props.dataKey;
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var areaProps = svgPropertiesNoEvents(props);
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return /*#__PURE__*/React.createElement(Dots, {
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points: points,
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dot: dot,
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className: "recharts-area-dots",
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dotClassName: "recharts-area-dot",
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dataKey: dataKey,
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baseProps: areaProps,
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needClip: needClip,
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clipPathId: clipPathId
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});
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}
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function AreaLabelListProvider(_ref3) {
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var showLabels = _ref3.showLabels,
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children = _ref3.children,
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points = _ref3.points;
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var labelListEntries = points.map(point => {
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var _point$x, _point$y;
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var viewBox = {
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x: (_point$x = point.x) !== null && _point$x !== void 0 ? _point$x : 0,
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y: (_point$y = point.y) !== null && _point$y !== void 0 ? _point$y : 0,
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width: 0,
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lowerWidth: 0,
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upperWidth: 0,
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height: 0
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};
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return _objectSpread(_objectSpread({}, viewBox), {}, {
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value: point.value,
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payload: point.payload,
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parentViewBox: undefined,
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viewBox,
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fill: undefined
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});
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});
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return /*#__PURE__*/React.createElement(CartesianLabelListContextProvider, {
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value: showLabels ? labelListEntries : undefined
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}, children);
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}
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function StaticArea(_ref4) {
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var points = _ref4.points,
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baseLine = _ref4.baseLine,
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needClip = _ref4.needClip,
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clipPathId = _ref4.clipPathId,
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props = _ref4.props,
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animationElapsedTime = _ref4.animationElapsedTime,
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isAnimating = _ref4.isAnimating,
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isEntrance = _ref4.isEntrance;
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var layout = props.layout,
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type = props.type,
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stroke = props.stroke,
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connectNulls = props.connectNulls,
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isRange = props.isRange,
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shape = props.shape;
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var id = props.id,
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propsWithoutId = _objectWithoutProperties(props, _excluded);
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var propsWithEvents = svgPropertiesAndEvents(propsWithoutId);
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var curveProps = _objectSpread(_objectSpread({}, propsWithEvents), {}, {
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id,
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points,
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connectNulls,
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type,
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baseLine,
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layout,
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stroke,
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isRange,
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animationElapsedTime,
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isAnimating,
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isEntrance
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});
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return /*#__PURE__*/React.createElement(React.Fragment, null, (points === null || points === void 0 ? void 0 : points.length) > 1 && /*#__PURE__*/React.createElement(Layer, {
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clipPath: needClip ? "url(#clipPath-".concat(clipPathId, ")") : undefined
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}, /*#__PURE__*/React.createElement(Shape, {
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option: shape,
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DefaultShape: defaultAreaProps.shape,
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shapeProps: curveProps
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})), /*#__PURE__*/React.createElement(AreaDotsWrapper, {
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points: points,
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props: propsWithoutId,
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clipPathId: clipPathId
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}));
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}
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function interpolateScalarBaseLine(baseLine, prevBaseLine, animationElapsedTime) {
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if (isNumber(baseLine)) {
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var previousNumberBaseLine = isNumber(prevBaseLine) ? prevBaseLine : undefined;
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return interpolate(previousNumberBaseLine, baseLine, animationElapsedTime);
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}
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if (isNullish(baseLine) || isNan(baseLine)) {
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var _previousNumberBaseLine = isNumber(prevBaseLine) ? prevBaseLine : undefined;
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return interpolate(_previousNumberBaseLine, 0, animationElapsedTime);
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}
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return baseLine;
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}
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function AreaWithAnimation(_ref5) {
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var needClip = _ref5.needClip,
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clipPathId = _ref5.clipPathId,
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props = _ref5.props,
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previousPointsRef = _ref5.previousPointsRef,
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previousBaselineRef = _ref5.previousBaselineRef;
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var points = props.points,
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baseLine = props.baseLine,
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isAnimationActive = props.isAnimationActive,
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animationBegin = props.animationBegin,
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animationDuration = props.animationDuration,
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animationEasing = props.animationEasing,
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animationMatchBy = props.animationMatchBy,
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animationInterpolateFn = props.animationInterpolateFn;
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var animationInput = useMemo(() => ({
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points,
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baseLine
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}), [points, baseLine]);
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var baseLineAnimationState = useAnimationStartSnapshot(animationInput, previousBaselineRef);
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var layout = useCartesianChartLayout();
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var _useAnimationCallback = useAnimationCallbacks(props.onAnimationStart, props.onAnimationEnd),
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isAnimating = _useAnimationCallback.isAnimating,
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handleAnimationStart = _useAnimationCallback.handleAnimationStart,
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handleAnimationEnd = _useAnimationCallback.handleAnimationEnd;
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var prevBaseLine = baseLineAnimationState.startValue;
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if (layout == null) {
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return null;
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}
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var baseLineAnimationItems;
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if (Array.isArray(baseLine) && Array.isArray(prevBaseLine)) {
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baseLineAnimationItems = matchAnimationItems(prevBaseLine, baseLine, animationMatchBy);
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} else if (Array.isArray(baseLine)) {
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baseLineAnimationItems = matchAnimationItems(null, baseLine, animationMatchBy);
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} else {
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baseLineAnimationItems = null;
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}
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return /*#__PURE__*/React.createElement(AnimatedItems, {
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animationInput: animationInput,
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animationIdPrefix: "recharts-area-",
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items: points,
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previousItemsRef: previousPointsRef,
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isAnimationActive: isAnimationActive,
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animationBegin: animationBegin,
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animationDuration: animationDuration,
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animationEasing: animationEasing,
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onAnimationStart: handleAnimationStart,
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onAnimationEnd: handleAnimationEnd,
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animationInterpolateFn: animationInterpolateFn,
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animationMatchBy: animationMatchBy,
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layout: layout
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}, (stepPoints, animationElapsedTime, isEntrance) => {
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var stepBaseLine;
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if (animationElapsedTime === 1) {
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stepBaseLine = baseLine;
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} else if (Array.isArray(baseLine)) {
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stepBaseLine = animationInterpolateFn(baseLineAnimationItems, animationElapsedTime, layout);
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} else {
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stepBaseLine = isEntrance ? baseLine : interpolateScalarBaseLine(baseLine, prevBaseLine, animationElapsedTime);
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}
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baseLineAnimationState.syncStepValue(stepBaseLine, animationElapsedTime);
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return /*#__PURE__*/React.createElement(AreaLabelListProvider, {
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showLabels: !isAnimating,
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points: points
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}, props.children, /*#__PURE__*/React.createElement(StaticArea, {
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points: stepPoints,
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baseLine: stepBaseLine,
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needClip: needClip,
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clipPathId: clipPathId,
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props: props,
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animationElapsedTime: animationElapsedTime,
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isAnimating: isAnimating || animationElapsedTime < 1,
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isEntrance: isEntrance
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}), /*#__PURE__*/React.createElement(LabelListFromLabelProp, {
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label: props.label
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}));
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});
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}
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/*
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* This component decides if the area should be animated or not.
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* It also holds the state of the animation.
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*/
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function RenderArea(_ref6) {
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var needClip = _ref6.needClip,
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clipPathId = _ref6.clipPathId,
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props = _ref6.props;
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/*
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* These two must be refs, not state!
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* Because we want to store the most recent shape of the animation in case we have to interrupt the animation;
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* that happens when user initiates another animation before the current one finishes.
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*
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* If this was a useState, then every step in the animation would trigger a re-render.
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* So, useRef it is.
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*/
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var previousPointsRef = useRef(null);
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var previousBaselineRef = useRef();
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return /*#__PURE__*/React.createElement(AreaWithAnimation, {
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needClip: needClip,
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clipPathId: clipPathId,
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props: props,
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previousPointsRef: previousPointsRef,
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previousBaselineRef: previousBaselineRef
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});
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}
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class AreaWithState extends PureComponent {
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render() {
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var _this$props = this.props,
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hide = _this$props.hide,
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dot = _this$props.dot,
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points = _this$props.points,
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className = _this$props.className,
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top = _this$props.top,
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left = _this$props.left,
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needClip = _this$props.needClip,
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xAxisId = _this$props.xAxisId,
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yAxisId = _this$props.yAxisId,
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width = _this$props.width,
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height = _this$props.height,
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id = _this$props.id,
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baseLine = _this$props.baseLine,
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zIndex = _this$props.zIndex;
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if (hide) {
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return null;
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}
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var layerClass = clsx('recharts-area', className);
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var clipPathId = id;
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var _getRadiusAndStrokeWi = getRadiusAndStrokeWidthFromDot(dot),
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r = _getRadiusAndStrokeWi.r,
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strokeWidth = _getRadiusAndStrokeWi.strokeWidth;
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var clipDot = isClipDot(dot);
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var dotSize = r * 2 + strokeWidth;
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var activePointsClipPath = needClip ? "url(#clipPath-".concat(clipDot ? '' : 'dots-').concat(clipPathId, ")") : undefined;
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return /*#__PURE__*/React.createElement(ZIndexLayer, {
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zIndex: zIndex
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}, /*#__PURE__*/React.createElement(Layer, {
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className: layerClass
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}, needClip && /*#__PURE__*/React.createElement("defs", null, /*#__PURE__*/React.createElement(GraphicalItemClipPath, {
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clipPathId: clipPathId,
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xAxisId: xAxisId,
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yAxisId: yAxisId
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}), !clipDot && /*#__PURE__*/React.createElement("clipPath", {
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id: "clipPath-dots-".concat(clipPathId)
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}, /*#__PURE__*/React.createElement("rect", {
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x: left - dotSize / 2,
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y: top - dotSize / 2,
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width: width + dotSize,
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height: height + dotSize
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}))), /*#__PURE__*/React.createElement(RenderArea, {
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needClip: needClip,
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clipPathId: clipPathId,
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props: this.props
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})), /*#__PURE__*/React.createElement(ActivePoints, {
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points: points,
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mainColor: getLegendItemColor(this.props.stroke, this.props.fill),
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itemDataKey: this.props.dataKey,
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activeDot: this.props.activeDot,
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clipPath: activePointsClipPath
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}), this.props.isRange && Array.isArray(baseLine) && /*#__PURE__*/React.createElement(ActivePoints, {
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points: baseLine,
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mainColor: getLegendItemColor(this.props.stroke, this.props.fill),
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itemDataKey: this.props.dataKey,
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activeDot: this.props.activeDot,
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clipPath: activePointsClipPath
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}));
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}
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}
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function AreaImpl(props) {
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var _useAppSelector;
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var activeDot = props.activeDot,
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animationBegin = props.animationBegin,
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animationDuration = props.animationDuration,
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animationEasing = props.animationEasing,
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connectNulls = props.connectNulls,
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dot = props.dot,
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fill = props.fill,
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fillOpacity = props.fillOpacity,
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hide = props.hide,
|
|
isAnimationActive = props.isAnimationActive,
|
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legendType = props.legendType,
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stroke = props.stroke,
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xAxisId = props.xAxisId,
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yAxisId = props.yAxisId,
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everythingElse = _objectWithoutProperties(props, _excluded2);
|
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var layout = useChartLayout();
|
|
var chartName = useChartName();
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|
var _useNeedsClip = useNeedsClip(xAxisId, yAxisId),
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|
needClip = _useNeedsClip.needClip;
|
|
var isPanorama = useIsPanorama();
|
|
var _ref7 = (_useAppSelector = useAppSelector(state => selectArea(state, props.id, isPanorama))) !== null && _useAppSelector !== void 0 ? _useAppSelector : {},
|
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points = _ref7.points,
|
|
isRange = _ref7.isRange,
|
|
baseLine = _ref7.baseLine;
|
|
var plotArea = usePlotArea();
|
|
if (layout !== 'horizontal' && layout !== 'vertical' || plotArea == null) {
|
|
// Can't render Area in an unsupported layout
|
|
return null;
|
|
}
|
|
if (chartName !== 'AreaChart' && chartName !== 'ComposedChart') {
|
|
// There is nothing stopping us from rendering Area in other charts, except for historical reasons. Do we want to allow that?
|
|
return null;
|
|
}
|
|
var height = plotArea.height,
|
|
width = plotArea.width,
|
|
left = plotArea.x,
|
|
top = plotArea.y;
|
|
if (!points || !points.length) {
|
|
return null;
|
|
}
|
|
return /*#__PURE__*/React.createElement(AreaWithState, _extends({}, everythingElse, {
|
|
activeDot: activeDot,
|
|
animationBegin: animationBegin,
|
|
animationDuration: animationDuration,
|
|
animationEasing: animationEasing,
|
|
baseLine: baseLine,
|
|
connectNulls: connectNulls,
|
|
dot: dot,
|
|
fill: fill,
|
|
fillOpacity: fillOpacity,
|
|
height: height,
|
|
hide: hide,
|
|
layout: layout,
|
|
isAnimationActive: isAnimationActive,
|
|
isRange: isRange,
|
|
legendType: legendType,
|
|
needClip: needClip,
|
|
points: points,
|
|
stroke: stroke,
|
|
width: width,
|
|
left: left,
|
|
top: top,
|
|
xAxisId: xAxisId,
|
|
yAxisId: yAxisId
|
|
}));
|
|
}
|
|
export var getBaseValue = (layout, chartBaseValue, itemBaseValue, xAxis, yAxis) => {
|
|
// The baseValue can be defined both on the AreaChart, and on the Area.
|
|
// The value for the item takes precedence.
|
|
var baseValue = itemBaseValue !== null && itemBaseValue !== void 0 ? itemBaseValue : chartBaseValue;
|
|
if (isNumber(baseValue)) {
|
|
return baseValue;
|
|
}
|
|
var numericAxis = layout === 'horizontal' ? yAxis : xAxis;
|
|
// @ts-expect-error d3scale .domain() returns unknown, Math.max expects number
|
|
var domain = numericAxis.scale.domain();
|
|
if (numericAxis.type === 'number') {
|
|
var domainMax = Math.max(domain[0], domain[1]);
|
|
var domainMin = Math.min(domain[0], domain[1]);
|
|
if (baseValue === 'dataMin') {
|
|
return domainMin;
|
|
}
|
|
if (baseValue === 'dataMax') {
|
|
return domainMax;
|
|
}
|
|
return domainMax < 0 ? domainMax : Math.max(Math.min(domain[0], domain[1]), 0);
|
|
}
|
|
if (baseValue === 'dataMin') {
|
|
return domain[0];
|
|
}
|
|
if (baseValue === 'dataMax') {
|
|
return domain[1];
|
|
}
|
|
return domain[0];
|
|
};
|
|
export function computeArea(_ref8) {
|
|
var _ref8$areaSettings = _ref8.areaSettings,
|
|
connectNulls = _ref8$areaSettings.connectNulls,
|
|
itemBaseValue = _ref8$areaSettings.baseValue,
|
|
dataKey = _ref8$areaSettings.dataKey,
|
|
stackedData = _ref8.stackedData,
|
|
layout = _ref8.layout,
|
|
chartBaseValue = _ref8.chartBaseValue,
|
|
xAxis = _ref8.xAxis,
|
|
yAxis = _ref8.yAxis,
|
|
displayedData = _ref8.displayedData,
|
|
dataStartIndex = _ref8.dataStartIndex,
|
|
xAxisTicks = _ref8.xAxisTicks,
|
|
yAxisTicks = _ref8.yAxisTicks,
|
|
bandSize = _ref8.bandSize;
|
|
var hasStack = stackedData && stackedData.length;
|
|
var baseValue = getBaseValue(layout, chartBaseValue, itemBaseValue, xAxis, yAxis);
|
|
var isHorizontalLayout = layout === 'horizontal';
|
|
var isRange = false;
|
|
var points = displayedData.map((entry, index) => {
|
|
var _valueAsArray$, _valueAsArray, _xAxis$scale$map;
|
|
var valueAsArray;
|
|
if (hasStack) {
|
|
valueAsArray = stackedData[dataStartIndex + index];
|
|
} else {
|
|
var rawValue = getValueByDataKey(entry, dataKey);
|
|
if (!Array.isArray(rawValue)) {
|
|
valueAsArray = [baseValue, rawValue];
|
|
} else {
|
|
valueAsArray = rawValue;
|
|
isRange = true;
|
|
}
|
|
}
|
|
var value1 = (_valueAsArray$ = (_valueAsArray = valueAsArray) === null || _valueAsArray === void 0 ? void 0 : _valueAsArray[1]) !== null && _valueAsArray$ !== void 0 ? _valueAsArray$ : null;
|
|
var isBreakPoint = value1 == null || hasStack && !connectNulls && getValueByDataKey(entry, dataKey) == null;
|
|
if (isHorizontalLayout) {
|
|
var _yAxis$scale$map;
|
|
return {
|
|
x: getCateCoordinateOfLine({
|
|
axis: xAxis,
|
|
ticks: xAxisTicks,
|
|
bandSize,
|
|
entry,
|
|
index
|
|
}),
|
|
y: isBreakPoint ? null : (_yAxis$scale$map = yAxis.scale.map(value1)) !== null && _yAxis$scale$map !== void 0 ? _yAxis$scale$map : null,
|
|
value: valueAsArray,
|
|
payload: entry
|
|
};
|
|
}
|
|
return {
|
|
x: isBreakPoint ? null : (_xAxis$scale$map = xAxis.scale.map(value1)) !== null && _xAxis$scale$map !== void 0 ? _xAxis$scale$map : null,
|
|
y: getCateCoordinateOfLine({
|
|
axis: yAxis,
|
|
ticks: yAxisTicks,
|
|
bandSize,
|
|
entry,
|
|
index
|
|
}),
|
|
value: valueAsArray,
|
|
payload: entry
|
|
};
|
|
});
|
|
var baseLine;
|
|
if (hasStack || isRange) {
|
|
baseLine = points.map(entry => {
|
|
var _xAxis$scale$map2;
|
|
var x = Array.isArray(entry.value) ? entry.value[0] : null;
|
|
if (isHorizontalLayout) {
|
|
var _yAxis$scale$map2;
|
|
return {
|
|
x: entry.x,
|
|
y: x != null && entry.y != null ? (_yAxis$scale$map2 = yAxis.scale.map(x)) !== null && _yAxis$scale$map2 !== void 0 ? _yAxis$scale$map2 : null : null,
|
|
payload: entry.payload
|
|
};
|
|
}
|
|
return {
|
|
x: x != null ? (_xAxis$scale$map2 = xAxis.scale.map(x)) !== null && _xAxis$scale$map2 !== void 0 ? _xAxis$scale$map2 : null : null,
|
|
y: entry.y,
|
|
payload: entry.payload
|
|
};
|
|
});
|
|
} else {
|
|
baseLine = isHorizontalLayout ? yAxis.scale.map(baseValue) : xAxis.scale.map(baseValue);
|
|
}
|
|
return {
|
|
points,
|
|
baseLine: baseLine !== null && baseLine !== void 0 ? baseLine : 0,
|
|
isRange
|
|
};
|
|
}
|
|
function AreaFn(outsideProps) {
|
|
var props = resolveDefaultProps(outsideProps, defaultAreaProps);
|
|
var isPanorama = useIsPanorama();
|
|
// Report all props to Redux store first, before calling hooks, to avoid circular dependencies.
|
|
return /*#__PURE__*/React.createElement(RegisterGraphicalItemId, {
|
|
id: props.id,
|
|
type: "area"
|
|
}, id => /*#__PURE__*/React.createElement(React.Fragment, null, /*#__PURE__*/React.createElement(SetLegendPayload, {
|
|
legendPayload: computeLegendPayloadFromAreaData(props)
|
|
}), /*#__PURE__*/React.createElement(SetAreaTooltipEntrySettings, {
|
|
dataKey: props.dataKey,
|
|
data: props.data,
|
|
stroke: props.stroke,
|
|
strokeWidth: props.strokeWidth,
|
|
fill: props.fill,
|
|
name: props.name,
|
|
hide: props.hide,
|
|
unit: props.unit,
|
|
formatter: props.formatter,
|
|
tooltipType: props.tooltipType,
|
|
id: id
|
|
}), /*#__PURE__*/React.createElement(SetCartesianGraphicalItem, {
|
|
type: "area",
|
|
id: id,
|
|
data: props.data,
|
|
dataKey: props.dataKey,
|
|
xAxisId: props.xAxisId,
|
|
yAxisId: props.yAxisId,
|
|
zAxisId: 0,
|
|
stackId: getNormalizedStackId(props.stackId),
|
|
hide: props.hide,
|
|
barSize: undefined,
|
|
baseValue: props.baseValue,
|
|
isPanorama: isPanorama,
|
|
connectNulls: props.connectNulls
|
|
}), /*#__PURE__*/React.createElement(AreaImpl, _extends({}, props, {
|
|
id: id
|
|
}))));
|
|
}
|
|
|
|
/**
|
|
* @provides LabelListContext
|
|
* @consumes CartesianChartContext
|
|
*/
|
|
export var Area = /*#__PURE__*/React.memo(AreaFn, propsAreEqual);
|
|
// @ts-expect-error we need to set the displayName for debugging purposes
|
|
Area.displayName = 'Area'; |