2019-12-26 22:10:19 +05:30
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<script>
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2020-03-09 13:42:32 +05:30
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import { flattenDeep, isNumber } from 'lodash';
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import { GlChartSeriesLabel } from '@gitlab/ui/dist/charts';
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2019-12-26 22:10:19 +05:30
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import { roundOffFloat } from '~/lib/utils/common_utils';
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import { hexToRgb } from '~/lib/utils/color_utils';
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2020-05-24 23:13:21 +05:30
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import { areaOpacityValues, symbolSizes, colorValues, panelTypes } from '../../constants';
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2019-12-26 22:10:19 +05:30
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import { graphDataValidatorForAnomalyValues } from '../../utils';
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import MonitorTimeSeriesChart from './time_series.vue';
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/**
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* Series indexes
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*/
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const METRIC = 0;
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const UPPER = 1;
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const LOWER = 2;
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/**
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* Boundary area appearance
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*/
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const AREA_COLOR = colorValues.anomalyAreaColor;
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const AREA_OPACITY = areaOpacityValues.default;
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const AREA_COLOR_RGBA = `rgba(${hexToRgb(AREA_COLOR).join(',')},${AREA_OPACITY})`;
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/**
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* The anomaly component highlights when a metric shows
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* some anomalous behavior.
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*
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* It shows both a metric line and a boundary band in a
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* time series chart, the boundary band shows the normal
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* range of values the metric should take.
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*
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2020-01-01 13:55:28 +05:30
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* This component accepts 3 metrics, which contain the
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2019-12-26 22:10:19 +05:30
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* "metric", "upper" limit and "lower" limit.
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*
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* The upper and lower series are "stacked areas" visually
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* to create the boundary band, and if any "metric" value
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* is outside this band, it is highlighted to warn users.
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*
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* The boundary band stack must be painted above the 0 line
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* so the area is shown correctly. If any of the values of
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* the data are negative, the chart data is shifted to be
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* above 0 line.
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*
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* The data passed to the time series is will always be
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* positive, but reformatted to show the original values of
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* data.
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*
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*/
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export default {
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components: {
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GlChartSeriesLabel,
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MonitorTimeSeriesChart,
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},
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inheritAttrs: false,
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props: {
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graphData: {
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type: Object,
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required: true,
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validator: graphDataValidatorForAnomalyValues,
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},
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},
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computed: {
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series() {
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return this.graphData.metrics.map(metric => {
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const values = metric.result && metric.result[0] ? metric.result[0].values : [];
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return {
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label: metric.label,
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// NaN values may disrupt avg., max. & min. calculations in the legend, filter them out
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2019-12-26 22:10:19 +05:30
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data: values.filter(([, value]) => !Number.isNaN(value)),
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};
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});
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},
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/**
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* If any of the values of the data is negative, the
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* chart data is shifted to the lowest value
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*
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* This offset is the lowest value.
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*/
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yOffset() {
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2020-03-09 13:42:32 +05:30
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const values = flattenDeep(this.series.map(ser => ser.data.map(([, y]) => y)));
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2019-12-26 22:10:19 +05:30
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const min = values.length ? Math.floor(Math.min(...values)) : 0;
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return min < 0 ? -min : 0;
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},
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metricData() {
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const originalMetricQuery = this.graphData.metrics[0];
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const metricQuery = { ...originalMetricQuery };
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metricQuery.result[0].values = metricQuery.result[0].values.map(([x, y]) => [
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x,
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y + this.yOffset,
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]);
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return {
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...this.graphData,
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type: panelTypes.LINE_CHART,
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metrics: [metricQuery],
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};
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},
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metricSeriesConfig() {
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return {
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type: 'line',
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symbol: 'circle',
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symbolSize: (val, params) => {
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if (this.isDatapointAnomaly(params.dataIndex)) {
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return symbolSizes.anomaly;
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}
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// 0 causes echarts to throw an error, use small number instead
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// see https://gitlab.com/gitlab-org/gitlab-ui/issues/423
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return 0.001;
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},
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showSymbol: true,
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itemStyle: {
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color: params => {
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if (this.isDatapointAnomaly(params.dataIndex)) {
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return colorValues.anomalySymbol;
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}
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return colorValues.primaryColor;
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},
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},
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};
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},
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chartOptions() {
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const [, upperSeries, lowerSeries] = this.series;
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const calcOffsetY = (data, offsetCallback) =>
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data.map((value, dataIndex) => {
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const [x, y] = value;
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return [x, y + offsetCallback(dataIndex)];
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});
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const yAxisWithOffset = {
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axisLabel: {
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formatter: num => roundOffFloat(num - this.yOffset, 3).toString(),
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},
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};
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/**
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* Boundary is rendered by 2 series: An invisible
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* series (opacity: 0) stacked on a visible one.
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*
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* Order is important, lower boundary is stacked
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* *below* the upper boundary.
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*/
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const boundarySeries = [];
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if (upperSeries.data.length && lowerSeries.data.length) {
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// Lower boundary, plus the offset if negative values
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boundarySeries.push(
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this.makeBoundarySeries({
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name: this.formatLegendLabel(lowerSeries),
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data: calcOffsetY(lowerSeries.data, () => this.yOffset),
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}),
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);
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// Upper boundary, minus the lower boundary
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boundarySeries.push(
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this.makeBoundarySeries({
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name: this.formatLegendLabel(upperSeries),
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data: calcOffsetY(upperSeries.data, i => -this.yValue(LOWER, i)),
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areaStyle: {
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color: AREA_COLOR,
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opacity: AREA_OPACITY,
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},
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}),
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);
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}
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2020-03-09 13:42:32 +05:30
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2019-12-26 22:10:19 +05:30
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return { yAxis: yAxisWithOffset, series: boundarySeries };
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},
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},
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methods: {
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formatLegendLabel(query) {
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return query.label;
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},
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yValue(seriesIndex, dataIndex) {
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const d = this.series[seriesIndex].data[dataIndex];
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return d && d[1];
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},
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yValueFormatted(seriesIndex, dataIndex) {
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const y = this.yValue(seriesIndex, dataIndex);
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return isNumber(y) ? y.toFixed(3) : '';
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},
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isDatapointAnomaly(dataIndex) {
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const yVal = this.yValue(METRIC, dataIndex);
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const yUpper = this.yValue(UPPER, dataIndex);
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const yLower = this.yValue(LOWER, dataIndex);
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return (isNumber(yUpper) && yVal > yUpper) || (isNumber(yLower) && yVal < yLower);
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},
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makeBoundarySeries(series) {
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const stackKey = 'anomaly-boundary-series-stack';
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return {
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type: 'line',
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stack: stackKey,
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lineStyle: {
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width: 0,
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color: AREA_COLOR_RGBA, // legend color
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},
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color: AREA_COLOR_RGBA, // tooltip color
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symbol: 'none',
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...series,
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};
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},
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},
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};
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</script>
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<template>
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<monitor-time-series-chart
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v-bind="$attrs"
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:graph-data="metricData"
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:option="chartOptions"
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:series-config="metricSeriesConfig"
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>
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<slot></slot>
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<template #tooltip-content="slotProps">
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<div
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v-for="(content, seriesIndex) in slotProps.tooltip.content"
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:key="seriesIndex"
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class="d-flex justify-content-between"
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>
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<gl-chart-series-label :color="content.color">
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{{ content.name }}
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</gl-chart-series-label>
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<div class="gl-ml-7">
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{{ yValueFormatted(seriesIndex, content.dataIndex) }}
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</div>
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</div>
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</template>
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</monitor-time-series-chart>
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</template>
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