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app/vmselect/promql: properly take into account the first datapoint when calculating rollup_candlestick
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@ -4750,7 +4750,7 @@ func TestExecSuccess(t *testing.T) {
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}}
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r2 := netstorage.Result{
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MetricName: metricNameExpected,
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Values: []float64{0.85, 0.15, 0.43, 0.76, 0.47, 0.21},
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Values: []float64{0.9, 0.32, 0.82, 0.13, 0.28, 0.86},
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Timestamps: timestampsExpected,
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}
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r2.MetricName.Tags = []storage.Tag{{
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@ -4768,7 +4768,7 @@ func TestExecSuccess(t *testing.T) {
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}}
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r4 := netstorage.Result{
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MetricName: metricNameExpected,
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Values: []float64{0.85, 0.94, 0.97, 0.93, 0.98, 0.92},
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Values: []float64{0.9, 0.94, 0.97, 0.93, 0.98, 0.92},
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Timestamps: timestampsExpected,
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}
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r4.MetricName.Tags = []storage.Tag{{
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@ -1434,17 +1434,21 @@ func getCandlestickValues(rfa *rollupFuncArg) []float64 {
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return rfa.values[:len(timestamps)]
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}
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func getPrevValueForCandlestick(rfa *rollupFuncArg) float64 {
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if rfa.prevTimestamp+rfa.step == rfa.currTimestamp {
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func getFirstValueForCandlestick(rfa *rollupFuncArg) float64 {
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if rfa.prevTimestamp+rfa.step >= rfa.currTimestamp {
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return rfa.prevValue
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}
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return nan
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}
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func rollupOpen(rfa *rollupFuncArg) float64 {
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v := getFirstValueForCandlestick(rfa)
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if !math.IsNaN(v) {
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return v
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}
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values := getCandlestickValues(rfa)
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if len(values) == 0 {
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return getPrevValueForCandlestick(rfa)
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return nan
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}
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return values[0]
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}
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@ -1452,18 +1456,22 @@ func rollupOpen(rfa *rollupFuncArg) float64 {
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func rollupClose(rfa *rollupFuncArg) float64 {
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values := getCandlestickValues(rfa)
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if len(values) == 0 {
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return getPrevValueForCandlestick(rfa)
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return getFirstValueForCandlestick(rfa)
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}
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return values[len(values)-1]
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}
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func rollupHigh(rfa *rollupFuncArg) float64 {
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values := getCandlestickValues(rfa)
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max := getFirstValueForCandlestick(rfa)
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if math.IsNaN(max) {
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if len(values) == 0 {
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return getPrevValueForCandlestick(rfa)
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return nan
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}
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max := values[0]
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for _, v := range values[1:] {
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max = values[0]
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values = values[1:]
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}
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for _, v := range values {
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if v > max {
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max = v
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}
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@ -1473,11 +1481,15 @@ func rollupHigh(rfa *rollupFuncArg) float64 {
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func rollupLow(rfa *rollupFuncArg) float64 {
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values := getCandlestickValues(rfa)
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min := getFirstValueForCandlestick(rfa)
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if math.IsNaN(min) {
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if len(values) == 0 {
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return getPrevValueForCandlestick(rfa)
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return nan
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}
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min := values[0]
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for _, v := range values[1:] {
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min = values[0]
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values = values[1:]
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}
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for _, v := range values {
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if v < min {
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min = v
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}
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