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https://github.com/VictoriaMetrics/VictoriaMetrics.git
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1332b6f912
Prevsiously every aggregation output was using its own timestamp for the output aggregated samples in a single aggregation interval. This could result in unexpected inconsitent timesetamps for the output aggregated samples. This commit consistently uses the same timestamp across all the output aggregated samples. This commit makes sure that the duration between subsequent timestamps strictly equals the configured aggregation interval. Thanks to @AndrewChubatiuk for the original idea at https://github.com/VictoriaMetrics/VictoriaMetrics/pull/6314 This commit should help https://github.com/VictoriaMetrics/VictoriaMetrics/issues/4580
85 lines
1.9 KiB
Go
85 lines
1.9 KiB
Go
package streamaggr
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import (
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"math"
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"sync"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/bytesutil"
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)
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// stddevAggrState calculates output=stddev, e.g. the average value over input samples.
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type stddevAggrState struct {
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m sync.Map
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}
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type stddevStateValue struct {
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mu sync.Mutex
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count float64
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avg float64
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q float64
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deleted bool
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}
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func newStddevAggrState() *stddevAggrState {
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return &stddevAggrState{}
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}
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func (as *stddevAggrState) pushSamples(samples []pushSample) {
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for i := range samples {
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s := &samples[i]
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outputKey := getOutputKey(s.key)
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again:
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v, ok := as.m.Load(outputKey)
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if !ok {
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// The entry is missing in the map. Try creating it.
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v = &stddevStateValue{}
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outputKey = bytesutil.InternString(outputKey)
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vNew, loaded := as.m.LoadOrStore(outputKey, v)
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if loaded {
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// Use the entry created by a concurrent goroutine.
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v = vNew
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}
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}
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sv := v.(*stddevStateValue)
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sv.mu.Lock()
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deleted := sv.deleted
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if !deleted {
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// See `Rapid calculation methods` at https://en.wikipedia.org/wiki/Standard_deviation
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sv.count++
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avg := sv.avg + (s.value-sv.avg)/sv.count
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sv.q += (s.value - sv.avg) * (s.value - avg)
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sv.avg = avg
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}
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sv.mu.Unlock()
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if deleted {
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// The entry has been deleted by the concurrent call to flushState
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// Try obtaining and updating the entry again.
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goto again
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}
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}
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}
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func (as *stddevAggrState) flushState(ctx *flushCtx, resetState bool) {
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m := &as.m
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m.Range(func(k, v any) bool {
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if resetState {
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// Atomically delete the entry from the map, so new entry is created for the next flush.
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m.Delete(k)
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}
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sv := v.(*stddevStateValue)
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sv.mu.Lock()
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stddev := math.Sqrt(sv.q / sv.count)
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if resetState {
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// Mark the entry as deleted, so it won't be updated anymore by concurrent pushSample() calls.
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sv.deleted = true
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}
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sv.mu.Unlock()
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key := k.(string)
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ctx.appendSeries(key, "stddev", stddev)
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return true
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})
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}
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