mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
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c0b852d50d
Callers of InitFromFilePart log the error and exit. It is better to log the error with the path to the part and the call stack directly inside the MustInitFromFilePart() function. This simplifies the code at callers' side while leaving the same level of debuggability.
119 lines
3.2 KiB
Go
119 lines
3.2 KiB
Go
package storage
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import (
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"fmt"
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"math/rand"
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"testing"
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)
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func BenchmarkMergeBlockStreamsTwoSourcesWorstCase(b *testing.B) {
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benchmarkMergeBlockStreams(b, benchTwoSourcesWorstCaseMPS, benchTwoSourcesWorstCaseMPSRowsPerLoop)
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}
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func BenchmarkMergeBlockStreamsTwoSourcesBestCase(b *testing.B) {
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benchmarkMergeBlockStreams(b, benchTwoSourcesBestCaseMPS, benchTwoSourcesBestCaseMPSRowsPerLoop)
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}
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func BenchmarkMergeBlockStreamsFourSourcesWorstCase(b *testing.B) {
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benchmarkMergeBlockStreams(b, benchFourSourcesWorstCaseMPS, benchFourSourcesWorstCaseMPSRowsPerLoop)
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}
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func BenchmarkMergeBlockStreamsFourSourcesBestCase(b *testing.B) {
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benchmarkMergeBlockStreams(b, benchFourSourcesBestCaseMPS, benchFourSourcesBestCaseMPSRowsPerLoop)
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}
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func benchmarkMergeBlockStreams(b *testing.B, mps []*inmemoryPart, rowsPerLoop int64) {
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var rowsMerged, rowsDeleted uint64
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strg := newTestStorage()
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b.ReportAllocs()
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b.SetBytes(rowsPerLoop)
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b.RunParallel(func(pb *testing.PB) {
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var bsw blockStreamWriter
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var mpOut inmemoryPart
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bsrs := make([]*blockStreamReader, len(mps))
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for i := range mps {
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var bsr blockStreamReader
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bsrs[i] = &bsr
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}
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for pb.Next() {
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for i, mp := range mps {
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bsrs[i].MustInitFromInmemoryPart(mp)
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}
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mpOut.Reset()
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bsw.MustInitFromInmemoryPart(&mpOut, -5)
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if err := mergeBlockStreams(&mpOut.ph, &bsw, bsrs, nil, strg, 0, &rowsMerged, &rowsDeleted); err != nil {
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panic(fmt.Errorf("cannot merge block streams: %w", err))
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}
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}
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})
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}
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var benchTwoSourcesWorstCaseMPS = func() []*inmemoryPart {
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rng := rand.New(rand.NewSource(1))
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var rows []rawRow
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var r rawRow
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r.PrecisionBits = defaultPrecisionBits
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for i := 0; i < maxRowsPerBlock/2-1; i++ {
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r.Value = rng.NormFloat64()
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r.Timestamp = rng.Int63n(1e12)
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rows = append(rows, r)
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}
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mp := newTestInmemoryPart(rows)
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return []*inmemoryPart{mp, mp}
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}()
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const benchTwoSourcesWorstCaseMPSRowsPerLoop = (maxRowsPerBlock - 2)
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var benchTwoSourcesBestCaseMPS = func() []*inmemoryPart {
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var r rawRow
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var mps []*inmemoryPart
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for i := 0; i < 2; i++ {
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var rows []rawRow
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r.PrecisionBits = defaultPrecisionBits
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r.TSID.MetricID = uint64(i)
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for j := 0; j < maxRowsPerBlock; j++ {
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rows = append(rows, r)
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}
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mp := newTestInmemoryPart(rows)
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mps = append(mps, mp)
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}
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return mps
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}()
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const benchTwoSourcesBestCaseMPSRowsPerLoop = 2 * maxRowsPerBlock
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var benchFourSourcesWorstCaseMPS = func() []*inmemoryPart {
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rng := rand.New(rand.NewSource(1))
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var rows []rawRow
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var r rawRow
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r.PrecisionBits = defaultPrecisionBits
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for i := 0; i < maxRowsPerBlock/2-1; i++ {
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r.Value = rng.NormFloat64()
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r.Timestamp = rng.Int63n(1e12)
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rows = append(rows, r)
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}
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mp := newTestInmemoryPart(rows)
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return []*inmemoryPart{mp, mp, mp, mp}
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}()
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const benchFourSourcesWorstCaseMPSRowsPerLoop = 2 * (maxRowsPerBlock - 2)
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var benchFourSourcesBestCaseMPS = func() []*inmemoryPart {
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var r rawRow
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var mps []*inmemoryPart
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for i := 0; i < 4; i++ {
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var rows []rawRow
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r.PrecisionBits = defaultPrecisionBits
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r.TSID.MetricID = uint64(i)
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for j := 0; j < maxRowsPerBlock; j++ {
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rows = append(rows, r)
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}
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mp := newTestInmemoryPart(rows)
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mps = append(mps, mp)
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}
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return mps
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}()
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const benchFourSourcesBestCaseMPSRowsPerLoop = 4 * maxRowsPerBlock
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