mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
synced 2024-12-22 16:36:27 +01:00
a1baf25c2e
See ea9e2b19a5
159 lines
4.2 KiB
Go
159 lines
4.2 KiB
Go
package storage
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import (
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"sort"
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"sync"
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"sync/atomic"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/decimal"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
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)
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// rawRow represents raw timeseries row.
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type rawRow struct {
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// TSID is time series id.
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TSID TSID
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// Timestamp is unix timestamp in milliseconds.
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Timestamp int64
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// Value is time series value for the given timestamp.
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Value float64
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// PrecisionBits is the number of the significant bits in the Value
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// to store. Possible values are [1..64].
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// 1 means max. 50% error, 2 - 25%, 3 - 12.5%, 64 means no error, i.e.
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// Value stored without information loss.
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PrecisionBits uint8
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}
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type rawRowsMarshaler struct {
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bsw blockStreamWriter
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auxTimestamps []int64
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auxValues []int64
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auxFloatValues []float64
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}
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func (rrm *rawRowsMarshaler) reset() {
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rrm.bsw.reset()
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rrm.auxTimestamps = rrm.auxTimestamps[:0]
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rrm.auxValues = rrm.auxValues[:0]
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rrm.auxFloatValues = rrm.auxFloatValues[:0]
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}
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// Use sort.Interface instead of sort.Slice in order to optimize rows swap.
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type rawRowsSort []rawRow
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func (rrs *rawRowsSort) Len() int { return len(*rrs) }
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func (rrs *rawRowsSort) Less(i, j int) bool {
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x := *rrs
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if i < 0 || j < 0 || i >= len(x) || j >= len(x) {
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// This is no-op for compiler, so it doesn't generate panic code
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// for out of range access on x[i], x[j] below
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return false
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}
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a := &x[i]
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b := &x[j]
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ta := &a.TSID
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tb := &b.TSID
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// Manually inline TSID.Less here, since the compiler doesn't inline it yet :(
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if ta.AccountID != tb.AccountID {
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return ta.AccountID < tb.AccountID
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}
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if ta.ProjectID != tb.ProjectID {
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return ta.ProjectID < tb.ProjectID
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}
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if ta.MetricGroupID != tb.MetricGroupID {
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return ta.MetricGroupID < tb.MetricGroupID
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}
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if ta.JobID != tb.JobID {
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return ta.JobID < tb.JobID
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}
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if ta.InstanceID != tb.InstanceID {
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return ta.InstanceID < tb.InstanceID
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}
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if ta.MetricID != tb.MetricID {
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return ta.MetricID < tb.MetricID
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}
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return a.Timestamp < b.Timestamp
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}
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func (rrs *rawRowsSort) Swap(i, j int) {
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x := *rrs
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x[i], x[j] = x[j], x[i]
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}
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func (rrm *rawRowsMarshaler) marshalToInmemoryPart(mp *inmemoryPart, rows []rawRow) {
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if len(rows) == 0 {
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return
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}
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if uint64(len(rows)) >= 1<<32 {
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logger.Panicf("BUG: rows count must be smaller than 2^32; got %d", len(rows))
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}
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// Use the minimum compression level for first-level in-memory blocks,
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// since they are going to be re-compressed during subsequent merges.
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const compressLevel = -5 // See https://github.com/facebook/zstd/releases/tag/v1.3.4
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rrm.bsw.MustInitFromInmemoryPart(mp, compressLevel)
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ph := &mp.ph
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ph.Reset()
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// Sort rows by (TSID, Timestamp) if they aren't sorted yet.
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rrs := rawRowsSort(rows)
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if !sort.IsSorted(&rrs) {
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sort.Sort(&rrs)
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}
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// Group rows into blocks.
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var scale int16
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var rowsMerged atomic.Uint64
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r := &rows[0]
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tsid := &r.TSID
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precisionBits := r.PrecisionBits
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tmpBlock := getBlock()
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defer putBlock(tmpBlock)
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for i := range rows {
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r = &rows[i]
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if r.TSID.MetricID == tsid.MetricID && len(rrm.auxTimestamps) < maxRowsPerBlock {
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rrm.auxTimestamps = append(rrm.auxTimestamps, r.Timestamp)
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rrm.auxFloatValues = append(rrm.auxFloatValues, r.Value)
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continue
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}
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rrm.auxValues, scale = decimal.AppendFloatToDecimal(rrm.auxValues[:0], rrm.auxFloatValues)
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tmpBlock.Init(tsid, rrm.auxTimestamps, rrm.auxValues, scale, precisionBits)
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rrm.bsw.WriteExternalBlock(tmpBlock, ph, &rowsMerged)
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tsid = &r.TSID
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precisionBits = r.PrecisionBits
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rrm.auxTimestamps = append(rrm.auxTimestamps[:0], r.Timestamp)
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rrm.auxFloatValues = append(rrm.auxFloatValues[:0], r.Value)
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}
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rrm.auxValues, scale = decimal.AppendFloatToDecimal(rrm.auxValues[:0], rrm.auxFloatValues)
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tmpBlock.Init(tsid, rrm.auxTimestamps, rrm.auxValues, scale, precisionBits)
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rrm.bsw.WriteExternalBlock(tmpBlock, ph, &rowsMerged)
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if n := rowsMerged.Load(); n != uint64(len(rows)) {
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logger.Panicf("BUG: unexpected rowsMerged; got %d; want %d", n, len(rows))
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}
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rrm.bsw.MustClose()
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}
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func getRawRowsMarshaler() *rawRowsMarshaler {
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v := rrmPool.Get()
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if v == nil {
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return &rawRowsMarshaler{}
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}
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return v.(*rawRowsMarshaler)
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}
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func putRawRowsMarshaler(rrm *rawRowsMarshaler) {
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rrm.reset()
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rrmPool.Put(rrm)
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}
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var rrmPool sync.Pool
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