mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
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c9063ece66
This should reduce memory usage when big number of time series matches the given query.
213 lines
4.3 KiB
Go
213 lines
4.3 KiB
Go
package storage
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import (
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"container/heap"
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"fmt"
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"io"
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"time"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
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)
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// tableSearch performs searches in the table.
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type tableSearch struct {
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Block *Block
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tb *table
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// ptws hold paritions snapshot for the given table during Init call.
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// This snapshot is used for calling table.PutPartitions on tableSearch.MustClose.
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ptws []*partitionWrapper
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ptsPool []partitionSearch
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ptsHeap partitionSearchHeap
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err error
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nextBlockNoop bool
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needClosing bool
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}
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func (ts *tableSearch) reset() {
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ts.Block = nil
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ts.tb = nil
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for i := range ts.ptws {
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ts.ptws[i] = nil
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}
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ts.ptws = ts.ptws[:0]
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for i := range ts.ptsPool {
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ts.ptsPool[i].reset()
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}
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ts.ptsPool = ts.ptsPool[:0]
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for i := range ts.ptsHeap {
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ts.ptsHeap[i] = nil
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}
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ts.ptsHeap = ts.ptsHeap[:0]
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ts.err = nil
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ts.nextBlockNoop = false
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ts.needClosing = false
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}
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// Init initializes the ts.
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//
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// tsids must be sorted.
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// tsids cannot be modified after the Init call, since it is owned by ts.
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//
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// MustClose must be called then the tableSearch is done.
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func (ts *tableSearch) Init(tb *table, tsids []TSID, tr TimeRange, fetchData bool) {
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if ts.needClosing {
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logger.Panicf("BUG: missing MustClose call before the next call to Init")
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}
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// Adjust tr.MinTimestamp, so it doesn't obtain data older
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// than the tb retention.
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now := timestampFromTime(time.Now())
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minTimestamp := now - tb.retentionMilliseconds
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if tr.MinTimestamp < minTimestamp {
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tr.MinTimestamp = minTimestamp
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}
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ts.reset()
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ts.tb = tb
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ts.needClosing = true
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if len(tsids) == 0 {
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// Fast path - zero tsids.
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ts.err = io.EOF
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return
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}
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ts.ptws = tb.GetPartitions(ts.ptws[:0])
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// Initialize the ptsPool.
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if n := len(ts.ptws) - cap(ts.ptsPool); n > 0 {
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ts.ptsPool = append(ts.ptsPool[:cap(ts.ptsPool)], make([]partitionSearch, n)...)
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}
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ts.ptsPool = ts.ptsPool[:len(ts.ptws)]
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for i, ptw := range ts.ptws {
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ts.ptsPool[i].Init(ptw.pt, tsids, tr, fetchData)
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}
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// Initialize the ptsHeap.
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var errors []error
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ts.ptsHeap = ts.ptsHeap[:0]
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for i := range ts.ptsPool {
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pts := &ts.ptsPool[i]
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if !pts.NextBlock() {
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if err := pts.Error(); err != nil {
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errors = append(errors, err)
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}
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continue
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}
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ts.ptsHeap = append(ts.ptsHeap, pts)
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}
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if len(errors) > 0 {
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// Return only the first error, since it has no sense in returning all errors.
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ts.err = fmt.Errorf("cannot initialize table search: %s", errors[0])
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return
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}
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if len(ts.ptsHeap) == 0 {
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ts.err = io.EOF
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return
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}
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heap.Init(&ts.ptsHeap)
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ts.Block = ts.ptsHeap[0].Block
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ts.nextBlockNoop = true
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}
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// NextBlock advances to the next block.
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//
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// The blocks are sorted by (TDIS, MinTimestamp). Two subsequent blocks
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// for the same TSID may contain overlapped time ranges.
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func (ts *tableSearch) NextBlock() bool {
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if ts.err != nil {
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return false
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}
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if ts.nextBlockNoop {
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ts.nextBlockNoop = false
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return true
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}
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ts.err = ts.nextBlock()
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if ts.err != nil {
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if ts.err != io.EOF {
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ts.err = fmt.Errorf("cannot obtain the next block to search in the table: %s", ts.err)
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}
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return false
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}
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return true
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}
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func (ts *tableSearch) nextBlock() error {
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ptsMin := ts.ptsHeap[0]
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if ptsMin.NextBlock() {
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heap.Fix(&ts.ptsHeap, 0)
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ts.Block = ts.ptsHeap[0].Block
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return nil
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}
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if err := ptsMin.Error(); err != nil {
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return err
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}
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heap.Pop(&ts.ptsHeap)
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if len(ts.ptsHeap) == 0 {
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return io.EOF
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}
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ts.Block = ts.ptsHeap[0].Block
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return nil
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}
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// Error returns the last error in the ts.
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func (ts *tableSearch) Error() error {
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if ts.err == io.EOF {
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return nil
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}
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return ts.err
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}
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// MustClose closes the ts.
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func (ts *tableSearch) MustClose() {
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if !ts.needClosing {
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logger.Panicf("BUG: missing Init call before MustClose call")
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}
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for i := range ts.ptsPool {
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ts.ptsPool[i].MustClose()
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}
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ts.tb.PutPartitions(ts.ptws)
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ts.reset()
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}
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type partitionSearchHeap []*partitionSearch
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func (ptsh *partitionSearchHeap) Len() int {
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return len(*ptsh)
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}
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func (ptsh *partitionSearchHeap) Less(i, j int) bool {
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x := *ptsh
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return x[i].Block.bh.Less(&x[j].Block.bh)
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}
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func (ptsh *partitionSearchHeap) Swap(i, j int) {
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x := *ptsh
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x[i], x[j] = x[j], x[i]
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}
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func (ptsh *partitionSearchHeap) Push(x interface{}) {
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*ptsh = append(*ptsh, x.(*partitionSearch))
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}
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func (ptsh *partitionSearchHeap) Pop() interface{} {
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a := *ptsh
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v := a[len(a)-1]
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*ptsh = a[:len(a)-1]
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return v
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}
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