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29bbab0ec9
The prioritizing could lead to big merge starvation, which could end up in too big number of parts that must be merged into big parts. Multiple big merges may be initiated after the migration from v1.39.0 or v1.39.1. It is OK - these merges should be finished soon, which should return CPU and disk IO usage to normal levels. Updates https://github.com/VictoriaMetrics/VictoriaMetrics/issues/648 Updates https://github.com/VictoriaMetrics/VictoriaMetrics/issues/618
143 lines
2.7 KiB
Go
143 lines
2.7 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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)
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// blockStreamMerger is used for merging block streams.
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type blockStreamMerger struct {
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// The current block to work with.
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Block *Block
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bsrHeap blockStreamReaderHeap
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// Whether the call to NextBlock must be no-op.
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nextBlockNoop bool
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// The last error
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err error
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}
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func (bsm *blockStreamMerger) reset() {
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bsm.Block = nil
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for i := range bsm.bsrHeap {
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bsm.bsrHeap[i] = nil
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}
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bsm.bsrHeap = bsm.bsrHeap[:0]
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bsm.nextBlockNoop = false
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bsm.err = nil
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}
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// Init initializes bsm with the given bsrs.
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func (bsm *blockStreamMerger) Init(bsrs []*blockStreamReader) {
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bsm.reset()
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for _, bsr := range bsrs {
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if bsr.NextBlock() {
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bsm.bsrHeap = append(bsm.bsrHeap, bsr)
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continue
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}
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if err := bsr.Error(); err != nil {
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bsm.err = fmt.Errorf("cannot obtain the next block to merge: %w", err)
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return
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}
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}
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if len(bsm.bsrHeap) == 0 {
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bsm.err = io.EOF
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return
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}
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heap.Init(&bsm.bsrHeap)
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bsm.Block = &bsm.bsrHeap[0].Block
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bsm.nextBlockNoop = true
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}
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// NextBlock stores the next block in bsm.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 (bsm *blockStreamMerger) NextBlock() bool {
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if bsm.err != nil {
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return false
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}
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if bsm.nextBlockNoop {
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bsm.nextBlockNoop = false
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return true
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}
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bsm.err = bsm.nextBlock()
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switch bsm.err {
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case nil:
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return true
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case io.EOF:
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return false
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default:
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bsm.err = fmt.Errorf("cannot obtain the next block to merge: %w", bsm.err)
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return false
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}
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}
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func (bsm *blockStreamMerger) nextBlock() error {
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bsrMin := bsm.bsrHeap[0]
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if bsrMin.NextBlock() {
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heap.Fix(&bsm.bsrHeap, 0)
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bsm.Block = &bsm.bsrHeap[0].Block
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return nil
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}
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if err := bsrMin.Error(); err != nil {
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return err
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}
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heap.Pop(&bsm.bsrHeap)
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if len(bsm.bsrHeap) == 0 {
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return io.EOF
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}
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bsm.Block = &bsm.bsrHeap[0].Block
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return nil
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}
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func (bsm *blockStreamMerger) Error() error {
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if bsm.err == io.EOF {
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return nil
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}
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return bsm.err
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}
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type blockStreamReaderHeap []*blockStreamReader
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func (bsrh *blockStreamReaderHeap) Len() int {
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return len(*bsrh)
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}
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func (bsrh *blockStreamReaderHeap) Less(i, j int) bool {
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x := *bsrh
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a, b := &x[i].Block.bh, &x[j].Block.bh
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if a.TSID.MetricID == b.TSID.MetricID {
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// Fast path for identical TSID values.
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return a.MinTimestamp < b.MinTimestamp
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}
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// Slow path for distinct TSID values.
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return a.TSID.Less(&b.TSID)
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}
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func (bsrh *blockStreamReaderHeap) Swap(i, j int) {
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x := *bsrh
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x[i], x[j] = x[j], x[i]
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}
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func (bsrh *blockStreamReaderHeap) Push(x interface{}) {
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*bsrh = append(*bsrh, x.(*blockStreamReader))
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}
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func (bsrh *blockStreamReaderHeap) Pop() interface{} {
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a := *bsrh
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v := a[len(a)-1]
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*bsrh = a[:len(a)-1]
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return v
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}
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