mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
synced 2024-12-26 20:30:10 +01:00
b986516fbe
This should improve inverted index search performance for filters matching big number of time series, since `lib/uint64set.Set` is faster than `map[uint64]struct{}` for both `Add` and `Has` calls. See the corresponding benchmarks in `lib/uint64set`.
207 lines
5.9 KiB
Go
207 lines
5.9 KiB
Go
package storage
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import (
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"fmt"
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"sync"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/decimal"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/uint64set"
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)
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// mergeBlockStreams merges bsrs into bsw and updates ph.
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//
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// mergeBlockStreams returns immediately if stopCh is closed.
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//
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// rowsMerged is atomically updated with the number of merged rows during the merge.
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func mergeBlockStreams(ph *partHeader, bsw *blockStreamWriter, bsrs []*blockStreamReader, stopCh <-chan struct{}, rowsMerged *uint64,
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deletedMetricIDs *uint64set.Set, rowsDeleted *uint64) error {
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ph.Reset()
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bsm := bsmPool.Get().(*blockStreamMerger)
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bsm.Init(bsrs)
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err := mergeBlockStreamsInternal(ph, bsw, bsm, stopCh, rowsMerged, deletedMetricIDs, rowsDeleted)
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bsm.reset()
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bsmPool.Put(bsm)
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bsw.MustClose()
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if err == nil {
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return nil
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}
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if err == errForciblyStopped {
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return err
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}
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return fmt.Errorf("cannot merge %d streams: %s: %s", len(bsrs), bsrs, err)
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}
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var bsmPool = &sync.Pool{
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New: func() interface{} {
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return &blockStreamMerger{}
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},
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}
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var errForciblyStopped = fmt.Errorf("forcibly stopped")
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func mergeBlockStreamsInternal(ph *partHeader, bsw *blockStreamWriter, bsm *blockStreamMerger, stopCh <-chan struct{}, rowsMerged *uint64,
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deletedMetricIDs *uint64set.Set, rowsDeleted *uint64) error {
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// Search for the first block to merge
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var pendingBlock *Block
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for bsm.NextBlock() {
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select {
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case <-stopCh:
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return errForciblyStopped
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default:
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}
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if deletedMetricIDs.Has(bsm.Block.bh.TSID.MetricID) {
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// Skip blocks for deleted metrics.
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*rowsDeleted += uint64(bsm.Block.bh.RowsCount)
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continue
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}
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pendingBlock = getBlock()
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pendingBlock.CopyFrom(bsm.Block)
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break
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}
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if pendingBlock != nil {
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defer putBlock(pendingBlock)
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}
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// Merge blocks.
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tmpBlock := getBlock()
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defer putBlock(tmpBlock)
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for bsm.NextBlock() {
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select {
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case <-stopCh:
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return errForciblyStopped
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default:
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}
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if deletedMetricIDs.Has(bsm.Block.bh.TSID.MetricID) {
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// Skip blocks for deleted metrics.
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*rowsDeleted += uint64(bsm.Block.bh.RowsCount)
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continue
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}
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// Verify whether pendingBlock may be merged with bsm.Block (the current block).
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if pendingBlock.bh.TSID.MetricID != bsm.Block.bh.TSID.MetricID {
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// Fast path - blocks belong to distinct time series.
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// Write the pendingBlock and then deal with bsm.Block.
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if bsm.Block.bh.TSID.Less(&pendingBlock.bh.TSID) {
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logger.Panicf("BUG: the next TSID=%+v is smaller than the current TSID=%+v", &bsm.Block.bh.TSID, &pendingBlock.bh.TSID)
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}
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bsw.WriteExternalBlock(pendingBlock, ph, rowsMerged)
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pendingBlock.CopyFrom(bsm.Block)
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continue
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}
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if pendingBlock.tooBig() && pendingBlock.bh.MaxTimestamp <= bsm.Block.bh.MinTimestamp {
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// Fast path - pendingBlock is too big and it doesn't overlap with bsm.Block.
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// Write the pendingBlock and then deal with bsm.Block.
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bsw.WriteExternalBlock(pendingBlock, ph, rowsMerged)
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pendingBlock.CopyFrom(bsm.Block)
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continue
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}
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// Slow path - pendingBlock and bsm.Block belong to the same time series,
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// so they must be merged.
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if err := unmarshalAndCalibrateScale(pendingBlock, bsm.Block); err != nil {
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return fmt.Errorf("cannot unmarshal and calibrate scale for blocks to be merged: %s", err)
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}
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tmpBlock.Reset()
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tmpBlock.bh.TSID = bsm.Block.bh.TSID
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tmpBlock.bh.Scale = bsm.Block.bh.Scale
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tmpBlock.bh.PrecisionBits = minUint8(pendingBlock.bh.PrecisionBits, bsm.Block.bh.PrecisionBits)
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mergeBlocks(tmpBlock, pendingBlock, bsm.Block)
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if len(tmpBlock.timestamps) <= maxRowsPerBlock {
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// More entries may be added to tmpBlock. Swap it with pendingBlock,
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// so more entries may be added to pendingBlock on the next iteration.
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tmpBlock.fixupTimestamps()
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pendingBlock, tmpBlock = tmpBlock, pendingBlock
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continue
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}
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// Write the first len(maxRowsPerBlock) of tmpBlock.timestamps to bsw,
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// leave the rest in pendingBlock.
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tmpBlock.nextIdx = maxRowsPerBlock
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pendingBlock.CopyFrom(tmpBlock)
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pendingBlock.fixupTimestamps()
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tmpBlock.nextIdx = 0
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tmpBlock.timestamps = tmpBlock.timestamps[:maxRowsPerBlock]
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tmpBlock.values = tmpBlock.values[:maxRowsPerBlock]
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tmpBlock.fixupTimestamps()
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bsw.WriteExternalBlock(tmpBlock, ph, rowsMerged)
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}
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if err := bsm.Error(); err != nil {
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return fmt.Errorf("cannot read block to be merged: %s", err)
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}
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if pendingBlock != nil {
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bsw.WriteExternalBlock(pendingBlock, ph, rowsMerged)
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}
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return nil
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}
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// mergeBlocks merges ib1 and ib2 to ob.
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func mergeBlocks(ob, ib1, ib2 *Block) {
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ib1.assertMergeable(ib2)
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ib1.assertUnmarshaled()
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ib2.assertUnmarshaled()
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if ib1.bh.MaxTimestamp < ib2.bh.MinTimestamp {
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// Fast path - ib1 values have smaller timestamps than ib2 values.
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appendRows(ob, ib1)
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appendRows(ob, ib2)
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return
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}
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if ib2.bh.MaxTimestamp < ib1.bh.MinTimestamp {
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// Fast path - ib2 values have smaller timestamps than ib1 values.
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appendRows(ob, ib2)
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appendRows(ob, ib1)
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return
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}
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if ib1.nextIdx >= len(ib1.timestamps) {
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appendRows(ob, ib2)
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return
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}
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if ib2.nextIdx >= len(ib2.timestamps) {
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appendRows(ob, ib1)
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return
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}
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for {
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i := ib1.nextIdx
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ts2 := ib2.timestamps[ib2.nextIdx]
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for i < len(ib1.timestamps) && ib1.timestamps[i] <= ts2 {
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i++
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}
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ob.timestamps = append(ob.timestamps, ib1.timestamps[ib1.nextIdx:i]...)
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ob.values = append(ob.values, ib1.values[ib1.nextIdx:i]...)
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ib1.nextIdx = i
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if ib1.nextIdx >= len(ib1.timestamps) {
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appendRows(ob, ib2)
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return
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}
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ib1, ib2 = ib2, ib1
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}
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}
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func appendRows(ob, ib *Block) {
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ob.timestamps = append(ob.timestamps, ib.timestamps[ib.nextIdx:]...)
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ob.values = append(ob.values, ib.values[ib.nextIdx:]...)
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}
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func unmarshalAndCalibrateScale(b1, b2 *Block) error {
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if err := b1.UnmarshalData(); err != nil {
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return err
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}
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if err := b2.UnmarshalData(); err != nil {
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return err
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}
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scale := decimal.CalibrateScale(b1.values, b1.bh.Scale, b2.values, b2.bh.Scale)
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b1.bh.Scale = scale
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b2.bh.Scale = scale
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return nil
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}
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func minUint8(a, b uint8) uint8 {
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if a < b {
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return a
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}
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return b
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}
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