2023-06-20 07:55:12 +02:00
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package logstorage
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import (
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"sync"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/bytesutil"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/encoding"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
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)
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2024-05-14 01:49:20 +02:00
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// The number of blocks to search at once by a single worker
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//
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// This number must be increased on systems with many CPU cores in order to amortize
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// the overhead for passing the blockSearchWork to worker goroutines.
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const blockSearchWorksPerBatch = 64
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2023-06-20 07:55:12 +02:00
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type blockSearchWork struct {
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// p is the part where the block belongs to.
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p *part
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2024-05-12 16:33:29 +02:00
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// so contains search options for the block search.
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2023-06-20 07:55:12 +02:00
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so *searchOptions
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// bh is the header of the block to search.
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bh blockHeader
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}
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2024-05-14 01:49:20 +02:00
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func (bsw *blockSearchWork) reset() {
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bsw.p = nil
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bsw.so = nil
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bsw.bh.reset()
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}
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type blockSearchWorkBatch struct {
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bsws []blockSearchWork
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}
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func (bswb *blockSearchWorkBatch) reset() {
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bsws := bswb.bsws
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for i := range bsws {
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bsws[i].reset()
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}
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bswb.bsws = bsws[:0]
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}
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func getBlockSearchWorkBatch() *blockSearchWorkBatch {
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v := blockSearchWorkBatchPool.Get()
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if v == nil {
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return &blockSearchWorkBatch{
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bsws: make([]blockSearchWork, 0, blockSearchWorksPerBatch),
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}
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}
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return v.(*blockSearchWorkBatch)
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}
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func putBlockSearchWorkBatch(bswb *blockSearchWorkBatch) {
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bswb.reset()
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blockSearchWorkBatchPool.Put(bswb)
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}
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var blockSearchWorkBatchPool sync.Pool
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func (bswb *blockSearchWorkBatch) appendBlockSearchWork(p *part, so *searchOptions, bh *blockHeader) bool {
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bsws := bswb.bsws
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bsws = append(bsws, blockSearchWork{
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p: p,
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so: so,
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})
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bsw := &bsws[len(bsws)-1]
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2023-06-20 07:55:12 +02:00
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bsw.bh.copyFrom(bh)
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2024-05-14 01:49:20 +02:00
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bswb.bsws = bsws
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return len(bsws) < cap(bsws)
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2023-06-20 07:55:12 +02:00
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}
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func getBlockSearch() *blockSearch {
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v := blockSearchPool.Get()
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if v == nil {
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return &blockSearch{}
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}
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return v.(*blockSearch)
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}
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func putBlockSearch(bs *blockSearch) {
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bs.reset()
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blockSearchPool.Put(bs)
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}
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var blockSearchPool sync.Pool
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type blockSearch struct {
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// bsw is the actual work to perform on the given block pointed by bsw.ph
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bsw *blockSearchWork
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// br contains result for the search in the block after search() call
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br blockResult
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// timestampsCache contains cached timestamps for the given block.
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timestampsCache *encoding.Int64s
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// bloomFilterCache contains cached bloom filters for requested columns in the given block
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bloomFilterCache map[string]*bloomFilter
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// valuesCache contains cached values for requested columns in the given block
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valuesCache map[string]*stringBucket
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// sbu is used for unmarshaling local columns
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sbu stringsBlockUnmarshaler
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// csh is the columnsHeader associated with the given block
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csh columnsHeader
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2024-05-12 16:33:29 +02:00
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// a is used for storing unmarshaled data in csh
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a arena
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2023-06-20 07:55:12 +02:00
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}
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func (bs *blockSearch) reset() {
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bs.bsw = nil
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bs.br.reset()
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if bs.timestampsCache != nil {
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encoding.PutInt64s(bs.timestampsCache)
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bs.timestampsCache = nil
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}
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bloomFilterCache := bs.bloomFilterCache
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for k, bf := range bloomFilterCache {
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putBloomFilter(bf)
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delete(bloomFilterCache, k)
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}
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valuesCache := bs.valuesCache
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for k, values := range valuesCache {
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putStringBucket(values)
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delete(valuesCache, k)
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}
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bs.sbu.reset()
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bs.csh.reset()
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2024-05-12 16:33:29 +02:00
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bs.a.reset()
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2023-06-20 07:55:12 +02:00
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}
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func (bs *blockSearch) partPath() string {
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return bs.bsw.p.path
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}
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func (bs *blockSearch) search(bsw *blockSearchWork) {
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bs.reset()
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bs.bsw = bsw
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2024-05-12 16:33:29 +02:00
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bs.csh.initFromBlockHeader(&bs.a, bsw.p, &bsw.bh)
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2023-06-20 07:55:12 +02:00
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// search rows matching the given filter
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bm := getBitmap(int(bsw.bh.rowsCount))
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defer putBitmap(bm)
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2023-06-20 07:55:12 +02:00
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bm.setBits()
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bs.bsw.so.filter.apply(bs, bm)
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bs.br.mustInit(bs, bm)
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if bm.isZero() {
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2024-05-12 16:33:29 +02:00
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// The filter doesn't match any logs in the current block.
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2023-06-20 07:55:12 +02:00
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return
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}
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// fetch the requested columns to bs.br.
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2024-05-12 16:33:29 +02:00
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if bs.bsw.so.needAllColumns {
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bs.br.fetchAllColumns(bs, bm)
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} else {
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bs.br.fetchRequestedColumns(bs, bm)
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2023-06-20 07:55:12 +02:00
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}
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}
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2024-05-12 16:33:29 +02:00
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func (csh *columnsHeader) initFromBlockHeader(a *arena, p *part, bh *blockHeader) {
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2023-06-20 07:55:12 +02:00
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bb := longTermBufPool.Get()
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columnsHeaderSize := bh.columnsHeaderSize
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if columnsHeaderSize > maxColumnsHeaderSize {
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logger.Panicf("FATAL: %s: columns header size cannot exceed %d bytes; got %d bytes", p.path, maxColumnsHeaderSize, columnsHeaderSize)
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}
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bb.B = bytesutil.ResizeNoCopyMayOverallocate(bb.B, int(columnsHeaderSize))
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p.columnsHeaderFile.MustReadAt(bb.B, int64(bh.columnsHeaderOffset))
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2024-05-12 16:33:29 +02:00
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if err := csh.unmarshal(a, bb.B); err != nil {
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logger.Panicf("FATAL: %s: cannot unmarshal columns header: %s", p.path, err)
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}
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longTermBufPool.Put(bb)
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}
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// getBloomFilterForColumn returns bloom filter for the given ch.
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//
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// The returned bloom filter belongs to bs, so it becomes invalid after bs reset.
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func (bs *blockSearch) getBloomFilterForColumn(ch *columnHeader) *bloomFilter {
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bf := bs.bloomFilterCache[ch.name]
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if bf != nil {
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return bf
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}
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p := bs.bsw.p
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bloomFilterFile := p.fieldBloomFilterFile
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if ch.name == "" {
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bloomFilterFile = p.messageBloomFilterFile
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}
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bb := longTermBufPool.Get()
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bloomFilterSize := ch.bloomFilterSize
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if bloomFilterSize > maxBloomFilterBlockSize {
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logger.Panicf("FATAL: %s: bloom filter block size cannot exceed %d bytes; got %d bytes", bs.partPath(), maxBloomFilterBlockSize, bloomFilterSize)
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}
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bb.B = bytesutil.ResizeNoCopyMayOverallocate(bb.B, int(bloomFilterSize))
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bloomFilterFile.MustReadAt(bb.B, int64(ch.bloomFilterOffset))
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bf = getBloomFilter()
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if err := bf.unmarshal(bb.B); err != nil {
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logger.Panicf("FATAL: %s: cannot unmarshal bloom filter: %s", bs.partPath(), err)
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}
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longTermBufPool.Put(bb)
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if bs.bloomFilterCache == nil {
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bs.bloomFilterCache = make(map[string]*bloomFilter)
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}
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bs.bloomFilterCache[ch.name] = bf
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return bf
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}
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// getValuesForColumn returns block values for the given ch.
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//
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// The returned values belong to bs, so they become invalid after bs reset.
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func (bs *blockSearch) getValuesForColumn(ch *columnHeader) []string {
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values := bs.valuesCache[ch.name]
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if values != nil {
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return values.a
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}
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p := bs.bsw.p
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valuesFile := p.fieldValuesFile
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if ch.name == "" {
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valuesFile = p.messageValuesFile
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}
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bb := longTermBufPool.Get()
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valuesSize := ch.valuesSize
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if valuesSize > maxValuesBlockSize {
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logger.Panicf("FATAL: %s: values block size cannot exceed %d bytes; got %d bytes", bs.partPath(), maxValuesBlockSize, valuesSize)
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}
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bb.B = bytesutil.ResizeNoCopyMayOverallocate(bb.B, int(valuesSize))
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valuesFile.MustReadAt(bb.B, int64(ch.valuesOffset))
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values = getStringBucket()
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var err error
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values.a, err = bs.sbu.unmarshal(values.a[:0], bb.B, bs.bsw.bh.rowsCount)
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longTermBufPool.Put(bb)
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if err != nil {
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logger.Panicf("FATAL: %s: cannot unmarshal column %q: %s", bs.partPath(), ch.name, err)
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}
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if bs.valuesCache == nil {
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bs.valuesCache = make(map[string]*stringBucket)
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}
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bs.valuesCache[ch.name] = values
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return values.a
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}
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// getTimestamps returns timestamps for the given bs.
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//
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// The returned timestamps belong to bs, so they become invalid after bs reset.
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func (bs *blockSearch) getTimestamps() []int64 {
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timestamps := bs.timestampsCache
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if timestamps != nil {
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return timestamps.A
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}
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p := bs.bsw.p
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bb := longTermBufPool.Get()
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th := &bs.bsw.bh.timestampsHeader
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blockSize := th.blockSize
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if blockSize > maxTimestampsBlockSize {
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logger.Panicf("FATAL: %s: timestamps block size cannot exceed %d bytes; got %d bytes", bs.partPath(), maxTimestampsBlockSize, blockSize)
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}
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bb.B = bytesutil.ResizeNoCopyMayOverallocate(bb.B, int(blockSize))
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p.timestampsFile.MustReadAt(bb.B, int64(th.blockOffset))
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rowsCount := int(bs.bsw.bh.rowsCount)
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timestamps = encoding.GetInt64s(rowsCount)
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var err error
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timestamps.A, err = encoding.UnmarshalTimestamps(timestamps.A[:0], bb.B, th.marshalType, th.minTimestamp, rowsCount)
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longTermBufPool.Put(bb)
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if err != nil {
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logger.Panicf("FATAL: %s: cannot unmarshal timestamps: %s", bs.partPath(), err)
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}
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bs.timestampsCache = timestamps
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return timestamps.A
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}
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// mustReadBlockHeaders reads ih block headers from p, appends them to dst and returns the result.
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func (ih *indexBlockHeader) mustReadBlockHeaders(dst []blockHeader, p *part) []blockHeader {
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bbCompressed := longTermBufPool.Get()
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indexBlockSize := ih.indexBlockSize
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if indexBlockSize > maxIndexBlockSize {
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logger.Panicf("FATAL: %s: index block size cannot exceed %d bytes; got %d bytes", p.indexFile.Path(), maxIndexBlockSize, indexBlockSize)
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}
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bbCompressed.B = bytesutil.ResizeNoCopyMayOverallocate(bbCompressed.B, int(indexBlockSize))
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p.indexFile.MustReadAt(bbCompressed.B, int64(ih.indexBlockOffset))
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bb := longTermBufPool.Get()
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var err error
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bb.B, err = encoding.DecompressZSTD(bb.B, bbCompressed.B)
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longTermBufPool.Put(bbCompressed)
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if err != nil {
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logger.Panicf("FATAL: %s: cannot decompress indexBlock read at offset %d with size %d: %s", p.indexFile.Path(), ih.indexBlockOffset, ih.indexBlockSize, err)
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}
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dst, err = unmarshalBlockHeaders(dst, bb.B)
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longTermBufPool.Put(bb)
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if err != nil {
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logger.Panicf("FATAL: %s: cannot unmarshal block headers read at offset %d with size %d: %s", p.indexFile.Path(), ih.indexBlockOffset, ih.indexBlockSize, err)
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}
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return dst
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}
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