mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
synced 2024-12-15 00:13:30 +01:00
274 lines
6.2 KiB
Go
274 lines
6.2 KiB
Go
package storage
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import (
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"fmt"
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"path/filepath"
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"sync"
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"sync/atomic"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/filestream"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/fs"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/memory"
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)
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func getMaxCachedIndexBlocksPerPart() int {
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maxCachedIndexBlocksPerPartOnce.Do(func() {
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n := memory.Allowed() / 1024 / 1024 / 8
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if n < 16 {
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n = 16
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}
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maxCachedIndexBlocksPerPart = n
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})
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return maxCachedIndexBlocksPerPart
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}
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var (
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maxCachedIndexBlocksPerPart int
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maxCachedIndexBlocksPerPartOnce sync.Once
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)
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// part represents a searchable part containing time series data.
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type part struct {
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ph partHeader
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// Filesystem path to the part.
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//
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// Empty for in-memory part.
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path string
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timestampsFile fs.ReadAtCloser
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valuesFile fs.ReadAtCloser
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indexFile fs.ReadAtCloser
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metaindex []metaindexRow
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ibCache indexBlockCache
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}
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// openFilePart opens file-based part from the given path.
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func openFilePart(path string) (*part, error) {
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path = filepath.Clean(path)
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var ph partHeader
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if err := ph.ParseFromPath(path); err != nil {
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return nil, fmt.Errorf("cannot parse path to part: %s", err)
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}
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timestampsPath := path + "/timestamps.bin"
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timestampsFile, err := fs.OpenReaderAt(timestampsPath)
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if err != nil {
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return nil, fmt.Errorf("cannot open timestamps file: %s", err)
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}
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valuesPath := path + "/values.bin"
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valuesFile, err := fs.OpenReaderAt(valuesPath)
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if err != nil {
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timestampsFile.MustClose()
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return nil, fmt.Errorf("cannot open values file: %s", err)
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}
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indexPath := path + "/index.bin"
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indexFile, err := fs.OpenReaderAt(indexPath)
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if err != nil {
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timestampsFile.MustClose()
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valuesFile.MustClose()
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return nil, fmt.Errorf("cannot open index file: %s", err)
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}
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metaindexPath := path + "/metaindex.bin"
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metaindexFile, err := filestream.Open(metaindexPath, true)
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if err != nil {
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timestampsFile.MustClose()
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valuesFile.MustClose()
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indexFile.MustClose()
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return nil, fmt.Errorf("cannot open metaindex file: %s", err)
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}
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return newPart(&ph, path, metaindexFile, timestampsFile, valuesFile, indexFile)
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}
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// newPart returns new part initialized with the given arguments.
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//
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// The returned part calls MustClose on all the files passed to newPart
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// when calling part.MustClose.
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func newPart(ph *partHeader, path string, metaindexReader filestream.ReadCloser, timestampsFile, valuesFile, indexFile fs.ReadAtCloser) (*part, error) {
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var errors []error
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metaindex, err := unmarshalMetaindexRows(nil, metaindexReader)
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if err != nil {
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errors = append(errors, fmt.Errorf("cannot unmarshal metaindex data: %s", err))
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}
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metaindexReader.MustClose()
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p := &part{
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ph: *ph,
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path: path,
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timestampsFile: timestampsFile,
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valuesFile: valuesFile,
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indexFile: indexFile,
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metaindex: metaindex,
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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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err = fmt.Errorf("cannot initialize part %q: %s", p, errors[0])
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p.MustClose()
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return nil, err
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}
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p.ibCache.Init()
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return p, nil
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}
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// String returns human-readable representation of p.
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func (p *part) String() string {
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if len(p.path) > 0 {
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return p.path
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}
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return p.ph.String()
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}
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// MustClose closes all the part files.
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func (p *part) MustClose() {
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p.timestampsFile.MustClose()
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p.valuesFile.MustClose()
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p.indexFile.MustClose()
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isBig := p.ph.RowsCount > maxRowsPerSmallPart
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p.ibCache.Reset(isBig)
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}
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type indexBlock struct {
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bhs []blockHeader
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}
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func getIndexBlock() *indexBlock {
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v := indexBlockPool.Get()
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if v == nil {
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return &indexBlock{}
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}
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return v.(*indexBlock)
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}
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func putIndexBlock(ib *indexBlock) {
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ib.bhs = ib.bhs[:0]
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indexBlockPool.Put(ib)
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}
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var indexBlockPool sync.Pool
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type indexBlockCache struct {
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m map[uint64]*indexBlock
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missesMap map[uint64]uint64
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mu sync.RWMutex
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requests uint64
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misses uint64
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}
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func (ibc *indexBlockCache) Init() {
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ibc.m = make(map[uint64]*indexBlock)
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ibc.missesMap = make(map[uint64]uint64)
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ibc.requests = 0
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ibc.misses = 0
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}
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func (ibc *indexBlockCache) Reset(isBig bool) {
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if isBig {
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atomic.AddUint64(&bigIndexBlockCacheRequests, ibc.requests)
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atomic.AddUint64(&bigIndexBlockCacheMisses, ibc.misses)
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} else {
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atomic.AddUint64(&smallIndexBlockCacheRequests, ibc.requests)
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atomic.AddUint64(&smallIndexBlockCacheMisses, ibc.misses)
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}
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// It is safe returning ibc.m itemst to the pool, since Reset must
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// be called only when no other goroutines access ibc entries.
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for _, ib := range ibc.m {
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putIndexBlock(ib)
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}
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ibc.Init()
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}
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var (
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bigIndexBlockCacheRequests uint64
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bigIndexBlockCacheMisses uint64
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smallIndexBlockCacheRequests uint64
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smallIndexBlockCacheMisses uint64
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)
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func (ibc *indexBlockCache) Get(k uint64) *indexBlock {
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atomic.AddUint64(&ibc.requests, 1)
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ibc.mu.RLock()
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ib := ibc.m[k]
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ibc.mu.RUnlock()
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if ib != nil {
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return ib
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}
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atomic.AddUint64(&ibc.misses, 1)
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ibc.mu.Lock()
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ibc.missesMap[k]++
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ibc.mu.Unlock()
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return nil
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}
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func (ibc *indexBlockCache) Put(k uint64, ib *indexBlock) bool {
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ibc.mu.Lock()
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if ibc.missesMap[k] < 2 {
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// Do not store infrequently accessed ib in the cache,
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// so it don't evict frequently accessed items.
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ibc.mu.Unlock()
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return false
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}
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// Clean superflouos cache entries.
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if overflow := len(ibc.m) - getMaxCachedIndexBlocksPerPart(); overflow > 0 {
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// Remove 10% of items from the cache.
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overflow = int(float64(len(ibc.m)) * 0.1)
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for k := range ibc.m {
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// Do not call putIndexBlock on ibc.m entries, since they may be used by concurrent goroutines.
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delete(ibc.m, k)
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overflow--
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if overflow == 0 {
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break
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}
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}
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}
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if overflow := len(ibc.missesMap) - 8*getMaxCachedIndexBlocksPerPart(); overflow > 0 {
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// Remove 10% of items from the cache.
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overflow = int(float64(len(ibc.missesMap)) * 0.1)
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for k := range ibc.missesMap {
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delete(ibc.missesMap, k)
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overflow--
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if overflow == 0 {
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break
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}
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}
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}
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// Store frequently requested ib in the cache.
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delete(ibc.missesMap, k)
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ibc.m[k] = ib
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ibc.mu.Unlock()
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return true
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}
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func (ibc *indexBlockCache) Requests() uint64 {
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return atomic.LoadUint64(&ibc.requests)
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}
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func (ibc *indexBlockCache) Misses() uint64 {
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return atomic.LoadUint64(&ibc.misses)
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}
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func (ibc *indexBlockCache) Len() uint64 {
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ibc.mu.Lock()
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n := uint64(len(ibc.m))
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ibc.mu.Unlock()
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return n
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}
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