mirror of https://github.com/restic/restic.git
239 lines
7.1 KiB
Go
239 lines
7.1 KiB
Go
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package restorer
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import (
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"io"
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"sync"
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"github.com/restic/restic/internal/debug"
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"github.com/restic/restic/internal/errors"
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"github.com/restic/restic/internal/restic"
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)
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// packCache is thread safe in-memory cache of pack files required to restore
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// one or more files. The cache is meant to hold pack files that cannot be
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// fully used right away. This happens when pack files contains blobs from
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// "head" of some files and "middle" of other files. "Middle" blobs cannot be
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// written to their files until after blobs from some other packs are written
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// to the files first.
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//
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// While the cache is thread safe, implementation assumes (and enforces)
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// that individual entries are used by one client at a time. Clients must
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// #Close() entry's reader to make the entry available for use by other
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// clients. This limitation can be relaxed in the future if necessary.
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type packCache struct {
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// guards access to cache internal data structures
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lock sync.Mutex
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// cache capacity
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capacity int
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reservedCapacity int
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allocatedCapacity int
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// pack records currently being used by active restore worker
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reservedPacks map[restic.ID]*packCacheRecord
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// unused allocated packs, can be deleted if necessary
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cachedPacks map[restic.ID]*packCacheRecord
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}
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type packCacheRecord struct {
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master *packCacheRecord
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cache *packCache
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id restic.ID // cached pack id
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offset int64 // cached pack byte range
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data []byte
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}
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type readerAtCloser interface {
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io.Closer
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io.ReaderAt
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}
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type bytesWriteSeeker struct {
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pos int
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data []byte
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}
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func (wr *bytesWriteSeeker) Write(p []byte) (n int, err error) {
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if wr.pos+len(p) > len(wr.data) {
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return -1, errors.Errorf("not enough space")
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}
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n = copy(wr.data[wr.pos:], p)
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wr.pos += n
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return n, nil
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}
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func (wr *bytesWriteSeeker) Seek(offset int64, whence int) (int64, error) {
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if offset != 0 || whence != io.SeekStart {
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return -1, errors.Errorf("unsupported seek request")
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}
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wr.pos = 0
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return 0, nil
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}
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func newPackCache(capacity int) *packCache {
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return &packCache{
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capacity: capacity,
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reservedPacks: make(map[restic.ID]*packCacheRecord),
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cachedPacks: make(map[restic.ID]*packCacheRecord),
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}
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}
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func (c *packCache) reserve(packID restic.ID, offset int64, length int) (record *packCacheRecord, err error) {
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c.lock.Lock()
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defer c.lock.Unlock()
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if offset < 0 || length <= 0 {
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return nil, errors.Errorf("illegal pack cache allocation range %s {offset: %d, length: %d}", packID.Str(), offset, length)
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}
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if c.reservedCapacity+length > c.capacity {
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return nil, errors.Errorf("not enough cache capacity: requested %d, available %d", length, c.capacity-c.reservedCapacity)
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}
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if _, ok := c.reservedPacks[packID]; ok {
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return nil, errors.Errorf("pack is already reserved %s", packID.Str())
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}
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// the pack is available in the cache and currently unused
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if pack, ok := c.cachedPacks[packID]; ok {
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// check if cached pack includes requested byte range
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// the range can shrink, but it never grows bigger unless there is a bug elsewhere
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if pack.offset > offset || (pack.offset+int64(len(pack.data))) < (offset+int64(length)) {
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return nil, errors.Errorf("cached range %d-%d is smaller than requested range %d-%d for pack %s", pack.offset, pack.offset+int64(len(pack.data)), length, offset+int64(length), packID.Str())
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}
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// move the pack to the used map
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delete(c.cachedPacks, packID)
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c.reservedPacks[packID] = pack
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c.reservedCapacity += len(pack.data)
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debug.Log("Using cached pack %s (%d bytes)", pack.id.Str(), len(pack.data))
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if pack.offset != offset || len(pack.data) != length {
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// restrict returned record to requested range
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return &packCacheRecord{
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cache: c,
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master: pack,
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offset: offset,
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data: pack.data[int(offset-pack.offset) : int(offset-pack.offset)+length],
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}, nil
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}
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return pack, nil
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}
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for c.allocatedCapacity+length > c.capacity {
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// all cached packs will be needed at some point
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// so it does not matter which one to purge
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for _, cached := range c.cachedPacks {
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delete(c.cachedPacks, cached.id)
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c.allocatedCapacity -= len(cached.data)
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debug.Log("dropped cached pack %s (%d bytes)", cached.id.Str(), len(cached.data))
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break
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}
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}
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pack := &packCacheRecord{
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cache: c,
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id: packID,
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offset: offset,
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}
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c.reservedPacks[pack.id] = pack
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c.allocatedCapacity += length
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c.reservedCapacity += length
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return pack, nil
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}
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// get returns reader of the specified cached pack. Uses provided load func
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// to download pack content if necessary.
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// The returned reader is only able to read pack within byte range specified
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// by offset and length parameters, attempts to read outside that range will
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// result in an error.
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// The returned reader must be closed before the same packID can be requested
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// from the cache again.
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func (c *packCache) get(packID restic.ID, offset int64, length int, load func(offset int64, length int, wr io.WriteSeeker) error) (readerAtCloser, error) {
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pack, err := c.reserve(packID, offset, length)
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if err != nil {
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return nil, err
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}
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if pack.data == nil {
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wr := &bytesWriteSeeker{data: make([]byte, length)}
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err = load(offset, length, wr)
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if err != nil {
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return nil, err
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}
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if wr.pos != length {
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delete(c.reservedPacks, pack.id)
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c.reservedCapacity -= len(pack.data)
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return nil, errors.Errorf("invalid read size")
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}
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pack.data = wr.data
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debug.Log("Downloaded and cached pack %s (%d bytes)", pack.id.Str(), len(pack.data))
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}
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return pack, nil
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}
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// releases the pack record back to the cache
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func (c *packCache) release(pack *packCacheRecord) error {
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c.lock.Lock()
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defer c.lock.Unlock()
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if _, ok := c.reservedPacks[pack.id]; !ok {
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return errors.Errorf("invalid pack release request")
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}
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delete(c.reservedPacks, pack.id)
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c.cachedPacks[pack.id] = pack
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c.reservedCapacity -= len(pack.data)
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return nil
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}
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// remove removes specified pack from the cache and frees
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// corresponding cache space. should be called after the pack
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// was fully used up by the restorer.
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func (c *packCache) remove(packID restic.ID) error {
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c.lock.Lock()
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defer c.lock.Unlock()
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if _, ok := c.reservedPacks[packID]; ok {
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return errors.Errorf("invalid pack remove request, pack %s is reserved", packID.Str())
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}
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pack, ok := c.cachedPacks[packID]
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if !ok {
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return errors.Errorf("invalid pack remove request, pack %s is not cached", packID.Str())
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}
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delete(c.cachedPacks, pack.id)
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c.allocatedCapacity -= len(pack.data)
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return nil
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}
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// ReadAt reads len(b) bytes from the pack starting at byte offset off.
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// It returns the number of bytes read and the error, if any.
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func (r *packCacheRecord) ReadAt(b []byte, off int64) (n int, err error) {
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if off < r.offset || off+int64(len(b)) > r.offset+int64(len(r.data)) {
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return -1, errors.Errorf("read outside available range")
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}
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return copy(b, r.data[off-r.offset:]), nil
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}
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// Close closes the pack reader and releases corresponding cache record
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// to the cache. Once closed, the record can be reused by subsequent
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// requests for the same packID or it can be purged from the cache to make
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// room for other packs
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func (r *packCacheRecord) Close() (err error) {
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if r.master != nil {
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return r.cache.release(r.master)
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}
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return r.cache.release(r)
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}
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