mirror of
https://github.com/octoleo/restic.git
synced 2024-11-26 06:46:34 +00:00
Remove chunker.Reset() and chunker pool
This commit is contained in:
parent
c57c4f0b8f
commit
282c4379db
@ -1,6 +1,7 @@
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package restic
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import (
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"crypto/sha256"
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"encoding/json"
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"fmt"
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"io"
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@ -183,10 +184,8 @@ func (arch *Archiver) SaveFile(p *Progress, node *Node) error {
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return err
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}
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chnker := GetChunker("archiver.SaveFile")
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chnker.Reset(file, arch.s.Config.ChunkerPolynomial)
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chnker := chunker.New(file, arch.s.Config.ChunkerPolynomial, sha256.New())
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resultChannels := [](<-chan saveResult){}
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defer FreeChunker("archiver.SaveFile", chnker)
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for {
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chunk, err := chnker.Next()
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@ -2,6 +2,7 @@ package restic_test
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import (
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"bytes"
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"crypto/sha256"
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"flag"
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"io"
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"testing"
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@ -25,9 +26,8 @@ type Rdr interface {
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}
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func benchmarkChunkEncrypt(b testing.TB, buf, buf2 []byte, rd Rdr, key *crypto.Key) {
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ch := restic.GetChunker("BenchmarkChunkEncrypt")
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rd.Seek(0, 0)
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ch.Reset(rd, testPol)
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ch := chunker.New(rd, testPol, sha256.New())
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for {
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chunk, err := ch.Next()
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@ -47,8 +47,6 @@ func benchmarkChunkEncrypt(b testing.TB, buf, buf2 []byte, rd Rdr, key *crypto.K
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_, err = crypto.Encrypt(key, buf2, buf)
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OK(b, err)
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}
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restic.FreeChunker("BenchmarkChunkEncrypt", ch)
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}
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func BenchmarkChunkEncrypt(b *testing.B) {
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@ -73,9 +71,7 @@ func BenchmarkChunkEncrypt(b *testing.B) {
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}
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func benchmarkChunkEncryptP(b *testing.PB, buf []byte, rd Rdr, key *crypto.Key) {
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ch := restic.GetChunker("BenchmarkChunkEncryptP")
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rd.Seek(0, 0)
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ch.Reset(rd, testPol)
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ch := chunker.New(rd, testPol, sha256.New())
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for {
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chunk, err := ch.Next()
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@ -88,8 +84,6 @@ func benchmarkChunkEncryptP(b *testing.PB, buf []byte, rd Rdr, key *crypto.Key)
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io.ReadFull(chunk.Reader(rd), buf)
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crypto.Encrypt(key, buf, buf)
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}
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restic.FreeChunker("BenchmarkChunkEncryptP", ch)
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}
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func BenchmarkChunkEncryptParallel(b *testing.B) {
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@ -17,6 +17,9 @@ const (
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// aim to create chunks of 20 bits or about 1MiB on average.
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averageBits = 20
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// default buffer size
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bufSize = 512 * KiB
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// MinSize is the minimal size of a chunk.
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MinSize = 512 * KiB
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// MaxSize is the maximal size of a chunk.
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@ -81,36 +84,33 @@ type Chunker struct {
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// New returns a new Chunker based on polynomial p that reads from data from rd
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// with bufsize and pass all data to hash along the way.
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func New(rd io.Reader, p Pol, bufsize int, hash hash.Hash) *Chunker {
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func New(rd io.Reader, pol Pol, h hash.Hash) *Chunker {
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c := &Chunker{
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buf: make([]byte, bufsize),
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h: hash,
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buf: make([]byte, bufSize),
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h: h,
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pol: pol,
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rd: rd,
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}
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c.Reset(rd, p)
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c.reset()
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return c
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}
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// Reset restarts a chunker so that it can be reused with a different
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// polynomial and reader.
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func (c *Chunker) Reset(rd io.Reader, p Pol) {
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c.pol = p
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c.polShift = uint(p.Deg() - 8)
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func (c *Chunker) reset() {
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c.polShift = uint(c.pol.Deg() - 8)
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c.fillTables()
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c.rd = rd
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for i := 0; i < windowSize; i++ {
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c.window[i] = 0
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}
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c.closed = false
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c.digest = 0
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c.wpos = 0
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c.pos = 0
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c.start = 0
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c.count = 0
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if p != 0 {
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c.slide(1)
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}
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c.slide(1)
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c.start = c.pos
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if c.h != nil {
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c.h.Reset()
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@ -276,16 +276,7 @@ func (c *Chunker) Next() (*Chunk, error) {
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Digest: c.hashDigest(),
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}
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if c.h != nil {
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c.h.Reset()
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}
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// reset chunker, but keep position
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pos := c.pos
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c.Reset(c.rd, c.pol)
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c.pos = pos
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c.start = pos
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c.pre = MinSize - windowSize
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c.reset()
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return chunk, nil
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}
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@ -19,7 +19,6 @@ import (
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)
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var benchmarkFile = flag.String("bench.file", "", "read from this file for benchmark")
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var testBufSize = flag.Int("test.bufsize", 256*1024, "use this buffer size for benchmark")
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func parseDigest(s string) []byte {
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d, err := hex.DecodeString(s)
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@ -151,7 +150,7 @@ func getRandom(seed, count int) []byte {
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func TestChunker(t *testing.T) {
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// setup data source
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buf := getRandom(23, 32*1024*1024)
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ch := chunker.New(bytes.NewReader(buf), testPol, *testBufSize, sha256.New())
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ch := chunker.New(bytes.NewReader(buf), testPol, sha256.New())
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chunks := testWithData(t, ch, chunks1)
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// test reader
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@ -178,7 +177,7 @@ func TestChunker(t *testing.T) {
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// setup nullbyte data source
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buf = bytes.Repeat([]byte{0}, len(chunks2)*chunker.MinSize)
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ch = chunker.New(bytes.NewReader(buf), testPol, *testBufSize, sha256.New())
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ch = chunker.New(bytes.NewReader(buf), testPol, sha256.New())
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testWithData(t, ch, chunks2)
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}
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@ -194,7 +193,7 @@ func TestChunkerWithRandomPolynomial(t *testing.T) {
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t.Logf("generating random polynomial took %v", time.Since(start))
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start = time.Now()
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ch := chunker.New(bytes.NewReader(buf), p, *testBufSize, sha256.New())
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ch := chunker.New(bytes.NewReader(buf), p, sha256.New())
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t.Logf("creating chunker took %v", time.Since(start))
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// make sure that first chunk is different
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@ -211,7 +210,7 @@ func TestChunkerWithRandomPolynomial(t *testing.T) {
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func TestChunkerWithoutHash(t *testing.T) {
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// setup data source
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buf := getRandom(23, 32*1024*1024)
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ch := chunker.New(bytes.NewReader(buf), testPol, *testBufSize, nil)
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ch := chunker.New(bytes.NewReader(buf), testPol, nil)
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chunks := testWithData(t, ch, chunks1)
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// test reader
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@ -241,30 +240,17 @@ func TestChunkerWithoutHash(t *testing.T) {
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// setup nullbyte data source
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buf = bytes.Repeat([]byte{0}, len(chunks2)*chunker.MinSize)
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ch = chunker.New(bytes.NewReader(buf), testPol, *testBufSize, sha256.New())
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ch = chunker.New(bytes.NewReader(buf), testPol, sha256.New())
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testWithData(t, ch, chunks2)
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}
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func TestChunkerReuse(t *testing.T) {
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// test multiple uses of the same chunker
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ch := chunker.New(nil, testPol, *testBufSize, sha256.New())
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buf := getRandom(23, 32*1024*1024)
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for i := 0; i < 4; i++ {
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ch.Reset(bytes.NewReader(buf), testPol)
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testWithData(t, ch, chunks1)
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}
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}
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func benchmarkChunker(b *testing.B, hash hash.Hash) {
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var (
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rd io.ReadSeeker
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size int
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)
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b.Logf("using bufsize %v", *testBufSize)
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if *benchmarkFile != "" {
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b.Logf("using file %q for benchmark", *benchmarkFile)
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f, err := os.Open(*benchmarkFile)
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@ -284,8 +270,6 @@ func benchmarkChunker(b *testing.B, hash hash.Hash) {
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rd = bytes.NewReader(getRandom(23, size))
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}
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ch := chunker.New(rd, testPol, *testBufSize, hash)
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b.ResetTimer()
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b.SetBytes(int64(size))
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@ -294,7 +278,7 @@ func benchmarkChunker(b *testing.B, hash hash.Hash) {
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chunks = 0
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rd.Seek(0, 0)
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ch.Reset(rd, testPol)
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ch := chunker.New(rd, testPol, hash)
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for {
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_, err := ch.Next()
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@ -333,6 +317,6 @@ func BenchmarkNewChunker(b *testing.B) {
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b.ResetTimer()
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for i := 0; i < b.N; i++ {
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chunker.New(bytes.NewBuffer(nil), p, *testBufSize, nil)
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chunker.New(bytes.NewBuffer(nil), p, nil)
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}
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}
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35
pools.go
35
pools.go
@ -1,7 +1,6 @@
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package restic
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import (
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"crypto/sha256"
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"sync"
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"github.com/restic/restic/chunker"
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@ -23,7 +22,6 @@ type poolStats struct {
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const (
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maxCiphertextSize = crypto.Extension + chunker.MaxSize
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chunkerBufSize = 512 * chunker.KiB
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)
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func (s *poolStats) Get(k string) {
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@ -72,12 +70,10 @@ func newPoolStats() *poolStats {
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}
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var (
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chunkPool = sync.Pool{New: newChunkBuf}
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chunkerPool = sync.Pool{New: newChunker}
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chunkPool = sync.Pool{New: newChunkBuf}
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chunkStats = newPoolStats()
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nodeStats = newPoolStats()
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chunkerStats = newPoolStats()
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chunkStats = newPoolStats()
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nodeStats = newPoolStats()
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)
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func newChunkBuf() interface{} {
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@ -89,15 +85,6 @@ func newChunkBuf() interface{} {
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return make([]byte, maxCiphertextSize)
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}
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func newChunker() interface{} {
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chunkStats.m.Lock()
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defer chunkStats.m.Unlock()
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chunkStats.new++
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// create a new chunker with a nil reader and null polynomial
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return chunker.New(nil, 0, chunkerBufSize, sha256.New())
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}
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func GetChunkBuf(s string) []byte {
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chunkStats.Get(s)
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return chunkPool.Get().([]byte)
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@ -108,16 +95,6 @@ func FreeChunkBuf(s string, buf []byte) {
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chunkPool.Put(buf)
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}
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func GetChunker(s string) *chunker.Chunker {
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chunkerStats.Get(s)
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return chunkerPool.Get().(*chunker.Chunker)
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}
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func FreeChunker(s string, ch *chunker.Chunker) {
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chunkerStats.Put(s)
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chunkerPool.Put(ch)
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}
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func PoolAlloc() {
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debug.Log("pools.PoolAlloc", "pool stats for chunk: new %d, get %d, put %d, diff %d, max %d\n",
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chunkStats.new, chunkStats.get, chunkStats.put, chunkStats.get-chunkStats.put, chunkStats.max)
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@ -131,10 +108,4 @@ func PoolAlloc() {
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for k, v := range nodeStats.mget {
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debug.Log("pools.PoolAlloc", "pool stats for node[%s]: get %d, put %d, diff %d, max %d\n", k, v, nodeStats.mput[k], v-nodeStats.mput[k], nodeStats.mmax[k])
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}
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debug.Log("pools.PoolAlloc", "pool stats for chunker: new %d, get %d, put %d, diff %d, max %d\n",
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chunkerStats.new, chunkerStats.get, chunkerStats.put, chunkerStats.get-chunkerStats.put, chunkerStats.max)
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for k, v := range chunkerStats.mget {
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debug.Log("pools.PoolAlloc", "pool stats for chunker[%s]: get %d, put %d, diff %d, max %d\n", k, v, chunkerStats.mput[k], v-chunkerStats.mput[k], chunkerStats.mmax[k])
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}
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}
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