2014-11-19 22:23:01 +01:00
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package digest
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import (
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"bytes"
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"crypto/rand"
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"io"
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"os"
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"testing"
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2014-12-24 01:01:38 +01:00
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"github.com/docker/distribution/common/testutil"
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2014-11-19 22:23:01 +01:00
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)
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func TestDigestVerifier(t *testing.T) {
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p := make([]byte, 1<<20)
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rand.Read(p)
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2014-11-19 23:59:05 +01:00
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digest, err := FromBytes(p)
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2014-11-19 22:23:01 +01:00
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if err != nil {
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t.Fatalf("unexpected error digesting bytes: %#v", err)
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}
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2014-11-19 23:59:05 +01:00
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verifier := NewDigestVerifier(digest)
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2014-11-19 22:23:01 +01:00
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io.Copy(verifier, bytes.NewReader(p))
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if !verifier.Verified() {
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t.Fatalf("bytes not verified")
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}
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tf, tarSum, err := testutil.CreateRandomTarFile()
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if err != nil {
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t.Fatalf("error creating tarfile: %v", err)
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}
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2014-11-19 23:59:05 +01:00
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digest, err = FromReader(tf)
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2014-11-19 22:23:01 +01:00
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if err != nil {
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t.Fatalf("error digesting tarsum: %v", err)
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}
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if digest.String() != tarSum {
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t.Fatalf("unexpected digest: %q != %q", digest.String(), tarSum)
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}
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expectedSize, _ := tf.Seek(0, os.SEEK_END) // Get tar file size
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tf.Seek(0, os.SEEK_SET) // seek back
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// This is the most relevant example for the registry application. It's
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// effectively a read through pipeline, where the final sink is the digest
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// verifier.
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2014-11-19 23:59:05 +01:00
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verifier = NewDigestVerifier(digest)
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lengthVerifier := NewLengthVerifier(expectedSize)
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2014-11-19 22:23:01 +01:00
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rd := io.TeeReader(tf, lengthVerifier)
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io.Copy(verifier, rd)
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if !lengthVerifier.Verified() {
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t.Fatalf("verifier detected incorrect length")
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}
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if !verifier.Verified() {
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t.Fatalf("bytes not verified")
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}
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}
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// TODO(stevvooe): Add benchmarks to measure bytes/second throughput for
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// DigestVerifier. We should be tarsum/gzip limited for common cases but we
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// want to verify this.
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//
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// The relevant benchmarks for comparison can be run with the following
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// commands:
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//
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// go test -bench . crypto/sha1
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// go test -bench . github.com/docker/docker/pkg/tarsum
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//
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