mirror of
https://github.com/octoleo/restic.git
synced 2024-11-11 07:41:03 +00:00
273 lines
6.9 KiB
Go
273 lines
6.9 KiB
Go
package restic_test
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import (
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"bytes"
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"flag"
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"io"
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"testing"
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"github.com/restic/restic"
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"github.com/restic/restic/backend"
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"github.com/restic/restic/chunker"
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"github.com/restic/restic/pack"
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"github.com/restic/restic/server"
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. "github.com/restic/restic/test"
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)
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var benchArchiveDirectory = flag.String("test.benchdir", ".", "benchmark archiving a real directory (default: .)")
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var testPol = chunker.Pol(0x3DA3358B4DC173)
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const bufSize = chunker.MiB
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type Rdr interface {
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io.ReadSeeker
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io.ReaderAt
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}
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func benchmarkChunkEncrypt(b testing.TB, buf, buf2 []byte, rd Rdr, key *server.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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for {
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chunk, err := ch.Next()
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if err == io.EOF {
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break
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}
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OK(b, err)
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// reduce length of buf
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buf = buf[:chunk.Length]
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n, err := io.ReadFull(chunk.Reader(rd), buf)
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OK(b, err)
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Assert(b, uint(n) == chunk.Length, "invalid length: got %d, expected %d", n, chunk.Length)
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_, err = key.Encrypt(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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data := Random(23, 10<<20) // 10MiB
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rd := bytes.NewReader(data)
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be := SetupBackend(b)
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defer TeardownBackend(b, be)
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key := SetupKey(b, be, "geheim")
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buf := restic.GetChunkBuf("BenchmarkChunkEncrypt")
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buf2 := restic.GetChunkBuf("BenchmarkChunkEncrypt")
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b.ResetTimer()
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b.SetBytes(int64(len(data)))
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for i := 0; i < b.N; i++ {
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benchmarkChunkEncrypt(b, buf, buf2, rd, key)
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}
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restic.FreeChunkBuf("BenchmarkChunkEncrypt", buf)
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restic.FreeChunkBuf("BenchmarkChunkEncrypt", buf2)
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}
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func benchmarkChunkEncryptP(b *testing.PB, buf []byte, rd Rdr, key *server.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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for {
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chunk, err := ch.Next()
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if err == io.EOF {
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break
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}
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// reduce length of chunkBuf
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buf = buf[:chunk.Length]
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io.ReadFull(chunk.Reader(rd), buf)
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key.Encrypt(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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be := SetupBackend(b)
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defer TeardownBackend(b, be)
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key := SetupKey(b, be, "geheim")
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data := Random(23, 10<<20) // 10MiB
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buf := restic.GetChunkBuf("BenchmarkChunkEncryptParallel")
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b.ResetTimer()
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b.SetBytes(int64(len(data)))
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b.RunParallel(func(pb *testing.PB) {
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for pb.Next() {
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rd := bytes.NewReader(data)
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benchmarkChunkEncryptP(pb, buf, rd, key)
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}
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})
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restic.FreeChunkBuf("BenchmarkChunkEncryptParallel", buf)
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}
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func archiveDirectory(b testing.TB) {
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server := SetupBackend(b)
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defer TeardownBackend(b, server)
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key := SetupKey(b, server, "geheim")
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server.SetKey(key)
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arch := restic.NewArchiver(server)
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_, id, err := arch.Snapshot(nil, []string{*benchArchiveDirectory}, nil)
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OK(b, err)
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b.Logf("snapshot archived as %v", id)
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}
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func TestArchiveDirectory(t *testing.T) {
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if *benchArchiveDirectory == "" {
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t.Skip("benchdir not set, skipping TestArchiveDirectory")
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}
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archiveDirectory(t)
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}
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func BenchmarkArchiveDirectory(b *testing.B) {
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if *benchArchiveDirectory == "" {
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b.Skip("benchdir not set, skipping BenchmarkArchiveDirectory")
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}
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for i := 0; i < b.N; i++ {
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archiveDirectory(b)
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}
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}
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func archiveWithDedup(t testing.TB) {
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if *benchArchiveDirectory == "" {
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t.Skip("benchdir not set, skipping TestArchiverDedup")
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}
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server := SetupBackend(t)
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defer TeardownBackend(t, server)
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key := SetupKey(t, server, "geheim")
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server.SetKey(key)
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var cnt struct {
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before, after, after2 struct {
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packs, dataBlobs, treeBlobs uint
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}
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}
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// archive a few files
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sn := SnapshotDir(t, server, *benchArchiveDirectory, nil)
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t.Logf("archived snapshot %v", sn.ID().Str())
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// get archive stats
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cnt.before.packs = server.Count(backend.Data)
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cnt.before.dataBlobs = server.Index().Count(pack.Data)
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cnt.before.treeBlobs = server.Index().Count(pack.Tree)
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t.Logf("packs %v, data blobs %v, tree blobs %v",
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cnt.before.packs, cnt.before.dataBlobs, cnt.before.treeBlobs)
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// archive the same files again, without parent snapshot
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sn2 := SnapshotDir(t, server, *benchArchiveDirectory, nil)
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t.Logf("archived snapshot %v", sn2.ID().Str())
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// get archive stats again
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cnt.after.packs = server.Count(backend.Data)
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cnt.after.dataBlobs = server.Index().Count(pack.Data)
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cnt.after.treeBlobs = server.Index().Count(pack.Tree)
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t.Logf("packs %v, data blobs %v, tree blobs %v",
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cnt.after.packs, cnt.after.dataBlobs, cnt.after.treeBlobs)
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// if there are more packs or blobs, something is wrong
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if cnt.after.packs > cnt.before.packs {
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t.Fatalf("TestArchiverDedup: too many packs in repository: before %d, after %d",
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cnt.before.packs, cnt.after.packs)
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}
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if cnt.after.dataBlobs > cnt.before.dataBlobs {
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t.Fatalf("TestArchiverDedup: too many data blobs in repository: before %d, after %d",
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cnt.before.dataBlobs, cnt.after.dataBlobs)
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}
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if cnt.after.treeBlobs > cnt.before.treeBlobs {
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t.Fatalf("TestArchiverDedup: too many tree blobs in repository: before %d, after %d",
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cnt.before.treeBlobs, cnt.after.treeBlobs)
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}
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// archive the same files again, with a parent snapshot
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sn3 := SnapshotDir(t, server, *benchArchiveDirectory, sn2.ID())
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t.Logf("archived snapshot %v, parent %v", sn3.ID().Str(), sn2.ID().Str())
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// get archive stats again
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cnt.after2.packs = server.Count(backend.Data)
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cnt.after2.dataBlobs = server.Index().Count(pack.Data)
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cnt.after2.treeBlobs = server.Index().Count(pack.Tree)
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t.Logf("packs %v, data blobs %v, tree blobs %v",
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cnt.after2.packs, cnt.after2.dataBlobs, cnt.after2.treeBlobs)
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// if there are more packs or blobs, something is wrong
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if cnt.after2.packs > cnt.before.packs {
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t.Fatalf("TestArchiverDedup: too many packs in repository: before %d, after %d",
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cnt.before.packs, cnt.after2.packs)
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}
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if cnt.after2.dataBlobs > cnt.before.dataBlobs {
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t.Fatalf("TestArchiverDedup: too many data blobs in repository: before %d, after %d",
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cnt.before.dataBlobs, cnt.after2.dataBlobs)
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}
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if cnt.after2.treeBlobs > cnt.before.treeBlobs {
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t.Fatalf("TestArchiverDedup: too many tree blobs in repository: before %d, after %d",
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cnt.before.treeBlobs, cnt.after2.treeBlobs)
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}
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}
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func TestArchiveDedup(t *testing.T) {
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archiveWithDedup(t)
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}
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func BenchmarkLoadTree(t *testing.B) {
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if *benchArchiveDirectory == "" {
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t.Skip("benchdir not set, skipping TestArchiverDedup")
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}
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s := SetupBackend(t)
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defer TeardownBackend(t, s)
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key := SetupKey(t, s, "geheim")
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s.SetKey(key)
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// archive a few files
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arch := restic.NewArchiver(s)
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sn, _, err := arch.Snapshot(nil, []string{*benchArchiveDirectory}, nil)
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OK(t, err)
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t.Logf("archived snapshot %v", sn.ID())
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list := make([]backend.ID, 0, 10)
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done := make(chan struct{})
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for blob := range s.Index().Each(done) {
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if blob.Type != pack.Tree {
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continue
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}
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list = append(list, blob.ID)
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if len(list) == cap(list) {
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close(done)
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break
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}
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}
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// start benchmark
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t.ResetTimer()
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for i := 0; i < t.N; i++ {
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for _, id := range list {
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_, err := restic.LoadTree(s, id)
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OK(t, err)
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}
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}
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}
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