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restic/internal/pack/pack_test.go

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package pack_test
import (
"bytes"
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"context"
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"crypto/rand"
"crypto/sha256"
"encoding/binary"
"encoding/json"
"io"
"testing"
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"github.com/restic/restic/internal/backend/mem"
"github.com/restic/restic/internal/crypto"
"github.com/restic/restic/internal/pack"
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"github.com/restic/restic/internal/restic"
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rtest "github.com/restic/restic/internal/test"
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)
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var testLens = []int{23, 31650, 25860, 10928, 13769, 19862, 5211, 127, 13690, 30231}
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type Buf struct {
data []byte
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id restic.ID
}
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func newPack(t testing.TB, k *crypto.Key, lengths []int) ([]Buf, []byte, uint) {
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bufs := []Buf{}
for _, l := range lengths {
b := make([]byte, l)
_, err := io.ReadFull(rand.Reader, b)
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rtest.OK(t, err)
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h := sha256.Sum256(b)
bufs = append(bufs, Buf{data: b, id: h})
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}
// pack blobs
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p := pack.NewPacker(k, nil)
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for _, b := range bufs {
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p.Add(restic.TreeBlob, b.id, b.data)
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}
_, err := p.Finalize()
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rtest.OK(t, err)
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packData := p.Writer().(*bytes.Buffer).Bytes()
return bufs, packData, p.Size()
}
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func verifyBlobs(t testing.TB, bufs []Buf, k *crypto.Key, rd io.ReaderAt, packSize uint) {
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written := 0
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for _, buf := range bufs {
written += len(buf.data)
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}
// header length
written += binary.Size(uint32(0))
// header + header crypto
headerSize := len(bufs) * (binary.Size(restic.BlobType(0)) + binary.Size(uint32(0)) + len(restic.ID{}))
written += restic.CiphertextLength(headerSize)
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// check length
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rtest.Equals(t, uint(written), packSize)
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// read and parse it again
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entries, err := pack.List(k, rd, int64(packSize))
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rtest.OK(t, err)
rtest.Equals(t, len(entries), len(bufs))
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var buf []byte
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for i, b := range bufs {
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e := entries[i]
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rtest.Equals(t, b.id, e.ID)
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if len(buf) < int(e.Length) {
buf = make([]byte, int(e.Length))
}
buf = buf[:int(e.Length)]
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n, err := rd.ReadAt(buf, int64(e.Offset))
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rtest.OK(t, err)
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buf = buf[:n]
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rtest.Assert(t, bytes.Equal(b.data, buf),
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"data for blob %v doesn't match", i)
}
}
func TestCreatePack(t *testing.T) {
// create random keys
k := crypto.NewRandomKey()
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bufs, packData, packSize := newPack(t, k, testLens)
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rtest.Equals(t, uint(len(packData)), packSize)
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verifyBlobs(t, bufs, k, bytes.NewReader(packData), packSize)
}
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var blobTypeJSON = []struct {
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t restic.BlobType
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res string
}{
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{restic.DataBlob, `"data"`},
{restic.TreeBlob, `"tree"`},
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}
func TestBlobTypeJSON(t *testing.T) {
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for _, test := range blobTypeJSON {
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// test serialize
buf, err := json.Marshal(test.t)
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rtest.OK(t, err)
rtest.Equals(t, test.res, string(buf))
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// test unserialize
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var v restic.BlobType
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err = json.Unmarshal([]byte(test.res), &v)
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rtest.OK(t, err)
rtest.Equals(t, test.t, v)
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}
}
func TestUnpackReadSeeker(t *testing.T) {
// create random keys
k := crypto.NewRandomKey()
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bufs, packData, packSize := newPack(t, k, testLens)
b := mem.New()
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id := restic.Hash(packData)
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handle := restic.Handle{Type: restic.DataFile, Name: id.String()}
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rtest.OK(t, b.Save(context.TODO(), handle, bytes.NewReader(packData)))
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verifyBlobs(t, bufs, k, restic.ReaderAt(b, handle), packSize)
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}
func TestShortPack(t *testing.T) {
k := crypto.NewRandomKey()
bufs, packData, packSize := newPack(t, k, []int{23})
b := mem.New()
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id := restic.Hash(packData)
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handle := restic.Handle{Type: restic.DataFile, Name: id.String()}
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rtest.OK(t, b.Save(context.TODO(), handle, bytes.NewReader(packData)))
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verifyBlobs(t, bufs, k, restic.ReaderAt(b, handle), packSize)
}