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233 lines
6.8 KiB
233 lines
6.8 KiB
// The archive utilities manage the internal format of a snapshot, which is a |
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// tar file with the following contents: |
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// |
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// meta.json - JSON-encoded snapshot metadata from Raft |
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// state.bin - Encoded snapshot data from Raft |
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// SHA256SUMS - SHA-256 sums of the above two files |
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// |
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// The integrity information is automatically created and checked, and a failure |
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// there just looks like an error to the caller. |
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package snapshot |
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import ( |
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"archive/tar" |
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"bufio" |
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"bytes" |
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"crypto/sha256" |
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"encoding/json" |
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"fmt" |
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"hash" |
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"io" |
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"time" |
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"github.com/hashicorp/raft" |
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) |
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// hashList manages a list of filenames and their hashes. |
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type hashList struct { |
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hashes map[string]hash.Hash |
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} |
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// newHashList returns a new hashList. |
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func newHashList() *hashList { |
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return &hashList{ |
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hashes: make(map[string]hash.Hash), |
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} |
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} |
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// Add creates a new hash for the given file. |
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func (hl *hashList) Add(file string) hash.Hash { |
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if existing, ok := hl.hashes[file]; ok { |
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return existing |
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} |
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h := sha256.New() |
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hl.hashes[file] = h |
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return h |
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} |
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// Encode takes the current sum of all the hashes and saves the hash list as a |
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// SHA256SUMS-style text file. |
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func (hl *hashList) Encode(w io.Writer) error { |
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for file, h := range hl.hashes { |
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if _, err := fmt.Fprintf(w, "%x %s\n", h.Sum([]byte{}), file); err != nil { |
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return err |
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} |
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} |
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return nil |
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} |
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// DecodeAndVerify reads a SHA256SUMS-style text file and checks the results |
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// against the current sums for all the hashes. |
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func (hl *hashList) DecodeAndVerify(r io.Reader) error { |
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// Read the file and make sure everything in there has a matching hash. |
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seen := make(map[string]struct{}) |
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s := bufio.NewScanner(r) |
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for s.Scan() { |
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sha := make([]byte, sha256.Size) |
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var file string |
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if _, err := fmt.Sscanf(s.Text(), "%x %s", &sha, &file); err != nil { |
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return err |
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} |
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h, ok := hl.hashes[file] |
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if !ok { |
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return fmt.Errorf("list missing hash for %q", file) |
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} |
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if !bytes.Equal(sha, h.Sum([]byte{})) { |
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return fmt.Errorf("hash check failed for %q", file) |
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} |
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seen[file] = struct{}{} |
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} |
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if err := s.Err(); err != nil { |
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return err |
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} |
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// Make sure everything we had a hash for was seen. |
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for file := range hl.hashes { |
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if _, ok := seen[file]; !ok { |
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return fmt.Errorf("file missing for %q", file) |
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} |
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} |
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return nil |
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} |
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// write takes a writer and creates an archive with the snapshot metadata, |
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// the snapshot itself, and adds some integrity checking information. |
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func write(out io.Writer, metadata *raft.SnapshotMeta, snap io.Reader) error { |
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// Start a new tarball. |
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now := time.Now() |
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archive := tar.NewWriter(out) |
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// Create a hash list that we will use to write a SHA256SUMS file into |
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// the archive. |
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hl := newHashList() |
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// Encode the snapshot metadata, which we need to feed back during a |
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// restore. |
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metaHash := hl.Add("meta.json") |
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var metaBuffer bytes.Buffer |
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enc := json.NewEncoder(&metaBuffer) |
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if err := enc.Encode(metadata); err != nil { |
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return fmt.Errorf("failed to encode snapshot metadata: %v", err) |
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} |
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if err := archive.WriteHeader(&tar.Header{ |
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Name: "meta.json", |
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Mode: 0600, |
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Size: int64(metaBuffer.Len()), |
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ModTime: now, |
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}); err != nil { |
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return fmt.Errorf("failed to write snapshot metadata header: %v", err) |
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} |
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if _, err := io.Copy(archive, io.TeeReader(&metaBuffer, metaHash)); err != nil { |
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return fmt.Errorf("failed to write snapshot metadata: %v", err) |
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} |
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// Copy the snapshot data given the size from the metadata. |
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snapHash := hl.Add("state.bin") |
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if err := archive.WriteHeader(&tar.Header{ |
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Name: "state.bin", |
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Mode: 0600, |
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Size: metadata.Size, |
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ModTime: now, |
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}); err != nil { |
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return fmt.Errorf("failed to write snapshot data header: %v", err) |
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} |
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if _, err := io.CopyN(archive, io.TeeReader(snap, snapHash), metadata.Size); err != nil { |
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return fmt.Errorf("failed to write snapshot metadata: %v", err) |
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} |
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// Create a SHA256SUMS file that we can use to verify on restore. |
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var shaBuffer bytes.Buffer |
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if err := hl.Encode(&shaBuffer); err != nil { |
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return fmt.Errorf("failed to encode snapshot hashes: %v", err) |
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} |
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if err := archive.WriteHeader(&tar.Header{ |
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Name: "SHA256SUMS", |
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Mode: 0600, |
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Size: int64(shaBuffer.Len()), |
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ModTime: now, |
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}); err != nil { |
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return fmt.Errorf("failed to write snapshot hashes header: %v", err) |
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} |
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if _, err := io.Copy(archive, &shaBuffer); err != nil { |
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return fmt.Errorf("failed to write snapshot metadata: %v", err) |
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} |
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// Finalize the archive. |
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if err := archive.Close(); err != nil { |
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return fmt.Errorf("failed to finalize snapshot: %v", err) |
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} |
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return nil |
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} |
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// read takes a reader and extracts the snapshot metadata and the snapshot |
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// itself, and also checks the integrity of the data. You must arrange to call |
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// Close() on the returned object or else you will leak a temporary file. |
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func read(in io.Reader, metadata *raft.SnapshotMeta, snap io.Writer) error { |
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// Start a new tar reader. |
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archive := tar.NewReader(in) |
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// Create a hash list that we will use to compare with the SHA256SUMS |
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// file in the archive. |
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hl := newHashList() |
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// Populate the hashes for all the files we expect to see. The check at |
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// the end will make sure these are all present in the SHA256SUMS file |
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// and that the hashes match. |
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metaHash := hl.Add("meta.json") |
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snapHash := hl.Add("state.bin") |
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// Look through the archive for the pieces we care about. |
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var shaBuffer bytes.Buffer |
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for { |
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hdr, err := archive.Next() |
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if err == io.EOF { |
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break |
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} |
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if err != nil { |
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return fmt.Errorf("failed reading snapshot: %v", err) |
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} |
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switch hdr.Name { |
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case "meta.json": |
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// Previously we used json.Decode to decode the archive stream. There are |
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// edgecases in which it doesn't read all the bytes from the stream, even |
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// though the json object is still being parsed properly. Since we |
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// simultaneously feeded everything to metaHash, our hash ended up being |
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// different than what we calculated when creating the snapshot. Which in |
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// turn made the snapshot verification fail. By explicitly reading the |
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// whole thing first we ensure that we calculate the correct hash |
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// independent of how json.Decode works internally. |
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buf, err := io.ReadAll(io.TeeReader(archive, metaHash)) |
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if err != nil { |
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return fmt.Errorf("failed to read snapshot metadata: %v", err) |
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} |
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if err := json.Unmarshal(buf, &metadata); err != nil { |
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return fmt.Errorf("failed to decode snapshot metadata: %v", err) |
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} |
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case "state.bin": |
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if _, err := io.Copy(io.MultiWriter(snap, snapHash), archive); err != nil { |
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return fmt.Errorf("failed to read or write snapshot data: %v", err) |
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} |
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case "SHA256SUMS": |
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if _, err := io.Copy(&shaBuffer, archive); err != nil { |
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return fmt.Errorf("failed to read snapshot hashes: %v", err) |
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} |
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default: |
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return fmt.Errorf("unexpected file %q in snapshot", hdr.Name) |
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} |
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} |
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// Verify all the hashes. |
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if err := hl.DecodeAndVerify(&shaBuffer); err != nil { |
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return fmt.Errorf("failed checking integrity of snapshot: %v", err) |
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} |
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return nil |
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}
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