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c0b5ec55ab
TestRepository and its variants always returned no-op cleanup functions. If they ever do need to do cleanup, using testing.T.Cleanup is easier than passing these functions around.
255 lines
6.3 KiB
Go
255 lines
6.3 KiB
Go
//go:build darwin || freebsd || linux
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// +build darwin freebsd linux
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package fuse
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import (
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"bytes"
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"context"
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"math/rand"
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"os"
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"testing"
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"time"
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"github.com/restic/restic/internal/bloblru"
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"github.com/restic/restic/internal/repository"
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"github.com/restic/restic/internal/restic"
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"github.com/anacrolix/fuse"
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"github.com/anacrolix/fuse/fs"
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rtest "github.com/restic/restic/internal/test"
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)
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func testRead(t testing.TB, f fs.Handle, offset, length int, data []byte) {
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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req := &fuse.ReadRequest{
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Offset: int64(offset),
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Size: length,
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}
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resp := &fuse.ReadResponse{
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Data: data,
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}
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fr := f.(fs.HandleReader)
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rtest.OK(t, fr.Read(ctx, req, resp))
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}
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func firstSnapshotID(t testing.TB, repo restic.Repository) (first restic.ID) {
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err := repo.List(context.TODO(), restic.SnapshotFile, func(id restic.ID, size int64) error {
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if first.IsNull() {
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first = id
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}
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return nil
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})
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if err != nil {
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t.Fatal(err)
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}
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return first
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}
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func loadFirstSnapshot(t testing.TB, repo restic.Repository) *restic.Snapshot {
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id := firstSnapshotID(t, repo)
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sn, err := restic.LoadSnapshot(context.TODO(), repo, id)
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rtest.OK(t, err)
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return sn
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}
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func loadTree(t testing.TB, repo restic.Repository, id restic.ID) *restic.Tree {
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tree, err := restic.LoadTree(context.TODO(), repo, id)
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rtest.OK(t, err)
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return tree
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}
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func TestFuseFile(t *testing.T) {
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repo := repository.TestRepository(t)
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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timestamp, err := time.Parse(time.RFC3339, "2017-01-24T10:42:56+01:00")
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rtest.OK(t, err)
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restic.TestCreateSnapshot(t, repo, timestamp, 2, 0.1)
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sn := loadFirstSnapshot(t, repo)
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tree := loadTree(t, repo, *sn.Tree)
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var content restic.IDs
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for _, node := range tree.Nodes {
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content = append(content, node.Content...)
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}
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t.Logf("tree loaded, content: %v", content)
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var (
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filesize uint64
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memfile []byte
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)
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for _, id := range content {
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size, found := repo.LookupBlobSize(id, restic.DataBlob)
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rtest.Assert(t, found, "Expected to find blob id %v", id)
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filesize += uint64(size)
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buf, err := repo.LoadBlob(context.TODO(), restic.DataBlob, id, nil)
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rtest.OK(t, err)
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if len(buf) != int(size) {
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t.Fatalf("not enough bytes read for id %v: want %v, got %v", id.Str(), size, len(buf))
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}
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if uint(len(buf)) != size {
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t.Fatalf("buffer has wrong length for id %v: want %v, got %v", id.Str(), size, len(buf))
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}
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memfile = append(memfile, buf...)
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}
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t.Logf("filesize is %v, memfile has size %v", filesize, len(memfile))
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node := &restic.Node{
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Name: "foo",
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Inode: 23,
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Mode: 0742,
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Size: filesize,
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Content: content,
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}
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root := &Root{repo: repo, blobCache: bloblru.New(blobCacheSize)}
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inode := inodeFromNode(1, node)
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f, err := newFile(root, inode, node)
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rtest.OK(t, err)
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of, err := f.Open(context.TODO(), nil, nil)
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rtest.OK(t, err)
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attr := fuse.Attr{}
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rtest.OK(t, f.Attr(ctx, &attr))
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rtest.Equals(t, inode, attr.Inode)
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rtest.Equals(t, node.Mode, attr.Mode)
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rtest.Equals(t, node.Size, attr.Size)
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rtest.Equals(t, (node.Size/uint64(attr.BlockSize))+1, attr.Blocks)
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for i := 0; i < 200; i++ {
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offset := rand.Intn(int(filesize))
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length := rand.Intn(int(filesize)-offset) + 100
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b := memfile[offset : offset+length]
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buf := make([]byte, length)
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testRead(t, of, offset, length, buf)
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if !bytes.Equal(b, buf) {
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t.Errorf("test %d failed, wrong data returned (offset %v, length %v)", i, offset, length)
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}
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}
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}
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func TestFuseDir(t *testing.T) {
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repo := repository.TestRepository(t)
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root := &Root{repo: repo, blobCache: bloblru.New(blobCacheSize)}
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node := &restic.Node{
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Mode: 0755,
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UID: 42,
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GID: 43,
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AccessTime: time.Unix(1606773731, 0),
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ChangeTime: time.Unix(1606773732, 0),
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ModTime: time.Unix(1606773733, 0),
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}
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parentInode := inodeFromName(0, "parent")
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inode := inodeFromName(1, "foo")
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d, err := newDir(root, inode, parentInode, node)
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rtest.OK(t, err)
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// don't open the directory as that would require setting up a proper tree blob
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attr := fuse.Attr{}
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rtest.OK(t, d.Attr(context.TODO(), &attr))
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rtest.Equals(t, inode, attr.Inode)
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rtest.Equals(t, node.UID, attr.Uid)
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rtest.Equals(t, node.GID, attr.Gid)
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rtest.Equals(t, node.AccessTime, attr.Atime)
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rtest.Equals(t, node.ChangeTime, attr.Ctime)
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rtest.Equals(t, node.ModTime, attr.Mtime)
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}
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// Test top-level directories for their UID and GID.
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func TestTopUIDGID(t *testing.T) {
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repo := repository.TestRepository(t)
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restic.TestCreateSnapshot(t, repo, time.Unix(1460289341, 207401672), 0, 0)
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testTopUIDGID(t, Config{}, repo, uint32(os.Getuid()), uint32(os.Getgid()))
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testTopUIDGID(t, Config{OwnerIsRoot: true}, repo, 0, 0)
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}
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func testTopUIDGID(t *testing.T, cfg Config, repo restic.Repository, uid, gid uint32) {
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t.Helper()
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ctx := context.Background()
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root := NewRoot(repo, cfg)
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var attr fuse.Attr
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err := root.Attr(ctx, &attr)
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rtest.OK(t, err)
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rtest.Equals(t, uid, attr.Uid)
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rtest.Equals(t, gid, attr.Gid)
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idsdir, err := root.Lookup(ctx, "ids")
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rtest.OK(t, err)
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err = idsdir.Attr(ctx, &attr)
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rtest.OK(t, err)
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rtest.Equals(t, uid, attr.Uid)
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rtest.Equals(t, gid, attr.Gid)
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snapID := loadFirstSnapshot(t, repo).ID().Str()
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snapshotdir, err := idsdir.(fs.NodeStringLookuper).Lookup(ctx, snapID)
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rtest.OK(t, err)
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// restic.TestCreateSnapshot does not set the UID/GID thus it must be always zero
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err = snapshotdir.Attr(ctx, &attr)
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rtest.OK(t, err)
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rtest.Equals(t, uint32(0), attr.Uid)
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rtest.Equals(t, uint32(0), attr.Gid)
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}
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func TestInodeFromNode(t *testing.T) {
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node := &restic.Node{Name: "foo.txt", Type: "chardev", Links: 2}
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ino1 := inodeFromNode(1, node)
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ino2 := inodeFromNode(2, node)
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rtest.Assert(t, ino1 == ino2, "inodes %d, %d of hard links differ", ino1, ino2)
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node.Links = 1
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ino1 = inodeFromNode(1, node)
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ino2 = inodeFromNode(2, node)
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rtest.Assert(t, ino1 != ino2, "same inode %d but different parent", ino1)
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}
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var sink uint64
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func BenchmarkInode(b *testing.B) {
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for _, sub := range []struct {
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name string
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node restic.Node
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}{
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{
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name: "no_hard_links",
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node: restic.Node{Name: "a somewhat long-ish filename.svg.bz2", Type: "fifo"},
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},
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{
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name: "hard_link",
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node: restic.Node{Name: "some other filename", Type: "file", Links: 2},
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},
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} {
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b.Run(sub.name, func(b *testing.B) {
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b.ReportAllocs()
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for i := 0; i < b.N; i++ {
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sink = inodeFromNode(1, &sub.node)
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}
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})
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}
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}
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