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185 lines
3.9 KiB
Go
185 lines
3.9 KiB
Go
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// Clockfs implements a file system with the current time in a file.
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// It was written to demonstrate kernel cache invalidation.
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package main
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import (
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"flag"
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"fmt"
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"log"
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"os"
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"sync/atomic"
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"syscall"
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"time"
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"bazil.org/fuse"
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"bazil.org/fuse/fs"
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_ "bazil.org/fuse/fs/fstestutil"
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"bazil.org/fuse/fuseutil"
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"golang.org/x/net/context"
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)
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func usage() {
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fmt.Fprintf(os.Stderr, "Usage of %s:\n", os.Args[0])
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fmt.Fprintf(os.Stderr, " %s MOUNTPOINT\n", os.Args[0])
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flag.PrintDefaults()
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}
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func run(mountpoint string) error {
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c, err := fuse.Mount(
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mountpoint,
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fuse.FSName("clock"),
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fuse.Subtype("clockfsfs"),
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fuse.LocalVolume(),
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fuse.VolumeName("Clock filesystem"),
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)
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if err != nil {
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return err
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}
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defer c.Close()
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if p := c.Protocol(); !p.HasInvalidate() {
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return fmt.Errorf("kernel FUSE support is too old to have invalidations: version %v", p)
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}
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srv := fs.New(c, nil)
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filesys := &FS{
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// We pre-create the clock node so that it's always the same
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// object returned from all the Lookups. You could carefully
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// track its lifetime between Lookup&Forget, and have the
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// ticking & invalidation happen only when active, but let's
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// keep this example simple.
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clockFile: &File{
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fuse: srv,
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},
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}
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filesys.clockFile.tick()
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// This goroutine never exits. That's fine for this example.
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go filesys.clockFile.update()
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if err := srv.Serve(filesys); err != nil {
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return err
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}
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// Check if the mount process has an error to report.
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<-c.Ready
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if err := c.MountError; err != nil {
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return err
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}
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return nil
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}
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func main() {
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flag.Usage = usage
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flag.Parse()
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if flag.NArg() != 1 {
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usage()
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os.Exit(2)
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}
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mountpoint := flag.Arg(0)
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if err := run(mountpoint); err != nil {
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log.Fatal(err)
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}
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}
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type FS struct {
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clockFile *File
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}
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var _ fs.FS = (*FS)(nil)
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func (f *FS) Root() (fs.Node, error) {
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return &Dir{fs: f}, nil
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}
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// Dir implements both Node and Handle for the root directory.
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type Dir struct {
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fs *FS
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}
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var _ fs.Node = (*Dir)(nil)
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func (d *Dir) Attr(ctx context.Context, a *fuse.Attr) error {
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a.Inode = 1
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a.Mode = os.ModeDir | 0555
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return nil
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}
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var _ fs.NodeStringLookuper = (*Dir)(nil)
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func (d *Dir) Lookup(ctx context.Context, name string) (fs.Node, error) {
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if name == "clock" {
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return d.fs.clockFile, nil
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}
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return nil, fuse.ENOENT
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}
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var dirDirs = []fuse.Dirent{
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{Inode: 2, Name: "clock", Type: fuse.DT_File},
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}
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var _ fs.HandleReadDirAller = (*Dir)(nil)
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func (d *Dir) ReadDirAll(ctx context.Context) ([]fuse.Dirent, error) {
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return dirDirs, nil
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}
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type File struct {
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fs.NodeRef
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fuse *fs.Server
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content atomic.Value
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count uint64
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}
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var _ fs.Node = (*File)(nil)
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func (f *File) Attr(ctx context.Context, a *fuse.Attr) error {
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a.Inode = 2
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a.Mode = 0444
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t := f.content.Load().(string)
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a.Size = uint64(len(t))
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return nil
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}
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var _ fs.NodeOpener = (*File)(nil)
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func (f *File) Open(ctx context.Context, req *fuse.OpenRequest, resp *fuse.OpenResponse) (fs.Handle, error) {
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if !req.Flags.IsReadOnly() {
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return nil, fuse.Errno(syscall.EACCES)
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}
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resp.Flags |= fuse.OpenKeepCache
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return f, nil
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}
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var _ fs.Handle = (*File)(nil)
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var _ fs.HandleReader = (*File)(nil)
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func (f *File) Read(ctx context.Context, req *fuse.ReadRequest, resp *fuse.ReadResponse) error {
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t := f.content.Load().(string)
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fuseutil.HandleRead(req, resp, []byte(t))
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return nil
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}
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func (f *File) tick() {
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// Intentionally a variable-length format, to demonstrate size changes.
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f.count++
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s := fmt.Sprintf("%d\t%s\n", f.count, time.Now())
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f.content.Store(s)
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// For simplicity, this example tries to send invalidate
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// notifications even when the kernel does not hold a reference to
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// the node, so be extra sure to ignore ErrNotCached.
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if err := f.fuse.InvalidateNodeData(f); err != nil && err != fuse.ErrNotCached {
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log.Printf("invalidate error: %v", err)
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}
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}
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func (f *File) update() {
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tick := time.NewTicker(1 * time.Second)
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defer tick.Stop()
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for range tick.C {
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f.tick()
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}
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}
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