Files
seaweedfs/weed/command/mount_windows.go
T
Chris LuandGitHub 7658305c76 mount: name the disk after the mounted path (#10958)
* mount: name the disk after the mounted path

Finder and Explorer labelled every mount with the filer address, so two
mounts from one filer were indistinguishable. Use the mounted path's last
segment, the way df already shows it, and keep the filer address only for
a whole-tree mount.

* mount: let a given mount option override the default

The options from -o were placed before the ones this mount derives, so
a volname or iosize given on the command line lost to the derived value.
Append them last, matching the Windows adapter.

* mount: document what labels the disk
2026-08-25 22:56:33 -07:00

204 lines
7.0 KiB
Go

package command
import (
"fmt"
"net"
"os"
"path/filepath"
"runtime"
"strings"
"time"
"github.com/seaweedfs/seaweedfs/weed/glog"
"github.com/seaweedfs/seaweedfs/weed/mount/meta_cache"
"github.com/seaweedfs/seaweedfs/weed/mount/winfsp"
"github.com/seaweedfs/seaweedfs/weed/util"
"github.com/seaweedfs/seaweedfs/weed/util/grace"
"github.com/seaweedfs/seaweedfs/weed/util/version"
)
// ownedByMounter reports the mount root as belonging to whoever started it,
// matching the uid=-1 option handed to WinFsp. It is a display value only:
// WinFsp substitutes the calling user, and it must never be persisted, since
// every other client would read the entry as owned by uid 4294967295.
const ownedByMounter = ^uint32(0)
// windowsCacheTimeout bounds how long the adapter serves cached paths and
// attributes and WinFsp serves cached directory listings, matching what the
// kernel caches would be allowed on a unix mount. Metadata events purge
// entries earlier; this is the backstop for anything an event misses.
const windowsCacheTimeout = time.Second
func RunMount(option *MountOptions, umask os.FileMode) bool {
chunkSizeLimitMB := *mountOptions.chunkSizeLimitMB
if chunkSizeLimitMB <= 0 {
fmt.Printf("Please specify a reasonable buffer size.\n")
return false
}
dir := *option.dir
if dir == "" {
fmt.Printf("Please specify the mount point via \"-dir\", for example -dir=S:\n")
return false
}
// A drive letter or a not-yet-existing directory is what WinFsp wants, so
// the mount point deliberately goes through none of the unix preparation:
// no ResolvePath, no auto-create, no stat.
if err := checkWindowsMountPoint(dir); err != nil {
fmt.Printf("%v\n", err)
return false
}
filerAddresses, grpcDialOption, cipher, bucketRootPath, ok := connectToFiler(option)
if !ok {
return true
}
if *option.localSocket == "" {
mountDirHash := util.HashToInt32([]byte(dir))
if mountDirHash < 0 {
mountDirHash = -mountDirHash
}
*option.localSocket = filepath.Join(os.TempDir(), fmt.Sprintf("seaweedfs-mount-%d.sock", mountDirHash))
}
if err := os.Remove(*option.localSocket); err != nil && !os.IsNotExist(err) {
glog.Fatalf("Failed to remove %s, error: %s", *option.localSocket, err.Error())
}
mountSocketListener, err := net.Listen("unix", *option.localSocket)
if err != nil {
glog.Fatalf("Failed to listen on %s: %v", *option.localSocket, err)
}
uidGidMapper, err := meta_cache.NewUidGidMapper(*option.uidMap, *option.gidMap)
if err != nil {
fmt.Printf("failed to parse %s %s: %v\n", *option.uidMap, *option.gidMap, err)
return false
}
mountRoot := resolveMountRoot(*option.filerMountRootPath)
cacheDirForRead, cacheDirForWrite := resolveCacheDirs(option)
seaweedFileSystem := buildSeaweedFileSystem(option, fileSystemParams{
dir: dir,
mountRoot: mountRoot,
filerAddresses: filerAddresses,
grpcDialOption: grpcDialOption,
cipher: cipher,
uidGidMapper: uidGidMapper,
uid: uint32(*option.windowsUid),
gid: uint32(*option.windowsGid),
mountMode: os.ModeDir | 0777,
mountCtime: time.Now(),
umask: umask,
chunkSizeLimitMB: chunkSizeLimitMB,
cacheDirForRead: cacheDirForRead,
cacheDirForWrite: cacheDirForWrite,
// WinFsp posts the cleanup and close that carry the flush after
// CloseHandle has already returned, so entry creation cannot wait
// for the flush the way it does when close(2) runs it synchronously.
eagerFilerCreate: true,
})
if !createMountRoot(seaweedFileSystem, mountRoot, bucketRootPath, filerAddresses) {
return false
}
host := winfsp.New(seaweedFileSystem, winfsp.Options{
VolumeName: volumeName(*option.filer, *option.filerMountRootPath),
Uid: ownedByMounter,
Gid: ownedByMounter,
CacheTimeout: windowsCacheTimeout,
ReadOnly: *option.readOnly,
Debug: *option.debugFuse,
ExtraOptions: option.extraOptions,
})
// Windows caches entries on its own side and the mount cannot invalidate
// that cache directly, so changes made elsewhere have to be pushed out.
host.Notify(seaweedFileSystem)
grace.OnInterrupt(func() {
// The signal handler exits the process as soon as the hooks return, so
// anything still queued has to be flushed here rather than after Serve.
// WaitForAsyncFlush is idempotent, so the post-Serve call below is
// harmless if both run.
host.Unmount()
seaweedFileSystem.WaitForAsyncFlush()
})
serveMountGrpc(seaweedFileSystem, mountSocketListener)
if err := seaweedFileSystem.StartBackgroundTasks(); err != nil {
fmt.Printf("failed to start background tasks: %v\n", err)
return false
}
glog.V(0).Infof("mounting %s%s to %v", *option.filer, mountRoot, dir)
glog.V(0).Infof("This is SeaweedFS version %s %s %s", version.Version(), runtime.GOOS, runtime.GOARCH)
glog.V(0).Infof("Windows mount is beta: hard links are unavailable and byte-range locks are not shared across mounts")
if prefix, _ := winfsp.VolumePrefix(dir); prefix != "" {
glog.V(0).Infof(`network mount: every session on this machine can open \%s or map a drive letter to it`, prefix)
}
if err := host.Serve(windowsMountPoint(dir)); err != nil {
glog.Errorf("%v", err)
return false
}
seaweedFileSystem.WaitForAsyncFlush()
seaweedFileSystem.ClearCacheDir()
return true
}
// checkWindowsMountPoint rejects the mount points WinFsp cannot take, which is
// worth doing up front because its own failure is a bare false.
func checkWindowsMountPoint(dir string) error {
if isDriveLetter(dir) {
if _, err := os.Stat(strings.TrimRight(dir, `\/`) + `\`); err == nil {
return fmt.Errorf("drive %s is already in use", dir)
}
return nil
}
if prefix, err := winfsp.VolumePrefix(dir); err != nil || prefix != "" {
return err
}
if strings.HasPrefix(dir, `\\`) {
return nil
}
// WinFsp creates the directory itself, with FILE_CREATE, and deletes it
// again when the filesystem goes away. An existing one — empty or not —
// fails with "mount point in use".
if _, err := os.Stat(dir); err == nil {
return fmt.Errorf("mount point %s already exists; WinFsp creates the directory itself, so give it a path that does not exist yet", dir)
} else if !os.IsNotExist(err) {
return err
}
if _, err := os.Stat(filepath.Dir(dir)); err != nil {
return fmt.Errorf("parent of mount point %s does not exist", dir)
}
return nil
}
// windowsMountPoint drops a trailing separator from a drive letter. WinFsp
// recognises a drive only as exactly two characters; "S:\\" falls through to
// its directory handling and the mount fails.
func windowsMountPoint(dir string) string {
if isDriveLetter(dir) {
return strings.TrimRight(dir, `\/`)
}
return dir
}
// isDriveLetter accepts both "S:" and "S:\\"; the trailing separator is how
// the drive is usually written, and windowsMountPoint normalises it.
func isDriveLetter(dir string) bool {
trimmed := strings.TrimRight(dir, `\/`)
if len(trimmed) != 2 || trimmed[1] != ':' {
return false
}
c := trimmed[0]
return (c >= 'A' && c <= 'Z') || (c >= 'a' && c <= 'z')
}