fd94b3a473
The documentation had dead links pointing to #file-caching. They've been moved to point to #vfs-file-caching.
592 lines
23 KiB
Go
592 lines
23 KiB
Go
package mountlib
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import (
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"io"
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"log"
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"os"
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"os/signal"
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"path/filepath"
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"runtime"
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"strings"
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"sync"
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"syscall"
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"time"
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sysdnotify "github.com/iguanesolutions/go-systemd/v5/notify"
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"github.com/pkg/errors"
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"github.com/rclone/rclone/cmd"
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"github.com/rclone/rclone/fs"
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"github.com/rclone/rclone/fs/config"
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"github.com/rclone/rclone/fs/config/flags"
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"github.com/rclone/rclone/fs/rc"
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"github.com/rclone/rclone/lib/atexit"
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"github.com/rclone/rclone/vfs"
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"github.com/rclone/rclone/vfs/vfsflags"
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"github.com/spf13/cobra"
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"github.com/spf13/pflag"
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)
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// Options for creating the mount
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type Options struct {
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DebugFUSE bool
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AllowNonEmpty bool
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AllowRoot bool
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AllowOther bool
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DefaultPermissions bool
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WritebackCache bool
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Daemon bool
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MaxReadAhead fs.SizeSuffix
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ExtraOptions []string
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ExtraFlags []string
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AttrTimeout time.Duration // how long the kernel caches attribute for
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VolumeName string
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NoAppleDouble bool
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NoAppleXattr bool
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DaemonTimeout time.Duration // OSXFUSE only
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AsyncRead bool
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NetworkMode bool // Windows only
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}
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// DefaultOpt is the default values for creating the mount
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var DefaultOpt = Options{
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MaxReadAhead: 128 * 1024,
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AttrTimeout: 1 * time.Second, // how long the kernel caches attribute for
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NoAppleDouble: true, // use noappledouble by default
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NoAppleXattr: false, // do not use noapplexattr by default
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AsyncRead: true, // do async reads by default
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}
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type (
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// UnmountFn is called to unmount the file system
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UnmountFn func() error
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// MountFn is called to mount the file system
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MountFn func(VFS *vfs.VFS, mountpoint string, opt *Options) (<-chan error, func() error, error)
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)
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// Global constants
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const (
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MaxLeafSize = 1024 // don't pass file names longer than this
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)
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func init() {
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// DaemonTimeout defaults to non zero for macOS
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if runtime.GOOS == "darwin" {
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DefaultOpt.DaemonTimeout = 15 * time.Minute
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}
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}
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// Options set by command line flags
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var (
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Opt = DefaultOpt
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)
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// AddFlags adds the non filing system specific flags to the command
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func AddFlags(flagSet *pflag.FlagSet) {
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rc.AddOption("mount", &Opt)
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flags.BoolVarP(flagSet, &Opt.DebugFUSE, "debug-fuse", "", Opt.DebugFUSE, "Debug the FUSE internals - needs -v.")
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flags.DurationVarP(flagSet, &Opt.AttrTimeout, "attr-timeout", "", Opt.AttrTimeout, "Time for which file/directory attributes are cached.")
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flags.StringArrayVarP(flagSet, &Opt.ExtraOptions, "option", "o", []string{}, "Option for libfuse/WinFsp. Repeat if required.")
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flags.StringArrayVarP(flagSet, &Opt.ExtraFlags, "fuse-flag", "", []string{}, "Flags or arguments to be passed direct to libfuse/WinFsp. Repeat if required.")
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// Non-Windows only
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flags.BoolVarP(flagSet, &Opt.Daemon, "daemon", "", Opt.Daemon, "Run mount as a daemon (background mode). Not supported on Windows.")
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flags.DurationVarP(flagSet, &Opt.DaemonTimeout, "daemon-timeout", "", Opt.DaemonTimeout, "Time limit for rclone to respond to kernel. Not supported on Windows.")
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flags.BoolVarP(flagSet, &Opt.DefaultPermissions, "default-permissions", "", Opt.DefaultPermissions, "Makes kernel enforce access control based on the file mode. Not supported on Windows.")
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flags.BoolVarP(flagSet, &Opt.AllowNonEmpty, "allow-non-empty", "", Opt.AllowNonEmpty, "Allow mounting over a non-empty directory. Not supported on Windows.")
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flags.BoolVarP(flagSet, &Opt.AllowRoot, "allow-root", "", Opt.AllowRoot, "Allow access to root user. Not supported on Windows.")
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flags.BoolVarP(flagSet, &Opt.AllowOther, "allow-other", "", Opt.AllowOther, "Allow access to other users. Not supported on Windows.")
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flags.BoolVarP(flagSet, &Opt.AsyncRead, "async-read", "", Opt.AsyncRead, "Use asynchronous reads. Not supported on Windows.")
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flags.FVarP(flagSet, &Opt.MaxReadAhead, "max-read-ahead", "", "The number of bytes that can be prefetched for sequential reads. Not supported on Windows.")
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flags.BoolVarP(flagSet, &Opt.WritebackCache, "write-back-cache", "", Opt.WritebackCache, "Makes kernel buffer writes before sending them to rclone. Without this, writethrough caching is used. Not supported on Windows.")
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// Windows and OSX
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flags.StringVarP(flagSet, &Opt.VolumeName, "volname", "", Opt.VolumeName, "Set the volume name. Supported on Windows and OSX only.")
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// OSX only
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flags.BoolVarP(flagSet, &Opt.NoAppleDouble, "noappledouble", "", Opt.NoAppleDouble, "Ignore Apple Double (._) and .DS_Store files. Supported on OSX only.")
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flags.BoolVarP(flagSet, &Opt.NoAppleXattr, "noapplexattr", "", Opt.NoAppleXattr, "Ignore all \"com.apple.*\" extended attributes. Supported on OSX only.")
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// Windows only
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flags.BoolVarP(flagSet, &Opt.NetworkMode, "network-mode", "", Opt.NetworkMode, "Mount as remote network drive, instead of fixed disk drive. Supported on Windows only")
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}
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// Check if folder is empty
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func checkMountEmpty(mountpoint string) error {
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fp, fpErr := os.Open(mountpoint)
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if fpErr != nil {
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return errors.Wrap(fpErr, "Can not open: "+mountpoint)
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}
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defer fs.CheckClose(fp, &fpErr)
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_, fpErr = fp.Readdirnames(1)
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// directory is not empty
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if fpErr != io.EOF {
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var e error
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var errorMsg = "Directory is not empty: " + mountpoint + " If you want to mount it anyway use: --allow-non-empty option"
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if fpErr == nil {
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e = errors.New(errorMsg)
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} else {
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e = errors.Wrap(fpErr, errorMsg)
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}
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return e
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}
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return nil
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}
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// Check the root doesn't overlap the mountpoint
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func checkMountpointOverlap(root, mountpoint string) error {
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abs := func(x string) string {
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if absX, err := filepath.EvalSymlinks(x); err == nil {
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x = absX
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}
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if absX, err := filepath.Abs(x); err == nil {
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x = absX
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}
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x = filepath.ToSlash(x)
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if !strings.HasSuffix(x, "/") {
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x += "/"
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}
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return x
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}
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rootAbs, mountpointAbs := abs(root), abs(mountpoint)
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if strings.HasPrefix(rootAbs, mountpointAbs) || strings.HasPrefix(mountpointAbs, rootAbs) {
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return errors.Errorf("mount point %q and directory to be mounted %q mustn't overlap", mountpoint, root)
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}
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return nil
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}
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// NewMountCommand makes a mount command with the given name and Mount function
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func NewMountCommand(commandName string, hidden bool, mount MountFn) *cobra.Command {
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var commandDefinition = &cobra.Command{
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Use: commandName + " remote:path /path/to/mountpoint",
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Hidden: hidden,
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Short: `Mount the remote as file system on a mountpoint.`,
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// Warning! "|" will be replaced by backticks below
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// "@" will be replaced by the command name
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Long: strings.ReplaceAll(strings.ReplaceAll(`
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rclone @ allows Linux, FreeBSD, macOS and Windows to
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mount any of Rclone's cloud storage systems as a file system with
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FUSE.
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First set up your remote using |rclone config|. Check it works with |rclone ls| etc.
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On Linux and OSX, you can either run mount in foreground mode or background (daemon) mode.
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Mount runs in foreground mode by default, use the |--daemon| flag to specify background mode.
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You can only run mount in foreground mode on Windows.
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On Linux/macOS/FreeBSD start the mount like this, where |/path/to/local/mount|
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is an **empty** **existing** directory:
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rclone @ remote:path/to/files /path/to/local/mount
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On Windows you can start a mount in different ways. See [below](#mounting-modes-on-windows)
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for details. The following examples will mount to an automatically assigned drive,
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to specific drive letter |X:|, to path |C:\path\parent\mount|
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(where parent directory or drive must exist, and mount must **not** exist,
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and is not supported when [mounting as a network drive](#mounting-modes-on-windows)), and
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the last example will mount as network share |\\cloud\remote| and map it to an
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automatically assigned drive:
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rclone @ remote:path/to/files *
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rclone @ remote:path/to/files X:
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rclone @ remote:path/to/files C:\path\parent\mount
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rclone @ remote:path/to/files \\cloud\remote
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When the program ends while in foreground mode, either via Ctrl+C or receiving
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a SIGINT or SIGTERM signal, the mount should be automatically stopped.
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When running in background mode the user will have to stop the mount manually:
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# Linux
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fusermount -u /path/to/local/mount
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# OS X
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umount /path/to/local/mount
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The umount operation can fail, for example when the mountpoint is busy.
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When that happens, it is the user's responsibility to stop the mount manually.
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The size of the mounted file system will be set according to information retrieved
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from the remote, the same as returned by the [rclone about](https://rclone.org/commands/rclone_about/)
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command. Remotes with unlimited storage may report the used size only,
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then an additional 1PB of free space is assumed. If the remote does not
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[support](https://rclone.org/overview/#optional-features) the about feature
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at all, then 1PB is set as both the total and the free size.
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**Note**: As of |rclone| 1.52.2, |rclone mount| now requires Go version 1.13
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or newer on some platforms depending on the underlying FUSE library in use.
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### Installing on Windows
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To run rclone @ on Windows, you will need to
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download and install [WinFsp](http://www.secfs.net/winfsp/).
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[WinFsp](https://github.com/billziss-gh/winfsp) is an open source
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Windows File System Proxy which makes it easy to write user space file
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systems for Windows. It provides a FUSE emulation layer which rclone
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uses combination with [cgofuse](https://github.com/billziss-gh/cgofuse).
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Both of these packages are by Bill Zissimopoulos who was very helpful
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during the implementation of rclone @ for Windows.
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#### Mounting modes on windows
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Unlike other operating systems, Microsoft Windows provides a different filesystem
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type for network and fixed drives. It optimises access on the assumption fixed
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disk drives are fast and reliable, while network drives have relatively high latency
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and less reliability. Some settings can also be differentiated between the two types,
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for example that Windows Explorer should just display icons and not create preview
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thumbnails for image and video files on network drives.
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In most cases, rclone will mount the remote as a normal, fixed disk drive by default.
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However, you can also choose to mount it as a remote network drive, often described
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as a network share. If you mount an rclone remote using the default, fixed drive mode
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and experience unexpected program errors, freezes or other issues, consider mounting
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as a network drive instead.
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When mounting as a fixed disk drive you can either mount to an unused drive letter,
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or to a path representing a **non-existent** subdirectory of an **existing** parent
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directory or drive. Using the special value |*| will tell rclone to
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automatically assign the next available drive letter, starting with Z: and moving backward.
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Examples:
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rclone @ remote:path/to/files *
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rclone @ remote:path/to/files X:
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rclone @ remote:path/to/files C:\path\parent\mount
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rclone @ remote:path/to/files X:
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Option |--volname| can be used to set a custom volume name for the mounted
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file system. The default is to use the remote name and path.
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To mount as network drive, you can add option |--network-mode|
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to your @ command. Mounting to a directory path is not supported in
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this mode, it is a limitation Windows imposes on junctions, so the remote must always
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be mounted to a drive letter.
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rclone @ remote:path/to/files X: --network-mode
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A volume name specified with |--volname| will be used to create the network share path.
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A complete UNC path, such as |\\cloud\remote|, optionally with path
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|\\cloud\remote\madeup\path|, will be used as is. Any other
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string will be used as the share part, after a default prefix |\\server\|.
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If no volume name is specified then |\\server\share| will be used.
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You must make sure the volume name is unique when you are mounting more than one drive,
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or else the mount command will fail. The share name will treated as the volume label for
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the mapped drive, shown in Windows Explorer etc, while the complete
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|\\server\share| will be reported as the remote UNC path by
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|net use| etc, just like a normal network drive mapping.
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If you specify a full network share UNC path with |--volname|, this will implicitely
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set the |--network-mode| option, so the following two examples have same result:
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rclone @ remote:path/to/files X: --network-mode
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rclone @ remote:path/to/files X: --volname \\server\share
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You may also specify the network share UNC path as the mountpoint itself. Then rclone
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will automatically assign a drive letter, same as with |*| and use that as
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mountpoint, and instead use the UNC path specified as the volume name, as if it were
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specified with the |--volname| option. This will also implicitely set
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the |--network-mode| option. This means the following two examples have same result:
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rclone @ remote:path/to/files \\cloud\remote
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rclone @ remote:path/to/files * --volname \\cloud\remote
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There is yet another way to enable network mode, and to set the share path,
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and that is to pass the "native" libfuse/WinFsp option directly:
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|--fuse-flag --VolumePrefix=\server\share|. Note that the path
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must be with just a single backslash prefix in this case.
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*Note:* In previous versions of rclone this was the only supported method.
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[Read more about drive mapping](https://en.wikipedia.org/wiki/Drive_mapping)
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See also [Limitations](#limitations) section below.
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#### Windows filesystem permissions
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The FUSE emulation layer on Windows must convert between the POSIX-based
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permission model used in FUSE, and the permission model used in Windows,
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based on access-control lists (ACL).
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The mounted filesystem will normally get three entries in its access-control list (ACL),
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representing permissions for the POSIX permission scopes: Owner, group and others.
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By default, the owner and group will be taken from the current user, and the built-in
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group "Everyone" will be used to represent others. The user/group can be customized
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with FUSE options "UserName" and "GroupName",
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e.g. |-o UserName=user123 -o GroupName="Authenticated Users"|.
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The permissions on each entry will be set according to
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[options](#options) |--dir-perms| and |--file-perms|,
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which takes a value in traditional [numeric notation](https://en.wikipedia.org/wiki/File-system_permissions#Numeric_notation),
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where the default corresponds to |--file-perms 0666 --dir-perms 0777|.
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Note that the mapping of permissions is not always trivial, and the result
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you see in Windows Explorer may not be exactly like you expected.
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For example, when setting a value that includes write access, this will be
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mapped to individual permissions "write attributes", "write data" and "append data",
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but not "write extended attributes" (WinFsp does not support extended attributes,
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see [this](https://github.com/billziss-gh/winfsp/wiki/NTFS-Compatibility)).
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Windows will then show this as basic permission "Special" instead of "Write",
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because "Write" includes the "write extended attributes" permission.
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#### Windows caveats
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Note that drives created as Administrator are not visible by other
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accounts (including the account that was elevated as
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Administrator). So if you start a Windows drive from an Administrative
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Command Prompt and then try to access the same drive from Explorer
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(which does not run as Administrator), you will not be able to see the
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new drive.
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The easiest way around this is to start the drive from a normal
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command prompt. It is also possible to start a drive from the SYSTEM
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account (using [the WinFsp.Launcher
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infrastructure](https://github.com/billziss-gh/winfsp/wiki/WinFsp-Service-Architecture))
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which creates drives accessible for everyone on the system or
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alternatively using [the nssm service manager](https://nssm.cc/usage).
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### Limitations
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Without the use of |--vfs-cache-mode| this can only write files
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sequentially, it can only seek when reading. This means that many
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applications won't work with their files on an rclone mount without
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|--vfs-cache-mode writes| or |--vfs-cache-mode full|.
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See the [VFS File Caching](#vfs-file-caching) section for more info.
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The bucket based remotes (e.g. Swift, S3, Google Compute Storage, B2,
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Hubic) do not support the concept of empty directories, so empty
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directories will have a tendency to disappear once they fall out of
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the directory cache.
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Only supported on Linux, FreeBSD, OS X and Windows at the moment.
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### rclone @ vs rclone sync/copy
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File systems expect things to be 100% reliable, whereas cloud storage
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systems are a long way from 100% reliable. The rclone sync/copy
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commands cope with this with lots of retries. However rclone @
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can't use retries in the same way without making local copies of the
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uploads. Look at the [VFS File Caching](#vfs-file-caching)
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for solutions to make @ more reliable.
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### Attribute caching
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You can use the flag |--attr-timeout| to set the time the kernel caches
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the attributes (size, modification time, etc.) for directory entries.
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The default is |1s| which caches files just long enough to avoid
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too many callbacks to rclone from the kernel.
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In theory 0s should be the correct value for filesystems which can
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change outside the control of the kernel. However this causes quite a
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few problems such as
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[rclone using too much memory](https://github.com/rclone/rclone/issues/2157),
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[rclone not serving files to samba](https://forum.rclone.org/t/rclone-1-39-vs-1-40-mount-issue/5112)
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and [excessive time listing directories](https://github.com/rclone/rclone/issues/2095#issuecomment-371141147).
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The kernel can cache the info about a file for the time given by
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|--attr-timeout|. You may see corruption if the remote file changes
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length during this window. It will show up as either a truncated file
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or a file with garbage on the end. With |--attr-timeout 1s| this is
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very unlikely but not impossible. The higher you set |--attr-timeout|
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the more likely it is. The default setting of "1s" is the lowest
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setting which mitigates the problems above.
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If you set it higher (|10s| or |1m| say) then the kernel will call
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back to rclone less often making it more efficient, however there is
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more chance of the corruption issue above.
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If files don't change on the remote outside of the control of rclone
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then there is no chance of corruption.
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This is the same as setting the attr_timeout option in mount.fuse.
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### Filters
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Note that all the rclone filters can be used to select a subset of the
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files to be visible in the mount.
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### systemd
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When running rclone @ as a systemd service, it is possible
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to use Type=notify. In this case the service will enter the started state
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after the mountpoint has been successfully set up.
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Units having the rclone @ service specified as a requirement
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will see all files and folders immediately in this mode.
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### chunked reading
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|--vfs-read-chunk-size| will enable reading the source objects in parts.
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This can reduce the used download quota for some remotes by requesting only chunks
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from the remote that are actually read at the cost of an increased number of requests.
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When |--vfs-read-chunk-size-limit| is also specified and greater than
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|--vfs-read-chunk-size|, the chunk size for each open file will get doubled
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for each chunk read, until the specified value is reached. A value of |-1| will disable
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the limit and the chunk size will grow indefinitely.
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With |--vfs-read-chunk-size 100M| and |--vfs-read-chunk-size-limit 0|
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the following parts will be downloaded: 0-100M, 100M-200M, 200M-300M, 300M-400M and so on.
|
|
When |--vfs-read-chunk-size-limit 500M| is specified, the result would be
|
|
0-100M, 100M-300M, 300M-700M, 700M-1200M, 1200M-1700M and so on.
|
|
`, "|", "`"), "@", commandName) + vfs.Help,
|
|
Run: func(command *cobra.Command, args []string) {
|
|
cmd.CheckArgs(2, 2, command, args)
|
|
opt := Opt // make a copy of the options
|
|
|
|
if opt.Daemon {
|
|
config.PassConfigKeyForDaemonization = true
|
|
}
|
|
|
|
mountpoint := args[1]
|
|
fdst := cmd.NewFsDir(args)
|
|
if fdst.Name() == "" || fdst.Name() == "local" {
|
|
err := checkMountpointOverlap(fdst.Root(), mountpoint)
|
|
if err != nil {
|
|
log.Fatalf("Fatal error: %v", err)
|
|
}
|
|
}
|
|
|
|
// Show stats if the user has specifically requested them
|
|
if cmd.ShowStats() {
|
|
defer cmd.StartStats()()
|
|
}
|
|
|
|
// Inform about ignored flags on Windows,
|
|
// and if not on Windows and not --allow-non-empty flag is used
|
|
// verify that mountpoint is empty.
|
|
if runtime.GOOS == "windows" {
|
|
if opt.AllowNonEmpty {
|
|
fs.Logf(nil, "--allow-non-empty flag does nothing on Windows")
|
|
}
|
|
if opt.AllowRoot {
|
|
fs.Logf(nil, "--allow-root flag does nothing on Windows")
|
|
}
|
|
if opt.AllowOther {
|
|
fs.Logf(nil, "--allow-other flag does nothing on Windows")
|
|
}
|
|
} else if !opt.AllowNonEmpty {
|
|
err := checkMountEmpty(mountpoint)
|
|
if err != nil {
|
|
log.Fatalf("Fatal error: %v", err)
|
|
}
|
|
}
|
|
|
|
// Work out the volume name, removing special
|
|
// characters from it if necessary
|
|
if opt.VolumeName == "" {
|
|
opt.VolumeName = fdst.Name() + ":" + fdst.Root()
|
|
}
|
|
opt.VolumeName = strings.Replace(opt.VolumeName, ":", " ", -1)
|
|
opt.VolumeName = strings.Replace(opt.VolumeName, "/", " ", -1)
|
|
opt.VolumeName = strings.TrimSpace(opt.VolumeName)
|
|
if runtime.GOOS == "windows" && len(opt.VolumeName) > 32 {
|
|
opt.VolumeName = opt.VolumeName[:32]
|
|
}
|
|
|
|
// Start background task if --background is specified
|
|
if opt.Daemon {
|
|
daemonized := startBackgroundMode()
|
|
if daemonized {
|
|
return
|
|
}
|
|
}
|
|
|
|
VFS := vfs.New(fdst, &vfsflags.Opt)
|
|
err := Mount(VFS, mountpoint, mount, &opt)
|
|
if err != nil {
|
|
log.Fatalf("Fatal error: %v", err)
|
|
}
|
|
},
|
|
}
|
|
|
|
// Register the command
|
|
cmd.Root.AddCommand(commandDefinition)
|
|
|
|
// Add flags
|
|
cmdFlags := commandDefinition.Flags()
|
|
AddFlags(cmdFlags)
|
|
vfsflags.AddFlags(cmdFlags)
|
|
|
|
return commandDefinition
|
|
}
|
|
|
|
// ClipBlocks clips the blocks pointed to the OS max
|
|
func ClipBlocks(b *uint64) {
|
|
var max uint64
|
|
switch runtime.GOOS {
|
|
case "windows":
|
|
if runtime.GOARCH == "386" {
|
|
max = (1 << 32) - 1
|
|
} else {
|
|
max = (1 << 43) - 1
|
|
}
|
|
case "darwin":
|
|
// OSX FUSE only supports 32 bit number of blocks
|
|
// https://github.com/osxfuse/osxfuse/issues/396
|
|
max = (1 << 32) - 1
|
|
default:
|
|
// no clipping
|
|
return
|
|
}
|
|
if *b > max {
|
|
*b = max
|
|
}
|
|
}
|
|
|
|
// Mount mounts the remote at mountpoint.
|
|
//
|
|
// If noModTime is set then it
|
|
func Mount(VFS *vfs.VFS, mountpoint string, mount MountFn, opt *Options) error {
|
|
if opt == nil {
|
|
opt = &DefaultOpt
|
|
}
|
|
|
|
// Mount it
|
|
errChan, unmount, err := mount(VFS, mountpoint, opt)
|
|
if err != nil {
|
|
return errors.Wrap(err, "failed to mount FUSE fs")
|
|
}
|
|
|
|
// Unmount on exit
|
|
var finaliseOnce sync.Once
|
|
finalise := func() {
|
|
finaliseOnce.Do(func() {
|
|
_ = sysdnotify.Stopping()
|
|
_ = unmount()
|
|
})
|
|
}
|
|
fnHandle := atexit.Register(finalise)
|
|
defer atexit.Unregister(fnHandle)
|
|
|
|
// Notify systemd
|
|
if err := sysdnotify.Ready(); err != nil {
|
|
return errors.Wrap(err, "failed to notify systemd")
|
|
}
|
|
|
|
// Reload VFS cache on SIGHUP
|
|
sigHup := make(chan os.Signal, 1)
|
|
signal.Notify(sigHup, syscall.SIGHUP)
|
|
|
|
waitloop:
|
|
for {
|
|
select {
|
|
// umount triggered outside the app
|
|
case err = <-errChan:
|
|
break waitloop
|
|
// user sent SIGHUP to clear the cache
|
|
case <-sigHup:
|
|
root, err := VFS.Root()
|
|
if err != nil {
|
|
fs.Errorf(VFS.Fs(), "Error reading root: %v", err)
|
|
} else {
|
|
root.ForgetAll()
|
|
}
|
|
}
|
|
}
|
|
|
|
finalise()
|
|
|
|
if err != nil {
|
|
return errors.Wrap(err, "failed to umount FUSE fs")
|
|
}
|
|
|
|
return nil
|
|
}
|