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9ce8aac55e
This fix tries to address the issue raised in 25545 where volume options at the creation time is not showed up in `docker volume inspect`. This fix adds the field `Options` in `Volume` type and persist the options in volume db so that `volume inspect` could display the options. This fix adds a couple of test cases to cover the changes. This fix fixes 25545. Signed-off-by: Yong Tang <yong.tang.github@outlook.com>
299 lines
9.3 KiB
Go
299 lines
9.3 KiB
Go
package volume
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import (
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"fmt"
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"os"
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"path/filepath"
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"strings"
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"syscall"
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mounttypes "github.com/docker/docker/api/types/mount"
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"github.com/docker/docker/pkg/idtools"
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"github.com/docker/docker/pkg/stringid"
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"github.com/opencontainers/runc/libcontainer/label"
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"github.com/pkg/errors"
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)
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// DefaultDriverName is the driver name used for the driver
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// implemented in the local package.
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const DefaultDriverName = "local"
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// Scopes define if a volume has is cluster-wide (global) or local only.
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// Scopes are returned by the volume driver when it is queried for capabilities and then set on a volume
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const (
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LocalScope = "local"
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GlobalScope = "global"
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)
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// Driver is for creating and removing volumes.
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type Driver interface {
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// Name returns the name of the volume driver.
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Name() string
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// Create makes a new volume with the given id.
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Create(name string, opts map[string]string) (Volume, error)
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// Remove deletes the volume.
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Remove(vol Volume) (err error)
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// List lists all the volumes the driver has
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List() ([]Volume, error)
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// Get retrieves the volume with the requested name
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Get(name string) (Volume, error)
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// Scope returns the scope of the driver (e.g. `global` or `local`).
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// Scope determines how the driver is handled at a cluster level
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Scope() string
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}
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// Capability defines a set of capabilities that a driver is able to handle.
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type Capability struct {
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// Scope is the scope of the driver, `global` or `local`
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// A `global` scope indicates that the driver manages volumes across the cluster
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// A `local` scope indicates that the driver only manages volumes resources local to the host
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// Scope is declared by the driver
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Scope string
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}
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// Volume is a place to store data. It is backed by a specific driver, and can be mounted.
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type Volume interface {
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// Name returns the name of the volume
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Name() string
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// DriverName returns the name of the driver which owns this volume.
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DriverName() string
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// Path returns the absolute path to the volume.
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Path() string
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// Mount mounts the volume and returns the absolute path to
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// where it can be consumed.
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Mount(id string) (string, error)
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// Unmount unmounts the volume when it is no longer in use.
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Unmount(id string) error
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// Status returns low-level status information about a volume
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Status() map[string]interface{}
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}
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// DetailedVolume wraps a Volume with user-defined labels, options, and cluster scope (e.g., `local` or `global`)
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type DetailedVolume interface {
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Labels() map[string]string
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Options() map[string]string
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Scope() string
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Volume
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}
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// MountPoint is the intersection point between a volume and a container. It
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// specifies which volume is to be used and where inside a container it should
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// be mounted.
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type MountPoint struct {
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Source string // Container host directory
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Destination string // Inside the container
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RW bool // True if writable
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Name string // Name set by user
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Driver string // Volume driver to use
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Type mounttypes.Type `json:",omitempty"` // Type of mount to use, see `Type<foo>` definitions
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Volume Volume `json:"-"`
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// Note Mode is not used on Windows
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Mode string `json:"Relabel,omitempty"` // Originally field was `Relabel`"
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// Note Propagation is not used on Windows
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Propagation mounttypes.Propagation `json:",omitempty"` // Mount propagation string
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// Specifies if data should be copied from the container before the first mount
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// Use a pointer here so we can tell if the user set this value explicitly
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// This allows us to error out when the user explicitly enabled copy but we can't copy due to the volume being populated
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CopyData bool `json:"-"`
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// ID is the opaque ID used to pass to the volume driver.
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// This should be set by calls to `Mount` and unset by calls to `Unmount`
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ID string `json:",omitempty"`
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Spec mounttypes.Mount
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}
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// Setup sets up a mount point by either mounting the volume if it is
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// configured, or creating the source directory if supplied.
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func (m *MountPoint) Setup(mountLabel string, rootUID, rootGID int) (string, error) {
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if m.Volume != nil {
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if m.ID == "" {
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m.ID = stringid.GenerateNonCryptoID()
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}
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path, err := m.Volume.Mount(m.ID)
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return path, errors.Wrapf(err, "error while mounting volume '%s'", m.Source)
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}
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if len(m.Source) == 0 {
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return "", fmt.Errorf("Unable to setup mount point, neither source nor volume defined")
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}
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// system.MkdirAll() produces an error if m.Source exists and is a file (not a directory),
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if m.Type == mounttypes.TypeBind {
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// idtools.MkdirAllNewAs() produces an error if m.Source exists and is a file (not a directory)
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// also, makes sure that if the directory is created, the correct remapped rootUID/rootGID will own it
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if err := idtools.MkdirAllNewAs(m.Source, 0755, rootUID, rootGID); err != nil {
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if perr, ok := err.(*os.PathError); ok {
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if perr.Err != syscall.ENOTDIR {
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return "", errors.Wrapf(err, "error while creating mount source path '%s'", m.Source)
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}
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}
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}
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}
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if label.RelabelNeeded(m.Mode) {
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if err := label.Relabel(m.Source, mountLabel, label.IsShared(m.Mode)); err != nil {
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return "", errors.Wrapf(err, "error setting label on mount source '%s'", m.Source)
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}
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}
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return m.Source, nil
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}
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// Path returns the path of a volume in a mount point.
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func (m *MountPoint) Path() string {
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if m.Volume != nil {
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return m.Volume.Path()
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}
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return m.Source
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}
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// ParseVolumesFrom ensures that the supplied volumes-from is valid.
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func ParseVolumesFrom(spec string) (string, string, error) {
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if len(spec) == 0 {
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return "", "", fmt.Errorf("volumes-from specification cannot be an empty string")
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}
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specParts := strings.SplitN(spec, ":", 2)
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id := specParts[0]
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mode := "rw"
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if len(specParts) == 2 {
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mode = specParts[1]
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if !ValidMountMode(mode) {
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return "", "", errInvalidMode(mode)
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}
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// For now don't allow propagation properties while importing
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// volumes from data container. These volumes will inherit
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// the same propagation property as of the original volume
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// in data container. This probably can be relaxed in future.
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if HasPropagation(mode) {
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return "", "", errInvalidMode(mode)
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}
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// Do not allow copy modes on volumes-from
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if _, isSet := getCopyMode(mode); isSet {
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return "", "", errInvalidMode(mode)
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}
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}
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return id, mode, nil
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}
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// ParseMountRaw parses a raw volume spec (e.g. `-v /foo:/bar:shared`) into a
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// structured spec. Once the raw spec is parsed it relies on `ParseMountSpec` to
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// validate the spec and create a MountPoint
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func ParseMountRaw(raw, volumeDriver string) (*MountPoint, error) {
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arr, err := splitRawSpec(convertSlash(raw))
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if err != nil {
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return nil, err
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}
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var spec mounttypes.Mount
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var mode string
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switch len(arr) {
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case 1:
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// Just a destination path in the container
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spec.Target = arr[0]
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case 2:
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if ValidMountMode(arr[1]) {
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// Destination + Mode is not a valid volume - volumes
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// cannot include a mode. eg /foo:rw
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return nil, errInvalidSpec(raw)
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}
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// Host Source Path or Name + Destination
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spec.Source = arr[0]
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spec.Target = arr[1]
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case 3:
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// HostSourcePath+DestinationPath+Mode
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spec.Source = arr[0]
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spec.Target = arr[1]
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mode = arr[2]
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default:
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return nil, errInvalidSpec(raw)
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}
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if !ValidMountMode(mode) {
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return nil, errInvalidMode(mode)
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}
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if filepath.IsAbs(spec.Source) {
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spec.Type = mounttypes.TypeBind
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} else {
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spec.Type = mounttypes.TypeVolume
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}
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spec.ReadOnly = !ReadWrite(mode)
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// cannot assume that if a volume driver is passed in that we should set it
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if volumeDriver != "" && spec.Type == mounttypes.TypeVolume {
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spec.VolumeOptions = &mounttypes.VolumeOptions{
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DriverConfig: &mounttypes.Driver{Name: volumeDriver},
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}
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}
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if copyData, isSet := getCopyMode(mode); isSet {
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if spec.VolumeOptions == nil {
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spec.VolumeOptions = &mounttypes.VolumeOptions{}
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}
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spec.VolumeOptions.NoCopy = !copyData
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}
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if HasPropagation(mode) {
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spec.BindOptions = &mounttypes.BindOptions{
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Propagation: GetPropagation(mode),
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}
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}
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mp, err := ParseMountSpec(spec, platformRawValidationOpts...)
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if mp != nil {
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mp.Mode = mode
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}
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if err != nil {
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err = fmt.Errorf("%v: %v", errInvalidSpec(raw), err)
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}
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return mp, err
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}
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// ParseMountSpec reads a mount config, validates it, and configures a mountpoint from it.
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func ParseMountSpec(cfg mounttypes.Mount, options ...func(*validateOpts)) (*MountPoint, error) {
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if err := validateMountConfig(&cfg, options...); err != nil {
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return nil, err
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}
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mp := &MountPoint{
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RW: !cfg.ReadOnly,
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Destination: clean(convertSlash(cfg.Target)),
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Type: cfg.Type,
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Spec: cfg,
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}
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switch cfg.Type {
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case mounttypes.TypeVolume:
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if cfg.Source == "" {
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mp.Name = stringid.GenerateNonCryptoID()
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} else {
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mp.Name = cfg.Source
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}
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mp.CopyData = DefaultCopyMode
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mp.Driver = DefaultDriverName
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if cfg.VolumeOptions != nil {
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if cfg.VolumeOptions.DriverConfig != nil {
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mp.Driver = cfg.VolumeOptions.DriverConfig.Name
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}
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if cfg.VolumeOptions.NoCopy {
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mp.CopyData = false
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}
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}
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case mounttypes.TypeBind:
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mp.Source = clean(convertSlash(cfg.Source))
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if cfg.BindOptions != nil {
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if len(cfg.BindOptions.Propagation) > 0 {
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mp.Propagation = cfg.BindOptions.Propagation
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}
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}
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}
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return mp, nil
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}
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func errInvalidMode(mode string) error {
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return fmt.Errorf("invalid mode: %v", mode)
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}
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func errInvalidSpec(spec string) error {
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return fmt.Errorf("invalid volume specification: '%s'", spec)
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}
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