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502b35c8f6
This regex is currently matching volumes that include a reserved word (ex. test-aux-volume) Signed-off-by: Robert Shade <robert.shade@gmail.com>
459 lines
14 KiB
Go
459 lines
14 KiB
Go
package mounts // import "github.com/docker/docker/volume/mounts"
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import (
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"errors"
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"fmt"
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"os"
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"regexp"
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"runtime"
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"strings"
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"github.com/docker/docker/api/types/mount"
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"github.com/docker/docker/pkg/stringid"
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)
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// NewWindowsParser creates a parser with Windows semantics.
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func NewWindowsParser() Parser {
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return &windowsParser{
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fi: defaultFileInfoProvider{},
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}
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}
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type windowsParser struct {
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fi fileInfoProvider
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}
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const (
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// Spec should be in the format [source:]destination[:mode]
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//
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// Examples: c:\foo bar:d:rw
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// c:\foo:d:\bar
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// myname:d:
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// d:\
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//
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// Explanation of this regex! Thanks @thaJeztah on IRC and gist for help. See
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// https://gist.github.com/thaJeztah/6185659e4978789fb2b2. A good place to
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// test is https://regex-golang.appspot.com/assets/html/index.html
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//
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// Useful link for referencing named capturing groups:
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// http://stackoverflow.com/questions/20750843/using-named-matches-from-go-regex
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//
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// There are three match groups: source, destination and mode.
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//
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// rxHostDir is the first option of a source
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rxHostDir = `(?:\\\\\?\\)?[a-z]:[\\/](?:[^\\/:*?"<>|\r\n]+[\\/]?)*`
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// rxName is the second option of a source
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rxName = `[^\\/:*?"<>|\r\n]+`
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// RXReservedNames are reserved names not possible on Windows
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rxReservedNames = `(con|prn|nul|aux|com[1-9]|lpt[1-9])`
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// rxPipe is a named path pipe (starts with `\\.\pipe\`, possibly with / instead of \)
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rxPipe = `[/\\]{2}.[/\\]pipe[/\\][^:*?"<>|\r\n]+`
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// rxSource is the combined possibilities for a source
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rxSource = `((?P<source>((` + rxHostDir + `)|(` + rxName + `)|(` + rxPipe + `))):)?`
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// Source. Can be either a host directory, a name, or omitted:
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// HostDir:
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// - Essentially using the folder solution from
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// https://www.safaribooksonline.com/library/view/regular-expressions-cookbook/9781449327453/ch08s18.html
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// but adding case insensitivity.
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// - Must be an absolute path such as c:\path
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// - Can include spaces such as `c:\program files`
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// - And then followed by a colon which is not in the capture group
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// - And can be optional
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// Name:
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// - Must not contain invalid NTFS filename characters (https://msdn.microsoft.com/en-us/library/windows/desktop/aa365247(v=vs.85).aspx)
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// - And then followed by a colon which is not in the capture group
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// - And can be optional
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// rxDestination is the regex expression for the mount destination
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rxDestination = `(?P<destination>((?:\\\\\?\\)?([a-z]):((?:[\\/][^\\/:*?"<>\r\n]+)*[\\/]?))|(` + rxPipe + `))`
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// rxMode is the regex expression for the mode of the mount
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// Mode (optional):
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// - Hopefully self explanatory in comparison to above regex's.
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// - Colon is not in the capture group
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rxMode = `(:(?P<mode>(?i)ro|rw))?`
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)
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var (
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volumeNameRegexp = regexp.MustCompile(`^` + rxName + `$`)
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reservedNameRegexp = regexp.MustCompile(`^` + rxReservedNames + `$`)
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hostDirRegexp = regexp.MustCompile(`^` + rxHostDir + `$`)
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mountDestinationRegexp = regexp.MustCompile(`^` + rxDestination + `$`)
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windowsSplitRawSpecRegexp = regexp.MustCompile(`^` + rxSource + rxDestination + rxMode + `$`)
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)
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type mountValidator func(mnt *mount.Mount) error
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func (p *windowsParser) splitRawSpec(raw string, splitRegexp *regexp.Regexp) ([]string, error) {
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match := splitRegexp.FindStringSubmatch(strings.ToLower(raw))
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if len(match) == 0 {
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return nil, errInvalidSpec(raw)
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}
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var split []string
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matchgroups := make(map[string]string)
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// Pull out the sub expressions from the named capture groups
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for i, name := range splitRegexp.SubexpNames() {
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matchgroups[name] = strings.ToLower(match[i])
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}
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if source, exists := matchgroups["source"]; exists {
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if source != "" {
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split = append(split, source)
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}
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}
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if destination, exists := matchgroups["destination"]; exists {
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if destination != "" {
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split = append(split, destination)
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}
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}
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if mode, exists := matchgroups["mode"]; exists {
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if mode != "" {
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split = append(split, mode)
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}
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}
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// Fix #26329. If the destination appears to be a file, and the source is null,
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// it may be because we've fallen through the possible naming regex and hit a
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// situation where the user intention was to map a file into a container through
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// a local volume, but this is not supported by the platform.
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if matchgroups["source"] == "" && matchgroups["destination"] != "" {
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if volumeNameRegexp.MatchString(matchgroups["destination"]) {
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if reservedNameRegexp.MatchString(matchgroups["destination"]) {
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return nil, fmt.Errorf("volume name %q cannot be a reserved word for Windows filenames", matchgroups["destination"])
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}
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} else {
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exists, isDir, _ := p.fi.fileInfo(matchgroups["destination"])
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if exists && !isDir {
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return nil, fmt.Errorf("file '%s' cannot be mapped. Only directories can be mapped on this platform", matchgroups["destination"])
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}
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}
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}
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return split, nil
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}
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func windowsValidMountMode(mode string) bool {
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if mode == "" {
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return true
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}
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// TODO should windows mounts produce an error if any mode was provided (they're a no-op on windows)
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return rwModes[strings.ToLower(mode)]
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}
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func windowsValidateNotRoot(p string) error {
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p = strings.ToLower(strings.Replace(p, `/`, `\`, -1))
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if p == "c:" || p == `c:\` {
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return fmt.Errorf("destination path cannot be `c:` or `c:\\`: %v", p)
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}
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return nil
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}
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var windowsValidators mountValidator = func(m *mount.Mount) error {
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if err := windowsValidateNotRoot(m.Target); err != nil {
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return err
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}
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if !mountDestinationRegexp.MatchString(strings.ToLower(m.Target)) {
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return fmt.Errorf("invalid mount path: '%s'", m.Target)
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}
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return nil
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}
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func windowsValidateAbsolute(p string) error {
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if !mountDestinationRegexp.MatchString(strings.ToLower(p)) {
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return fmt.Errorf("invalid mount path: '%s' mount path must be absolute", p)
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}
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return nil
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}
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func windowsDetectMountType(p string) mount.Type {
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if strings.HasPrefix(p, `\\.\pipe\`) {
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return mount.TypeNamedPipe
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} else if hostDirRegexp.MatchString(p) {
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return mount.TypeBind
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} else {
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return mount.TypeVolume
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}
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}
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func (p *windowsParser) ReadWrite(mode string) bool {
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return strings.ToLower(mode) != "ro"
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}
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// ValidateVolumeName checks a volume name in a platform specific manner.
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func (p *windowsParser) ValidateVolumeName(name string) error {
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if !volumeNameRegexp.MatchString(name) {
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return errors.New("invalid volume name")
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}
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if reservedNameRegexp.MatchString(name) {
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return fmt.Errorf("volume name %q cannot be a reserved word for Windows filenames", name)
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}
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return nil
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}
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func (p *windowsParser) ValidateMountConfig(mnt *mount.Mount) error {
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return p.validateMountConfigReg(mnt, windowsValidators)
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}
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type fileInfoProvider interface {
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fileInfo(path string) (exist, isDir bool, err error)
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}
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type defaultFileInfoProvider struct {
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}
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func (defaultFileInfoProvider) fileInfo(path string) (exist, isDir bool, err error) {
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fi, err := os.Stat(path)
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if err != nil {
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if !os.IsNotExist(err) {
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return false, false, err
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}
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return false, false, nil
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}
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return true, fi.IsDir(), nil
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}
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func (p *windowsParser) validateMountConfigReg(mnt *mount.Mount, additionalValidators ...mountValidator) error {
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if len(mnt.Target) == 0 {
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return &errMountConfig{mnt, errMissingField("Target")}
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}
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for _, v := range additionalValidators {
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if err := v(mnt); err != nil {
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return &errMountConfig{mnt, err}
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}
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}
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switch mnt.Type {
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case mount.TypeBind:
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if len(mnt.Source) == 0 {
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return &errMountConfig{mnt, errMissingField("Source")}
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}
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// Don't error out just because the propagation mode is not supported on the platform
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if opts := mnt.BindOptions; opts != nil {
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if len(opts.Propagation) > 0 {
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return &errMountConfig{mnt, fmt.Errorf("invalid propagation mode: %s", opts.Propagation)}
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}
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}
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if mnt.VolumeOptions != nil {
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return &errMountConfig{mnt, errExtraField("VolumeOptions")}
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}
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if err := windowsValidateAbsolute(mnt.Source); err != nil {
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return &errMountConfig{mnt, err}
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}
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exists, isdir, err := p.fi.fileInfo(mnt.Source)
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if err != nil {
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return &errMountConfig{mnt, err}
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}
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if !exists {
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return &errMountConfig{mnt, errBindSourceDoesNotExist(mnt.Source)}
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}
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if !isdir {
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return &errMountConfig{mnt, fmt.Errorf("source path must be a directory")}
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}
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case mount.TypeVolume:
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if mnt.BindOptions != nil {
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return &errMountConfig{mnt, errExtraField("BindOptions")}
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}
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if len(mnt.Source) == 0 && mnt.ReadOnly {
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return &errMountConfig{mnt, fmt.Errorf("must not set ReadOnly mode when using anonymous volumes")}
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}
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if len(mnt.Source) != 0 {
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if err := p.ValidateVolumeName(mnt.Source); err != nil {
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return &errMountConfig{mnt, err}
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}
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}
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case mount.TypeNamedPipe:
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if len(mnt.Source) == 0 {
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return &errMountConfig{mnt, errMissingField("Source")}
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}
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if mnt.BindOptions != nil {
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return &errMountConfig{mnt, errExtraField("BindOptions")}
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}
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if mnt.ReadOnly {
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return &errMountConfig{mnt, errExtraField("ReadOnly")}
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}
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if windowsDetectMountType(mnt.Source) != mount.TypeNamedPipe {
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return &errMountConfig{mnt, fmt.Errorf("'%s' is not a valid pipe path", mnt.Source)}
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}
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if windowsDetectMountType(mnt.Target) != mount.TypeNamedPipe {
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return &errMountConfig{mnt, fmt.Errorf("'%s' is not a valid pipe path", mnt.Target)}
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}
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default:
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return &errMountConfig{mnt, errors.New("mount type unknown")}
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}
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return nil
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}
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func (p *windowsParser) ParseMountRaw(raw, volumeDriver string) (*MountPoint, error) {
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arr, err := p.splitRawSpec(raw, windowsSplitRawSpecRegexp)
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if err != nil {
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return nil, err
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}
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return p.parseMount(arr, raw, volumeDriver, true, windowsValidators)
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}
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func (p *windowsParser) parseMount(arr []string, raw, volumeDriver string, convertTargetToBackslash bool, additionalValidators ...mountValidator) (*MountPoint, error) {
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var spec mount.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 windowsValidMountMode(arr[1]) {
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// Destination + Mode is not a valid volume - volumes
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// cannot include a mode. e.g. /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 = strings.Replace(arr[0], `/`, `\`, -1)
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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 = strings.Replace(arr[0], `/`, `\`, -1)
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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 convertTargetToBackslash {
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spec.Target = strings.Replace(spec.Target, `/`, `\`, -1)
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}
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if !windowsValidMountMode(mode) {
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return nil, errInvalidMode(mode)
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}
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spec.Type = windowsDetectMountType(spec.Source)
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spec.ReadOnly = !p.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 == mount.TypeVolume {
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spec.VolumeOptions = &mount.VolumeOptions{
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DriverConfig: &mount.Driver{Name: volumeDriver},
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}
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}
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if copyData, isSet := getCopyMode(mode, p.DefaultCopyMode()); isSet {
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if spec.VolumeOptions == nil {
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spec.VolumeOptions = &mount.VolumeOptions{}
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}
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spec.VolumeOptions.NoCopy = !copyData
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}
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mp, err := p.parseMountSpec(spec, convertTargetToBackslash, additionalValidators...)
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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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func (p *windowsParser) ParseMountSpec(cfg mount.Mount) (*MountPoint, error) {
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return p.parseMountSpec(cfg, true, windowsValidators)
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}
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func (p *windowsParser) parseMountSpec(cfg mount.Mount, convertTargetToBackslash bool, additionalValidators ...mountValidator) (*MountPoint, error) {
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if err := p.validateMountConfigReg(&cfg, additionalValidators...); 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: cfg.Target,
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Type: cfg.Type,
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Spec: cfg,
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}
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if convertTargetToBackslash {
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mp.Destination = strings.Replace(cfg.Target, `/`, `\`, -1)
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}
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switch cfg.Type {
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case mount.TypeVolume:
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if cfg.Source == "" {
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mp.Name = stringid.GenerateRandomID()
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} else {
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mp.Name = cfg.Source
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}
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mp.CopyData = p.DefaultCopyMode()
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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 mount.TypeBind:
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mp.Source = strings.Replace(cfg.Source, `/`, `\`, -1)
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case mount.TypeNamedPipe:
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mp.Source = strings.Replace(cfg.Source, `/`, `\`, -1)
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}
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// cleanup trailing `\` except for paths like `c:\`
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if len(mp.Source) > 3 && mp.Source[len(mp.Source)-1] == '\\' {
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mp.Source = mp.Source[:len(mp.Source)-1]
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}
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if len(mp.Destination) > 3 && mp.Destination[len(mp.Destination)-1] == '\\' {
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mp.Destination = mp.Destination[:len(mp.Destination)-1]
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}
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return mp, nil
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}
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func (p *windowsParser) 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 !windowsValidMountMode(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, p.DefaultCopyMode()); 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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func (p *windowsParser) DefaultPropagationMode() mount.Propagation {
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return ""
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}
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func (p *windowsParser) ConvertTmpfsOptions(opt *mount.TmpfsOptions, readOnly bool) (string, error) {
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return "", fmt.Errorf("%s does not support tmpfs", runtime.GOOS)
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}
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func (p *windowsParser) DefaultCopyMode() bool {
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return false
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}
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func (p *windowsParser) IsBackwardCompatible(m *MountPoint) bool {
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return false
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}
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func (p *windowsParser) ValidateTmpfsMountDestination(dest string) error {
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return errors.New("platform does not support tmpfs")
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}
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func (p *windowsParser) HasResource(m *MountPoint, absolutePath string) bool {
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return false
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}
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