421 lines
10 KiB
Go
421 lines
10 KiB
Go
// Swift interface
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package swift
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import (
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"errors"
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"fmt"
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"io"
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"path"
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"regexp"
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"strings"
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"time"
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"github.com/ncw/rclone/fs"
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"github.com/ncw/swift"
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)
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// Register with Fs
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func init() {
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fs.Register(&fs.FsInfo{
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Name: "swift",
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NewFs: NewFs,
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Options: []fs.Option{{
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Name: "user",
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Help: "User name to log in.",
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}, {
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Name: "key",
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Help: "API key or password.",
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}, {
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Name: "auth",
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Help: "Authentication URL for server.",
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Examples: []fs.OptionExample{{
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Help: "Rackspace US",
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Value: "https://auth.api.rackspacecloud.com/v1.0",
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}, {
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Help: "Rackspace UK",
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Value: "https://lon.auth.api.rackspacecloud.com/v1.0",
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}, {
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Help: "Rackspace v2",
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Value: "https://identity.api.rackspacecloud.com/v2.0",
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}, {
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Help: "Memset Memstore UK",
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Value: "https://auth.storage.memset.com/v1.0",
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}, {
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Help: "Memset Memstore UK v2",
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Value: "https://auth.storage.memset.com/v2.0",
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}},
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},
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// snet = flag.Bool("swift-snet", false, "Use internal service network") // FIXME not implemented
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},
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})
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}
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// FsSwift represents a remote swift server
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type FsSwift struct {
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c swift.Connection // the connection to the swift server
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container string // the container we are working on
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root string // the path we are working on if any
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}
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// FsObjectSwift describes a swift object
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//
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// Will definitely have info but maybe not meta
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type FsObjectSwift struct {
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swift *FsSwift // what this object is part of
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remote string // The remote path
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info swift.Object // Info from the swift object if known
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meta *swift.Metadata // The object metadata if known
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}
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// ------------------------------------------------------------
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// String converts this FsSwift to a string
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func (f *FsSwift) String() string {
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if f.root == "" {
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return fmt.Sprintf("Swift container %s", f.container)
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}
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return fmt.Sprintf("Swift container %s path %s", f.container, f.root)
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}
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// Pattern to match a swift path
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var matcher = regexp.MustCompile(`^([^/]*)(.*)$`)
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// parseParse parses a swift 'url'
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func parsePath(path string) (container, directory string, err error) {
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parts := matcher.FindStringSubmatch(path)
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if parts == nil {
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err = fmt.Errorf("Couldn't find container in swift path %q", path)
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} else {
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container, directory = parts[1], parts[2]
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directory = strings.Trim(directory, "/")
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}
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return
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}
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// swiftConnection makes a connection to swift
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func swiftConnection(name string) (*swift.Connection, error) {
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userName := fs.ConfigFile.MustValue(name, "user")
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if userName == "" {
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return nil, errors.New("user not found")
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}
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apiKey := fs.ConfigFile.MustValue(name, "key")
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if apiKey == "" {
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return nil, errors.New("key not found")
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}
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authUrl := fs.ConfigFile.MustValue(name, "auth")
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if authUrl == "" {
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return nil, errors.New("auth not found")
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}
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c := &swift.Connection{
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UserName: userName,
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ApiKey: apiKey,
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AuthUrl: authUrl,
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}
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err := c.Authenticate()
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if err != nil {
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return nil, err
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}
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return c, nil
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}
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// NewFs contstructs an FsSwift from the path, container:path
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func NewFs(name, root string) (fs.Fs, error) {
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container, directory, err := parsePath(root)
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if err != nil {
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return nil, err
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}
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c, err := swiftConnection(name)
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if err != nil {
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return nil, err
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}
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f := &FsSwift{
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c: *c,
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container: container,
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root: directory,
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}
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if f.root != "" {
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f.root += "/"
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// Check to see if the object exists
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_, _, err = f.c.Object(container, directory)
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if err == nil {
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remote := path.Base(directory)
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f.root = path.Dir(directory)
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if f.root == "." {
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f.root = ""
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} else {
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f.root += "/"
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}
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obj := f.NewFsObject(remote)
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// return a Fs Limited to this object
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return fs.NewLimited(f, obj), nil
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}
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}
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return f, nil
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}
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// Return an FsObject from a path
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//
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// May return nil if an error occurred
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func (f *FsSwift) NewFsObjectWithInfo(remote string, info *swift.Object) fs.Object {
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fs := &FsObjectSwift{
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swift: f,
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remote: remote,
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}
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if info != nil {
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// Set info but not meta
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fs.info = *info
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} else {
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err := fs.readMetaData() // reads info and meta, returning an error
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if err != nil {
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// logged already FsDebug("Failed to read info: %s", err)
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return nil
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}
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}
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return fs
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}
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// Return an FsObject from a path
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//
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// May return nil if an error occurred
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func (f *FsSwift) NewFsObject(remote string) fs.Object {
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return f.NewFsObjectWithInfo(remote, nil)
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}
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// list the objects into the function supplied
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//
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// If directories is set it only sends directories
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func (f *FsSwift) list(directories bool, fn func(string, *swift.Object)) {
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// Options for ObjectsWalk
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opts := swift.ObjectsOpts{
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Prefix: f.root,
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Limit: 256,
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}
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if directories {
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opts.Delimiter = '/'
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}
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rootLength := len(f.root)
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err := f.c.ObjectsWalk(f.container, &opts, func(opts *swift.ObjectsOpts) (interface{}, error) {
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objects, err := f.c.Objects(f.container, opts)
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if err == nil {
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for i := range objects {
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object := &objects[i]
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// FIXME if there are no directories, swift gives back the files for some reason!
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if directories && !strings.HasSuffix(object.Name, "/") {
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continue
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}
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if !strings.HasPrefix(object.Name, f.root) {
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fs.Log(f, "Odd name received %q", object.Name)
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continue
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}
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remote := object.Name[rootLength:]
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fn(remote, object)
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}
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}
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return objects, err
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})
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if err != nil {
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fs.Stats.Error()
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fs.Log(f, "Couldn't read container %q: %s", f.container, err)
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}
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}
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// Walk the path returning a channel of FsObjects
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func (f *FsSwift) List() fs.ObjectsChan {
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out := make(fs.ObjectsChan, fs.Config.Checkers)
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if f.container == "" {
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// Return no objects at top level list
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close(out)
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fs.Stats.Error()
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fs.Log(f, "Can't list objects at root - choose a container using lsd")
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} else {
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// List the objects
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go func() {
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defer close(out)
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f.list(false, func(remote string, object *swift.Object) {
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if fs := f.NewFsObjectWithInfo(remote, object); fs != nil {
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out <- fs
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}
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})
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}()
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}
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return out
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}
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// Lists the containers
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func (f *FsSwift) ListDir() fs.DirChan {
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out := make(fs.DirChan, fs.Config.Checkers)
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if f.container == "" {
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// List the containers
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go func() {
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defer close(out)
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containers, err := f.c.ContainersAll(nil)
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if err != nil {
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fs.Stats.Error()
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fs.Log(f, "Couldn't list containers: %v", err)
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} else {
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for _, container := range containers {
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out <- &fs.Dir{
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Name: container.Name,
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Bytes: container.Bytes,
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Count: container.Count,
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}
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}
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}
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}()
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} else {
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// List the directories in the path in the container
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go func() {
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defer close(out)
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f.list(true, func(remote string, object *swift.Object) {
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out <- &fs.Dir{
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Name: remote,
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Bytes: object.Bytes,
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Count: 0,
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}
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})
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}()
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}
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return out
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}
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// Put the object into the container
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//
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// Copy the reader in to the new object which is returned
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//
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// The new object may have been created if an error is returned
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func (f *FsSwift) Put(in io.Reader, remote string, modTime time.Time, size int64) (fs.Object, error) {
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// Temporary FsObject under construction
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fs := &FsObjectSwift{swift: f, remote: remote}
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return fs, fs.Update(in, modTime, size)
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}
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// Mkdir creates the container if it doesn't exist
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func (f *FsSwift) Mkdir() error {
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return f.c.ContainerCreate(f.container, nil)
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}
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// Rmdir deletes the container
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//
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// Returns an error if it isn't empty
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func (f *FsSwift) Rmdir() error {
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return f.c.ContainerDelete(f.container)
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}
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// Return the precision
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func (fs *FsSwift) Precision() time.Duration {
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return time.Nanosecond
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}
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// ------------------------------------------------------------
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// Return the parent Fs
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func (o *FsObjectSwift) Fs() fs.Fs {
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return o.swift
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}
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// Return a string version
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func (o *FsObjectSwift) String() string {
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if o == nil {
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return "<nil>"
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}
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return o.remote
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}
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// Return the remote path
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func (o *FsObjectSwift) Remote() string {
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return o.remote
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}
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// Md5sum returns the Md5sum of an object returning a lowercase hex string
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func (o *FsObjectSwift) Md5sum() (string, error) {
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return strings.ToLower(o.info.Hash), nil
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}
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// Size returns the size of an object in bytes
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func (o *FsObjectSwift) Size() int64 {
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return o.info.Bytes
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}
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// readMetaData gets the metadata if it hasn't already been fetched
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//
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// it also sets the info
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func (o *FsObjectSwift) readMetaData() (err error) {
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if o.meta != nil {
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return nil
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}
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info, h, err := o.swift.c.Object(o.swift.container, o.swift.root+o.remote)
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if err != nil {
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fs.Debug(o, "Failed to read info: %s", err)
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return err
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}
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meta := h.ObjectMetadata()
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o.info = info
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o.meta = &meta
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return nil
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}
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// ModTime returns the modification time of the object
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//
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//
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// It attempts to read the objects mtime and if that isn't present the
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// LastModified returned in the http headers
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func (o *FsObjectSwift) ModTime() time.Time {
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err := o.readMetaData()
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if err != nil {
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// fs.Log(o, "Failed to read metadata: %s", err)
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return o.info.LastModified
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}
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modTime, err := o.meta.GetModTime()
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if err != nil {
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// fs.Log(o, "Failed to read mtime from object: %s", err)
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return o.info.LastModified
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}
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return modTime
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}
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// Sets the modification time of the local fs object
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func (o *FsObjectSwift) SetModTime(modTime time.Time) {
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err := o.readMetaData()
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if err != nil {
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fs.Stats.Error()
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fs.Log(o, "Failed to read metadata: %s", err)
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return
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}
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o.meta.SetModTime(modTime)
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err = o.swift.c.ObjectUpdate(o.swift.container, o.swift.root+o.remote, o.meta.ObjectHeaders())
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if err != nil {
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fs.Stats.Error()
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fs.Log(o, "Failed to update remote mtime: %s", err)
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}
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}
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// Is this object storable
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func (o *FsObjectSwift) Storable() bool {
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return true
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}
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// Open an object for read
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func (o *FsObjectSwift) Open() (in io.ReadCloser, err error) {
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in, _, err = o.swift.c.ObjectOpen(o.swift.container, o.swift.root+o.remote, true, nil)
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return
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}
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// Update the object with the contents of the io.Reader, modTime and size
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//
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// The new object may have been created if an error is returned
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func (o *FsObjectSwift) Update(in io.Reader, modTime time.Time, size int64) error {
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// Set the mtime
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m := swift.Metadata{}
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m.SetModTime(modTime)
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_, err := o.swift.c.ObjectPut(o.swift.container, o.swift.root+o.remote, in, true, "", "", m.ObjectHeaders())
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return err
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}
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// Remove an object
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func (o *FsObjectSwift) Remove() error {
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return o.swift.c.ObjectDelete(o.swift.container, o.swift.root+o.remote)
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}
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// Check the interfaces are satisfied
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var _ fs.Fs = &FsSwift{}
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var _ fs.Object = &FsObjectSwift{}
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