mirror of
https://github.com/rclone/rclone.git
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c789436580
This is a bucket based remote
625 lines
16 KiB
Go
625 lines
16 KiB
Go
// Package memory provides an interface to an in memory object storage system
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package memory
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import (
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"bytes"
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"context"
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"crypto/md5"
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"encoding/hex"
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"fmt"
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"io"
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"io/ioutil"
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"path"
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"strings"
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"sync"
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"time"
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"github.com/pkg/errors"
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"github.com/rclone/rclone/fs"
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"github.com/rclone/rclone/fs/config/configmap"
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"github.com/rclone/rclone/fs/config/configstruct"
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"github.com/rclone/rclone/fs/hash"
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"github.com/rclone/rclone/fs/walk"
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"github.com/rclone/rclone/lib/bucket"
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)
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var (
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hashType = hash.MD5
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// the object storage is persistent
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buckets = newBucketsInfo()
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)
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// Register with Fs
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func init() {
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fs.Register(&fs.RegInfo{
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Name: "memory",
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Description: "In memory object storage system.",
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NewFs: NewFs,
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Options: []fs.Option{},
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})
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}
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// Options defines the configuration for this backend
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type Options struct {
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}
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// Fs represents a remote memory server
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type Fs struct {
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name string // name of this remote
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root string // the path we are working on if any
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opt Options // parsed config options
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rootBucket string // bucket part of root (if any)
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rootDirectory string // directory part of root (if any)
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features *fs.Features // optional features
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}
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// bucketsInfo holds info about all the buckets
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type bucketsInfo struct {
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mu sync.RWMutex
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buckets map[string]*bucketInfo
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}
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func newBucketsInfo() *bucketsInfo {
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return &bucketsInfo{
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buckets: make(map[string]*bucketInfo, 16),
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}
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}
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// getBucket gets a names bucket or nil
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func (bi *bucketsInfo) getBucket(name string) (b *bucketInfo) {
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bi.mu.RLock()
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b = bi.buckets[name]
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bi.mu.RUnlock()
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return b
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}
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// makeBucket returns the bucket or makes it
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func (bi *bucketsInfo) makeBucket(name string) (b *bucketInfo) {
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bi.mu.Lock()
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defer bi.mu.Unlock()
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b = bi.buckets[name]
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if b != nil {
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return b
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}
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b = newBucketInfo()
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bi.buckets[name] = b
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return b
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}
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// deleteBucket deleted the bucket or returns an error
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func (bi *bucketsInfo) deleteBucket(name string) error {
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bi.mu.Lock()
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defer bi.mu.Unlock()
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b := bi.buckets[name]
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if b == nil {
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return fs.ErrorDirNotFound
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}
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if !b.isEmpty() {
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return fs.ErrorDirectoryNotEmpty
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}
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delete(bi.buckets, name)
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return nil
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}
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// getObjectData gets an object from (bucketName, bucketPath) or nil
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func (bi *bucketsInfo) getObjectData(bucketName, bucketPath string) (od *objectData) {
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b := bi.getBucket(bucketName)
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if b == nil {
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return nil
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}
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return b.getObjectData(bucketPath)
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}
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// updateObjectData updates an object from (bucketName, bucketPath)
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func (bi *bucketsInfo) updateObjectData(bucketName, bucketPath string, od *objectData) {
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b := bi.makeBucket(bucketName)
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b.mu.Lock()
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b.objects[bucketPath] = od
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b.mu.Unlock()
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}
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// removeObjectData removes an object from (bucketName, bucketPath) returning true if removed
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func (bi *bucketsInfo) removeObjectData(bucketName, bucketPath string) (removed bool) {
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b := bi.getBucket(bucketName)
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if b != nil {
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b.mu.Lock()
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od := b.objects[bucketPath]
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if od != nil {
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delete(b.objects, bucketPath)
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removed = true
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}
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b.mu.Unlock()
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}
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return removed
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}
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// bucketInfo holds info about a single bucket
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type bucketInfo struct {
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mu sync.RWMutex
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objects map[string]*objectData
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}
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func newBucketInfo() *bucketInfo {
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return &bucketInfo{
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objects: make(map[string]*objectData, 16),
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}
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}
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// getBucket gets a names bucket or nil
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func (bi *bucketInfo) getObjectData(name string) (od *objectData) {
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bi.mu.RLock()
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od = bi.objects[name]
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bi.mu.RUnlock()
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return od
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}
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// getBucket gets a names bucket or nil
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func (bi *bucketInfo) isEmpty() (empty bool) {
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bi.mu.RLock()
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empty = len(bi.objects) == 0
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bi.mu.RUnlock()
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return empty
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}
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// the object data and metadata
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type objectData struct {
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modTime time.Time
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hash string
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mimeType string
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data []byte
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}
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// Object describes a memory object
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type Object struct {
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fs *Fs // what this object is part of
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remote string // The remote path
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od *objectData // the object data
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}
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// ------------------------------------------------------------
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// Name of the remote (as passed into NewFs)
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func (f *Fs) Name() string {
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return f.name
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}
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// Root of the remote (as passed into NewFs)
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func (f *Fs) Root() string {
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return f.root
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}
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// String converts this Fs to a string
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func (f *Fs) String() string {
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return fmt.Sprintf("Memory root '%s'", f.root)
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}
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// Features returns the optional features of this Fs
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func (f *Fs) Features() *fs.Features {
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return f.features
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}
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// parsePath parses a remote 'url'
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func parsePath(path string) (root string) {
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root = strings.Trim(path, "/")
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return
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}
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// split returns bucket and bucketPath from the rootRelativePath
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// relative to f.root
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func (f *Fs) split(rootRelativePath string) (bucketName, bucketPath string) {
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return bucket.Split(path.Join(f.root, rootRelativePath))
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}
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// split returns bucket and bucketPath from the object
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func (o *Object) split() (bucket, bucketPath string) {
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return o.fs.split(o.remote)
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}
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// setRoot changes the root of the Fs
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func (f *Fs) setRoot(root string) {
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f.root = parsePath(root)
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f.rootBucket, f.rootDirectory = bucket.Split(f.root)
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}
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// NewFs contstructs an Fs from the path, bucket:path
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func NewFs(name, root string, m configmap.Mapper) (fs.Fs, error) {
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// Parse config into Options struct
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opt := new(Options)
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err := configstruct.Set(m, opt)
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if err != nil {
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return nil, err
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}
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root = strings.Trim(root, "/")
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f := &Fs{
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name: name,
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root: root,
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opt: *opt,
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}
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f.setRoot(root)
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f.features = (&fs.Features{
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ReadMimeType: true,
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WriteMimeType: true,
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BucketBased: true,
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BucketBasedRootOK: true,
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}).Fill(f)
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if f.rootBucket != "" && f.rootDirectory != "" {
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od := buckets.getObjectData(f.rootBucket, f.rootDirectory)
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if od != nil {
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newRoot := path.Dir(f.root)
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if newRoot == "." {
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newRoot = ""
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}
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f.setRoot(newRoot)
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// return an error with an fs which points to the parent
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err = fs.ErrorIsFile
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}
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}
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return f, err
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}
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// newObject makes an object from a remote and an objectData
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func (f *Fs) newObject(remote string, od *objectData) *Object {
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return &Object{fs: f, remote: remote, od: od}
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}
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// NewObject finds the Object at remote. If it can't be found
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// it returns the error fs.ErrorObjectNotFound.
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func (f *Fs) NewObject(ctx context.Context, remote string) (fs.Object, error) {
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bucket, bucketPath := f.split(remote)
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od := buckets.getObjectData(bucket, bucketPath)
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if od == nil {
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return nil, fs.ErrorObjectNotFound
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}
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return f.newObject(remote, od), nil
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}
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// listFn is called from list to handle an object.
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type listFn func(remote string, entry fs.DirEntry, isDirectory bool) error
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// list the buckets to fn
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func (f *Fs) list(ctx context.Context, bucket, directory, prefix string, addBucket bool, recurse bool, fn listFn) (err error) {
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if prefix != "" {
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prefix += "/"
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}
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if directory != "" {
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directory += "/"
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}
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b := buckets.getBucket(bucket)
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if b == nil {
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return fs.ErrorDirNotFound
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}
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b.mu.RLock()
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defer b.mu.RUnlock()
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dirs := make(map[string]struct{})
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for absPath, od := range b.objects {
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if strings.HasPrefix(absPath, directory) {
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remote := absPath[len(prefix):]
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if !recurse {
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localPath := absPath[len(directory):]
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slash := strings.IndexRune(localPath, '/')
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if slash >= 0 {
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// send a directory if have a slash
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dir := directory + localPath[:slash]
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if addBucket {
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dir = path.Join(bucket, dir)
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}
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_, found := dirs[dir]
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if !found {
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err = fn(dir, fs.NewDir(dir, time.Time{}), true)
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if err != nil {
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return err
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}
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dirs[dir] = struct{}{}
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}
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continue // don't send this file if not recursing
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}
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}
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// send an object
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if addBucket {
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remote = path.Join(bucket, remote)
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}
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err = fn(remote, f.newObject(remote, od), false)
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if err != nil {
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return err
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}
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}
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}
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return nil
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}
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// listDir lists the bucket to the entries
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func (f *Fs) listDir(ctx context.Context, bucket, directory, prefix string, addBucket bool) (entries fs.DirEntries, err error) {
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// List the objects and directories
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err = f.list(ctx, bucket, directory, prefix, addBucket, false, func(remote string, entry fs.DirEntry, isDirectory bool) error {
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entries = append(entries, entry)
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return nil
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})
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return entries, err
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}
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// listBuckets lists the buckets to entries
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func (f *Fs) listBuckets(ctx context.Context) (entries fs.DirEntries, err error) {
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buckets.mu.RLock()
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defer buckets.mu.RUnlock()
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for name := range buckets.buckets {
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entries = append(entries, fs.NewDir(name, time.Time{}))
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}
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return entries, nil
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}
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// List the objects and directories in dir into entries. The
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// entries can be returned in any order but should be for a
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// complete directory.
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//
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// dir should be "" to list the root, and should not have
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// trailing slashes.
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//
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// This should return ErrDirNotFound if the directory isn't
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// found.
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func (f *Fs) List(ctx context.Context, dir string) (entries fs.DirEntries, err error) {
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// defer fslog.Trace(dir, "")("entries = %q, err = %v", &entries, &err)
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bucket, directory := f.split(dir)
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if bucket == "" {
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if directory != "" {
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return nil, fs.ErrorListBucketRequired
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}
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return f.listBuckets(ctx)
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}
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return f.listDir(ctx, bucket, directory, f.rootDirectory, f.rootBucket == "")
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}
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// ListR lists the objects and directories of the Fs starting
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// from dir recursively into out.
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//
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// dir should be "" to start from the root, and should not
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// have trailing slashes.
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//
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// This should return ErrDirNotFound if the directory isn't
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// found.
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//
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// It should call callback for each tranche of entries read.
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// These need not be returned in any particular order. If
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// callback returns an error then the listing will stop
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// immediately.
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//
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// Don't implement this unless you have a more efficient way
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// of listing recursively that doing a directory traversal.
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func (f *Fs) ListR(ctx context.Context, dir string, callback fs.ListRCallback) (err error) {
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bucket, directory := f.split(dir)
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list := walk.NewListRHelper(callback)
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listR := func(bucket, directory, prefix string, addBucket bool) error {
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return f.list(ctx, bucket, directory, prefix, addBucket, true, func(remote string, entry fs.DirEntry, isDirectory bool) error {
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return list.Add(entry)
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})
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}
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if bucket == "" {
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entries, err := f.listBuckets(ctx)
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if err != nil {
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return err
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}
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for _, entry := range entries {
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err = list.Add(entry)
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if err != nil {
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return err
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}
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bucket := entry.Remote()
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err = listR(bucket, "", f.rootDirectory, true)
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if err != nil {
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return err
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}
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}
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} else {
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err = listR(bucket, directory, f.rootDirectory, f.rootBucket == "")
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if err != nil {
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return err
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}
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}
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return list.Flush()
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}
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// Put the object into the bucket
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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 *Fs) Put(ctx context.Context, in io.Reader, src fs.ObjectInfo, options ...fs.OpenOption) (fs.Object, error) {
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// Temporary Object under construction
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fs := &Object{
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fs: f,
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remote: src.Remote(),
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od: &objectData{
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modTime: src.ModTime(ctx),
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},
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}
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return fs, fs.Update(ctx, in, src, options...)
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}
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// PutStream uploads to the remote path with the modTime given of indeterminate size
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func (f *Fs) PutStream(ctx context.Context, in io.Reader, src fs.ObjectInfo, options ...fs.OpenOption) (fs.Object, error) {
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return f.Put(ctx, in, src, options...)
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}
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// Mkdir creates the bucket if it doesn't exist
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func (f *Fs) Mkdir(ctx context.Context, dir string) error {
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bucket, _ := f.split(dir)
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buckets.makeBucket(bucket)
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return nil
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}
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// Rmdir deletes the bucket if the fs is at the root
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//
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// Returns an error if it isn't empty
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func (f *Fs) Rmdir(ctx context.Context, dir string) error {
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bucket, directory := f.split(dir)
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if bucket == "" || directory != "" {
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return nil
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}
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return buckets.deleteBucket(bucket)
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}
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// Precision of the remote
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func (f *Fs) Precision() time.Duration {
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return time.Nanosecond
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}
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// Copy src to this remote using server side copy operations.
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//
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// This is stored with the remote path given
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//
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// It returns the destination Object and a possible error
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//
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// Will only be called if src.Fs().Name() == f.Name()
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//
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// If it isn't possible then return fs.ErrorCantCopy
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func (f *Fs) Copy(ctx context.Context, src fs.Object, remote string) (fs.Object, error) {
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dstBucket, dstPath := f.split(remote)
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_ = buckets.makeBucket(dstBucket)
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srcObj, ok := src.(*Object)
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if !ok {
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fs.Debugf(src, "Can't copy - not same remote type")
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return nil, fs.ErrorCantCopy
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}
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srcBucket, srcPath := srcObj.split()
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od := buckets.getObjectData(srcBucket, srcPath)
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if od == nil {
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return nil, fs.ErrorObjectNotFound
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}
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buckets.updateObjectData(dstBucket, dstPath, od)
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return f.NewObject(ctx, remote)
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}
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// Hashes returns the supported hash sets.
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func (f *Fs) Hashes() hash.Set {
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return hash.Set(hashType)
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}
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// ------------------------------------------------------------
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// Fs returns the parent Fs
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func (o *Object) Fs() fs.Info {
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return o.fs
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}
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// Return a string version
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func (o *Object) 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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// Remote returns the remote path
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func (o *Object) Remote() string {
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return o.remote
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}
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// Hash returns the hash of an object returning a lowercase hex string
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func (o *Object) Hash(ctx context.Context, t hash.Type) (string, error) {
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if t != hashType {
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return "", hash.ErrUnsupported
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}
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if o.od.hash == "" {
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sum := md5.Sum(o.od.data)
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o.od.hash = hex.EncodeToString(sum[:])
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}
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return o.od.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 *Object) Size() int64 {
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return int64(len(o.od.data))
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}
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// ModTime returns the modification time of the object
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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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//
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// SHA-1 will also be updated once the request has completed.
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func (o *Object) ModTime(ctx context.Context) (result time.Time) {
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return o.od.modTime
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}
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// SetModTime sets the modification time of the local fs object
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func (o *Object) SetModTime(ctx context.Context, modTime time.Time) error {
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o.od.modTime = modTime
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return nil
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}
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// Storable returns if this object is storable
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func (o *Object) Storable() bool {
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return true
|
|
}
|
|
|
|
// Open an object for read
|
|
func (o *Object) Open(ctx context.Context, options ...fs.OpenOption) (in io.ReadCloser, err error) {
|
|
var offset, limit int64 = 0, -1
|
|
for _, option := range options {
|
|
switch x := option.(type) {
|
|
case *fs.RangeOption:
|
|
offset, limit = x.Decode(int64(len(o.od.data)))
|
|
case *fs.SeekOption:
|
|
offset = x.Offset
|
|
default:
|
|
if option.Mandatory() {
|
|
fs.Logf(o, "Unsupported mandatory option: %v", option)
|
|
}
|
|
}
|
|
}
|
|
if offset > int64(len(o.od.data)) {
|
|
offset = int64(len(o.od.data))
|
|
}
|
|
data := o.od.data[offset:]
|
|
if limit >= 0 {
|
|
if limit > int64(len(data)) {
|
|
limit = int64(len(data))
|
|
}
|
|
data = data[:limit]
|
|
}
|
|
return ioutil.NopCloser(bytes.NewBuffer(data)), nil
|
|
}
|
|
|
|
// Update the object with the contents of the io.Reader, modTime and size
|
|
//
|
|
// The new object may have been created if an error is returned
|
|
func (o *Object) Update(ctx context.Context, in io.Reader, src fs.ObjectInfo, options ...fs.OpenOption) (err error) {
|
|
bucket, bucketPath := o.split()
|
|
data, err := ioutil.ReadAll(in)
|
|
if err != nil {
|
|
return errors.Wrap(err, "failed to update memory object")
|
|
}
|
|
o.od = &objectData{
|
|
data: data,
|
|
hash: "",
|
|
modTime: src.ModTime(ctx),
|
|
mimeType: fs.MimeType(ctx, o),
|
|
}
|
|
buckets.updateObjectData(bucket, bucketPath, o.od)
|
|
return nil
|
|
}
|
|
|
|
// Remove an object
|
|
func (o *Object) Remove(ctx context.Context) error {
|
|
bucket, bucketPath := o.split()
|
|
removed := buckets.removeObjectData(bucket, bucketPath)
|
|
if !removed {
|
|
return fs.ErrorObjectNotFound
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// MimeType of an Object if known, "" otherwise
|
|
func (o *Object) MimeType(ctx context.Context) string {
|
|
return o.od.mimeType
|
|
}
|
|
|
|
// Check the interfaces are satisfied
|
|
var (
|
|
_ fs.Fs = &Fs{}
|
|
_ fs.Copier = &Fs{}
|
|
_ fs.PutStreamer = &Fs{}
|
|
_ fs.ListRer = &Fs{}
|
|
_ fs.Object = &Object{}
|
|
_ fs.MimeTyper = &Object{}
|
|
)
|