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419 lines
13 KiB
Go
419 lines
13 KiB
Go
// This file implements operations.Copy
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//
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// This is probably the most important operation in rclone.
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package operations
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import (
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"context"
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"errors"
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"fmt"
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"hash/crc32"
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"io"
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"path"
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"strings"
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"time"
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"unicode/utf8"
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"github.com/rclone/rclone/fs"
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"github.com/rclone/rclone/fs/accounting"
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"github.com/rclone/rclone/fs/fserrors"
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"github.com/rclone/rclone/fs/hash"
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"github.com/rclone/rclone/lib/atexit"
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"github.com/rclone/rclone/lib/pacer"
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)
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// State of the copy
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type copy struct {
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f fs.Fs // destination fs.Fs
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dstFeatures *fs.Features // Features() for fs.Fs
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dst fs.Object // destination object to update, may be nil
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remote string // destination path, used if dst is nil
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src fs.Object // source object
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ci *fs.ConfigInfo // current config
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maxTries int // max number of tries to do the copy
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doUpdate bool // whether we are updating an existing file or not
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hashType hash.Type // common hash to use
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hashOption *fs.HashesOption // open option for the common hash
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tr *accounting.Transfer // accounting for the transfer
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inplace bool // set if we are updating inplace and not using a partial name
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remoteForCopy string // the name used for the transfer, either remote or remote+".partial"
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}
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// Used to remove a failed copy
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func (c *copy) removeFailedCopy(ctx context.Context, o fs.Object) {
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if o == nil {
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return
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}
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fs.Infof(o, "Removing failed copy")
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err := o.Remove(ctx)
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if err != nil {
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fs.Infof(o, "Failed to remove failed copy: %s", err)
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}
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}
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// Used to remove a failed partial copy
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func (c *copy) removeFailedPartialCopy(ctx context.Context, f fs.Fs, remote string) {
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o, err := f.NewObject(ctx, remote)
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if errors.Is(err, fs.ErrorObjectNotFound) {
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// Assume object has been deleted
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return
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}
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if err != nil {
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fs.Infof(remote, "Failed to remove failed partial copy: %s", err)
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return
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}
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c.removeFailedCopy(ctx, o)
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}
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// TruncateString s to n bytes.
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//
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// If s is valid UTF-8 then this may truncate to fewer than n bytes to
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// make the returned string also valid UTF-8.
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func TruncateString(s string, n int) string {
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truncated := s[:n]
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if !utf8.ValidString(s) {
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// If input string wasn't valid UTF-8 then just return the truncation
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return truncated
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}
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for len(truncated) > 0 {
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if utf8.ValidString(truncated) {
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return truncated
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}
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// Remove 1 byte until valid
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truncated = truncated[:len(truncated)-1]
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}
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return truncated
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}
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// Check to see if we should be using a partial name and return the name for the copy and the inplace flag
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func (c *copy) checkPartial(ctx context.Context) (remoteForCopy string, inplace bool, err error) {
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remoteForCopy = c.remote
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if c.ci.Inplace || c.dstFeatures.Move == nil || !c.dstFeatures.PartialUploads || strings.HasSuffix(c.remote, ".rclonelink") {
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return remoteForCopy, true, nil
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}
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if len(c.ci.PartialSuffix) > 16 {
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return remoteForCopy, true, fmt.Errorf("expecting length of --partial-suffix to be not greater than %d but got %d", 16, len(c.ci.PartialSuffix))
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}
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// Avoid making the leaf name longer if it's already lengthy to avoid
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// trouble with file name length limits.
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// generate a stable random suffix by hashing the fingerprint
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hash := crc32.ChecksumIEEE([]byte(fs.Fingerprint(ctx, c.src, true)))
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suffix := fmt.Sprintf(".%x%s", hash, c.ci.PartialSuffix)
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base := path.Base(remoteForCopy)
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if len(base) > 100 {
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remoteForCopy = TruncateString(remoteForCopy, len(remoteForCopy)-len(suffix)) + suffix
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} else {
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remoteForCopy += suffix
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}
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return remoteForCopy, false, nil
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}
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// Check to see if we have hit max transfer limits
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func (c *copy) checkLimits(ctx context.Context) (err error) {
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if c.ci.MaxTransfer < 0 {
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return nil
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}
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var bytesSoFar int64
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if c.ci.CutoffMode == fs.CutoffModeCautious {
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bytesSoFar = accounting.Stats(ctx).GetBytesWithPending() + c.src.Size()
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} else {
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bytesSoFar = accounting.Stats(ctx).GetBytes()
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}
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if bytesSoFar >= int64(c.ci.MaxTransfer) {
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if c.ci.CutoffMode == fs.CutoffModeHard {
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return accounting.ErrorMaxTransferLimitReachedFatal
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}
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return accounting.ErrorMaxTransferLimitReachedGraceful
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}
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return nil
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}
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// Server side copy c.src to (c.f, c.remoteForCopy) if possible or return fs.ErrorCantCopy if not
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func (c *copy) serverSideCopy(ctx context.Context) (actionTaken string, newDst fs.Object, err error) {
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doCopy := c.dstFeatures.Copy
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serverSideCopyOK := false
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if doCopy == nil {
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serverSideCopyOK = false
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} else if SameConfig(c.src.Fs(), c.f) {
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serverSideCopyOK = true
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} else if SameRemoteType(c.src.Fs(), c.f) {
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serverSideCopyOK = c.dstFeatures.ServerSideAcrossConfigs || c.ci.ServerSideAcrossConfigs
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}
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if !serverSideCopyOK {
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return actionTaken, nil, fs.ErrorCantCopy
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}
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in := c.tr.Account(ctx, nil) // account the transfer
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in.ServerSideTransferStart()
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newDst, err = doCopy(ctx, c.src, c.remoteForCopy)
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if err == nil {
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in.ServerSideCopyEnd(newDst.Size()) // account the bytes for the server-side transfer
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}
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_ = in.Close()
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if errors.Is(err, fs.ErrorCantCopy) {
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c.tr.Reset(ctx) // skip incomplete accounting - will be overwritten by the manual copy
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}
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actionTaken = "Copied (server-side copy)"
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return actionTaken, newDst, err
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}
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// Copy c.src to (c.f, c.remoteForCopy) using multiThreadCopy
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func (c *copy) multiThreadCopy(ctx context.Context, uploadOptions []fs.OpenOption) (actionTaken string, newDst fs.Object, err error) {
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newDst, err = multiThreadCopy(ctx, c.f, c.remoteForCopy, c.src, c.ci.MultiThreadStreams, c.tr, uploadOptions...)
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if c.doUpdate {
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actionTaken = "Multi-thread Copied (replaced existing)"
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} else {
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actionTaken = "Multi-thread Copied (new)"
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}
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return actionTaken, newDst, err
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}
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// Copy the stream from in to (c.f, c.remoteForCopy) and close it
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//
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// Use Rcat to handle both remotes supporting and not supporting PutStream.
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func (c *copy) rcat(ctx context.Context, in io.ReadCloser) (actionTaken string, newDst fs.Object, err error) {
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// Make any metadata to pass to rcat
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var meta fs.Metadata
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if c.ci.Metadata {
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meta, err = fs.GetMetadata(ctx, c.src)
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if err != nil {
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fs.Errorf(c.src, "Failed to read metadata: %v", err)
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}
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}
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// NB Rcat closes in0
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fsrc, ok := c.src.Fs().(fs.Fs)
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if !ok {
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fsrc = nil
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}
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newDst, err = rcatSrc(ctx, c.f, c.remoteForCopy, in, c.src.ModTime(ctx), meta, fsrc)
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if c.doUpdate {
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actionTaken = "Copied (Rcat, replaced existing)"
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} else {
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actionTaken = "Copied (Rcat, new)"
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}
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return actionTaken, newDst, err
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}
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// Copy the stream from in to (c.f, c.remoteForCopy) and close it
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func (c *copy) updateOrPut(ctx context.Context, in io.ReadCloser, uploadOptions []fs.OpenOption) (actionTaken string, newDst fs.Object, err error) {
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// account and buffer the transfer
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inAcc := c.tr.Account(ctx, in).WithBuffer()
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var wrappedSrc fs.ObjectInfo = c.src
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// We try to pass the original object if possible
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if c.src.Remote() != c.remoteForCopy {
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wrappedSrc = fs.NewOverrideRemote(c.src, c.remoteForCopy)
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}
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if c.doUpdate && c.inplace {
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err = c.dst.Update(ctx, inAcc, wrappedSrc, uploadOptions...)
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// Make sure newDst is c.dst since we updated it
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if err == nil {
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newDst = c.dst
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}
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} else {
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newDst, err = c.f.Put(ctx, inAcc, wrappedSrc, uploadOptions...)
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}
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closeErr := inAcc.Close()
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if err == nil {
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err = closeErr
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}
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if c.doUpdate {
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actionTaken = "Copied (replaced existing)"
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} else {
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actionTaken = "Copied (new)"
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}
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return actionTaken, newDst, err
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}
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// Do a manual copy by reading the bytes and writing them
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func (c *copy) manualCopy(ctx context.Context) (actionTaken string, newDst fs.Object, err error) {
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// Remove partial files on premature exit
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if !c.inplace {
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defer atexit.Unregister(atexit.Register(func() {
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ctx := context.Background()
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c.removeFailedPartialCopy(ctx, c.f, c.remoteForCopy)
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}))
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}
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// Options for the upload
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uploadOptions := []fs.OpenOption{c.hashOption}
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for _, option := range c.ci.UploadHeaders {
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uploadOptions = append(uploadOptions, option)
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}
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if c.ci.MetadataSet != nil {
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uploadOptions = append(uploadOptions, fs.MetadataOption(c.ci.MetadataSet))
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}
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// Options for the download
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downloadOptions := []fs.OpenOption{c.hashOption}
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for _, option := range c.ci.DownloadHeaders {
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downloadOptions = append(downloadOptions, option)
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}
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if doMultiThreadCopy(ctx, c.f, c.src) {
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return c.multiThreadCopy(ctx, uploadOptions)
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}
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var in io.ReadCloser
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in, err = Open(ctx, c.src, downloadOptions...)
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if err != nil {
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return actionTaken, nil, fmt.Errorf("failed to open source object: %w", err)
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}
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// Note that c.rcat and c.updateOrPut close in
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if c.src.Size() == -1 {
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return c.rcat(ctx, in)
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}
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return c.updateOrPut(ctx, in, uploadOptions)
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}
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// Verify the copy
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func (c *copy) verify(ctx context.Context, newDst fs.Object) (err error) {
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// Verify sizes are the same after transfer
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if sizeDiffers(ctx, c.src, newDst) {
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return fmt.Errorf("corrupted on transfer: sizes differ src(%s) %d vs dst(%s) %d", c.src.Fs(), c.src.Size(), newDst.Fs(), newDst.Size())
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}
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// Verify hashes are the same after transfer - ignoring blank hashes
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if c.hashType != hash.None {
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// checkHashes has logs and counts errors
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equal, _, srcSum, dstSum, _ := checkHashes(ctx, c.src, newDst, c.hashType)
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if !equal {
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return fmt.Errorf("corrupted on transfer: %v hashes differ src(%s) %q vs dst(%s) %q", c.hashType, c.src.Fs(), srcSum, newDst.Fs(), dstSum)
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}
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}
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return nil
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}
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// copy src object to dst or f if nil. If dst is nil then it uses
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// remote as the name of the new object.
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//
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// It returns the destination object if possible. Note that this may
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// be nil.
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func (c *copy) copy(ctx context.Context) (newDst fs.Object, err error) {
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var actionTaken string
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retry := true
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for tries := 0; retry && tries < c.maxTries; tries++ {
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// Check we haven't hit any accounting limits
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err = c.checkLimits(ctx)
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if err != nil {
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return nil, err
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}
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// Try server side copy
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actionTaken, newDst, err = c.serverSideCopy(ctx)
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// If can't server-side copy, do it manually
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if errors.Is(err, fs.ErrorCantCopy) {
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actionTaken, newDst, err = c.manualCopy(ctx)
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}
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// End if ctx is in error
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if fserrors.ContextError(ctx, &err) {
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break
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}
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// Retry if err returned a retry error
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retry = false
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if fserrors.IsRetryError(err) || fserrors.ShouldRetry(err) {
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retry = true
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} else if t, ok := pacer.IsRetryAfter(err); ok {
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fs.Debugf(c.src, "Sleeping for %v (as indicated by the server) to obey Retry-After error: %v", t, err)
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time.Sleep(t)
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retry = true
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}
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if retry {
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fs.Debugf(c.src, "Received error: %v - low level retry %d/%d", err, tries, c.maxTries)
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c.tr.Reset(ctx) // skip incomplete accounting - will be overwritten by retry
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continue
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}
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}
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if err != nil {
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err = fs.CountError(err)
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fs.Errorf(c.src, "Failed to copy: %v", err)
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if !c.inplace {
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c.removeFailedPartialCopy(ctx, c.f, c.remoteForCopy)
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}
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return newDst, err
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}
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// Verify the copy
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err = c.verify(ctx, newDst)
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if err != nil {
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fs.Errorf(newDst, "%v", err)
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err = fs.CountError(err)
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c.removeFailedCopy(ctx, newDst)
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return nil, err
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}
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// Move the copied file to its real destination.
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if !c.inplace && c.remoteForCopy != c.remote {
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movedNewDst, err := c.dstFeatures.Move(ctx, newDst, c.remote)
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if err != nil {
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fs.Errorf(newDst, "partial file rename failed: %v", err)
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err = fs.CountError(err)
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c.removeFailedCopy(ctx, newDst)
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return nil, err
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}
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fs.Debugf(newDst, "renamed to: %s", c.remote)
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newDst = movedNewDst
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}
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// Log what we have done
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if newDst != nil && c.src.String() != newDst.String() {
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actionTaken = fmt.Sprintf("%s to: %s", actionTaken, newDst.String())
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}
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fs.Infof(c.src, "%s%s", actionTaken, fs.LogValueHide("size", fs.SizeSuffix(c.src.Size())))
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return newDst, nil
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}
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// Copy src object to dst or f if nil. If dst is nil then it uses
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// remote as the name of the new object.
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//
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// It returns the destination object if possible. Note that this may
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// be nil.
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func Copy(ctx context.Context, f fs.Fs, dst fs.Object, remote string, src fs.Object) (newDst fs.Object, err error) {
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ci := fs.GetConfig(ctx)
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tr := accounting.Stats(ctx).NewTransfer(src, f)
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defer func() {
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tr.Done(ctx, err)
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}()
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if SkipDestructive(ctx, src, "copy") {
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in := tr.Account(ctx, nil)
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in.DryRun(src.Size())
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return newDst, nil
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}
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c := ©{
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f: f,
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dstFeatures: f.Features(),
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dst: dst,
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remote: remote,
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src: src,
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ci: ci,
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tr: tr,
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maxTries: ci.LowLevelRetries,
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doUpdate: dst != nil,
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}
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c.hashType, c.hashOption = CommonHash(ctx, f, src.Fs())
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if c.dst != nil {
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c.remote = c.dst.Remote()
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}
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// Are we using partials?
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//
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// If so set the flag and update the name we use for the copy
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c.remoteForCopy, c.inplace, err = c.checkPartial(ctx)
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if err != nil {
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return nil, err
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}
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// Do the copy now everything is set up
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return c.copy(ctx)
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}
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// CopyFile moves a single file possibly to a new name
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func CopyFile(ctx context.Context, fdst fs.Fs, fsrc fs.Fs, dstFileName string, srcFileName string) (err error) {
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return moveOrCopyFile(ctx, fdst, fsrc, dstFileName, srcFileName, true)
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}
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