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5de9278650
This change ensures we call the Shutdown method on backends when they drop out of the fs/cache and at program exit. Some backends implement the optional fs.Shutdowner interface. Until now, Shutdown is only checked and called, when a backend is wrapped (e.g. crypt, compress, ...). To have a general way to perform operations at the end of the backend lifecycle with proper error handling, we can call Shutdown at cache clear time. We add a finalize hook to the cache which will be called when values drop out of the cache. Previous discussion: https://forum.rclone.org/t/31336
175 lines
4.8 KiB
Go
175 lines
4.8 KiB
Go
// Package cache implements the Fs cache
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package cache
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import (
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"context"
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"runtime"
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"sync"
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"github.com/rclone/rclone/fs"
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"github.com/rclone/rclone/fs/filter"
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"github.com/rclone/rclone/lib/cache"
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)
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var (
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once sync.Once // creation
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c *cache.Cache
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mu sync.Mutex // mutex to protect remap
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remap = map[string]string{} // map user supplied names to canonical names
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)
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// Create the cache just once
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func createOnFirstUse() {
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once.Do(func() {
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ci := fs.GetConfig(context.Background())
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c = cache.New()
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c.SetExpireDuration(ci.FsCacheExpireDuration)
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c.SetExpireInterval(ci.FsCacheExpireInterval)
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c.SetFinalizer(func(value interface{}) {
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if s, ok := value.(fs.Shutdowner); ok {
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_ = fs.CountError(s.Shutdown(context.Background()))
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}
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})
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})
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}
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// Canonicalize looks up fsString in the mapping from user supplied
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// names to canonical names and return the canonical form
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func Canonicalize(fsString string) string {
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createOnFirstUse()
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mu.Lock()
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canonicalName, ok := remap[fsString]
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mu.Unlock()
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if !ok {
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return fsString
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}
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fs.Debugf(nil, "fs cache: switching user supplied name %q for canonical name %q", fsString, canonicalName)
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return canonicalName
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}
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// Put in a mapping from fsString => canonicalName if they are different
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func addMapping(fsString, canonicalName string) {
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if canonicalName == fsString {
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return
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}
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mu.Lock()
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remap[fsString] = canonicalName
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mu.Unlock()
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}
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// GetFn gets an fs.Fs named fsString either from the cache or creates
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// it afresh with the create function
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func GetFn(ctx context.Context, fsString string, create func(ctx context.Context, fsString string) (fs.Fs, error)) (f fs.Fs, err error) {
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createOnFirstUse()
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canonicalFsString := Canonicalize(fsString)
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created := false
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value, err := c.Get(canonicalFsString, func(canonicalFsString string) (f interface{}, ok bool, err error) {
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f, err = create(ctx, fsString) // always create the backend with the original non-canonicalised string
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ok = err == nil || err == fs.ErrorIsFile
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created = ok
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return f, ok, err
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})
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if err != nil && err != fs.ErrorIsFile {
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return nil, err
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}
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f = value.(fs.Fs)
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// Check we stored the Fs at the canonical name
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if created {
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canonicalName := fs.ConfigString(f)
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if canonicalName != canonicalFsString {
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// Note that if err == fs.ErrorIsFile at this moment
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// then we can't rename the remote as it will have the
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// wrong error status, we need to add a new one.
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if err == nil {
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fs.Debugf(nil, "fs cache: renaming cache item %q to be canonical %q", canonicalFsString, canonicalName)
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value, found := c.Rename(canonicalFsString, canonicalName)
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if found {
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f = value.(fs.Fs)
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}
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addMapping(canonicalFsString, canonicalName)
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} else {
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fs.Debugf(nil, "fs cache: adding new entry for parent of %q, %q", canonicalFsString, canonicalName)
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Put(canonicalName, f)
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}
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}
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}
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return f, err
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}
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// Pin f into the cache until Unpin is called
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func Pin(f fs.Fs) {
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createOnFirstUse()
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c.Pin(fs.ConfigString(f))
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}
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// PinUntilFinalized pins f into the cache until x is garbage collected
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//
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// This calls runtime.SetFinalizer on x so it shouldn't have a
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// finalizer already.
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func PinUntilFinalized(f fs.Fs, x interface{}) {
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Pin(f)
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runtime.SetFinalizer(x, func(_ interface{}) {
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Unpin(f)
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})
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}
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// Unpin f from the cache
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func Unpin(f fs.Fs) {
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createOnFirstUse()
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c.Unpin(fs.ConfigString(f))
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}
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// Get gets an fs.Fs named fsString either from the cache or creates it afresh
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func Get(ctx context.Context, fsString string) (f fs.Fs, err error) {
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// If we are making a long lived backend which lives longer
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// than this request, we want to disconnect it from the
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// current context and in particular any WithCancel contexts,
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// but we want to preserve the config embedded in the context.
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newCtx := context.Background()
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newCtx = fs.CopyConfig(newCtx, ctx)
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newCtx = filter.CopyConfig(newCtx, ctx)
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return GetFn(newCtx, fsString, fs.NewFs)
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}
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// GetArr gets []fs.Fs from []fsStrings either from the cache or creates it afresh
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func GetArr(ctx context.Context, fsStrings []string) (f []fs.Fs, err error) {
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var fArr []fs.Fs
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for _, fsString := range fsStrings {
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f1, err1 := GetFn(ctx, fsString, fs.NewFs)
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if err1 != nil {
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return fArr, err1
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}
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fArr = append(fArr, f1)
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}
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return fArr, nil
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}
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// Put puts an fs.Fs named fsString into the cache
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func Put(fsString string, f fs.Fs) {
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createOnFirstUse()
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canonicalName := fs.ConfigString(f)
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c.Put(canonicalName, f)
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addMapping(fsString, canonicalName)
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}
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// ClearConfig deletes all entries which were based on the config name passed in
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//
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// Returns number of entries deleted
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func ClearConfig(name string) (deleted int) {
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createOnFirstUse()
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return c.DeletePrefix(name + ":")
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}
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// Clear removes everything from the cache
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func Clear() {
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createOnFirstUse()
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c.Clear()
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}
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// Entries returns the number of entries in the cache
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func Entries() int {
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createOnFirstUse()
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return c.Entries()
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}
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