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https://github.com/seaweedfs/seaweedfs.git
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With default_permissions (the mount default) the kernel enforces unix permission bits from the getattr/lookup attributes before it ever calls Open, Create, or Mknod. The mount was re-checking permissions in AcquireHandle and createRegularFile anyway, which duplicated the kernel's work and kept the supplementary-group lookup on the per-file hot path. Gate only the mode-bit access check on default_permissions being off, so a non-root copy does no permission work on open/create. createRegularFile still loads the parent to validate it exists, since the create RPC skips the filer-side parent check. With default_permissions off the mount remains the sole enforcer, so the full check still runs.
514 lines
18 KiB
Go
514 lines
18 KiB
Go
package mount
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import (
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"context"
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"fmt"
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"syscall"
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"time"
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"github.com/seaweedfs/go-fuse/v2/fuse"
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"google.golang.org/protobuf/proto"
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"github.com/seaweedfs/seaweedfs/weed/cluster/lock_manager"
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"github.com/seaweedfs/seaweedfs/weed/filer"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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"github.com/seaweedfs/seaweedfs/weed/pb/filer_pb"
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"github.com/seaweedfs/seaweedfs/weed/util"
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)
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/**
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* Create and open a file
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*
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* If the file does not exist, first create it with the specified
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* mode, and then open it.
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*
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* If this method is not implemented or under Linux kernel
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* versions earlier than 2.6.15, the mknod() and open() methods
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* will be called instead.
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*/
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func (wfs *WFS) Create(cancel <-chan struct{}, in *fuse.CreateIn, name string, out *fuse.CreateOut) (code fuse.Status) {
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var s fuse.Status
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if name, s = checkName(name); s != fuse.OK {
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return s
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}
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dirFullPath, code := wfs.inodeToPath.GetPath(in.NodeId)
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if code != fuse.OK {
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return code
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}
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entryFullPath := dirFullPath.Child(name)
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var inode uint64
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newEntry, code := wfs.maybeLoadEntry(entryFullPath)
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if code == fuse.OK {
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if newEntry == nil || newEntry.Attributes == nil {
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return fuse.EIO
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}
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if in.Flags&syscall.O_EXCL != 0 {
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glog.V(0).Infof("Create O_EXCL %s: already exists (uid=%d gid=%d mode=%o)",
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entryFullPath, newEntry.Attributes.Uid, newEntry.Attributes.Gid, newEntry.Attributes.FileMode)
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return fuse.Status(syscall.EEXIST)
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}
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inode = wfs.inodeToPath.Lookup(entryFullPath, newEntry.Attributes.Crtime, false, len(newEntry.HardLinkId) > 0, newEntry.Attributes.Inode, true)
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fileHandle, status := wfs.AcquireHandle(inode, in.Flags, in.Uid, in.Gid)
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if status != fuse.OK {
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return status
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}
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if in.Flags&syscall.O_TRUNC != 0 && in.Flags&fuse.O_ANYWRITE != 0 {
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if code = wfs.truncateEntry(entryFullPath, newEntry); code != fuse.OK {
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wfs.ReleaseHandle(fileHandle.fh)
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return code
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}
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newEntry = fileHandle.GetEntry().GetEntry()
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}
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wfs.outputPbEntry(&out.EntryOut, inode, newEntry)
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out.Fh = uint64(fileHandle.fh)
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out.OpenFlags = 0
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return fuse.OK
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}
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if code != fuse.ENOENT {
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return code
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}
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inode, newEntry, code = wfs.createRegularFile(dirFullPath, name, in.Mode, in.Uid, in.Gid, 0, true, true)
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if code == fuse.Status(syscall.EEXIST) && in.Flags&syscall.O_EXCL == 0 {
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// Race: another process created the file between our check and create.
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// Reopen the winner's entry.
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newEntry, code = wfs.maybeLoadEntry(entryFullPath)
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if code != fuse.OK {
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return code
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}
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if newEntry == nil || newEntry.Attributes == nil {
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return fuse.EIO
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}
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inode = wfs.inodeToPath.Lookup(entryFullPath, newEntry.Attributes.Crtime, false, len(newEntry.HardLinkId) > 0, newEntry.Attributes.Inode, true)
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fileHandle, status := wfs.AcquireHandle(inode, in.Flags, in.Uid, in.Gid)
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if status != fuse.OK {
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return status
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}
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if in.Flags&syscall.O_TRUNC != 0 && in.Flags&fuse.O_ANYWRITE != 0 {
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if code = wfs.truncateEntry(entryFullPath, newEntry); code != fuse.OK {
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wfs.ReleaseHandle(fileHandle.fh)
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return code
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}
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newEntry = fileHandle.GetEntry().GetEntry()
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}
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wfs.outputPbEntry(&out.EntryOut, inode, newEntry)
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out.Fh = uint64(fileHandle.fh)
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out.OpenFlags = 0
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return fuse.OK
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} else if code != fuse.OK {
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return code
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} else {
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inode = wfs.inodeToPath.Lookup(entryFullPath, newEntry.Attributes.Crtime, false, false, inode, true)
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}
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wfs.outputPbEntry(&out.EntryOut, inode, newEntry)
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// For deferred creates, bypass AcquireHandle (which calls maybeReadEntry
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// and would fail since the entry is not yet on the filer or in the meta cache).
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// We already have the entry from createRegularFile, so create the handle directly.
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fileHandle := wfs.fhMap.AcquireFileHandle(wfs, inode, newEntry)
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fileHandle.RememberPath(entryFullPath)
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// Mark dirty so the deferred filer create happens on Flush,
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// even if the file is closed without any writes.
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fileHandle.dirtyMetadata = true
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// Acquire DLM lock for new file creation (Create bypasses AcquireHandle
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// so we must acquire the lock here). Always lock on Create since file
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// creation is inherently a write operation.
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if wfs.lockClient != nil && fileHandle.dlmLock == nil {
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owner := fmt.Sprintf("mount-%d", wfs.signature)
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fileHandle.dlmLock = wfs.lockClient.NewBlockingLongLivedLock(
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string(entryFullPath), owner, lock_manager.LiveLockTTL,
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)
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glog.V(1).Infof("DLM lock acquired for new file %s", entryFullPath)
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}
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out.Fh = uint64(fileHandle.fh)
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out.OpenFlags = 0
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return fuse.OK
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}
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/** Create a file node
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*
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* This is called for creation of all non-directory, non-symlink
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* nodes. If the filesystem defines a create() method, then for
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* regular files that will be called instead.
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*/
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func (wfs *WFS) Mknod(cancel <-chan struct{}, in *fuse.MknodIn, name string, out *fuse.EntryOut) (code fuse.Status) {
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var s fuse.Status
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if name, s = checkName(name); s != fuse.OK {
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return s
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}
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dirFullPath, code := wfs.inodeToPath.GetPath(in.NodeId)
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if code != fuse.OK {
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return
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}
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inode, newEntry, code := wfs.createRegularFile(dirFullPath, name, in.Mode, in.Uid, in.Gid, in.Rdev, false, false)
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if code != fuse.OK {
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return code
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}
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// this is to increase nlookup counter
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entryFullPath := dirFullPath.Child(name)
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inode = wfs.inodeToPath.Lookup(entryFullPath, newEntry.Attributes.Crtime, false, false, inode, true)
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wfs.outputPbEntry(out, inode, newEntry)
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return fuse.OK
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}
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/** Remove a file */
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func (wfs *WFS) Unlink(cancel <-chan struct{}, header *fuse.InHeader, name string) (code fuse.Status) {
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// Sanitize before it reaches DeleteEntryRequest.Name; see sanitizeFuseName.
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name = sanitizeFuseName(name)
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dirFullPath, code := wfs.inodeToPath.GetPath(header.NodeId)
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if code != fuse.OK {
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if code == fuse.ENOENT {
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return fuse.OK
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}
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return code
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}
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entryFullPath := dirFullPath.Child(name)
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entry, code := wfs.maybeLoadEntry(entryFullPath)
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if code != fuse.OK {
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if code == fuse.ENOENT {
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return fuse.OK
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}
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return code
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}
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if wormEnforced, _ := wfs.wormEnforcedForEntry(entryFullPath, entry); wormEnforced {
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return fuse.EPERM
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}
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// For hard-linked files, serialize all concurrent mutations on the
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// same HardLinkId so the filer-side blob decrement and the mount-side
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// sibling cache sync are observed atomically by other unlinkers.
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// Without this, two concurrent unlinks on different links of the same
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// file both read the same pre-decrement counter and both stamp their
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// siblings to counter-1, leaving the cache one higher than the blob.
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// Re-load the entry under the lock so we see any sibling update a
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// prior holder just applied.
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if entry != nil && len(entry.HardLinkId) > 0 {
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hlKey := string(entry.HardLinkId)
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lock := wfs.hardLinkLockTable.AcquireLock("unlink", hlKey, util.ExclusiveLock)
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defer wfs.hardLinkLockTable.ReleaseLock(hlKey, lock)
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// If another thread unlinked the entry while we waited for the
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// lock, the file is already gone — return OK like the initial
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// maybeLoadEntry path above. Do not fall back to the stale
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// pre-lock snapshot: proceeding with its HardLinkCounter would
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// reintroduce the stale-base update the lock is meant to prevent.
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fresh, freshCode := wfs.maybeLoadEntry(entryFullPath)
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if freshCode == fuse.ENOENT {
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return fuse.OK
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}
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if freshCode != fuse.OK {
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return freshCode
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}
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entry = fresh
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}
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// POSIX: enforce sticky bit on the parent directory.
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if dirEntry, dirCode := wfs.maybeLoadEntry(dirFullPath); dirCode == fuse.OK && dirEntry != nil && dirEntry.Attributes != nil {
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targetUid := uint32(0)
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if entry != nil && entry.Attributes != nil {
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targetUid = entry.Attributes.Uid
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}
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if code := checkStickyBit(dirEntry.Attributes.FileMode, dirEntry.Attributes.Uid, targetUid, header.Uid); code != fuse.OK {
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return code
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}
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}
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// Before deleting from the filer, mark any draining async-flush handle
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// as deleted and wait for it to complete. Without this, the async flush
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// can race with the filer delete and recreate the just-unlinked entry
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// (the worker checks isDeleted, but it may have already passed that check
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// before Unlink sets the flag). By waiting here, any in-flight flush
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// finishes first; even if it recreated the entry, the filer delete below
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// will remove it again.
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if inode, found := wfs.inodeToPath.GetInode(entryFullPath); found {
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if fh, fhFound := wfs.fhMap.FindFileHandle(inode); fhFound {
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fh.isDeleted = true
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}
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wfs.waitForPendingAsyncFlush(inode)
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} else if entry != nil && entry.Attributes != nil && entry.Attributes.Inode != 0 {
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inodeFromEntry := entry.Attributes.Inode
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if fh, fhFound := wfs.fhMap.FindFileHandle(inodeFromEntry); fhFound {
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fh.isDeleted = true
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}
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wfs.waitForPendingAsyncFlush(inodeFromEntry)
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}
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// first, ensure the filer store can correctly delete
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glog.V(3).Infof("remove file: %v", entryFullPath)
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// Always let the filer decide whether to delete chunks based on its authoritative data.
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// The filer has the correct hard link count and will only delete chunks when appropriate.
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deleteReq := &filer_pb.DeleteEntryRequest{
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// See weedfs_dir_mkrm.go Mkdir for why Directory is sanitized.
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Directory: dirFullPath.Sanitized(),
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Name: name,
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IsDeleteData: true,
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Signatures: []int32{wfs.signature},
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}
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resp, err := wfs.streamDeleteEntry(context.Background(), deleteReq)
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if err != nil {
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glog.V(0).Infof("remove %s: %v", entryFullPath, err)
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return fuse.OK
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}
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var event *filer_pb.SubscribeMetadataResponse
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if resp != nil && resp.MetadataEvent != nil {
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event = resp.MetadataEvent
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} else {
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event = metadataDeleteEvent(string(dirFullPath), name, false)
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}
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if applyErr := wfs.applyLocalMetadataEvent(context.Background(), event); applyErr != nil {
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glog.Warningf("unlink %s: best-effort metadata apply failed: %v", entryFullPath, applyErr)
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wfs.inodeToPath.InvalidateChildrenCache(dirFullPath)
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}
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wfs.inodeToPath.TouchDirectory(dirFullPath)
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wfs.touchDirMtimeCtimeBest(dirFullPath)
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// For hard-linked files, the filer's DeleteHardLink decremented the
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// shared blob, but the sibling link entries in the local metacache
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// still carry the pre-unlink HardLinkCounter, and the kernel has
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// cached attrs on the shared inode. Resolve the shared inode before
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// removing the path from inodeToPath, then propagate the decrement
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// to every sibling cache entry and invalidate the kernel attr cache
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// so subsequent lstats on other links see the new nlink — pjdfstest
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// link/00.t asserts this after `unlink n0` leaves n1/n2 behind.
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isHardLink := entry != nil && entry.Attributes != nil && len(entry.HardLinkId) > 0 && entry.HardLinkCounter > 1
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var sharedInode uint64
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if isHardLink {
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sharedInode = entry.Attributes.Inode
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if sharedInode == 0 {
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if resolved, found := wfs.inodeToPath.GetInode(entryFullPath); found {
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sharedInode = resolved
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}
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}
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}
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wfs.inodeToPath.RemovePath(entryFullPath)
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if isHardLink && sharedInode != 0 {
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decremented := proto.Clone(entry).(*filer_pb.Entry)
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decremented.HardLinkCounter = entry.HardLinkCounter - 1
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now := time.Now()
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decremented.Attributes.Ctime = now.Unix()
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decremented.Attributes.CtimeNs = int32(now.Nanosecond())
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wfs.syncHardLinkSiblings(sharedInode, decremented, entryFullPath)
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}
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return fuse.OK
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}
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func (wfs *WFS) createRegularFile(dirFullPath util.FullPath, name string, mode uint32, uid, gid, rdev uint32, deferFilerCreate bool, skipExistenceCheck bool) (inode uint64, newEntry *filer_pb.Entry, code fuse.Status) {
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if wfs.IsOverQuotaWithUncommitted() {
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return 0, nil, fuse.Status(syscall.ENOSPC)
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}
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// Load the parent directory to validate it exists (the create RPC sets
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// SkipCheckParentDirectory, so this is the only parent check). With
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// default_permissions the kernel already verified write+search on it before
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// Create/Mknod, so skip only the mode-bit check and its group lookup.
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parentEntry, parentStatus := wfs.maybeLoadEntry(dirFullPath)
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if parentStatus != fuse.OK {
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return 0, nil, parentStatus
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}
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if parentEntry == nil || parentEntry.Attributes == nil {
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return 0, nil, fuse.EIO
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}
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if !wfs.option.DefaultPermissions {
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// Map parent dir uid/gid from filer-space to local-space so the
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// permission check compares like with like (caller uid/gid are local).
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parentUid, parentGid := parentEntry.Attributes.Uid, parentEntry.Attributes.Gid
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if wfs.option.UidGidMapper != nil {
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parentUid, parentGid = wfs.option.UidGidMapper.FilerToLocal(parentUid, parentGid)
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}
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if !hasAccess(uid, gid, parentUid, parentGid, parentEntry.Attributes.FileMode, fuse.W_OK|fuse.X_OK) {
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return 0, nil, fuse.Status(syscall.EACCES)
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}
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}
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entryFullPath := dirFullPath.Child(name)
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if !skipExistenceCheck {
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if _, status := wfs.maybeLoadEntry(entryFullPath); status == fuse.OK {
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return 0, nil, fuse.Status(syscall.EEXIST)
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} else if status != fuse.ENOENT {
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return 0, nil, status
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}
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}
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fileMode := toOsFileMode(mode)
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now := time.Now().Unix()
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inode = wfs.inodeToPath.AllocateInode(entryFullPath, now)
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newEntry = &filer_pb.Entry{
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Name: name,
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IsDirectory: false,
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Attributes: &filer_pb.FuseAttributes{
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Mtime: now,
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Crtime: now,
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Ctime: now,
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FileMode: uint32(fileMode),
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Uid: uid,
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Gid: gid,
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TtlSec: wfs.option.TtlSec,
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Rdev: rdev,
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Inode: inode,
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},
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}
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if deferFilerCreate || wfs.option.WritebackCache {
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// Insert a local placeholder into the metadata cache so that
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// maybeLoadEntry() can find the file immediately (e.g., duplicate-
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// create checks, stat, readdir).
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// We use InsertEntry directly instead of applyLocalMetadataEvent to avoid
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// triggering directory hot-threshold eviction that would wipe the entry.
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if insertErr := wfs.metaCache.InsertEntry(context.Background(), filer.FromPbEntry(string(dirFullPath), newEntry)); insertErr != nil {
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glog.Warningf("createFile %s: insert local entry: %v", entryFullPath, insertErr)
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}
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wfs.inodeToPath.TouchDirectory(dirFullPath)
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wfs.touchDirMtimeCtimeBest(dirFullPath)
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if deferFilerCreate {
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// Fully deferred: the caller (Create) will build a file handle
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// directly from newEntry. The actual filer entry is created by
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// flushMetadataToFiler on close.
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glog.V(3).Infof("createFile %s: deferred to flush", entryFullPath)
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} else {
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// Async create: Mknod with writeback caching. The node is
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// visible locally; fire the filer RPC in the background.
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wfs.asyncCreateEntry(dirFullPath, newEntry)
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glog.V(3).Infof("createFile %s: async create", entryFullPath)
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}
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return inode, newEntry, fuse.OK
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}
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wfs.mapPbIdFromLocalToFiler(newEntry)
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defer wfs.mapPbIdFromFilerToLocal(newEntry)
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request := &filer_pb.CreateEntryRequest{
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Directory: string(dirFullPath),
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Entry: newEntry,
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Signatures: []int32{wfs.signature},
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SkipCheckParentDirectory: true,
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}
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glog.V(1).Infof("createFile: %v", request)
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resp, err := wfs.streamCreateEntry(context.Background(), request)
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if err != nil {
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glog.V(0).Infof("createFile %s: %v", entryFullPath, err)
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} else {
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event := resp.GetMetadataEvent()
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if event == nil {
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event = metadataCreateEvent(string(dirFullPath), newEntry)
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}
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if applyErr := wfs.applyLocalMetadataEvent(context.Background(), event); applyErr != nil {
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glog.Warningf("createFile %s: best-effort metadata apply failed: %v", entryFullPath, applyErr)
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wfs.inodeToPath.InvalidateChildrenCache(dirFullPath)
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}
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wfs.inodeToPath.TouchDirectory(dirFullPath)
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wfs.touchDirMtimeCtimeBest(dirFullPath)
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}
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glog.V(3).Infof("createFile %s: %v", entryFullPath, err)
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if err != nil {
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return 0, nil, grpcErrorToFuseStatus(err)
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}
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return inode, newEntry, fuse.OK
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}
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// asyncCreateEntry sends a CreateEntry RPC to the filer in the background.
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// The entry is already in the local meta cache; this persists it to the filer.
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// Used by Mknod with writeback caching — the node is visible locally right away.
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//
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// If the filer RPC fails after retries, the local cache entry is removed so the
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// phantom file does not persist across cache invalidation or mount restart.
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func (wfs *WFS) asyncCreateEntry(dirFullPath util.FullPath, entry *filer_pb.Entry) {
|
|
// Clone so the goroutine has its own copy for uid/gid mapping.
|
|
requestEntry := proto.Clone(entry).(*filer_pb.Entry)
|
|
dir := string(dirFullPath)
|
|
entryPath := dirFullPath.Child(entry.Name)
|
|
go func() {
|
|
wfs.mapPbIdFromLocalToFiler(requestEntry)
|
|
request := &filer_pb.CreateEntryRequest{
|
|
Directory: dir,
|
|
Entry: requestEntry,
|
|
Signatures: []int32{wfs.signature},
|
|
SkipCheckParentDirectory: true,
|
|
}
|
|
err := retryMetadataFlush(context.Background(), func() error {
|
|
resp, createErr := wfs.streamCreateEntry(context.Background(), request)
|
|
if createErr != nil {
|
|
return createErr
|
|
}
|
|
event := resp.GetMetadataEvent()
|
|
if event == nil {
|
|
event = metadataCreateEvent(dir, requestEntry)
|
|
}
|
|
if applyErr := wfs.applyLocalMetadataEvent(context.Background(), event); applyErr != nil {
|
|
glog.Warningf("async createFile %s: metadata apply: %v", entryPath, applyErr)
|
|
wfs.inodeToPath.InvalidateChildrenCache(dirFullPath)
|
|
}
|
|
return nil
|
|
}, func(nextAttempt, totalAttempts int, backoff time.Duration, err error) {
|
|
glog.Warningf("async createFile %s: retrying (attempt %d/%d) after %v: %v",
|
|
entryPath, nextAttempt, totalAttempts, backoff, err)
|
|
})
|
|
if err != nil {
|
|
glog.Errorf("async createFile %s: failed after retries: %v — removing local entry", entryPath, err)
|
|
wfs.metaCache.DeleteEntry(context.Background(), entryPath)
|
|
wfs.inodeToPath.InvalidateChildrenCache(dirFullPath)
|
|
}
|
|
}()
|
|
}
|
|
|
|
func (wfs *WFS) truncateEntry(entryFullPath util.FullPath, entry *filer_pb.Entry) fuse.Status {
|
|
if entry == nil {
|
|
return fuse.EIO
|
|
}
|
|
if entry.Attributes == nil {
|
|
entry.Attributes = &filer_pb.FuseAttributes{}
|
|
}
|
|
|
|
entry.Content = nil
|
|
entry.Chunks = nil
|
|
entry.Attributes.FileSize = 0
|
|
truncNow := time.Now()
|
|
entry.Attributes.Mtime = truncNow.Unix()
|
|
entry.Attributes.MtimeNs = int32(truncNow.Nanosecond())
|
|
entry.Attributes.Ctime = truncNow.Unix()
|
|
entry.Attributes.CtimeNs = int32(truncNow.Nanosecond())
|
|
|
|
if code := wfs.saveEntry(entryFullPath, entry); code != fuse.OK {
|
|
return code
|
|
}
|
|
|
|
if inode, found := wfs.inodeToPath.GetInode(entryFullPath); found {
|
|
wfs.invalidateOpenMtimeCache(inode)
|
|
if fh, fhFound := wfs.fhMap.FindFileHandle(inode); fhFound {
|
|
fhActiveLock := fh.wfs.fhLockTable.AcquireLock("truncateEntry", fh.fh, util.ExclusiveLock)
|
|
fh.ResetDirtyPages()
|
|
fh.SetEntry(entry)
|
|
fh.wfs.fhLockTable.ReleaseLock(fh.fh, fhActiveLock)
|
|
}
|
|
}
|
|
|
|
return fuse.OK
|
|
}
|