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Chris Lu 9b61289293 Remove the RDMA sidecar prototype and its mount client (#11119)
* rdma: drop the sidecar prototype

The Rust engine under it never touched a wire: rdma.rs fabricates pattern
bytes and the crate's default feature is mock-ucx, with real-ucx unimplemented
since the directory landed. Nothing builds it, no CI runs it, and its only
consumer is weed mount's RDMA client, removed next. Two 22MB binaries were
committed along with it.

Claude-Session: https://claude.ai/code/session_01X3zhqLYwQwEQCrRbuzQKvy

* mount: remove the RDMA client that spoke to the deleted sidecar

Its only server was the sidecar's HTTP API, and the path could never have
worked in production anyway: it served a single chunk per call, ignored the
buffer's chunk boundaries, and had no test. Removing it also removes the
per-handle cumulative-offset cache, which nothing else used.

The -rdma.* mount flags go with it. They defaulted to off and pointed at an
address no released build ever listened on.

Claude-Session: https://claude.ai/code/session_01X3zhqLYwQwEQCrRbuzQKvy
2026-09-02 23:44:06 -07:00

227 lines
7.5 KiB
Go

package mount
import (
"os"
"sync"
"sync/atomic"
"google.golang.org/protobuf/proto"
"github.com/seaweedfs/go-fuse/v2/fuse"
"github.com/seaweedfs/seaweedfs/weed/cluster"
"github.com/seaweedfs/seaweedfs/weed/filer"
"github.com/seaweedfs/seaweedfs/weed/glog"
"github.com/seaweedfs/seaweedfs/weed/pb/filer_pb"
"github.com/seaweedfs/seaweedfs/weed/util"
)
type FileHandleId uint64
var IsDebugFileReadWrite = false
type FileHandle struct {
fh FileHandleId
counter int64
entry *LockedEntry
entryLock sync.RWMutex
entryChunkGroup *filer.ChunkGroup
inode uint64
wfs *WFS
// cache file has been written to
dirtyMetadata bool
dirtyPages *PageWriter
reader *filer.ChunkReadAt
contentType string
asyncFlushPending bool // set in writebackCache mode to defer flush to Release
asyncFlushUid uint32 // saved uid for deferred metadata flush
asyncFlushGid uint32 // saved gid for deferred metadata flush
savedDir string // last known parent path if inode-to-path state is forgotten
savedName string // last known file name if inode-to-path state is forgotten
isDeleted bool
// deleteEpoch counts the times isDeleted was raised, all of them under the
// handle's flush lock. A caller that raised it and then found it had
// nothing to delete after all can tell its own mark from a later one.
deleteEpoch uint64
isRenamed bool // set by Rename before waiting for async flush; skips old-path metadata flush
// entryVersionTsNs is the filer log position the handle's entry reflects.
// State at or below it must not replace the entry — that rolls it back.
entryVersionTsNs atomic.Int64
// entryVersionSignature identifies the filer whose clock stamped
// entryVersionTsNs, when it came from an RPC fence. Positions from a
// different filer are not comparable, so an event that filer did not log
// is applied rather than fenced out. Zero when the version came from an
// event, whose ordering the subscription already provides.
entryVersionSignature atomic.Int32
// baseEntry snapshots the filer state last installed or acknowledged.
// Local writes move the live entry away from it, so "is this event new"
// must be judged here, not against the live entry. Always store a clone.
baseEntry atomic.Pointer[filer_pb.Entry]
// dlmLock holds the distributed lock for cross-mount write coordination.
// Non-nil only when -dlm is enabled and the file was opened for writing.
// Acquired in AcquireHandle, released in ReleaseHandle.
dlmLock *cluster.LiveLock
// remoteInstallMu serializes downloadRemoteEntry's install, which holds
// only the handle's shared lock and so races a second concurrent read.
remoteInstallMu sync.Mutex
// for debugging
mirrorFile *os.File
}
func newFileHandle(wfs *WFS, handleId FileHandleId, inode uint64, entry *filer_pb.Entry) *FileHandle {
fh := &FileHandle{
fh: handleId,
counter: 1,
inode: inode,
wfs: wfs,
}
// dirtyPages: newContinuousDirtyPages(file, writeOnly),
fh.dirtyPages = newPageWriter(fh, wfs.option.ChunkSizeLimit)
fh.entry = &LockedEntry{
Entry: entry,
}
if entry != nil {
fh.SetEntry(entry)
fh.baseEntry.Store(proto.Clone(entry).(*filer_pb.Entry))
}
if IsDebugFileReadWrite {
var err error
fh.mirrorFile, err = os.OpenFile("/tmp/sw/"+entry.Name, os.O_RDWR|os.O_CREATE, 0600)
if err != nil {
println("failed to create mirror:", err.Error())
}
}
return fh
}
func (fh *FileHandle) FullPath() util.FullPath {
if fp, status := fh.wfs.inodeToPath.GetPath(fh.inode); status == fuse.OK {
return fp
}
if fh.savedName != "" {
return util.FullPath(fh.savedDir).Child(fh.savedName)
}
return ""
}
func (fh *FileHandle) RememberPath(fullPath util.FullPath) {
if fullPath == "" {
return
}
fh.savedDir, fh.savedName = fullPath.DirAndName()
}
func (fh *FileHandle) GetEntry() *LockedEntry {
return fh.entry
}
func (fh *FileHandle) SetEntry(entry *filer_pb.Entry) {
if entry != nil {
fileSize := filer.FileSize(entry)
entry.Attributes.FileSize = fileSize
var resolveManifestErr error
fh.entryChunkGroup, resolveManifestErr = filer.NewChunkGroup(fh.wfs.LookupFn(), fh.wfs.chunkCache, entry.Chunks, fh.wfs.option.ConcurrentReaders, fh.wfs.CacheInvalidator())
if resolveManifestErr != nil {
glog.Warningf("failed to resolve manifest chunks in %+v", entry)
}
} else {
glog.Fatalf("setting file handle entry to nil")
}
fh.entry.SetEntry(entry)
}
// installAckedEntry installs filer-acknowledged state under the handle lock
// when it outranks the handle. A version never advances without its value:
// stamping alone would fence out the events carrying what the handle lacks.
// Dirty handles are skipped — local writes supersede the ack.
func (fh *FileHandle) installAckedEntry(entry *filer_pb.Entry, versionTsNs int64, signature int32) {
fhActiveLock := fh.wfs.fhLockTable.AcquireLock("installAckedEntry", fh.fh, util.ExclusiveLock)
defer fh.wfs.fhLockTable.ReleaseLock(fh.fh, fhActiveLock)
if versionTsNs == 0 || fh.dirtyMetadata || entry == fh.GetEntry().GetEntry() {
return
}
// Refuse only what is provably older. Two known, differing filer
// signatures mean the positions come from unrelated clocks and say
// nothing about each other; dropping the acknowledgment there would leave
// the handle holding the very state this mutation replaced. Unknown
// signatures still compare, as they did before.
handleSignature := fh.entryVersionSignature.Load()
provablyOtherClock := signature != 0 && handleSignature != 0 && signature != handleSignature
if !provablyOtherClock && versionTsNs <= fh.entryVersionTsNs.Load() {
return
}
fh.SetEntry(entry)
fh.setAuthoritativeBase(proto.Clone(entry).(*filer_pb.Entry))
fh.advanceEntryVersion(versionTsNs, signature)
}
// setAuthoritativeBase installs the base snapshot a local ack acknowledged.
func (fh *FileHandle) setAuthoritativeBase(base *filer_pb.Entry) {
fh.baseEntry.Store(base)
}
// advanceEntryVersion raises the entry version, never regresses it, and
// records the clock domain the new position belongs to: a filer signature for
// an RPC fence, zero for an event. The signature travels with the timestamp so
// the two never disagree. A zero position (an unversioned old filer) is a
// no-op, leaving the handle open to refreshes.
func (fh *FileHandle) advanceEntryVersion(tsNs int64, signature int32) {
if tsNs == 0 {
return
}
for {
current := fh.entryVersionTsNs.Load()
if tsNs <= current {
return
}
if fh.entryVersionTsNs.CompareAndSwap(current, tsNs) {
fh.entryVersionSignature.Store(signature)
return
}
}
}
func (fh *FileHandle) ResetDirtyPages() {
fh.dirtyPages.Destroy()
fh.dirtyPages = newPageWriter(fh, fh.wfs.option.ChunkSizeLimit)
fh.dirtyMetadata = false
fh.contentType = ""
}
func (fh *FileHandle) UpdateEntry(fn func(entry *filer_pb.Entry)) *filer_pb.Entry {
result := fh.entry.UpdateEntry(fn)
return result
}
func (fh *FileHandle) AddChunks(chunks []*filer_pb.FileChunk) {
fh.entry.AppendChunks(chunks)
}
func (fh *FileHandle) ReleaseHandle() {
// Release distributed lock before cleaning up, so other mounts can
// proceed as soon as this handle is done flushing.
if fh.dlmLock != nil {
fh.dlmLock.Stop()
fh.dlmLock = nil
glog.V(1).Infof("DLM lock released for inode %d", fh.inode)
}
fhActiveLock := fh.wfs.fhLockTable.AcquireLock("ReleaseHandle", fh.fh, util.ExclusiveLock)
defer fh.wfs.fhLockTable.ReleaseLock(fh.fh, fhActiveLock)
fh.dirtyPages.Destroy()
if IsDebugFileReadWrite {
fh.mirrorFile.Close()
}
}