Files
seaweedfs/weed/server/volume_grpc_copy.go
T
0ff7794c54 volume: compact an oversized .ecj at mount, safely (Rust + Go) (#11555)
* volume: compact an oversized .ecj at mount, safely (Rust + Go)

Restore the mount-time compaction dropped from #11408, Rust + Go parity.
A journal already bloated by repeated shard copies is folded down to the
id set it encodes.

- Trigger after load when file_records > max(threshold, 4x distinct),
  with a 1 MiB floor so small journals are never rewritten. The set is
  written to .ecj.compact.tmp + fsync, the handle dropped, renamed,
  the directory fsynced and the append handle reopened. A failure before
  the rename keeps the original journal and handle; a failure after it
  fails the mount.
- Go never compacts after a failed journal load; the set would be
  partial and the rewrite would drop the unread records.
- A per-path registry (ecj_registry.rs / ecj_registry.go) counts EcVolume
  holders and out-of-band writers of each .ecj. Compaction runs only
  when this volume is the sole holder and no copy is writing; holders
  and writers wait while one runs. This covers shared -dir.idx journals
  and cross-disk reconcile, where another EcVolume may hold the same
  journal.
- VolumeEcShardsCopy and EC index recovery register as writers around
  their .ecj append and partial-file cleanup.
- Under the reservation, re-check that the file on disk is still the
  inode and size that was loaded.
- Publish errors are classified where they happen; a failed rename plus
  a failed restore reports both errors.
- Compaction runs after the .vif / bitrot checks, so a refused mount
  leaves the journal untouched.
- The tmp is opened like other volume files, removed at mount if a crash
  left it, and listed in every EC index cleanup path.

Failure paths are tested through the real mount via injectable fs steps
(open_with / newEcVolumeWith), plus sibling holders, active copies,
changed-after-load, stale tmp cleanup, refused mounts and the Go
load-error guard.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>

* volume: fail the mount when the compacted .ecj's directory cannot be synced

The Rust mount synced the journal's directory after renaming the compacted
file over it through the crate's best-effort fsync_dir, which returns Ok
when the directory cannot be opened. A rename needs only write and search
permission, so on a directory without read permission the replacement was
published, never synced, and the mount went on taking deletes against it.

Sync through a helper that propagates the open error, as Go's
util.FsyncDir already does, so that case fails the mount like any other
post-rename sync failure.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>

* volume: test the no-compaction-after-failed-load rule through the Go mount

The test for it handed compactEcjAfterLoad an artificial error on a volume
that had loaded cleanly, so it would not notice NewEcVolume dropping the
real load error on the way to compaction.

Make the journal read one of the injectable ecjFsOps steps and fail it
inside the real mount, after the first chunk, on a journal whose last
entry is an id the first chunk does not hold. The mount must leave the
file byte for byte as it was; a clean remount then compacts and keeps
that id. The Rust mount fails outright on a load error, so it has no
equivalent path.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>

* volume: register ReceiveFile's .ecj writes with the journal registry

ReceiveFile refuses a mounted EC volume only once, when the info message
arrives, then creates the .ecj and streams chunks into it. A volume that
mounted on that journal mid-stream could find a bloated prefix, pass the
inode-and-size re-check and rename a compacted file over it; the rest of
the stream then went to the unlinked inode and was lost.

Register the path as a writer before the file is created, in both the Go
and Rust handlers, and hold it until the file is closed and any partial
copy removed, as the shard-copy and index-recovery appends already do.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>

* volume: skip .ecj compaction when a writer ran since the journal was loaded

Compaction checked only that no writer was active at the reservation, and
that the file was still the loaded inode at the loaded size. A ReceiveFile
truncates and refills the journal in place, so one that ran during the
mount's load, or after it, and finished before the reservation could leave
different ids at the same length; compaction then wrote the stale set over
them.

Give each path a write generation that every writer bumps as it starts. A
holder records it, and whether a writer was active, when it registers,
which is before it opens and loads the journal. It may compact only if no
writer was active then and the generation has not moved. Same rule in Go
and Rust; the journal read becomes an injectable step in Rust as it is in
Go, so both test the in-place rewrite through the real mount.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>

* volume server: match the ReadOnly(VolumeId) variant in write_volume_needles

#11543 matched VolumeError::ReadOnly as a unit variant in Store::write_volume_needles, and #11544 changed it to ReadOnly(VolumeId) in the same merge window. Each passed CI on its own, but master no longer compiles the Rust volume server. Carry the volume id through.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Co-authored-by: Chris Lu <chrislusf@users.noreply.github.com>
Co-authored-by: Chris Lu <chris.lu@gmail.com>
2026-10-03 09:08:19 +08:00

900 lines
34 KiB
Go

package weed_server
import (
"context"
"fmt"
"io"
"math"
"os"
"strings"
"time"
"github.com/seaweedfs/seaweedfs/weed/pb/master_pb"
"github.com/seaweedfs/seaweedfs/weed/storage/backend"
"github.com/seaweedfs/seaweedfs/weed/glog"
"github.com/seaweedfs/seaweedfs/weed/operation"
"github.com/seaweedfs/seaweedfs/weed/pb"
"github.com/seaweedfs/seaweedfs/weed/pb/volume_server_pb"
"github.com/seaweedfs/seaweedfs/weed/storage"
"github.com/seaweedfs/seaweedfs/weed/storage/erasure_coding"
"github.com/seaweedfs/seaweedfs/weed/storage/idx"
"github.com/seaweedfs/seaweedfs/weed/storage/needle"
"github.com/seaweedfs/seaweedfs/weed/storage/types"
"github.com/seaweedfs/seaweedfs/weed/util"
)
const BufferSizeLimit = 1024 * 1024 * 2
// VolumeCopy copy the .idx .dat .vif files, and mount the volume
func (vs *VolumeServer) VolumeCopy(req *volume_server_pb.VolumeCopyRequest, stream volume_server_pb.VolumeServer_VolumeCopyServer) error {
if err := vs.checkGrpcAdminAuth(stream.Context()); err != nil {
return err
}
if err := vs.CheckMaintenanceMode(); err != nil {
return err
}
if !vs.AllowUntrustedRemoteEndpoints {
if err := validateReplicaTarget(stream.Context(), req.SourceDataNode); err != nil {
return fmt.Errorf("invalid source data node %s: %w", req.SourceDataNode, err)
}
}
// A pre-existing local replica is NOT deleted up front. Deleting before the
// source is confirmed reachable destroys a healthy copy on a transient
// source outage (and, on retry, can lose the volume entirely). The delete is
// deferred until ReadVolumeFileStatus below proves the source holds the
// volume; readability alone is the gate (size/count comparisons invert after
// divergent vacuum/compaction and would block valid re-replication).
hasExistingVolume := vs.store.GetVolume(needle.VolumeId(req.VolumeId)) != nil
// the master will not start compaction for read-only volumes, so it is safe to just copy files directly
// copy .dat and .idx files
// read .idx .dat file size and timestamp
// send .idx file
// send .dat file
// confirm size and timestamp
var volFileInfoResp *volume_server_pb.ReadVolumeFileStatusResponse
var sourceVolumeStatus *volume_server_pb.VolumeStatusResponse
var sourceVolumeStatusAfterCopy *volume_server_pb.VolumeStatusResponse
var dataBaseFileName, indexBaseFileName, idxFileName, datFileName string
var hasRemoteDatFile bool
err := operation.WithVolumeServerClientOptions(true, pb.ServerAddress(req.SourceDataNode), func(client volume_server_pb.VolumeServerClient) error {
var err error
sourceVolumeStatus, err = client.VolumeStatus(stream.Context(), &volume_server_pb.VolumeStatusRequest{
VolumeId: req.VolumeId,
})
if err != nil {
glog.Warningf("failed to read source volume %d status before copy; skip record count validation: %v", req.VolumeId, err)
sourceVolumeStatus = nil
}
volFileInfoResp, err = client.ReadVolumeFileStatus(stream.Context(),
&volume_server_pb.ReadVolumeFileStatusRequest{
VolumeId: req.VolumeId,
})
if nil != err {
return fmt.Errorf("read volume file status failed, %w", err)
}
diskType := volFileInfoResp.DiskType
if req.DiskType != "" {
diskType = req.DiskType
}
hasRemoteDatFile = volFileInfoResp.VolumeInfo != nil && len(volFileInfoResp.VolumeInfo.Files) > 0
// a remote-backed volume only lands its .idx/.vif locally; the .dat stays in the tier
neededSpace := volFileInfoResp.DatFileSize
if hasRemoteDatFile {
neededSpace = volFileInfoResp.IdxFileSize
}
location := vs.store.FindFreeLocation(func(location *storage.DiskLocation) bool {
return location.DiskType == types.ToDiskType(diskType) &&
location.AvailableSpace.Load() > neededSpace
}, needle.VolumeId(req.VolumeId))
if location == nil {
return fmt.Errorf("%s %s", util.ErrVolumeNoSpaceLeft, types.ToDiskType(diskType).ReadableString())
}
// Source is reachable and a destination is reserved: only now is it
// safe to drop an existing local replica before overwriting its files.
if hasExistingVolume {
glog.V(0).Infof("volume %d already exists. deleting before copying from %s...", req.VolumeId, req.SourceDataNode)
// keep remote data: the inbound copy carries a .vif that may point at
// the same cloud-tier object the existing volume references.
if delErr := vs.store.DeleteVolume(needle.VolumeId(req.VolumeId), false, false, true); delErr != nil {
return fmt.Errorf("failed to delete existing volume %d: %v", req.VolumeId, delErr)
}
glog.V(0).Infof("deleted existing volume %d before copying.", req.VolumeId)
}
dataBaseFileName = storage.VolumeFileName(location.Directory, volFileInfoResp.Collection, int(req.VolumeId))
indexBaseFileName = storage.VolumeFileName(location.IdxDirectory, volFileInfoResp.Collection, int(req.VolumeId))
// The .note marks the copy as in-progress; a leftover note fails the
// volume load on restart, so a write failure must abort the copy.
if noteErr := util.WriteFile(dataBaseFileName+".note", []byte(fmt.Sprintf("copying from %s", req.SourceDataNode)), 0755); noteErr != nil {
err = noteErr
return fmt.Errorf("write .note for volume %d: %w", req.VolumeId, noteErr)
}
defer func() {
if err != nil {
os.Remove(dataBaseFileName + ".dat")
os.Remove(indexBaseFileName + ".idx")
os.Remove(dataBaseFileName + ".vif")
os.Remove(dataBaseFileName + ".note")
}
}()
var preallocateSize int64
if grpcErr := pb.WithMasterClient(context.Background(), false, vs.GetMaster(context.Background()), vs.grpcDialOption, false, func(client master_pb.SeaweedClient) error {
resp, err := client.GetMasterConfiguration(context.Background(), &master_pb.GetMasterConfigurationRequest{})
if err != nil {
return fmt.Errorf("get master %s configuration: %v", vs.GetMaster(context.Background()), err)
}
if resp.VolumePreallocate {
preallocateSize = int64(resp.VolumeSizeLimitMB) * (1 << 20)
}
return nil
}); grpcErr != nil {
glog.V(0).Infof("connect to %s: %v", vs.GetMaster(context.Background()), grpcErr)
}
if preallocateSize > 0 && !hasRemoteDatFile {
volumeFile := dataBaseFileName + ".dat"
_, err := backend.CreateVolumeFile(volumeFile, preallocateSize, 0)
if err != nil {
return fmt.Errorf("create volume file %s: %v", volumeFile, err)
}
}
// println("source:", volFileInfoResp.String())
copyResponse := &volume_server_pb.VolumeCopyResponse{}
reportInterval := int64(1024 * 1024 * 128)
nextReportTarget := reportInterval
var modifiedTsNs int64
var sendErr error
var ioBytePerSecond int64
if req.IoBytePerSecond <= 0 {
ioBytePerSecond = vs.maintenanceBytePerSecond
} else {
ioBytePerSecond = req.IoBytePerSecond
}
throttler := util.NewWriteThrottler(ioBytePerSecond)
if !hasRemoteDatFile {
if modifiedTsNs, err = vs.doCopyFileWithThrottler(client, false, req.Collection, req.VolumeId, volFileInfoResp.CompactionRevision, volFileInfoResp.DatFileSize, dataBaseFileName, ".dat", false, true, func(processed int64) bool {
if processed > nextReportTarget {
copyResponse.ProcessedBytes = processed
if sendErr = stream.Send(copyResponse); sendErr != nil {
return false
}
nextReportTarget = processed + reportInterval
}
return true
}, throttler); err != nil {
return err
}
if sendErr != nil {
return sendErr
}
if modifiedTsNs > 0 {
os.Chtimes(dataBaseFileName+".dat", time.Unix(0, modifiedTsNs), time.Unix(0, modifiedTsNs))
}
}
if modifiedTsNs, err = vs.doCopyFileWithThrottler(client, false, req.Collection, req.VolumeId, volFileInfoResp.CompactionRevision, volFileInfoResp.IdxFileSize, indexBaseFileName, ".idx", false, false, nil, throttler); err != nil {
return err
}
if modifiedTsNs > 0 {
os.Chtimes(indexBaseFileName+".idx", time.Unix(0, modifiedTsNs), time.Unix(0, modifiedTsNs))
}
if modifiedTsNs, err = vs.doCopyFileWithThrottler(client, false, req.Collection, req.VolumeId, volFileInfoResp.CompactionRevision, 1024*1024, dataBaseFileName, ".vif", false, true, nil, throttler); err != nil {
return err
}
if modifiedTsNs > 0 {
os.Chtimes(dataBaseFileName+".vif", time.Unix(0, modifiedTsNs), time.Unix(0, modifiedTsNs))
}
// A leftover .note fails the load on the next restart, so a removal
// failure must fail the copy rather than be silently swallowed.
if noteErr := os.Remove(dataBaseFileName + ".note"); noteErr != nil && !os.IsNotExist(noteErr) {
err = noteErr
return fmt.Errorf("remove .note for volume %d: %w", req.VolumeId, noteErr)
}
var statusErr error
sourceVolumeStatusAfterCopy, statusErr = client.VolumeStatus(stream.Context(), &volume_server_pb.VolumeStatusRequest{
VolumeId: req.VolumeId,
})
if statusErr != nil {
err = fmt.Errorf("read source volume %d status after copy failed: %w", req.VolumeId, statusErr)
return err
}
return nil
}, vs.grpcDialOption, vs.guardedGrpcDialOption(req.SourceDataNode))
if err != nil {
return err
}
if dataBaseFileName == "" {
return fmt.Errorf("not found volume %d file", req.VolumeId)
}
idxFileName = indexBaseFileName + ".idx"
datFileName = dataBaseFileName + ".dat"
defer func() {
if err != nil && dataBaseFileName != "" {
os.Remove(idxFileName)
os.Remove(datFileName)
os.Remove(dataBaseFileName + ".vif")
}
}()
if err = checkCopyFiles(volFileInfoResp, hasRemoteDatFile, idxFileName, datFileName); err != nil { // added by panyc16
return err
}
var lastAppendAtNs = volFileInfoResp.DatFileTimestampSeconds * uint64(time.Second)
if !hasRemoteDatFile {
if appendAtNs, appendErr := findLastAppendAtNsFromCopiedFiles(idxFileName, datFileName, needle.Version(volFileInfoResp.Version)); appendErr == nil && appendAtNs > 0 {
lastAppendAtNs = appendAtNs
} else if appendErr != nil {
glog.V(1).Infof("failed to find last append timestamp for volume %d: %v", req.VolumeId, appendErr)
}
}
shouldValidateCopyCounts := copyCountsStable(sourceVolumeStatus, sourceVolumeStatusAfterCopy)
if !shouldValidateCopyCounts {
glog.V(1).Infof("source volume %d changed during copy; skip record count validation", req.VolumeId)
}
// Load and validate the volume before announcing it to the master. A failed
// validation is unloaded by the store without ever making the replica
// routable.
err = vs.store.MountVolume(needle.VolumeId(req.VolumeId), &req.Collection, func(targetVolume *storage.Volume) error {
if !shouldValidateCopyCounts {
return nil
}
return checkCopyCounts(sourceVolumeStatusAfterCopy, targetVolume.FileCount(), targetVolume.DeletedCount())
})
if err != nil {
return fmt.Errorf("failed to mount or validate volume %d: %w", req.VolumeId, err)
}
if err = stream.Send(&volume_server_pb.VolumeCopyResponse{
LastAppendAtNs: lastAppendAtNs,
}); err != nil {
glog.Errorf("send response: %v", err)
}
return err
}
func (vs *VolumeServer) doCopyFile(client volume_server_pb.VolumeServerClient, isEcVolume bool, collection string, vid, compactRevision uint32, stopOffset uint64, baseFileName, ext string, isAppend, ignoreSourceFileNotFound bool, progressFn storage.ProgressFunc) (modifiedTsNs int64, err error) {
return vs.doCopyFileWithThrottler(client, isEcVolume, collection, vid, compactRevision, stopOffset, baseFileName, ext, isAppend, ignoreSourceFileNotFound, progressFn, util.NewWriteThrottler(vs.maintenanceBytePerSecond))
}
func (vs *VolumeServer) doCopyFileWithThrottler(client volume_server_pb.VolumeServerClient, isEcVolume bool, collection string, vid, compactRevision uint32, stopOffset uint64, baseFileName, ext string, isAppend, ignoreSourceFileNotFound bool, progressFn storage.ProgressFunc, throttler *util.WriteThrottler) (modifiedTsNs int64, err error) {
copyFileClient, err := client.CopyFile(context.Background(), &volume_server_pb.CopyFileRequest{
VolumeId: vid,
Ext: ext,
CompactionRevision: compactRevision,
StopOffset: stopOffset,
Collection: collection,
IsEcVolume: isEcVolume,
IgnoreSourceFileNotFound: ignoreSourceFileNotFound,
})
if err != nil {
return modifiedTsNs, fmt.Errorf("failed to start copying volume %d %s file: %v", vid, ext, err)
}
modifiedTsNs, err = writeToFile(copyFileClient, baseFileName+ext, throttler, isAppend, ignoreSourceFileNotFound, progressFn)
if err != nil {
return modifiedTsNs, fmt.Errorf("failed to copy %s file: %v", baseFileName+ext, err)
}
return modifiedTsNs, nil
}
// checkCopyFiles verifies the copied file sizes. Record counts are checked
// after the target volume is mounted, when the target needle map is available.
func checkCopyFiles(originFileInf *volume_server_pb.ReadVolumeFileStatusResponse, hasRemoteDatFile bool, idxFileName, datFileName string) error {
stat, err := os.Stat(idxFileName)
if err != nil {
// If the idx file doesn't exist but the expected size is 0, that's OK (empty volume)
if os.IsNotExist(err) && originFileInf.IdxFileSize == 0 {
// empty volume, idx file not needed
} else {
return fmt.Errorf("stat idx file %s failed: %v", idxFileName, err)
}
} else if originFileInf.IdxFileSize != uint64(stat.Size()) {
return fmt.Errorf("idx file %s size [%v] is not same as origin file size [%v]",
idxFileName, stat.Size(), originFileInf.IdxFileSize)
}
if hasRemoteDatFile {
return nil
}
stat, err = os.Stat(datFileName)
if err != nil {
return fmt.Errorf("get dat file info failed, %w", err)
}
if originFileInf.DatFileSize != uint64(stat.Size()) {
return fmt.Errorf("the dat file size [%v] is not same as origin file size [%v]",
stat.Size(), originFileInf.DatFileSize)
}
return nil
}
func checkCopyCounts(origin *volume_server_pb.VolumeStatusResponse, targetFileCount, targetDeletedCount uint64) error {
if origin.FileCount != targetFileCount {
return fmt.Errorf("target file count [%d] is not same as origin file count [%d]", targetFileCount, origin.FileCount)
}
if origin.FileDeletedCount != targetDeletedCount {
return fmt.Errorf("target deleted count [%d] is not same as origin deleted count [%d]", targetDeletedCount, origin.FileDeletedCount)
}
return nil
}
func copyCountsStable(before, after *volume_server_pb.VolumeStatusResponse) bool {
// A writable source may receive writes or deletions while its files are
// copied. In that case the before/after counts do not describe one stable
// snapshot, so strict target-count validation would report a false error.
return before != nil && after != nil &&
before.FileCount == after.FileCount &&
before.FileDeletedCount == after.FileDeletedCount
}
func findLastAppendAtNsFromCopiedFiles(idxFileName, datFileName string, version needle.Version) (uint64, error) {
if version < needle.Version3 {
return 0, nil
}
idxFile, err := os.Open(idxFileName)
if err != nil {
return 0, fmt.Errorf("open idx file %s: %w", idxFileName, err)
}
defer idxFile.Close()
fi, err := idxFile.Stat()
if err != nil {
return 0, fmt.Errorf("stat idx file %s: %w", idxFileName, err)
}
if fi.Size() == 0 {
return 0, nil
}
if fi.Size()%int64(types.NeedleMapEntrySize) != 0 {
return 0, fmt.Errorf("unexpected idx file %s size: %d", idxFileName, fi.Size())
}
buf := make([]byte, types.NeedleMapEntrySize)
if _, err := idxFile.ReadAt(buf, fi.Size()-int64(types.NeedleMapEntrySize)); err != nil {
return 0, fmt.Errorf("read idx file %s: %w", idxFileName, err)
}
_, offset, _ := idx.IdxFileEntry(buf)
if offset.IsZero() {
return 0, nil
}
datFile, err := os.Open(datFileName)
if err != nil {
return 0, fmt.Errorf("open dat file %s: %w", datFileName, err)
}
defer datFile.Close()
datBackend := backend.NewDiskFile(datFile)
n, _, _, err := needle.ReadNeedleHeader(datBackend, version, offset.ToActualOffset())
if err != nil {
return 0, fmt.Errorf("read needle header %s offset %d: %w", datFileName, offset.ToActualOffset(), err)
}
tailOffset := offset.ToActualOffset() + int64(types.NeedleHeaderSize) + int64(n.Size)
tail := make([]byte, needle.NeedleChecksumSize+types.TimestampSize)
readCount, readErr := datBackend.ReadAt(tail, tailOffset)
if readErr == io.EOF && readCount == len(tail) {
readErr = nil
}
if readErr != nil {
return 0, fmt.Errorf("read needle tail %s offset %d: %w", datFileName, tailOffset, readErr)
}
return util.BytesToUint64(tail[needle.NeedleChecksumSize : needle.NeedleChecksumSize+types.TimestampSize]), nil
}
func writeToFile(client volume_server_pb.VolumeServer_CopyFileClient, fileName string, wt *util.WriteThrottler, isAppend, ignoreSourceFileNotFound bool, progressFn storage.ProgressFunc) (modifiedTsNs int64, err error) {
glog.V(4).Infof("writing to %s", fileName)
// For an optional copy (ignoreSourceFileNotFound), stage into a temp sibling
// and atomically rename on success, so a source that lacks the file cannot
// truncate a valid pre-existing destination. Mandatory copies write in place.
writePath := fileName
stageThenCommit := ignoreSourceFileNotFound && !isAppend
if stageThenCommit {
writePath = fileName + ".copying"
}
flags := os.O_WRONLY | os.O_CREATE | os.O_TRUNC
if isAppend {
flags = os.O_WRONLY | os.O_CREATE
}
dst, err := os.OpenFile(writePath, flags, 0644)
if err != nil {
return modifiedTsNs, fmt.Errorf("open file %s: %w", writePath, err)
}
// Track the destination handle through a closer that runs at most once.
// On Windows os.Remove fails while the file is still open, so any path
// that wants to delete the file we just created must close the handle
// first. The deferred call here is the safety net for normal returns.
dstClosed := false
closeDst := func() {
if dstClosed {
return
}
dstClosed = true
_ = dst.Close()
}
defer closeDst()
// removeIncomplete deletes the partially-written file we just opened
// with O_TRUNC. Used on stream / write / cancellation errors so a
// caller (notably VolumeEcShardsCopy distributing .ecx) doesn't end
// up with a 0-byte stub that downstream code mistakes for a valid
// empty file. Skip in isAppend mode — the existing content is not
// ours to remove, and resumable appends rely on partial state.
removeIncomplete := func(reason string) {
if isAppend {
return
}
closeDst()
if removeErr := os.Remove(writePath); removeErr != nil && !os.IsNotExist(removeErr) {
glog.Warningf("failed to remove incomplete file %s after %s: %v", writePath, reason, removeErr)
} else if removeErr == nil {
glog.V(1).Infof("removed incomplete file %s after %s", writePath, reason)
}
}
var progressedBytes int64
for {
resp, receiveErr := client.Recv()
if receiveErr == io.EOF {
break
}
if resp != nil && resp.ModifiedTsNs != 0 {
modifiedTsNs = resp.ModifiedTsNs
}
if receiveErr != nil {
removeIncomplete("receive error")
return modifiedTsNs, fmt.Errorf("receiving %s: %w", fileName, receiveErr)
}
if _, writeErr := dst.Write(resp.FileContent); writeErr != nil {
removeIncomplete("write error")
return modifiedTsNs, fmt.Errorf("write file %s: %w", fileName, writeErr)
}
progressedBytes += int64(len(resp.FileContent))
if progressFn != nil {
if !progressFn(progressedBytes) {
removeIncomplete("progress cancelled")
return modifiedTsNs, fmt.Errorf("interrupted copy operation")
}
}
wt.MaybeSlowdown(int64(len(resp.FileContent)))
}
// If we never received a modifiedTsNs, it means the source file did not exist.
// Remove the empty file we created to avoid leaving corrupted empty files.
// Note: We check modifiedTsNs (not progressedBytes) because an empty source file
// is valid and should result in an empty destination file.
if modifiedTsNs == 0 && !isAppend {
closeDst()
if removeErr := os.Remove(writePath); removeErr != nil && !os.IsNotExist(removeErr) {
glog.V(1).Infof("failed to remove empty file %s: %v", writePath, removeErr)
} else if removeErr == nil {
glog.V(1).Infof("removed empty file %s (source file not found)", writePath)
}
return modifiedTsNs, nil
}
// Commit the staged temp into place.
if stageThenCommit {
closeDst()
if renameErr := os.Rename(writePath, fileName); renameErr != nil {
os.Remove(writePath)
return modifiedTsNs, fmt.Errorf("commit copied file %s: %w", fileName, renameErr)
}
}
return modifiedTsNs, nil
}
func (vs *VolumeServer) ReadVolumeFileStatus(ctx context.Context, req *volume_server_pb.ReadVolumeFileStatusRequest) (*volume_server_pb.ReadVolumeFileStatusResponse, error) {
resp := &volume_server_pb.ReadVolumeFileStatusResponse{}
v := vs.store.GetVolume(needle.VolumeId(req.VolumeId))
if v == nil {
return nil, fmt.Errorf("not found volume id %d", req.VolumeId)
}
resp.VolumeId = req.VolumeId
datSize, idxSize, modTime := v.FileStat()
resp.DatFileSize = datSize
resp.IdxFileSize = idxSize
resp.DatFileTimestampSeconds = uint64(modTime.Unix())
resp.IdxFileTimestampSeconds = uint64(modTime.Unix())
resp.FileCount = v.FileCount()
resp.CompactionRevision = uint32(v.CompactionRevision)
resp.Collection = v.Collection
resp.DiskType = string(v.DiskType())
resp.VolumeInfo = v.GetVolumeInfo()
resp.Version = uint32(v.Version())
return resp, nil
}
// checkVolumeFileExtension guards the client-supplied Ext that CopyFile and
// ReceiveFile turn into an on-disk path. Both RPCs are intentionally ungated
// for cluster-internal peers (see volume_grpc_admin_auth_coverage_test.go), so
// this is the only check standing between a peer request and the os.Open /
// os.Create target: without it an Ext like "/../../x" is joined onto the volume
// directory and, once path-cleaned, resolves outside it. A genuine extension is
// a leading dot followed by alphanumerics -- ".dat", ".idx", ".vif", ".ecx",
// ".ecj", ".ecsum", ".ec00".. -- and never contains a separator or "..".
func checkVolumeFileExtension(ext string) error {
if len(ext) < 2 || ext[0] != '.' {
return fmt.Errorf("invalid file extension %q", ext)
}
for _, r := range ext[1:] {
if r < '0' || (r > '9' && r < 'A') || (r > 'Z' && r < 'a') || r > 'z' {
return fmt.Errorf("invalid file extension %q", ext)
}
}
return nil
}
// checkVolumeCollection guards the client-supplied Collection, which CopyFile
// and ReceiveFile fold into a path component ("<collection>_<vid>"). An empty
// collection is the default; any other value must be a single path element so a
// collection like "../../x" cannot climb out of the volume directory once
// path-cleaned. Collection names are user-facing and may hold '.' or '-', so
// this rejects only separators and bare parent references rather than the
// stricter alphanumeric rule used for extensions.
func checkVolumeCollection(collection string) error {
if collection == "." || collection == ".." || strings.ContainsAny(collection, `/\`) {
return fmt.Errorf("invalid collection %q", collection)
}
return nil
}
// CopyFile client pulls the volume related file from the source server.
// if req.CompactionRevision != math.MaxUint32, it ensures the compact revision is as expected
// The copying still stop at req.StopOffset, but you can set it to math.MaxUint64 in order to read all data.
func (vs *VolumeServer) CopyFile(req *volume_server_pb.CopyFileRequest, stream volume_server_pb.VolumeServer_CopyFileServer) error {
if err := checkVolumeFileExtension(req.Ext); err != nil {
return err
}
if err := checkVolumeCollection(req.Collection); err != nil {
return err
}
var fileName string
if !req.IsEcVolume {
v := vs.store.GetVolume(needle.VolumeId(req.VolumeId))
if v == nil {
return fmt.Errorf("not found volume id %d", req.VolumeId)
}
if uint32(v.CompactionRevision) != req.CompactionRevision && req.CompactionRevision != math.MaxUint32 {
return fmt.Errorf("volume %d is compacted", req.VolumeId)
}
v.SyncToDisk()
fileName = v.FileName(req.Ext)
} else {
// Sync EC volume files to disk before copying to ensure deletions are visible
// This fixes issue #7751 where deleted files in encoded volumes were not
// properly marked as deleted when decoded.
if ecVolume, found := vs.store.FindEcVolume(needle.VolumeId(req.VolumeId)); found {
ecVolume.Sync()
}
baseFileName := erasure_coding.EcShardBaseFileName(req.Collection, int(req.VolumeId)) + req.Ext
for _, location := range vs.store.Locations {
tName := util.Join(location.Directory, baseFileName)
if util.FileExists(tName) {
fileName = tName
}
tName = util.Join(location.IdxDirectory, baseFileName)
if util.FileExists(tName) {
fileName = tName
}
}
if fileName == "" {
if req.IgnoreSourceFileNotFound {
return nil
}
return fmt.Errorf("CopyFile not found ec volume id %d", req.VolumeId)
}
}
bytesToRead := int64(req.StopOffset)
file, err := os.Open(fileName)
if err != nil {
if os.IsNotExist(err) {
// If file doesn't exist and we're asked to copy 0 bytes (empty file),
// or if IgnoreSourceFileNotFound is set, treat as success
if req.IgnoreSourceFileNotFound || req.StopOffset == 0 {
return nil
}
}
return err
}
defer file.Close()
fileInfo, err := file.Stat()
if err != nil {
return err
}
fileModTsNs := fileInfo.ModTime().UnixNano()
buffer := make([]byte, BufferSizeLimit)
for bytesToRead > 0 {
bytesread, err := file.Read(buffer)
// println(fileName, "read", bytesread, "bytes, with target", bytesToRead)
if err != nil {
if err != io.EOF {
return err
}
// println(fileName, "read", bytesread, "bytes, with target", bytesToRead, "err", err.Error())
break
}
if int64(bytesread) > bytesToRead {
bytesread = int(bytesToRead)
}
err = stream.Send(&volume_server_pb.CopyFileResponse{
FileContent: buffer[:bytesread],
ModifiedTsNs: fileModTsNs,
})
if err != nil {
// println("sending", bytesread, "bytes err", err.Error())
return err
}
fileModTsNs = 0 // only send once
bytesToRead -= int64(bytesread)
}
// If no data has been sent in the loop (e.g. for an empty file, or when stopOffset is 0),
// we still need to send the ModifiedTsNs so the client knows the source file exists.
// fileModTsNs is set to 0 after the first send, so if it's still non-zero,
// we haven't sent anything yet.
if fileModTsNs != 0 {
err = stream.Send(&volume_server_pb.CopyFileResponse{
ModifiedTsNs: fileModTsNs,
})
if err != nil {
return err
}
}
return nil
}
// diskHoldsEcShardFile reports whether dir contains any <vid>.ecNN shard file,
// so a decoded <vid>.dat is never staged beside a shard. Unlike FindEcVolume,
// it also catches shards present on disk but not mounted.
func diskHoldsEcShardFile(dir, collection string, vid needle.VolumeId) bool {
base := erasure_coding.EcShardFileName(collection, dir, int(vid))
for i := 0; i < erasure_coding.MaxShardCount; i++ {
if fi, err := os.Stat(base + erasure_coding.ToExt(i)); err == nil && !fi.IsDir() && fi.Size() > 0 {
return true
}
}
return false
}
// ReceiveFile receives a file stream from client and writes it to storage
func (vs *VolumeServer) ReceiveFile(stream volume_server_pb.VolumeServer_ReceiveFileServer) error {
if err := vs.CheckMaintenanceMode(); err != nil {
return err
}
var fileInfo *volume_server_pb.ReceiveFileInfo
var targetFile *os.File
var filePath string
var bytesWritten uint64
// Set while an EC .ecj is being received; released only after the file is
// closed and any partial copy removed.
var ecjWriteDone func()
defer func() {
if targetFile != nil {
targetFile.Close()
}
if ecjWriteDone != nil {
ecjWriteDone()
}
}()
for {
req, err := stream.Recv()
if err == io.EOF {
// Stream completed successfully
if targetFile != nil {
targetFile.Sync()
glog.V(1).Infof("Successfully received file %s (%d bytes)", filePath, bytesWritten)
}
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
BytesWritten: bytesWritten,
})
}
if err != nil {
// Clean up on error
if targetFile != nil {
targetFile.Close()
os.Remove(filePath)
}
glog.Errorf("Failed to receive stream: %v", err)
return fmt.Errorf("failed to receive stream: %v", err)
}
switch data := req.Data.(type) {
case *volume_server_pb.ReceiveFileRequest_Info:
// First message contains file info
fileInfo = data.Info
glog.V(1).Infof("ReceiveFile: volume %d, ext %s, collection %s, shard %d, size %d",
fileInfo.VolumeId, fileInfo.Ext, fileInfo.Collection, fileInfo.ShardId, fileInfo.FileSize)
if err := checkVolumeFileExtension(fileInfo.Ext); err != nil {
glog.Errorf("ReceiveFile: %v", err)
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: err.Error(),
})
}
if err := checkVolumeCollection(fileInfo.Collection); err != nil {
glog.Errorf("ReceiveFile: %v", err)
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: err.Error(),
})
}
if fileInfo.IsEcVolume {
// os.Create below truncates in place; a mounted EcVolume
// holds fds on the same inodes, so overwriting corrupts
// live readers.
if _, mounted := vs.store.FindEcVolume(needle.VolumeId(fileInfo.VolumeId)); mounted {
mountedDisks := vs.store.FindEcVolumeDiskIds(needle.VolumeId(fileInfo.VolumeId))
glog.Errorf("ReceiveFile: ec volume %d is mounted on disk_ids:%v; refusing overwrite for %s", fileInfo.VolumeId, mountedDisks, fileInfo.Ext)
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: fmt.Sprintf("ec volume %d is mounted on disk_ids:%v; unmount before ReceiveFile", fileInfo.VolumeId, mountedDisks),
})
}
// disk_id=0 means "unset" (protobuf default), so auto-select
// using the same primitive as VolumeEcShardsCopy: prefer a
// disk that has the EC volume mounted, then a disk that owns
// the .ecx on disk (the volume hasn't been mounted yet —
// relevant when shards stream in mid-rebuild before any
// mount has happened; see #9212), then any HDD, then any
// disk.
var targetLocation *storage.DiskLocation
if fileInfo.DiskId > 0 {
if fileInfo.DiskId >= uint32(len(vs.store.Locations)) {
glog.Errorf("ReceiveFile: invalid disk_id %d: only have %d disks", fileInfo.DiskId, len(vs.store.Locations))
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: fmt.Sprintf("invalid disk_id %d: only have %d disks", fileInfo.DiskId, len(vs.store.Locations)),
})
}
targetLocation = vs.store.Locations[fileInfo.DiskId]
} else {
// Pass the build's default data-shard count for the helper's
// free-slot maths; it's a parameter so custom-ratio builds
// (e.g. enterprise) can swap it without touching this file.
targetLocation = vs.store.FindEcShardTargetLocation(fileInfo.Collection, needle.VolumeId(fileInfo.VolumeId), erasure_coding.DataShardsCount)
}
if targetLocation == nil {
glog.Errorf("ReceiveFile: no storage location available")
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: "no storage location available",
})
}
// Create EC shard file path
baseFileName := erasure_coding.EcShardBaseFileName(fileInfo.Collection, int(fileInfo.VolumeId))
filePath = util.Join(targetLocation.Directory, baseFileName+fileInfo.Ext)
// The mounted check above runs once; a volume can still mount on
// this journal while the stream writes it. Registered as a writer
// before the file is created, that mount cannot compact the
// journal and leave the rest of the stream in an unlinked inode.
if fileInfo.Ext == ".ecj" && ecjWriteDone == nil {
ecjWriteDone = erasure_coding.BeginEcjWrite(filePath)
}
} else {
// Regular volume file
v := vs.store.GetVolume(needle.VolumeId(fileInfo.VolumeId))
if v == nil {
if fileInfo.DiskType == "" {
glog.Errorf("ReceiveFile: volume %d not found", fileInfo.VolumeId)
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: fmt.Sprintf("volume %d not found", fileInfo.VolumeId),
})
}
// Staged-new-volume mode (EC decode onto a clean peer): the
// volume does not exist here yet. Pick a free-slot disk location
// of the requested medium and stage the file as
// <base><ext>.copying, to be renamed into place and mounted by
// VolumeEcShardsToVolume(from_staged). .idx.copying/.vif.copying
// are not valid volume names, so the scanner never half-loads.
want := types.ToDiskType(fileInfo.DiskType)
stagedVid := needle.VolumeId(fileInfo.VolumeId)
loc := vs.store.FindFreeLocation(func(l *storage.DiskLocation) bool {
if l.DiskType != want {
return false
}
// Don't stage the decoded .dat onto a disk that holds a shard
// of this vid. Check the mounted map and the on-disk files, so
// an unmounted or orphan shard (on disk, absent from the map)
// is caught too.
if _, holds := l.FindEcVolume(stagedVid); holds {
return false
}
return !diskHoldsEcShardFile(l.Directory, fileInfo.Collection, stagedVid)
})
if loc == nil {
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: fmt.Sprintf("no %s disk location with a free slot for volume %d", fileInfo.DiskType, fileInfo.VolumeId),
})
}
filePath = storage.VolumeFileName(loc.Directory, fileInfo.Collection, int(fileInfo.VolumeId)) + fileInfo.Ext + ".copying"
} else {
filePath = v.FileName(fileInfo.Ext)
}
}
// Create target file
targetFile, err = os.Create(filePath)
if err != nil {
glog.Errorf("ReceiveFile: failed to create file %s: %v", filePath, err)
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: fmt.Sprintf("failed to create file: %v", err),
})
}
glog.V(1).Infof("ReceiveFile: created target file %s", filePath)
case *volume_server_pb.ReceiveFileRequest_FileContent:
// Subsequent messages contain file content
if targetFile == nil {
glog.Errorf("ReceiveFile: file info must be sent first")
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: "file info must be sent first",
})
}
n, err := targetFile.Write(data.FileContent)
if err != nil {
targetFile.Close()
os.Remove(filePath)
glog.Errorf("ReceiveFile: failed to write to file %s: %v", filePath, err)
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: fmt.Sprintf("failed to write file: %v", err),
})
}
bytesWritten += uint64(n)
glog.V(2).Infof("ReceiveFile: wrote %d bytes to %s (total: %d)", n, filePath, bytesWritten)
default:
glog.Errorf("ReceiveFile: unknown message type")
return stream.SendAndClose(&volume_server_pb.ReceiveFileResponse{
Error: "unknown message type",
})
}
}
}