Files
seaweedfs/weed/server/filer_grpc_server.go
T
Chris LuandGitHub a9cfbd8d3a s3: tear down the emptied .versions directory on last-version delete; drain existing residue (#10278)
* s3: routed last-version delete removes the emptied .versions directory

The routed versioned delete (routedDeleteSpecificVersion) repoints the
latest pointer and deletes the version file, but unlike the lock-path
fallback (updateLatestVersionAfterDeletion) it never tears down the
.versions/ directory it just emptied. The residue keeps the key's read
path in the self-heal rescan loop: every GET of the deleted key logs
event=surfaced plus a GetObject error until the background
EmptyFolderCleaner gets to the directory — at least two minutes away on
its delay queue, and possibly never (the queue is in-memory, bounded,
and gated on the bucket's allow-empty-folders policy). Veeam's lock
arbitration probes deleted lock keys continuously, so those windows are
always open and the log spam is chronic.

ObjectMutation DELETE gains remove_empty_parent: after the child delete,
the filer best-effort removes the parent directory in the same locked
transaction. Non-recursive on purpose — a concurrent write that lands a
new version fails the removal instead of being lost with it. The routed
last-version delete sets it on the version-file DELETE, matching the
lock-path fallback's contract.

Claude-Session: https://claude.ai/code/session_014mMYAHXZySkCCUfpRFNtSv

* s3: drain empty .versions residue on read heal and in s3.versions.audit

Directories already stranded by pre-teardown deletes (or dropped from
the EmptyFolderCleaner's bounded in-memory queue) previously re-entered
the self-heal rescan on every GET forever: the heal only cleared the
pointer and nothing ever removed the directory, and s3.versions.audit
counted the state as clean.

When the heal rescan finds no remaining version, remove the directory
outright (non-recursive, so orphan children still block and fall back to
the pointer clear) and log event=healed mode=empty_dir_removed; the next
GET takes the clean not-found path. The audit gains an empty category so
the residue is visible, and -heal removes such directories in bulk.

Claude-Session: https://claude.ai/code/session_014mMYAHXZySkCCUfpRFNtSv
2026-07-08 18:50:54 -07:00

855 lines
30 KiB
Go

package weed_server
import (
"bytes"
"context"
"errors"
"fmt"
"math"
"os"
"path/filepath"
"strconv"
"strings"
"time"
"github.com/seaweedfs/seaweedfs/weed/cluster"
"github.com/seaweedfs/seaweedfs/weed/filer"
"github.com/seaweedfs/seaweedfs/weed/glog"
"github.com/seaweedfs/seaweedfs/weed/operation"
"github.com/seaweedfs/seaweedfs/weed/pb"
"github.com/seaweedfs/seaweedfs/weed/pb/filer_pb"
"github.com/seaweedfs/seaweedfs/weed/pb/master_pb"
"github.com/seaweedfs/seaweedfs/weed/storage/needle"
"github.com/seaweedfs/seaweedfs/weed/util"
"github.com/seaweedfs/seaweedfs/weed/wdclient"
"google.golang.org/grpc/codes"
"google.golang.org/grpc/status"
)
func (fs *FilerServer) LookupDirectoryEntry(ctx context.Context, req *filer_pb.LookupDirectoryEntryRequest) (*filer_pb.LookupDirectoryEntryResponse, error) {
glog.V(4).InfofCtx(ctx, "LookupDirectoryEntry %s", filepath.Join(req.Directory, req.Name))
entry, err := fs.filer.FindEntry(ctx, util.JoinPath(req.Directory, req.Name))
if err == filer_pb.ErrNotFound {
return &filer_pb.LookupDirectoryEntryResponse{}, err
}
if err != nil {
glog.V(3).InfofCtx(ctx, "LookupDirectoryEntry %s: %+v, ", filepath.Join(req.Directory, req.Name), err)
return nil, err
}
return &filer_pb.LookupDirectoryEntryResponse{
Entry: entry.ToProtoEntry(),
}, nil
}
func (fs *FilerServer) ListEntries(req *filer_pb.ListEntriesRequest, stream filer_pb.SeaweedFiler_ListEntriesServer) (err error) {
glog.V(4).Infof("ListEntries %v", req)
limit := int(req.Limit)
if limit == 0 {
limit = fs.option.DirListingLimit
}
paginationLimit := filer.PaginationSize
if limit < paginationLimit {
paginationLimit = limit
}
lastFileName := req.StartFromFileName
includeLastFile := req.InclusiveStartFrom
snapshotTsNs := req.SnapshotTsNs
if snapshotTsNs == 0 {
snapshotTsNs = time.Now().UnixNano()
}
sentSnapshot := false
var listErr error
for limit > 0 {
var hasEntries bool
lastFileName, listErr = fs.filer.StreamListDirectoryEntries(stream.Context(), util.FullPath(req.Directory), lastFileName, includeLastFile, int64(paginationLimit), req.Prefix, "", "", func(entry *filer.Entry) (bool, error) {
hasEntries = true
resp := &filer_pb.ListEntriesResponse{
Entry: entry.ToProtoEntry(),
}
if !sentSnapshot {
resp.SnapshotTsNs = snapshotTsNs
sentSnapshot = true
}
if err = stream.Send(resp); err != nil {
return false, err
}
limit--
if limit == 0 {
return false, nil
}
return true, nil
})
if listErr != nil {
return listErr
}
if err != nil {
return err
}
if !hasEntries {
break
}
includeLastFile = false
}
// For empty directories we intentionally do NOT send a snapshot-only
// response (Entry == nil). Many consumers (Java FilerClient, S3 listing,
// etc.) treat any received response as an entry. The Go client-side
// DoSeaweedListWithSnapshot generates a client-side cutoff when the
// server sends no snapshot, so snapshot consistency is preserved
// without a server-side send.
return nil
}
func (fs *FilerServer) LookupVolume(ctx context.Context, req *filer_pb.LookupVolumeRequest) (*filer_pb.LookupVolumeResponse, error) {
resp := &filer_pb.LookupVolumeResponse{
LocationsMap: make(map[string]*filer_pb.Locations),
}
// Use master client's lookup with fallback - it handles cache and master query
vidLocations, err := fs.filer.MasterClient.LookupVolumeIdsWithFallback(ctx, req.VolumeIds)
// Convert wdclient.Location to filer_pb.Location
// Return partial results even if there was an error
for vidString, locations := range vidLocations {
resp.LocationsMap[vidString] = &filer_pb.Locations{
Locations: wdclientLocationsToPb(locations),
}
}
return resp, err
}
func wdclientLocationsToPb(locations []wdclient.Location) []*filer_pb.Location {
locs := make([]*filer_pb.Location, 0, len(locations))
for _, loc := range locations {
locs = append(locs, &filer_pb.Location{
Url: loc.Url,
PublicUrl: loc.PublicUrl,
GrpcPort: uint32(loc.GrpcPort),
DataCenter: loc.DataCenter,
})
}
return locs
}
func (fs *FilerServer) lookupFileId(ctx context.Context, fileId string) (targetUrls []string, err error) {
fid, err := needle.ParseFileIdFromString(fileId)
if err != nil {
return nil, err
}
locations, found := fs.filer.MasterClient.GetLocations(uint32(fid.VolumeId))
if !found || len(locations) == 0 {
return nil, fmt.Errorf("not found volume %d in %s", fid.VolumeId, fileId)
}
for _, loc := range locations {
targetUrls = append(targetUrls, fmt.Sprintf("http://%s/%s", loc.Url, fileId))
}
return
}
func (fs *FilerServer) CreateEntry(ctx context.Context, req *filer_pb.CreateEntryRequest) (resp *filer_pb.CreateEntryResponse, err error) {
glog.V(4).InfofCtx(ctx, "CreateEntry %v/%v", req.Directory, req.Entry.Name)
if len(req.Entry.HardLinkId) > 0 {
glog.V(4).InfofCtx(ctx, "CreateEntry %s/%s with HardLinkId %x counter=%d", req.Directory, req.Entry.Name, req.Entry.HardLinkId, req.Entry.HardLinkCounter)
}
resp = &filer_pb.CreateEntryResponse{}
chunks, garbage, err2 := fs.cleanupChunks(ctx, util.Join(req.Directory, req.Entry.Name), nil, req.Entry)
if err2 != nil {
return &filer_pb.CreateEntryResponse{}, fmt.Errorf("CreateEntry cleanupChunks %s %s: %v", req.Directory, req.Entry.Name, err2)
}
newEntry := filer.FromPbEntry(req.Directory, req.Entry)
newEntry.Chunks = chunks
so, err := fs.applyStorageDefaultsToEntry(ctx, newEntry)
if err != nil {
return nil, err
}
// Serialize concurrent mutations to the same path on this filer so the
// read (existence/condition) and the write are atomic. Callers route a
// key's writes to this owner filer, making this local lock sufficient.
fullpath := newEntry.FullPath
pathLock := fs.entryLockTable.AcquireLock("CreateEntry", fullpath, util.ExclusiveLock)
defer fs.entryLockTable.ReleaseLock(fullpath, pathLock)
// Evaluate the optional precondition against the current entry while the
// path lock is held, so the check and the write are atomic on this filer.
// The fetched entry is then handed to CreateEntry below so it does not look
// the same path up again under the lock.
var existing *filer.Entry
if conditionIsSet(req.Condition) {
current, findErr := fs.filer.FindEntry(ctx, fullpath)
if findErr != nil && findErr != filer_pb.ErrNotFound {
return &filer_pb.CreateEntryResponse{}, fmt.Errorf("CreateEntry condition check %s: %w", fullpath, findErr)
}
if findErr == filer_pb.ErrNotFound {
current = nil
}
if !writeConditionSatisfied(req.Condition, current) {
glog.V(3).InfofCtx(ctx, "CreateEntry %s: precondition failed: %v", fullpath, req.Condition)
return &filer_pb.CreateEntryResponse{
Error: "precondition failed",
ErrorCode: filer_pb.FilerError_PRECONDITION_FAILED,
}, nil
}
existing = current
}
ctx, eventSink := filer.WithMetadataEventSink(ctx)
createErr := fs.filer.CreateEntry(ctx, newEntry, existing, req.OExcl, req.IsFromOtherCluster, req.Signatures, req.SkipCheckParentDirectory, so.MaxFileNameLength)
if createErr == nil {
fs.filer.DeleteChunksNotRecursive(garbage)
resp.MetadataEvent = eventSink.Last()
} else {
glog.V(3).InfofCtx(ctx, "CreateEntry %s: %v", filepath.Join(req.Directory, req.Entry.Name), createErr)
resp.Error = createErr.Error()
switch {
case errors.Is(createErr, filer_pb.ErrEntryNameTooLong):
resp.ErrorCode = filer_pb.FilerError_ENTRY_NAME_TOO_LONG
case errors.Is(createErr, filer_pb.ErrParentIsFile):
resp.ErrorCode = filer_pb.FilerError_PARENT_IS_FILE
case errors.Is(createErr, filer_pb.ErrExistingIsDirectory):
resp.ErrorCode = filer_pb.FilerError_EXISTING_IS_DIRECTORY
case errors.Is(createErr, filer_pb.ErrExistingIsFile):
resp.ErrorCode = filer_pb.FilerError_EXISTING_IS_FILE
case errors.Is(createErr, filer_pb.ErrEntryAlreadyExists):
resp.ErrorCode = filer_pb.FilerError_ENTRY_ALREADY_EXISTS
}
}
return
}
// ObjectTransaction applies an ordered list of entry mutations atomically with
// respect to other writers of the same object, by holding the per-path lock on
// lock_key for the whole call. The optional condition is checked first, against
// the entry at lock_key. This lets a caller describe a multi-entry object
// operation (e.g. delete the null version + write a delete marker + flip the
// latest pointer) as one request, replacing a distributed lock held across
// several RPCs. Callers must route the object's writes to its owner filer for
// the lock to be authoritative.
func (fs *FilerServer) ObjectTransaction(ctx context.Context, req *filer_pb.ObjectTransactionRequest) (*filer_pb.ObjectTransactionResponse, error) {
if req.LockKey == "" {
return &filer_pb.ObjectTransactionResponse{Error: "lock_key is required"}, nil
}
// Route-by-key: if this filer is not the ring owner of route_key, forward the
// whole transaction to the owner so its per-path lock is the single
// serialization point — even when the caller's ring view was stale. is_moved
// bounds this to one hop: a forwarded transaction is applied locally, so two
// filers that disagree on the owner during a ring change cannot loop.
if req.RouteKey != "" && !req.IsMoved && fs.filer.Dlm != nil {
if owner := fs.filer.Dlm.LockRing.GetPrimary(req.RouteKey); owner != "" && owner != fs.option.Host {
// Rebuild rather than copy the request struct (it carries a mutex);
// the pointer/slice fields are shared since the original is not mutated.
forwarded := &filer_pb.ObjectTransactionRequest{
LockKey: req.LockKey,
Condition: req.Condition,
Mutations: req.Mutations,
IsFromOtherCluster: req.IsFromOtherCluster,
Signatures: req.Signatures,
ConditionKey: req.ConditionKey,
RouteKey: req.RouteKey,
IsMoved: true,
}
glog.V(2).InfofCtx(ctx, "ObjectTransaction %s: forwarding to owner %s", req.LockKey, owner)
var resp *filer_pb.ObjectTransactionResponse
err := pb.WithFilerClient(false, 0, owner, fs.grpcDialOption, func(client filer_pb.SeaweedFilerClient) error {
var e error
resp, e = client.ObjectTransaction(ctx, forwarded)
return e
})
if err != nil {
return &filer_pb.ObjectTransactionResponse{}, err
}
return resp, nil
}
}
lockPath := util.FullPath(req.LockKey)
pathLock := fs.entryLockTable.AcquireLock("ObjectTransaction", lockPath, util.ExclusiveLock)
defer fs.entryLockTable.ReleaseLock(lockPath, pathLock)
if conditionIsSet(req.Condition) {
// The condition is evaluated against condition_key when set (e.g. a
// version entry whose WORM guards gate the delete), while the lock stays
// on lock_key (the object, serializing the pointer recompute).
conditionPath := lockPath
if req.ConditionKey != "" {
conditionPath = util.FullPath(req.ConditionKey)
}
current, findErr := fs.filer.FindEntry(ctx, conditionPath)
if findErr != nil && findErr != filer_pb.ErrNotFound {
return &filer_pb.ObjectTransactionResponse{}, fmt.Errorf("ObjectTransaction condition %s: %w", conditionPath, findErr)
}
if findErr == filer_pb.ErrNotFound {
current = nil
}
if !writeConditionSatisfied(req.Condition, current) {
glog.V(3).InfofCtx(ctx, "ObjectTransaction %s: precondition failed", conditionPath)
return &filer_pb.ObjectTransactionResponse{
Error: "precondition failed",
ErrorCode: filer_pb.FilerError_PRECONDITION_FAILED,
}, nil
}
}
for i, m := range req.Mutations {
if err := fs.applyObjectMutation(ctx, m, req.IsFromOtherCluster, req.Signatures); err != nil {
glog.V(2).InfofCtx(ctx, "ObjectTransaction %s mutation %d (%v): %v", lockPath, i, m.Type, err)
return &filer_pb.ObjectTransactionResponse{Error: fmt.Sprintf("mutation %d: %v", i, err)}, nil
}
}
return &filer_pb.ObjectTransactionResponse{}, nil
}
// ObjectTransactionBatch applies several object transactions in one round trip,
// each under its own per-path lock and independent of the others. A failed
// transaction (precondition or mutation error) is reported in its own response
// without aborting the rest, matching S3 multi-object semantics where each key
// succeeds or fails on its own.
func (fs *FilerServer) ObjectTransactionBatch(ctx context.Context, req *filer_pb.ObjectTransactionBatchRequest) (*filer_pb.ObjectTransactionBatchResponse, error) {
if req == nil {
return nil, status.Error(codes.InvalidArgument, "request is required")
}
resp := &filer_pb.ObjectTransactionBatchResponse{
Responses: make([]*filer_pb.ObjectTransactionResponse, 0, len(req.Transactions)),
}
for _, txn := range req.Transactions {
// Stop early if the caller went away; the request still holds the
// unprocessed transactions, so it is retried rather than lost.
if err := ctx.Err(); err != nil {
return nil, err
}
if txn == nil {
resp.Responses = append(resp.Responses, &filer_pb.ObjectTransactionResponse{Error: "nil transaction"})
continue
}
one, err := fs.ObjectTransaction(ctx, txn)
if err != nil {
// A transport-level error on one transaction is surfaced as that
// transaction's error; the batch RPC itself still succeeds.
one = &filer_pb.ObjectTransactionResponse{Error: err.Error()}
}
resp.Responses = append(resp.Responses, one)
}
return resp, nil
}
// applyStorageDefaultsToEntry enforces the path's storage rule (read-only
// prefixes reject the write) and fills in the rule TTL when the entry carries
// none. Remote entries never expire locally; the remote storage owns their
// lifecycle.
func (fs *FilerServer) applyStorageDefaultsToEntry(ctx context.Context, entry *filer.Entry) (*operation.StorageOption, error) {
so, err := fs.detectStorageOption(ctx, string(entry.FullPath), "", "", 0, "", "", "", "")
if err != nil {
return nil, err
}
if entry.Remote != nil {
entry.TtlSec = 0
} else if entry.TtlSec == 0 {
entry.TtlSec = so.TtlSeconds
}
return so, nil
}
// applyObjectMutation applies a single mutation while the transaction's path
// lock is held. PUT entries are expected to be fully prepared by the caller
// (chunks resolved); mutations here are metadata-scoped. A DELETE of an absent
// entry and a PATCH of an absent entry are no-ops, so transactions are
// idempotent on replay.
func (fs *FilerServer) applyObjectMutation(ctx context.Context, m *filer_pb.ObjectMutation, fromOtherCluster bool, signatures []int32) error {
switch m.Type {
case filer_pb.ObjectMutation_PUT:
if m.Entry == nil {
return fmt.Errorf("PUT requires an entry")
}
newEntry := filer.FromPbEntry(m.Directory, m.Entry)
so, err := fs.applyStorageDefaultsToEntry(ctx, newEntry)
if err != nil {
return err
}
return fs.filer.CreateEntry(ctx, newEntry, nil, false, fromOtherCluster, signatures, false, so.MaxFileNameLength)
case filer_pb.ObjectMutation_DELETE:
fullpath := util.NewFullPath(m.Directory, m.Name)
err := fs.filer.DeleteEntryMetaAndData(ctx, fullpath, m.IsRecursive, false, m.IsDeleteData, fromOtherCluster, signatures, 0)
if err != nil && err != filer_pb.ErrNotFound {
return err
}
if m.RemoveEmptyParent {
// A parent that exists only to hold this child (e.g. a .versions/
// directory losing its last version) is torn down in the same locked
// transaction. Best-effort: a non-empty or already-removed parent is
// the expected no-op, and a failed teardown must not fail the
// already-applied delete.
parentErr := fs.filer.DeleteEntryMetaAndData(ctx, util.FullPath(m.Directory), false, false, false, fromOtherCluster, signatures, 0)
if parentErr != nil && parentErr != filer_pb.ErrNotFound && !strings.Contains(parentErr.Error(), filer.MsgFailDelNonEmptyFolder) {
glog.V(1).InfofCtx(ctx, "remove empty parent %s: %v", m.Directory, parentErr)
}
}
return nil
case filer_pb.ObjectMutation_PATCH_EXTENDED:
fullpath := util.NewFullPath(m.Directory, m.Name)
oldEntry, err := fs.filer.FindEntry(ctx, fullpath)
if err == filer_pb.ErrNotFound {
return nil
}
if err != nil {
return err
}
// Patch a copy so oldEntry still reflects the pre-update state for the
// metadata notification's diff.
newEntry := oldEntry.ShallowClone()
newEntry.Extended = make(map[string][]byte, len(oldEntry.Extended))
for k, v := range oldEntry.Extended {
newEntry.Extended[k] = v
}
for k, v := range m.SetExtended {
newEntry.Extended[k] = v
}
for _, k := range m.DeleteExtended {
delete(newEntry.Extended, k)
}
if m.SetContent {
newEntry.Content = m.Content
// Keep FileSize consistent with content for files; some stores and
// tools read the attribute directly. Directories carry no file size.
if !newEntry.IsDirectory() {
newEntry.FileSize = uint64(len(m.Content))
}
}
if m.TouchMtime {
newEntry.Attr.Mtime = time.Now()
}
if err := fs.filer.UpdateEntry(ctx, oldEntry, newEntry); err != nil {
return err
}
// Emit the metadata event so the update replicates and subscribers see it,
// matching the UpdateEntry handler.
fs.filer.NotifyUpdateEvent(ctx, oldEntry, newEntry, true, fromOtherCluster, signatures)
return nil
case filer_pb.ObjectMutation_RECOMPUTE_LATEST:
return fs.applyRecomputeLatest(ctx, m, fromOtherCluster, signatures)
default:
return fmt.Errorf("unknown mutation type %v", m.Type)
}
}
// applyRecomputeLatest re-derives the pointer entry (m.Directory/m.Name) from the
// current contents of recompute.scan_dir, under the transaction's lock. It is
// mechanical: pick the child that sorts last (descending) or first by name, copy
// the mapped extended keys from it into the pointer, and store its name under
// name_to_key. When the scanned directory is empty the pointer keys are cleared.
// The caller, which knows the versioning scheme, supplies the direction and the
// key mappings. A missing pointer entry is a no-op (idempotent on replay).
func (fs *FilerServer) applyRecomputeLatest(ctx context.Context, m *filer_pb.ObjectMutation, fromOtherCluster bool, signatures []int32) error {
rc := m.Recompute
if rc == nil {
return fmt.Errorf("RECOMPUTE_LATEST requires recompute parameters")
}
pointer, err := fs.filer.FindEntry(ctx, util.NewFullPath(m.Directory, m.Name))
if err == filer_pb.ErrNotFound {
return nil
}
if err != nil {
return err
}
// Capture the pre-update image so the metadata notification carries a correct
// diff; pointer.Extended is mutated in place below.
oldPointer := pointer.ShallowClone()
oldPointer.Extended = make(map[string][]byte, len(pointer.Extended))
for k, v := range pointer.Extended {
oldPointer.Extended[k] = v
}
if pointer.Extended == nil {
pointer.Extended = make(map[string][]byte)
}
// Remember the prior chosen child so it can be demoted once the pointer moves.
var priorName string
if rc.NameToKey != "" {
priorName = string(pointer.Extended[rc.NameToKey])
}
// The store streams entries ascending by name. For the lowest-name pick we
// only need the first entry, so cap the listing at one; for the highest-name
// pick we must scan all and keep the last (the store has no reverse order).
// With exclude_name set the first child may be the excluded one, so the cap
// is lifted to find the first non-excluded entry.
limit := int64(math.MaxInt32)
if !rc.Descending && rc.ExcludeName == "" {
limit = 1
}
var chosen *filer.Entry
_, listErr := fs.filer.StreamListDirectoryEntries(ctx, util.FullPath(rc.ScanDir), "", false, limit, "", "", "", func(entry *filer.Entry) (bool, error) {
if rc.ExcludeName != "" && entry.Name() == rc.ExcludeName {
return true, nil
}
chosen = entry
return rc.Descending, nil
})
if listErr != nil {
return listErr
}
cleared := []string{rc.NameToKey, rc.SizeToKey, rc.MtimeToKey}
if chosen == nil {
for pointerKey := range rc.CopyExtended {
delete(pointer.Extended, pointerKey)
}
for _, k := range cleared {
if k != "" {
delete(pointer.Extended, k)
}
}
} else {
for pointerKey, sourceKey := range rc.CopyExtended {
if v, ok := chosen.Extended[sourceKey]; ok {
pointer.Extended[pointerKey] = v
} else {
delete(pointer.Extended, pointerKey)
}
}
if rc.NameToKey != "" {
pointer.Extended[rc.NameToKey] = []byte(chosen.Name())
}
if rc.SizeToKey != "" {
pointer.Extended[rc.SizeToKey] = []byte(strconv.FormatUint(chosen.FileSize, 10))
}
if rc.MtimeToKey != "" {
pointer.Extended[rc.MtimeToKey] = []byte(strconv.FormatInt(chosen.Mtime.Unix(), 10))
}
}
if err := fs.filer.UpdateEntry(ctx, oldPointer, pointer); err != nil {
return err
}
// Replicate the recomputed pointer to peer filers and subscribers. Without
// this the latest-version pointer stays in this filer's store only, so other
// filers never learn the current version and ListObjects undercounts.
fs.filer.NotifyUpdateEvent(ctx, oldPointer, pointer, false, fromOtherCluster, signatures)
// Stamp the displaced prior child (e.g. NoncurrentSinceNs for lifecycle).
newName := ""
if chosen != nil {
newName = chosen.Name()
}
if rc.DemoteKey != "" && priorName != "" && priorName != newName {
priorEntry, perr := fs.filer.FindEntry(ctx, util.NewFullPath(rc.ScanDir, priorName))
if perr == filer_pb.ErrNotFound {
return nil
}
if perr != nil {
return perr
}
oldPrior := priorEntry.ShallowClone()
oldPrior.Extended = make(map[string][]byte, len(priorEntry.Extended))
for k, v := range priorEntry.Extended {
oldPrior.Extended[k] = v
}
if priorEntry.Extended == nil {
priorEntry.Extended = make(map[string][]byte)
}
priorEntry.Extended[rc.DemoteKey] = rc.DemoteValue
if err := fs.filer.UpdateEntry(ctx, oldPrior, priorEntry); err != nil {
return err
}
fs.filer.NotifyUpdateEvent(ctx, oldPrior, priorEntry, false, fromOtherCluster, signatures)
return nil
}
return nil
}
func (fs *FilerServer) UpdateEntry(ctx context.Context, req *filer_pb.UpdateEntryRequest) (*filer_pb.UpdateEntryResponse, error) {
glog.V(4).InfofCtx(ctx, "UpdateEntry %v", req)
if len(req.Entry.HardLinkId) > 0 {
glog.V(4).InfofCtx(ctx, "UpdateEntry %s/%s with HardLinkId %x counter=%d", req.Directory, req.Entry.Name, req.Entry.HardLinkId, req.Entry.HardLinkCounter)
}
fullpath := util.Join(req.Directory, req.Entry.Name)
entry, err := fs.filer.FindEntry(ctx, util.FullPath(fullpath))
if err != nil {
return &filer_pb.UpdateEntryResponse{}, fmt.Errorf("not found %s: %v", fullpath, err)
}
if err := validateUpdateEntryPreconditions(entry, req.ExpectedExtended); err != nil {
return &filer_pb.UpdateEntryResponse{}, err
}
chunks, garbage, err2 := fs.cleanupChunks(ctx, fullpath, entry, req.Entry)
if err2 != nil {
return &filer_pb.UpdateEntryResponse{}, fmt.Errorf("UpdateEntry cleanupChunks %s: %v", fullpath, err2)
}
newEntry := filer.FromPbEntry(req.Directory, req.Entry)
newEntry.Chunks = chunks
// Don't apply TTL to remote entries - they're managed by remote storage
if newEntry.Remote != nil {
newEntry.TtlSec = 0
}
if filer.EqualEntry(entry, newEntry) {
return &filer_pb.UpdateEntryResponse{}, err
}
ctx, eventSink := filer.WithMetadataEventSink(ctx)
resp := &filer_pb.UpdateEntryResponse{}
if err = fs.filer.UpdateEntry(ctx, entry, newEntry); err == nil {
fs.filer.DeleteChunksNotRecursive(garbage)
fs.filer.NotifyUpdateEvent(ctx, entry, newEntry, true, req.IsFromOtherCluster, req.Signatures)
resp.MetadataEvent = eventSink.Last()
} else {
glog.V(3).InfofCtx(ctx, "UpdateEntry %s: %v", filepath.Join(req.Directory, req.Entry.Name), err)
}
return resp, err
}
func validateUpdateEntryPreconditions(entry *filer.Entry, expectedExtended map[string][]byte) error {
if len(expectedExtended) == 0 {
return nil
}
for key, expectedValue := range expectedExtended {
var actualValue []byte
var ok bool
if entry != nil {
actualValue, ok = entry.Extended[key]
}
if ok {
if !bytes.Equal(actualValue, expectedValue) {
return status.Errorf(codes.FailedPrecondition, "extended attribute %q changed", key)
}
continue
}
if len(expectedValue) > 0 {
return status.Errorf(codes.FailedPrecondition, "extended attribute %q changed", key)
}
}
return nil
}
func (fs *FilerServer) cleanupChunks(ctx context.Context, fullpath string, existingEntry *filer.Entry, newEntry *filer_pb.Entry) (chunks, garbage []*filer_pb.FileChunk, err error) {
// remove old chunks if not included in the new ones
if existingEntry != nil {
garbage, err = filer.MinusChunks(ctx, fs.lookupFileId, existingEntry.GetChunks(), newEntry.GetChunks())
if err != nil {
return newEntry.GetChunks(), nil, fmt.Errorf("MinusChunks: %w", err)
}
}
// files with manifest chunks are usually large and append only, skip calculating covered chunks
manifestChunks, nonManifestChunks := filer.SeparateManifestChunks(newEntry.GetChunks())
chunks, coveredChunks := filer.CompactFileChunks(ctx, fs.lookupFileId, nonManifestChunks)
garbage = append(garbage, coveredChunks...)
if newEntry.Attributes != nil {
so, _ := fs.detectStorageOption(ctx, fullpath,
"",
"",
newEntry.Attributes.TtlSec,
"",
"",
"",
"",
) // ignore readonly error for capacity needed to manifestize
chunks, err = filer.MaybeManifestize(fs.saveAsChunk(ctx, so), chunks)
if err != nil {
// not good, but should be ok
glog.V(0).InfofCtx(ctx, "MaybeManifestize: %v", err)
}
}
chunks = append(manifestChunks, chunks...)
return
}
func (fs *FilerServer) AppendToEntry(ctx context.Context, req *filer_pb.AppendToEntryRequest) (*filer_pb.AppendToEntryResponse, error) {
glog.V(4).InfofCtx(ctx, "AppendToEntry %v", req)
fullpath := util.NewFullPath(req.Directory, req.EntryName)
lockClient := cluster.NewLockClient(fs.grpcDialOption, fs.option.Host)
lock := lockClient.NewShortLivedLock(string(fullpath), string(fs.option.Host))
defer lock.StopShortLivedLock()
var offset int64 = 0
entry, err := fs.filer.FindEntry(ctx, fullpath)
if err == filer_pb.ErrNotFound {
entry = &filer.Entry{
FullPath: fullpath,
Attr: filer.Attr{
Crtime: time.Now(),
Mtime: time.Now(),
Mode: os.FileMode(0644),
Uid: OS_UID,
Gid: OS_GID,
},
}
} else {
offset = int64(filer.TotalSize(entry.GetChunks()))
}
for _, chunk := range req.Chunks {
chunk.Offset = offset
offset += int64(chunk.Size)
}
entry.Chunks = append(entry.GetChunks(), req.Chunks...)
so, err := fs.detectStorageOption(ctx, string(fullpath), "", "", entry.TtlSec, "", "", "", "")
if err != nil {
glog.WarningfCtx(ctx, "detectStorageOption: %v", err)
return &filer_pb.AppendToEntryResponse{}, err
}
entry.Chunks, err = filer.MaybeManifestize(fs.saveAsChunk(ctx, so), entry.GetChunks())
if err != nil {
// not good, but should be ok
glog.V(0).InfofCtx(ctx, "MaybeManifestize: %v", err)
}
err = fs.filer.CreateEntry(context.Background(), entry, nil, false, false, nil, false, fs.filer.MaxFilenameLength)
return &filer_pb.AppendToEntryResponse{}, err
}
func (fs *FilerServer) DeleteEntry(ctx context.Context, req *filer_pb.DeleteEntryRequest) (resp *filer_pb.DeleteEntryResponse, err error) {
glog.V(4).InfofCtx(ctx, "DeleteEntry %v", req)
ctx, eventSink := filer.WithMetadataEventSink(ctx)
err = fs.filer.DeleteEntryMetaAndData(ctx, util.JoinPath(req.Directory, req.Name), req.IsRecursive, req.IgnoreRecursiveError, req.IsDeleteData, req.IsFromOtherCluster, req.Signatures, req.IfNotModifiedAfter)
resp = &filer_pb.DeleteEntryResponse{}
if err != nil && err != filer_pb.ErrNotFound {
resp.Error = err.Error()
} else {
resp.MetadataEvent = eventSink.Last()
}
return resp, nil
}
func (fs *FilerServer) AssignVolume(ctx context.Context, req *filer_pb.AssignVolumeRequest) (resp *filer_pb.AssignVolumeResponse, err error) {
so, err := fs.resolveAssignStorageOption(ctx, req)
if err != nil {
glog.V(3).InfofCtx(ctx, "AssignVolume: %v", err)
return &filer_pb.AssignVolumeResponse{Error: fmt.Sprintf("assign volume: %v", err)}, nil
}
assignRequest, altRequest := so.ToAssignRequests(int(req.Count))
assignRequest.ExpectedDataSize = req.ExpectedDataSize
if altRequest != nil {
altRequest.ExpectedDataSize = req.ExpectedDataSize
}
assignResult, err := operation.Assign(ctx, fs.filer.GetMaster, fs.grpcDialOption, assignRequest, altRequest)
if err != nil {
glog.V(3).InfofCtx(ctx, "AssignVolume: %v", err)
return &filer_pb.AssignVolumeResponse{Error: fmt.Sprintf("assign volume: %v", err)}, nil
}
if assignResult.Error != "" {
glog.V(3).InfofCtx(ctx, "AssignVolume error: %v", assignResult.Error)
return &filer_pb.AssignVolumeResponse{Error: fmt.Sprintf("assign volume result: %v", assignResult.Error)}, nil
}
resp = &filer_pb.AssignVolumeResponse{
FileId: assignResult.Fid,
Count: int32(assignResult.Count),
Location: &filer_pb.Location{
Url: assignResult.Url,
PublicUrl: assignResult.PublicUrl,
GrpcPort: uint32(assignResult.GrpcPort),
},
Auth: string(assignResult.Auth),
Collection: so.Collection,
Replication: so.Replication,
}
// Forward the replica holders so a client can write all copies directly.
for _, replica := range assignResult.Replicas {
resp.Replicas = append(resp.Replicas, &filer_pb.Location{
Url: replica.Url,
PublicUrl: replica.PublicUrl,
DataCenter: replica.DataCenter,
})
}
return resp, nil
}
func (fs *FilerServer) resolveAssignStorageOption(ctx context.Context, req *filer_pb.AssignVolumeRequest) (*operation.StorageOption, error) {
so, err := fs.detectStorageOption(ctx, req.Path, req.Collection, req.Replication, req.TtlSec, req.DiskType, req.DataCenter, req.Rack, req.DataNode)
if err != nil {
return nil, err
}
// Mirror the HTTP write path: only apply the filer's default disk when the
// matched locationPrefix rule did not already select one.
if so.DiskType == "" {
so.DiskType = fs.option.DiskType
}
return so, nil
}
func (fs *FilerServer) CollectionList(ctx context.Context, req *filer_pb.CollectionListRequest) (resp *filer_pb.CollectionListResponse, err error) {
glog.V(4).InfofCtx(ctx, "CollectionList %v", req)
resp = &filer_pb.CollectionListResponse{}
err = fs.filer.MasterClient.WithClient(false, func(client master_pb.SeaweedClient) error {
masterResp, err := client.CollectionList(context.Background(), &master_pb.CollectionListRequest{
IncludeNormalVolumes: req.IncludeNormalVolumes,
IncludeEcVolumes: req.IncludeEcVolumes,
})
if err != nil {
return err
}
for _, c := range masterResp.Collections {
resp.Collections = append(resp.Collections, &filer_pb.Collection{Name: c.Name})
}
return nil
})
return
}
func (fs *FilerServer) DeleteCollection(ctx context.Context, req *filer_pb.DeleteCollectionRequest) (resp *filer_pb.DeleteCollectionResponse, err error) {
glog.V(4).InfofCtx(ctx, "DeleteCollection %v", req)
err = fs.filer.DoDeleteCollection(req.GetCollection())
return &filer_pb.DeleteCollectionResponse{}, err
}