* fix(filer): derive inodes by hash instead of a snowflake sequencer
Compute the same inode the FUSE mount would: non-hard-linked entries hash path + crtime, hard links hash their shared HardLinkId so every link resolves to one inode. Removes the snowflake inodeSequencer and the SEAWEEDFS_FILER_SNOWFLAKE_ID knob; inodes are now deterministic across filers.
* chore: remove the experimental NFS gateway
The NFS frontend ('weed nfs') was the only consumer of the inode->path index. Remove the weed/server/nfs package, the command and its registration, the integration test harness, and the CI workflow; go mod tidy drops the willscott/go-nfs and go-nfs-client dependencies.
* refactor(filer): drop the inode->path index
With the NFS gateway gone, nothing reads it. A regular file's inode is a pure hash of its path and a hard link's is a hash of its shared HardLinkId -- both derivable on demand -- so the secondary KV index and its write/remove hooks are dead. Removes filer_inode_index.go and the recordInodeIndex hooks from the store wrapper.
* add filer inode foundation for nfs
* nfs command skeleton
* add filer inode index foundation for nfs
* make nfs inode index hardlink aware
* add nfs filehandle and inode lookup plumbing
* add read-only nfs frontend foundation
* add nfs namespace mutation support
* add chunk-backed nfs write path
* add nfs protocol integration tests
* add stale handle nfs coverage
* complete nfs hardlink and failover coverage
* add nfs export access controls
* add nfs metadata cache invalidation
* fix nfs chunk read lookup routing
* fix nfs review findings and rename regression
* address pr 9067 review comments
- filer_inode: fail fast if the snowflake sequencer cannot start, and let
operators override the 10-bit node id via SEAWEEDFS_FILER_SNOWFLAKE_ID
to avoid multi-filer collisions
- filer_inode: drop the redundant retry loop in nextInode
- filerstore_wrapper: treat inode-index writes/removals as best-effort so
a primary store success no longer surfaces as an operation failure
- filer_grpc_server_rename: defer overwritten-target chunk deletion until
after CommitTransaction so a rolled-back rename does not strand live
metadata pointing at freshly deleted chunks
- command/nfs: default ip.bind to loopback and require an explicit
filer.path, so the experimental server does not expose the entire
filer namespace on first run
- nfs integration_test: document why LinkArgs matches go-nfs's on-the-wire
layout rather than RFC 1813 LINK3args
* mount: pre-allocate inode in Mkdir and Symlink
Mkdir and Symlink used to send filer_pb.CreateEntryRequest with
Attributes.Inode = 0. After PR 9067, the filer's CreateEntry now assigns
its own inode in that case, so the filer-side entry ends up with a
different inode than the one the mount allocates via inodeToPath.Lookup
and returns to the kernel. Once applyLocalMetadataEvent stores the
filer's entry in the meta cache, subsequent GetAttr calls read the
cached entry and hit the setAttrByPbEntry override at line 197 of
weedfs_attr.go, returning the filer-assigned inode instead of the
mount's local one. pjdfstest tests/rename/00.t (subtests 81/87/91)
caught this — it lstat'd a freshly-created directory/symlink, renamed
it, lstat'd again, and saw a different inode the second time.
createRegularFile already pre-allocates via inodeToPath.AllocateInode
and stamps it into the create request. Do the same thing in Mkdir and
Symlink so both sides agree on the object identity from the very first
request, and so GetAttr's cache path returns the same value as Mkdir /
Symlink's initial response.
* sequence: mask snowflake node id on int→uint32 conversion
CodeQL flagged the unchecked uint32(snowflakeId) cast in
NewSnowflakeSequencer as a potential truncation bug when snowflakeId is
sourced from user input (e.g. via SEAWEEDFS_FILER_SNOWFLAKE_ID). Mask
to the 10 bits the snowflake library actually uses so any caller-
supplied int is safely clamped into range.
* add test/nfs integration suite
Boots a real SeaweedFS cluster (master + volume + filer) plus the
experimental `weed nfs` frontend as subprocesses and drives it through
the NFSv3 wire protocol via go-nfs-client, mirroring the layout of
test/sftp. The tests run without a kernel NFS mount, privileged ports,
or any platform-specific tooling.
Coverage includes read/write round-trip, mkdir/rmdir, nested
directories, rename content preservation, overwrite + explicit
truncate, 3 MiB binary file, all-byte binary and empty files, symlink
round-trip, ReadDirPlus listing, missing-path remove, FSInfo sanity,
sequential appends, and readdir-after-remove.
Framework notes:
- Picks ephemeral ports with net.Listen("127.0.0.1:0") and passes
-port.grpc explicitly so the default port+10000 convention cannot
overflow uint16 on macOS.
- Pre-creates the /nfs_export directory via the filer HTTP API before
starting the NFS server — the NFS server's ensureIndexedEntry check
requires the export root to exist with a real entry, which filer.Root
does not satisfy when the export path is "/".
- Reuses the same rpc.Client for mount and target so go-nfs-client does
not try to re-dial via portmapper (which concatenates ":111" onto the
address).
* ci: add NFS integration test workflow
Mirror test/sftp's workflow for the new test/nfs suite so PRs that touch
the NFS server, the inode filer plumbing it depends on, or the test
harness itself run the 14 NFSv3-over-RPC integration tests on Ubuntu
22.04 via `make test`.
* nfs: use append for buffer growth in Write and Truncate
The previous make+copy pattern reallocated the full buffer on every
extending write or truncate, giving O(N^2) behaviour for sequential
write loops. Switching to `append(f.content, make([]byte, delta)...)`
lets Go's amortized growth strategy absorb the repeated extensions.
Called out by gemini-code-assist on PR 9067.
* filer: honor caller cancellation in collectInodeIndexEntries
Dropping the WithoutCancel wrapper lets DeleteFolderChildren bail out of
the inode-index scan if the client disconnects mid-walk. The cleanup is
already treated as best-effort by the caller (it logs on error and
continues), so a cancelled walk just means the partial index rebuild is
skipped — the same failure mode as any other index write error.
Flagged as a DoS concern by gemini-code-assist on PR 9067.
* nfs: skip filer read on open when O_TRUNC is set
openFile used to unconditionally loadWritableContent for every writable
open and then discard the buffer if O_TRUNC was set. For large files
that is a pointless 64 MiB round-trip. Reorder the branches so we only
fetch existing content when the caller intends to keep it, and mark the
file dirty right away so the subsequent Close still issues the
truncating write. Called out by gemini-code-assist on PR 9067.
* nfs: allow Seek on O_APPEND files and document buffered write cap
Two related cleanups on filesystem.go:
- POSIX only restricts Write on an O_APPEND fd, not lseek. The existing
Seek error ("append-only file descriptors may only seek to EOF")
prevented read-and-write workloads that legitimately reposition the
read cursor. Write already snaps the offset to EOF before persisting
(see seaweedFile Write), so Seek can unconditionally accept any
offset. Update the unit test that was asserting the old behaviour.
- Add a doc comment on maxBufferedWriteSize explaining that it is a
per-file ceiling, the memory footprint it implies, and that the real
fix for larger whole-file rewrites is streaming / multi-chunk support.
Both changes flagged by gemini-code-assist on PR 9067.
* nfs: guard offset before casting to int in Write
CodeQL flagged `int(f.offset) + len(p)` inside the Write growth path as
a potential overflow on architectures where `int` is 32-bit. The
existing check only bounded the post-cast value, which is too late.
Clamp f.offset against maxBufferedWriteSize before the cast and also
reject negative/overflowed endOffset results. Both branches fall
through to billy.ErrNotSupported, the same behaviour the caller gets
today for any out-of-range buffered write.
* nfs: compute Write endOffset in int64 to satisfy CodeQL
The previous guard bounded f.offset but left len(p) unchecked, so
CodeQL still flagged `int(f.offset) + len(p)` as a possible int-width
overflow path. Bound len(p) against maxBufferedWriteSize first, do the
addition in int64, and only cast down after the total has been clamped
against the buffer ceiling. Behaviour is unchanged: any out-of-range
write still returns billy.ErrNotSupported.
* ci: drop emojis from nfs-tests workflow summary
Plain-text step summary per user preference — no decorative glyphs in
the NFS CI output or checklist.
* nfs: annotate remaining DEV_PLAN TODOs with status
Three of the unchecked items are genuine follow-up PRs rather than
missing work in this one, and one was actually already done:
- Reuse chunk cache and mutation stream helpers without FUSE deps:
checked off — the NFS server imports weed/filer.ReaderCache and
weed/util/chunk_cache directly with no weed/mount or go-fuse imports.
- Extract shared read/write helpers from mount/WebDAV/SFTP: annotated
as deferred to a separate refactor PR (touches four packages).
- Expand direct data-path writes beyond the 64 MiB buffered fallback:
annotated as deferred — requires a streaming WRITE path.
- Shared lock state + lock tests: annotated as blocked upstream on
go-nfs's missing NLM/NFSv4 lock state RPCs, matching the existing
"Current Blockers" note.
* test/nfs: share port+readiness helpers with test/testutil
Drop the per-suite mustPickFreePort and waitForService re-implementations
in favor of testutil.MustAllocatePorts (atomic batch allocation; no
close-then-hope race) and testutil.WaitForPort / SeaweedMiniStartupTimeout.
Pull testutil in via a local replace directive so this standalone
seaweedfs-nfs-tests module can import the in-repo package without a
separate release.
Subprocess startup is still master + volume + filer + nfs — no switch to
weed mini yet, since mini does not know about the nfs frontend.
* nfs: stream writes to volume servers instead of buffering the whole file
Before this change the NFS write path held the full contents of every
writable open in memory:
- OpenFile(write) called loadWritableContent which read the existing
file into seaweedFile.content up to maxBufferedWriteSize (64 MiB)
- each Write() extended content in-place
- Close() uploaded the whole buffer as a single chunk via
persistContent + AssignVolume
The 64 MiB ceiling made large NFS writes return NFS3ERR_NOTSUPP, and
even below the cap every Write paid a whole-file-in-memory cost. This
PR rewrites the write path to match how `weed filer` and the S3 gateway
persist data:
- openFile(write) no longer loads the existing content at all; it
only issues an UpdateEntry when O_TRUNC is set *and* the file is
non-empty (so a fresh create+trunc is still zero-RPC)
- Write() streams the caller's bytes straight to a volume server via
one AssignVolume + one chunk upload, then atomically appends the
resulting chunk to the filer entry through mutateEntry. Any
previously inlined entry.Content is migrated to a chunk in the same
update so the chunk list becomes the authoritative representation.
- Truncate() becomes a direct mutateEntry (drop chunks past the new
size, clip inline content, update FileSize) instead of resizing an
in-memory buffer.
- Close() is a no-op because everything was flushed inline.
The small-file fast path that the filer HTTP handler uses is preserved:
if the post-write size still fits in maxInlineWriteSize (4 MiB) and
the file has no existing chunks, we rewrite entry.Content directly and
skip the volume-server round-trip. This keeps single-shot tiny writes
(echo, small edits) cheap while completely removing the 64 MiB cap on
larger files. Read() now always reads through the chunk reader instead
of a local byte slice, so reads inside the same session see the freshly
appended data.
Drops the unused seaweedFile.content / dirty fields, the
maxBufferedWriteSize constant, and the loadWritableContent helper.
Updates TestSeaweedFileSystemSupportsNamespaceMutations expectations
to match the new "no extra O_TRUNC UpdateEntry on an empty file"
behavior (still 3 updates: Write + Chmod + Truncate).
* filer: extract shared gateway upload helper for NFS and WebDAV
Three filer-backed gateways (NFS, WebDAV, and mount) each had a local
saveDataAsChunk that wrapped operation.NewUploader().UploadWithRetry
with near-identical bodies: build AssignVolumeRequest, build
UploadOption, build genFileUrlFn with optional filerProxy rewriting,
call UploadWithRetry, validate the result, and call ToPbFileChunk.
Pull that body into filer.SaveGatewayDataAsChunk with a
GatewayChunkUploadRequest struct so both NFS and WebDAV can delegate
to one implementation.
- NFS's saveDataAsChunk is now a thin adapter that assembles the
GatewayChunkUploadRequest from server options and calls the helper.
The chunkUploader interface keeps working for test injection because
the new GatewayChunkUploader interface is structurally identical.
- WebDAV's saveDataAsChunk is similarly a thin adapter — it drops the
local operation.NewUploader call plus the AssignVolume/UploadOption
scaffolding.
- mount is intentionally left alone. mount's saveDataAsChunk has two
features that do not fit the shared helper (a pre-allocated file-id
pool used to skip AssignVolume entirely, and a chunkCache
write-through at offset 0 so future reads hit the mount's local
cache), both of which are mount-specific.
Marks the Phase 2 "extract shared read/write helpers from mount,
WebDAV, and SFTP" DEV_PLAN item as done. The filer-level chunk read
path (NonOverlappingVisibleIntervals + ViewFromVisibleIntervals +
NewChunkReaderAtFromClient) was already shared.
* nfs: remove DESIGN.md and DEV_PLAN.md
The planning documents have served their purpose — all phase 1 and
phase 2 items are landed, phase 3 streaming writes are landed, phase 2
shared helpers are extracted, and the two remaining phase 4 items
(shared lock state + lock tests) are blocked upstream on
github.com/willscott/go-nfs which exposes no NLM or NFSv4 lock state
RPCs. The running decision log no longer reflects current code and
would just drift. The NFS wiki page
(https://github.com/seaweedfs/seaweedfs/wiki/NFS-Server) now carries
the overview, configuration surface, architecture notes, and known
limitations; the source is the source of truth for the rest.
When unlinking a hard-linked file, DeleteOneEntry and DeleteEntry both
called DeleteHardLink before removing the directory entry from the
store. If DeleteHardLink returned an error (e.g. KV storage issue,
decode failure), the function returned early without deleting the
directory entry itself. This left a stale entry in the filer store,
causing subsequent rmdir to fail with ENOTEMPTY.
Change both functions to log the hard link cleanup error and continue
to delete the directory entry regardless. This ensures the parent
directory can always be removed after all its children are unlinked.
Remove tests/unlink/14.t from the pjdfstest known failures list since
this fix addresses the root cause.
* fix(filer): remove cancellation guard from RollbackTransaction and clean up #8909
RollbackTransaction is a cleanup operation that must succeed even when
the context is cancelled — guarding it causes the exact orphaned state
that #8909 was trying to prevent.
Also:
- Use single-evaluation `if err := ctx.Err(); err != nil` pattern
instead of double-calling ctx.Err()
- Remove spurious blank lines before guards
- Add context.DeadlineExceeded test coverage
- Simplify tests from ~230 lines to ~130 lines
* fix(filer): call cancel() in expiredCtx and test rollback with expired context
- Call cancel() instead of suppressing it to avoid leaking timer resources
- Test RollbackTransaction with both cancelled and expired contexts
* rename metadata events
* fix subscription filter to use NewEntry.Name for rename path matching
The server-side subscription filter constructed the new path using
OldEntry.Name instead of NewEntry.Name when checking if a rename
event's destination matches the subscriber's path prefix. This could
cause events to be incorrectly filtered when a rename changes the
file name.
* fix bucket events to handle rename of bucket directories
onBucketEvents only checked IsCreate and IsDelete. A bucket directory
rename via AtomicRenameEntry now emits a single rename event (both
OldEntry and NewEntry non-nil), which matched neither check. Handle
IsRename by deleting the old bucket and creating the new one.
* fix replicator to handle rename events across directory boundaries
Two issues fixed:
1. The replicator filtered events by checking if the key (old path)
was under the source directory. Rename events now use the old path
as key, so renames from outside into the watched directory were
silently dropped. Now both old and new paths are checked, and
cross-boundary renames are converted to create or delete.
2. NewParentPath was passed to the sink without remapping to the
sink's target directory structure, causing the sink to write
entries at the wrong location. Now NewParentPath is remapped
alongside the key.
* fix filer sync to handle rename events crossing directory boundaries
The early directory-prefix filter only checked resp.Directory (old
parent). Rename events now carry the old parent as Directory, so
renames from outside the source path into it were dropped before
reaching the existing cross-boundary handling logic. Check both old
and new directories against sourcePath and excludePaths so the
downstream old-key/new-key logic can properly convert these to
create or delete operations.
* fix metadata event path matching
* fix metadata event consumers for rename targets
* Fix replication rename target keys
Logical rename events now reach replication sinks with distinct source and target paths.\n\nHandle non-filer sinks as delete-plus-create on the translated target key, and make the rename fallback path create at the translated target key too.\n\nAdd focused tests covering non-filer renames, filer rename updates, and the fallback path.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Fix filer sync rename path scoping
Use directory-boundary matching instead of raw prefix checks when classifying source and target paths during filer sync.\n\nAlso apply excludePaths per side so renames across excluded boundaries downgrade cleanly to create/delete instead of being misclassified as in-scope updates.\n\nAdd focused tests for boundary matching and rename classification.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Fix replicator directory boundary checks
Use directory-boundary matching instead of raw prefix checks when deciding whether a source or target path is inside the watched tree or an excluded subtree.\n\nThis prevents sibling paths such as /foo and /foobar from being misclassified during rename handling, and preserves the earlier rename-target-key fix.\n\nAdd focused tests for boundary matching and rename classification across sibling/excluded directories.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Fix etc-remote rename-out handling
Use boundary-safe source/target directory membership when classifying metadata events under DirectoryEtcRemote.\n\nThis prevents rename-out events from being processed as config updates, while still treating them as removals where appropriate for the remote sync and remote gateway command paths.\n\nAdd focused tests for update/removal classification and sibling-prefix handling.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Defer rename events until commit
Queue logical rename metadata events during atomic and streaming renames and publish them only after the transaction commits successfully.\n\nThis prevents subscribers from seeing delete or logical rename events for operations that later fail during delete or commit.\n\nAlso serialize notification.Queue swaps in rename tests and add failure-path coverage.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Skip descendant rename target lookups
Avoid redundant target lookups during recursive directory renames once the destination subtree is known absent.\n\nThe recursive move path now inserts known-absent descendants directly, and the test harness exercises prefixed directory listing so the optimization is covered by a directory rename regression test.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* Tighten rename review tests
Return filer_pb.ErrNotFound from the bucket tracking store test stub so it follows the FilerStore contract, and add a webhook filter case for same-name renames across parent directories.\n\nCo-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
* fix HardLinkId format verb in InsertEntryKnownAbsent error
HardLinkId is a byte slice. %d prints each byte as a decimal number
which is not useful for an identifier. Use %x to match the log line
two lines above.
* only skip descendant target lookup when source and dest use same store
moveFolderSubEntries unconditionally passed skipTargetLookup=true for
every descendant. This is safe when all paths resolve to the same
underlying store, but with path-specific store configuration a child's
destination may map to a different backend that already holds an entry
at that path. Use FilerStoreWrapper.SameActualStore to check per-child
and fall back to the full CreateEntry path when stores differ.
* add nil and create edge-case tests for metadata event scope helpers
* extract pathIsEqualOrUnder into util.IsEqualOrUnder
Identical implementations existed in both replication/replicator.go and
command/filer_sync.go. Move to util.IsEqualOrUnder (alongside the
existing FullPath.IsUnder) and remove the duplicates.
* use MetadataEventTargetDirectory for new-side directory in filer sync
The new-side directory checks and sourceNewKey computation used
message.NewParentPath directly. If NewParentPath were empty (legacy
events, older filer versions during rolling upgrades), sourceNewKey
would be wrong (/filename instead of /dir/filename) and the
UpdateEntry parent path rewrite would panic on slice bounds.
Derive targetDir once from MetadataEventTargetDirectory, which falls
back to resp.Directory when NewParentPath is empty, and use it
consistently for all new-side checks and the sink parent path.
* filer: add StreamMutateEntry bidi streaming RPC
Add a bidirectional streaming RPC that carries all filer mutation
types (create, update, delete, rename) over a single ordered stream.
This eliminates per-request connection overhead for pipelined
operations and guarantees mutation ordering within a stream.
The server handler delegates each request to the existing unary
handlers (CreateEntry, UpdateEntry, DeleteEntry) and uses a proxy
stream adapter for rename operations to reuse StreamRenameEntry logic.
The is_last field signals completion for multi-response operations
(rename sends multiple events per request; create/update/delete
always send exactly one response with is_last=true).
* mount: add streaming mutation multiplexer (streamMutateMux)
Implement a client-side multiplexer that routes all filer mutation RPCs
(create, update, delete, rename) over a single bidirectional gRPC
stream. Multiple goroutines submit requests through a send channel;
a dedicated sendLoop serializes them on the stream; a recvLoop
dispatches responses to waiting callers via per-request channels.
Key features:
- Lazy stream opening on first use
- Automatic reconnection on stream failure
- Permanent fallback to unary RPCs if filer returns Unimplemented
- Monotonic request_id for response correlation
- Multi-response support for rename operations (is_last signaling)
The mux is initialized on WFS and closed during unmount cleanup.
No call sites use it yet — wiring comes in subsequent commits.
* mount: route CreateEntry and UpdateEntry through streaming mux
Wire all CreateEntry call sites to use wfs.streamCreateEntry() which
routes through the StreamMutateEntry stream when available, falling
back to unary RPCs otherwise. Also wire Link's UpdateEntry calls
through wfs.streamUpdateEntry().
Updated call sites:
- flushMetadataToFiler (file flush after write)
- Mkdir (directory creation)
- Symlink (symbolic link creation)
- createRegularFile non-deferred path (Mknod)
- flushFileMetadata (periodic metadata flush)
- Link (hard link: update source + create link + rollback)
* mount: route UpdateEntry and DeleteEntry through streaming mux
Wire remaining mutation call sites through the streaming mux:
- saveEntry (Setattr/chmod/chown/utimes) → streamUpdateEntry
- Unlink → streamDeleteEntry (replaces RemoveWithResponse)
- Rmdir → streamDeleteEntry (replaces RemoveWithResponse)
All filer mutations except Rename now go through StreamMutateEntry
when the filer supports it, with automatic unary RPC fallback.
* mount: route Rename through streaming mux
Wire Rename to use streamMutate.Rename() when available, with
fallback to the existing StreamRenameEntry unary stream.
The streaming mux sends rename as a StreamRenameEntryRequest oneof
variant. The server processes it through the existing rename logic
and sends multiple StreamRenameEntryResponse events (one per moved
entry), with is_last=true on the final response.
All filer mutations now go through a single ordered stream.
* mount: fix stream mux connection ownership
WithGrpcClient(streamingMode=true) closes the gRPC connection when
the callback returns, destroying the stream. Own the connection
directly via pb.GrpcDial so it stays alive for the stream's lifetime.
Close it explicitly in recvLoop on stream failure and in Close on
shutdown.
* mount: fix rename failure for deferred-create files
Three fixes for rename operations over the streaming mux:
1. lookupEntry: fall back to local metadata store when filer returns
"not found" for entries in uncached directories. Files created with
deferFilerCreate=true exist only in the local leveldb store until
flushed; lookupEntry skipped the local store when the parent
directory had never been readdir'd, causing rename to fail with
ENOENT.
2. Rename: wait for pending async flushes and force synchronous flush
of dirty metadata before sending rename to the filer. Covers the
writebackCache case where close() defers the flush to a background
worker that may not complete before rename fires.
3. StreamMutateEntry: propagate rename errors from server to client.
Add error/errno fields to StreamMutateEntryResponse so the mount
can map filer errors to correct FUSE status codes instead of
silently returning OK. Also fix the existing Rename error handler
which could return fuse.OK on unrecognized errors.
* mount: fix streaming mux error handling, sendLoop lifecycle, and fallback
Address PR review comments:
1. Server: populate top-level Error/Errno on StreamMutateEntryResponse for
create/update/delete errors, not just rename. Previously update errors
were silently dropped and create/delete errors were only in nested
response fields that the client didn't check.
2. Client: check nested error fields in CreateEntry (ErrorCode, Error)
and DeleteEntry (Error) responses, matching CreateEntryWithResponse
behavior.
3. Fix sendLoop lifecycle: give each stream generation a stopSend channel.
recvLoop closes it on error to stop the paired sendLoop. Previously a
reconnect left the old sendLoop draining sendCh, breaking ordering.
4. Transparent fallback: stream helpers and doRename fall back to unary
RPCs on transport errors (ErrStreamTransport), including the first
Unimplemented from ensureStream. Previously the first call failed
instead of degrading.
5. Filer rotation in openStream: try all filer addresses on dial failure,
matching WithFilerClient behavior. Stop early on Unimplemented.
6. Pass metadata-bearing context to StreamMutateEntry RPC call so
sw-client-id header is actually sent.
7. Gate lookupEntry local-cache fallback on open dirty handle or pending
async flush to avoid resurrecting deleted/renamed entries.
8. Remove dead code in flushFileMetadata (err=nil followed by if err!=nil).
9. Use string matching for rename error-to-errno mapping in the mount to
stay portable across Linux/macOS (numeric errno values differ).
* mount: make failAllPending idempotent with delete-before-close
Change failAllPending to collect pending entries into a local slice
(deleting from the sync.Map first) before closing channels. This
prevents double-close panics if called concurrently. Also remove the
unused err parameter.
* mount: add stream generation tracking and teardownStream
Introduce a generation counter on streamMutateMux that increments each
time a new stream is created. Requests carry the generation they were
enqueued for so sendLoop can reject stale requests after reconnect.
Add teardownStream(gen) which is idempotent (only acts when gen matches
current generation and stream is non-nil). Both sendLoop and recvLoop
call it on error, replacing the inline cleanup in recvLoop. sendLoop now
actively triggers teardown on send errors instead of silently exiting.
ensureStream waits for the prior generation's recvDone before creating a
new stream, ensuring all old pending waiters are failed before reconnect.
recvLoop now takes the stream, generation, and recvDone channel as
parameters to avoid accessing shared fields without the lock.
* mount: harden Close to prevent races with teardownStream
Nil out stream, cancel, and grpcConn under the lock so that any
concurrent teardownStream call from recvLoop/sendLoop becomes a no-op.
Call failAllPending before closing sendCh to unblock waiters promptly.
Guard recvDone with a nil check for the case where Close is called
before any stream was ever opened.
* mount: make errCh receive ctx-aware in doUnary and Rename
Replace the blocking <-sendReq.errCh with a select that also observes
ctx.Done(). If sendLoop exits via stopSend without consuming a buffered
request, the caller now returns ctx.Err() instead of blocking forever.
The buffered errCh (capacity 1) ensures late acknowledgements from
sendLoop don't block the sender.
* mount: fix sendLoop/Close race and recvLoop/teardown pending channel race
Three related fixes:
1. Stop closing sendCh in Close(). Closing the shared producer channel
races with callers who passed ensureStream() but haven't sent yet,
causing send-on-closed-channel panics. sendCh is now left open;
ensureStream checks m.closed to reject new callers.
2. Drain buffered sendCh items on shutdown. sendLoop defers drainSendCh()
on exit so buffered requests get an ErrStreamTransport on their errCh
instead of blocking forever. Close() drains again for any stragglers
enqueued between sendLoop's drain and the final shutdown.
3. Move failAllPending from teardownStream into recvLoop's defer.
teardownStream (called from sendLoop on send error) was closing
pending response channels while recvLoop could be between
pending.Load and the channel send — a send-on-closed-channel panic.
recvLoop is now the sole closer of pending channels, eliminating
the race. Close() waits on recvDone (with cancel() to guarantee
Recv unblocks) so pending cleanup always completes.
* filer/mount: add debug logging for hardlink lifecycle
Add V(0) logging at every point where a HardLinkId is created, stored,
read, or deleted to trace orphaned hardlink references. Logging covers:
- gRPC server: CreateEntry/UpdateEntry when request carries HardLinkId
- FilerStoreWrapper: InsertEntry/UpdateEntry when entry has HardLinkId
- handleUpdateToHardLinks: entry path, HardLinkId, counter, chunk count
- setHardLink: KvPut with blob size
- maybeReadHardLink: V(1) on read attempt and successful decode
- DeleteHardLink: counter decrement/deletion events
- Mount Link(): when NewHardLinkId is generated and link is created
This helps diagnose how a git pack .rev file ended up with a
HardLinkId during a clone (no hard links should be involved).
* test: add git clone/pull integration test for FUSE mount
Shell script that exercises git operations on a SeaweedFS mount:
1. Creates a bare repo on the mount
2. Clones locally, makes 3 commits, pushes to mount
3. Clones from mount bare repo into an on-mount working dir
4. Verifies clone integrity (files, content, commit hashes)
5. Pushes 2 more commits with renames and deletes
6. Checks out an older revision on the mount clone
7. Returns to branch and pulls with real changes
8. Verifies file content, renames, deletes after pull
9. Checks git log integrity and clean status
27 assertions covering file existence, content, commit hashes,
file counts, renames, deletes, and git status. Run against any
existing mount: bash test-git-on-mount.sh /path/to/mount
* test: add git clone/pull FUSE integration test to CI suite
Add TestGitOperations to the existing fuse_integration test framework.
The test exercises git's full file operation surface on the mount:
1. Creates a bare repo on the mount (acts as remote)
2. Clones locally, makes 3 commits (files, bulk data, renames), pushes
3. Clones from mount bare repo into an on-mount working dir
4. Verifies clone integrity (content, commit hash, file count)
5. Pushes 2 more commits with new files, renames, and deletes
6. Checks out an older revision on the mount clone
7. Returns to branch and pulls with real fast-forward changes
8. Verifies post-pull state: content, renames, deletes, file counts
9. Checks git log integrity (5 commits) and clean status
Runs automatically in the existing fuse-integration.yml CI workflow.
* mount: fix permission check with uid/gid mapping
The permission checks in createRegularFile() and Access() compared
the caller's local uid/gid against the entry's filer-side uid/gid
without applying the uid/gid mapper. With -map.uid 501:0, a directory
created as uid 0 on the filer would not match the local caller uid
501, causing hasAccess() to fall through to "other" permission bits
and reject write access (0755 → other has r-x, no w).
Fix: map entry uid/gid from filer-space to local-space before the
hasAccess() call so both sides are in the same namespace.
This fixes rsync -a failing with "Permission denied" on mkstempat
when using uid/gid mapping.
* mount: fix Mkdir/Symlink returning filer-side uid/gid to kernel
Mkdir and Symlink used `defer wfs.mapPbIdFromFilerToLocal(entry)` to
restore local uid/gid, but `outputPbEntry` writes the kernel response
before the function returns — so the kernel received filer-side
uid/gid (e.g., 0:0). macFUSE then caches these and rejects subsequent
child operations (mkdir, create) because the caller uid (501) doesn't
match the directory owner (0), and "other" bits (0755 → r-x) lack
write permission.
Fix: replace the defer with an explicit call to mapPbIdFromFilerToLocal
before outputPbEntry, so the kernel gets local uid/gid.
Also add nil guards for UidGidMapper in Access and createRegularFile
to prevent panics in tests that don't configure a mapper.
This fixes rsync -a "Permission denied" on mkpathat for nested
directories when using uid/gid mapping.
* mount: fix Link outputting filer-side uid/gid to kernel, add nil guards
Link had the same defer-before-outputPbEntry bug as Mkdir and Symlink:
the kernel received filer-side uid/gid because the defer hadn't run
yet when outputPbEntry wrote the response.
Also add nil guards for UidGidMapper in Access and createRegularFile
so tests without a mapper don't panic.
Audit of all outputPbEntry/outputFilerEntry call sites:
- Mkdir: fixed in prior commit (explicit map before output)
- Symlink: fixed in prior commit (explicit map before output)
- Link: fixed here (explicit map before output)
- Create (existing file): entry from maybeLoadEntry (already mapped)
- Create (deferred): entry has local uid/gid (never mapped to filer)
- Create (non-deferred): createRegularFile defer runs before return
- Mknod: createRegularFile defer runs before return
- Lookup: entry from lookupEntry (already mapped)
- GetAttr: entry from maybeReadEntry/maybeLoadEntry (already mapped)
- readdir: entry from cache (mapIdFromFilerToLocal) or filer (mapped)
- saveEntry: no kernel output
- flushMetadataToFiler: no kernel output
- flushFileMetadata: no kernel output
* test: fix git test for same-filesystem FUSE clone
When both the bare repo and working clone live on the same FUSE mount,
git's local transport uses hardlinks and cross-repo stat calls that
fail on FUSE. Fix:
- Use --no-local on clone to disable local transport optimizations
- Use reset --hard instead of checkout to stay on branch
- Use fetch + reset --hard origin/<branch> instead of git pull to
avoid local transport stat failures during fetch
* adjust logging
* test: use plain git clone/pull to exercise real FUSE behavior
Remove --no-local and fetch+reset workarounds. The test should use
the same git commands users run (clone, reset --hard, pull) so it
reveals real FUSE issues rather than hiding them.
* test: enable V(1) logging for filer/mount and collect logs on failure
- Run filer and mount with -v=1 so hardlink lifecycle logs (V(0):
create/delete/insert, V(1): read attempts) are captured
- On test failure, automatically dump last 16KB of all process logs
(master, volume, filer, mount) to test output
- Copy process logs to /tmp/seaweedfs-fuse-logs/ for CI artifact upload
- Update CI workflow to upload SeaweedFS process logs alongside test output
* mount: clone entry for filer flush to prevent uid/gid race
flushMetadataToFiler and flushFileMetadata used entry.GetEntry() which
returns the file handle's live proto entry pointer, then mutated it
in-place via mapPbIdFromLocalToFiler. During the gRPC call window, a
concurrent Lookup (which takes entryLock.RLock but NOT fhLockTable)
could observe filer-side uid/gid (e.g., 0:0) on the file handle entry
and return it to the kernel. The kernel caches these attributes, so
subsequent opens by the local user (uid 501) fail with EACCES.
Fix: proto.Clone the entry before mapping uid/gid for the filer request.
The file handle's live entry is never mutated, so concurrent Lookup
always sees local uid/gid.
This fixes the intermittent "Permission denied" on .git/FETCH_HEAD
after the first git pull on a mount with uid/gid mapping.
* mount: add debug logging for stale lock file investigation
Add V(0) logging to trace the HEAD.lock recreation issue:
- Create: log when O_EXCL fails (file already exists) with uid/gid/mode
- completeAsyncFlush: log resolved path, saved path, dirtyMetadata,
isDeleted at entry to trace whether async flush fires after rename
- flushMetadataToFiler: log the dir/name/fullpath being flushed
This will show whether the async flush is recreating the lock file
after git renames HEAD.lock → HEAD.
* mount: prevent async flush from recreating renamed .lock files
When git renames HEAD.lock → HEAD, the async flush from the prior
close() can run AFTER the rename and re-insert HEAD.lock into the
meta cache via its CreateEntryRequest response event. The next git
pull then sees HEAD.lock and fails with "File exists".
Fix: add isRenamed flag on FileHandle, set by Rename before waiting
for the pending async flush. The async flush checks this flag and
skips the metadata flush for renamed files (same pattern as isDeleted
for unlinked files). The data pages still flush normally.
The Rename handler flushes deferred metadata synchronously (Case 1)
before setting isRenamed, ensuring the entry exists on the filer for
the rename to proceed. For already-released handles (Case 2), the
entry was created by a prior flush.
* mount: also mark renamed inodes via entry.Attributes.Inode fallback
When GetInode fails (Forget already removed the inode mapping), the
Rename handler couldn't find the pending async flush to set isRenamed.
The async flush then recreated the .lock file on the filer.
Fix: fall back to oldEntry.Attributes.Inode to find the pending async
flush when the inode-to-path mapping is gone. Also extract
MarkInodeRenamed into a method on FileHandleToInode for clarity.
* mount: skip async metadata flush when saved path no longer maps to inode
The isRenamed flag approach failed for refs/remotes/origin/HEAD.lock
because neither GetInode nor oldEntry.Attributes.Inode could find the
inode (Forget already evicted the mapping, and the entry's stored
inode was 0).
Add a direct check in completeAsyncFlush: before flushing metadata,
verify that the saved path still maps to this inode in the inode-to-path
table. If the path was renamed or removed (inode mismatch or not found),
skip the metadata flush to avoid recreating a stale entry.
This catches all rename cases regardless of whether the Rename handler
could set the isRenamed flag.
* mount: wait for pending async flush in Unlink before filer delete
Unlink was deleting the filer entry first, then marking the draining
async-flush handle as deleted. The async flush worker could race between
these two operations and recreate the just-unlinked entry on the filer.
This caused git's .lock files (e.g. refs/remotes/origin/HEAD.lock) to
persist after git pull, breaking subsequent git operations.
Move the isDeleted marking and add waitForPendingAsyncFlush() before
the filer delete so any in-flight flush completes first. Even if the
worker raced past the isDeleted check, the wait ensures it finishes
before the filer delete cleans up any recreated entry.
* mount: reduce async flush and metadata flush log verbosity
Raise completeAsyncFlush entry log, saved-path-mismatch skip log, and
flushMetadataToFiler entry log from V(0) to V(3)/V(4). These fire for
every file close with writebackCache and are too noisy for normal use.
* filer: reduce hardlink debug log verbosity from V(0) to V(4)
HardLinkId logs in filerstore_wrapper, filerstore_hardlink, and
filer_grpc_server fire on every hardlinked file operation (git pack
files use hardlinks extensively) and produce excessive noise.
* mount/filer: reduce noisy V(0) logs for link, rmdir, and empty folder check
- weedfs_link.go: hardlink creation logs V(0) → V(4)
- weedfs_dir_mkrm.go: non-empty folder rmdir error V(0) → V(1)
- empty_folder_cleaner.go: "not empty" check log V(0) → V(4)
* filer: handle missing hardlink KV as expected, not error
A "kv: not found" on hardlink read is normal when the link blob was
already cleaned up but a stale entry still references it. Log at V(1)
for not-found; keep Error level for actual KV failures.
* test: add waitForDir before git pull in FUSE git operations test
After git reset --hard, the FUSE mount's metadata cache may need a
moment to settle on slow CI. The git pull subprocess (unpack-objects)
could fail to stat the working directory. Poll for up to 5s.
* Update git_operations_test.go
* wait
* test: simplify FUSE test framework to use weed mini
Replace the 4-process setup (master + volume + filer + mount) with
2 processes: "weed mini" (all-in-one) + "weed mount". This simplifies
startup, reduces port allocation, and is faster on CI.
* test: fix mini flag -admin → -admin.ui
* filer: reduce allocations in MatchStorageRule
Optimize MatchStorageRule to avoid allocations in common cases:
- Return singleton emptyPathConf when no rules match (zero allocations)
- Return existing rule directly when only one rule matches (zero allocations)
- Only allocate and merge when multiple rules match (rare case)
Based on heap profile analysis showing 111MB allocated from 1.64M calls
to this function during 180 seconds of operation.
* filer: add fast path for getActualStore when no path-specific stores
Add hasPathSpecificStore flag to FilerStoreWrapper to skip
the MatchPrefix() call and []byte(path) conversion when no
path-specific stores are configured (the common case).
Based on heap profile analysis showing 1.39M calls to this
function during 180 seconds of operation, each requiring a
string-to-byte slice conversion for the MatchPrefix call.
* filer/foundationdb: use sync.Pool for tuple allocation in genKey
Use sync.Pool to reuse tuple.Tuple slices in genKey(), reducing
allocation overhead for every FoundationDB operation.
Based on heap profile analysis showing 102MB allocated from 1.79M
calls to genKey() during 180 seconds of operation. The Pack() call
still allocates internally, but this reduces the tuple slice
allocation overhead by ~50%.
* filer: use sync.Pool for protobuf Entry and FuseAttributes
Add pooling for filer_pb.Entry and filer_pb.FuseAttributes in
EncodeAttributesAndChunks and DecodeAttributesAndChunks to reduce
allocations during filer store operations.
Changes:
- Add pbEntryPool with pre-allocated FuseAttributes
- Add EntryAttributeToExistingPb for in-place attribute conversion
- Update ToExistingProtoEntry to reuse existing Attributes when available
Based on heap profile showing:
- EncodeAttributesAndChunks: 69.5MB cumulative
- DecodeAttributesAndChunks: 46.5MB cumulative
- EntryAttributeToPb: 47.5MB flat allocations
* log_buffer: use sync.Pool for LogEntry in readTs
Add logEntryPool to reuse filer_pb.LogEntry objects in readTs(),
which is called frequently during binary search in ReadFromBuffer.
This function only needs the TsNs field from the unmarshaled entry,
so pooling the LogEntry avoids repeated allocations.
Based on heap profile showing readTs with 188MB cumulative allocations
from timestamp lookups during log buffer reads.
* pb: reduce gRPC metadata allocations in interceptor
Optimize requestIDUnaryInterceptor and WithGrpcClient to reduce
metadata allocations on every gRPC request:
- Use AppendToOutgoingContext instead of NewOutgoingContext + New()
This avoids creating a new map[string]string for single key-value pairs
- Check FromIncomingContext return value before using metadata
Based on heap profile showing metadata operations contributing 0.45GB
(10.5%) of allocations, with requestIDUnaryInterceptor being the main
source at 0.44GB cumulative.
Expected reduction: ~0.2GB from avoiding map allocations per request.
* filer/log_buffer: address code review feedback
- Use proto.Reset() instead of manual field clearing in resetLogEntry
for more idiomatic and comprehensive state clearing
- Add resetPbEntry() call before pool return in error path for
consistency with success path in DecodeAttributesAndChunks
* log_buffer: reduce PreviousBufferCount from 32 to 4
Reduce the number of retained previous buffers from 32 to 4.
Each buffer is 8MB, so this reduces the maximum retained memory
from 256MB to 32MB for previous buffers.
Most subscribers catch up quickly, so 4 buffers (32MB) should
be sufficient while significantly reducing memory footprint.
* filer/foundationdb: use defer for tuple pool cleanup in genKey
Refactor genKey to use defer for returning the pooled tuple.
This ensures the pooled object is always returned even if
store.seaweedfsDir.Pack panics, making the code more robust.
Also simplifies the code by removing the temporary variable.
* filer: early-stop MatchStorageRule prescan after 2 matches
Stop the prescan callback after finding 2 matches since we only
need to know if there are 0, 1, or multiple matches. This avoids
unnecessarily scanning the rest of the trie when many rules exist.
* fix: address critical code review issues
filer_conf.go:
- Remove mutable singleton emptyPathConf that could corrupt shared state
- Return fresh copy for no-match case and cloned copy for single-match case
- Add clonePathConf helper to create shallow copies safely
grpc_client_server.go:
- Remove incorrect AppendToOutgoingContext call in server interceptor
(that API is for outbound client calls, not server-side handlers)
- Rely on request_id.Set and SetTrailer for request ID propagation
* fix: treat FilerConf_PathConf as immutable
Fix callers that were incorrectly mutating the returned PathConf:
- filer_server_handlers_write.go: Use local variable for MaxFileNameLength
instead of mutating the shared rule
- command_s3_bucket_quota_check.go: Create new PathConf explicitly when
modifying config instead of mutating the returned one
This allows MatchStorageRule to safely return the singleton or direct
references without copying, restoring the memory optimization.
Callers must NOT mutate the returned *FilerConf_PathConf.
* filer: add ClonePathConf helper for creating mutable copies
Add reusable ClonePathConf function that creates a mutable copy of
a PathConf. This is useful when callers need to modify config before
calling SetLocationConf.
Update command_s3_bucket_quota_check.go to use the new helper.
Also fix redundant return statement in DeleteLocationConf.
* fmt
* filer: fix protobuf pool reset to clear internal fields
Address code review feedback:
1. resetPbEntry/resetFuseAttributes: Use struct assignment (*e = T{})
instead of field-by-field reset to clear protobuf internal fields
(unknownFields, sizeCache) that would otherwise accumulate across
pool reuses, causing data corruption or memory bloat.
2. EntryAttributeToExistingPb: Add nil guard for attr parameter to
prevent panic if caller passes nil.
* log_buffer: reset logEntry before pool return in error path
For consistency with success path, reset the logEntry before putting
it back in the pool in the error path. This prevents the pooled object
from holding references to partially unmarshaled data.
* filer: optimize MatchStorageRule and document ClonePathConf
1. Avoid double []byte(path) conversion in multi-match case by
converting once and reusing pathBytes.
2. Add IMPORTANT comment to ClonePathConf documenting that it must
be kept in sync with filer_pb.FilerConf_PathConf fields when
the protobuf evolves.
* filer/log_buffer: fix data race and use defer for pool cleanup
1. entry_codec.go EncodeAttributesAndChunks: Fix critical data race -
proto.Marshal may return a slice sharing memory with the message.
Copy the data before returning message to pool to prevent corruption.
2. entry_codec.go DecodeAttributesAndChunks: Use defer for cleaner
pool management, ensuring message is always returned to pool.
3. log_buffer.go readTs: Use defer for pool cleanup, removing
duplicated resetLogEntry/Put calls in success and error paths.
* filer: fix ClonePathConf field order and add comprehensive test
1. Fix field order in ClonePathConf to match protobuf struct definition
(WormGracePeriodSeconds before WormRetentionTimeSeconds).
2. Add TestClonePathConf that constructs a fully-populated PathConf,
calls ClonePathConf, and asserts equality of all exported fields.
This will catch future schema drift when new fields are added.
3. Add TestClonePathConfNil to verify nil handling.
* filer: use reflection in ClonePathConf test to detect schema drift
Replace hardcoded field comparisons with reflection-based comparison.
This automatically catches:
1. New fields added to the protobuf but not copied in ClonePathConf
2. Missing non-zero test values for any exported field
The test iterates over all exported fields using reflect and compares
src vs clone values, failing if any field differs.
* filer: update EntryAttributeToExistingPb comment to reflect nil handling
The function safely handles nil attr by returning early, but the comment
incorrectly stated 'attr must not be nil'. Update comment to accurately
describe the defensive behavior.
* Fix review feedback: restore request ID propagation and remove redundant resets
1. grpc_client_server.go: Restore AppendToOutgoingContext for request ID
so handlers making downstream gRPC calls will automatically propagate
the request ID to downstream services.
2. entry_codec.go: Remove redundant resetPbEntry calls after Get.
The defer block ensures reset before Put, so next Get receives clean object.
3. log_buffer.go: Remove redundant resetLogEntry call after Get for
same reason - defer already handles reset before Put.