* mount: drop the unused go-fuse fs package dependency
WFS embedded fs.Inode but never used any of its methods, and the only
other reference was RENAME_EXCHANGE, a constant sitting next to three
literals. Removing both drops fs and five internal packages from the
mount build graph.
* mount: build the package on windows
Windows has no fcntl lock types, no O_ACCMODE and no x/sys/unix, so a
handful of constants kept weed/mount pinned to unix even though the code
using them is portable in-memory logic. Route them through per-OS shims
and give setBlksize a windows no-op.
The POSIX lock table now compiles on windows but stays unreachable:
WinFsp resolves byte-range locks in its own kernel driver, so nothing
will feed it there.
go.mod points at a go-fuse branch commit and needs repinning to a release
tag once that lands.
* ci: cross-compile for windows
Nothing caught the unix-only constants creeping into weed/mount until a
release build failed.
* mount: let readdir feed a sink instead of the kernel buffer
doReadDirectory wrote directly into fuse.DirEntryList, which is the
kernel's wire format. A front end that is not the kernel would have to
pack entries only to parse them straight back out.
Route it through DirEntrySink instead. ReadDir and ReadDirPlus pass the
reply buffer, so nothing changes for the FUSE server.
* mount: pin go-fuse v2.9.4 for the windows build
With -dlm, GetLk/SetLk/SetLkw and the flush/release cleanup paths go to
the inode's owner filer via the PosixLock RPC instead of the local table,
so flock/fcntl are honored across mounts. Advisory locking rides the same
switch as whole-file write coordination — and is therefore off under
writeback cache, which implies single-writer. Keys are the inode identity
(HardLinkId else path); SetLkw is client-side polling with the FUSE cancel
channel (no server wait queue); a per-mount session id namespaces owners;
a local hint avoids a release RPC on every close. Background unlock/release
RPCs are bounded so a stuck filer can't hang close().
* Add FUSE integration tests for POSIX file locking
Test flock() and fcntl() advisory locks over the FUSE mount:
- Exclusive and shared flock with conflict detection
- flock upgrade (shared to exclusive) and release on close
- fcntl F_SETLK write lock conflicts and shared read locks
- fcntl F_GETLK conflict reporting on overlapping byte ranges
- Non-overlapping byte-range locks held independently
- F_SETLKW blocking until conflicting lock is released
- Lock release on file descriptor close
- Concurrent lock contention with multiple workers
* Fix review feedback in POSIX lock integration tests
- Assert specific EAGAIN error on fcntl lock conflicts instead of generic Error
- Use O_APPEND in concurrent contention test so workers append rather than overwrite
- Verify exact line count (numWorkers * writesPerWorker) after concurrent test
- Check unlock error in F_SETLKW blocking test goroutine
* Refactor fcntl tests to use subprocesses for inter-process semantics
POSIX fcntl locks use the process's files_struct as lock owner, so all
fds in the same process share the same owner and never conflict. This
caused the fcntl tests to silently pass without exercising lock conflicts.
Changes:
- Add TestFcntlLockHelper subprocess entry point with hold/try/getlk actions
- Add lockHolder with channel-based coordination (no scanner race)
- Rewrite all fcntl tests to run contenders in separate subprocesses
- Fix F_UNLCK int16 cast in GetLk assertion for type-safe comparison
- Fix concurrent test: use non-blocking flock with retry to avoid
exhausting go-fuse server reader goroutines (blocking FUSE SETLKW
can starve unlock request processing, causing deadlock)
flock tests remain same-process since flock uses per-struct-file owners.
* Fix misleading comment and error handling in lock test subprocess
- Fix comment: tryLockInSubprocess tests a subprocess, not the test process
- Distinguish EAGAIN/EACCES from unexpected errors in subprocess try mode
so real failures aren't silently masked as lock conflicts
* Fix CI race in FcntlReleaseOnClose and increase flock retry budget
- FcntlReleaseOnClose: retry lock acquisition after subprocess exits
since the FUSE server may not process Release immediately
- ConcurrentLockContention: increase retry limit from 500 to 3000
(5s → 30s budget) to handle CI load
* separating flock and fcntl in the in-memory lock table and cleaning them up through the right release path: PID for POSIX locks, lock owner for flock
* ReleasePosixOwner
* weed/mount: flush before releasing posix close owner
* weed/mount: keep woken lock waiters from losing inode state
* test/fuse: make blocking fcntl helper state explicit
* test/fuse: assert flock contention never overlaps
* test/fuse: stabilize concurrent lock contention check
* test/fuse: make concurrent contention writes deterministic
* weed/mount: retry synchronous metadata flushes
* Add POSIX byte-range lock table for FUSE mount
Implement PosixLockTable with per-inode range lock tracking supporting:
- Shared (F_RDLCK) and exclusive (F_WRLCK) byte-range locks
- Conflict detection across different lock owners
- Lock coalescing for adjacent/overlapping same-owner same-type locks
- Lock splitting on partial-range unlock
- Blocking waiter support for SetLkw with cancellation
- Owner-based cleanup for Release
* Wire POSIX lock handlers into FUSE mount
Implement GetLk, SetLk, SetLkw on WFS delegating to PosixLockTable.
Add posixLocks field to WFS and initialize in constructor.
Clean up locks on Release via ReleaseOwner using ReleaseIn.LockOwner.
Remove ENOSYS stubs from weedfs_unsupported.go.
* Enable POSIX and flock lock capabilities in FUSE mount
Set EnableLocks: true in mount options to advertise
CAP_POSIX_LOCKS and CAP_FLOCK_LOCKS during FUSE INIT.
* Avoid thundering herd in lock waiter wake-up
Replace broadcast-all wakeWaiters with selective wakeEligibleWaiters
that checks each waiter's requested lock against remaining held locks.
Only waiters whose request no longer conflicts are woken; others stay
queued. Store the requested lockRange in each lockWaiter to enable this.
* Fix uint64 overflow in adjacency check for lock coalescing
Guard h.End+1 and lk.End+1 with < ^uint64(0) checks so that
End == math.MaxUint64 (EOF) does not wrap to 0 and falsely merge
non-adjacent locks.
* Add test for non-adjacent ranges with gap not being coalesced