fix(lock): fence write commit on lock loss (backlog#899 Phase 2)
Phase 0+1 (#4388) made object write locks refreshable and marks the guard
lost when the heartbeat can no longer refresh a quorum, but does not act on
it. Under a partition a long write's lock can expire on an unreachable node
and be reclaimed, letting a third party re-acquire it; the original writer
keeps going and both commit -- a double write.
Expose the loss signal through NamespaceLockGuard::is_lock_lost() and
ObjectLockDiagGuard::is_lock_lost(), and fence the commit in put_object and
complete_multipart_upload: immediately before rename_data (the atomic commit
point), abort with a retryable NamespaceLockQuorumUnavailable (503) if the
lock was lost. In multipart the check precedes cleanup_multipart_path so a
lost lock leaves the upload intact and retryable. A write that already
reached rename_data Ok is durable and never aborted.
The loss criterion is unchanged (reacts to Phase 1's signal). Heal and the
long-GET read side are deferred follow-ups.
EventName::mask() recursed forever for the three internal leaf events
(ObjectRemovedAbortMultipartUpload, ObjectCreatedCreateMultipartUpload,
ObjectRemovedDeleteObjects): their discriminants fall past
LAST_SINGLE_TYPE_VALUE so mask() took the compound branch, but expand()
returns vec![*self] for them, so mask() called itself with the same
value and overflowed the stack.
Detect the self-expanding leaf case (expand() yields exactly self) and
give it a dedicated bit derived from its discriminant. Those bits sit
above the single-type bits, so they never collide with each other or
with any compound 'All' mask.
Add exhaustive regression tests: every variant's mask() terminates, the
three internal masks are non-zero and mutually distinct and disjoint
from the single-type bits, and Everything covers all single-type bits.
Refs: https://github.com/rustfs/backlog/issues/965
The FTPS and WebDAV authentication handlers compared the client-supplied secret
key against the stored secret with `String::eq`, which short-circuits on the
first differing byte. A network attacker who knows (or enumerates) a valid
access key can recover the secret key byte-by-byte via response-timing analysis;
neither path is rate limited.
Switch both to a constant-time comparison using `subtle::ConstantTimeEq`, the
same primitive the SFTP handler and `rustfs/src/auth.rs::constant_time_eq`
already use. `subtle` is added to the `ftps` and `webdav` feature dependency
sets (it was previously gated on `sftp` only).
Addresses GHSA-3p3x-734c-h5vx.
The internode RPC HMAC secret is derived from the S3 credential pair via
`derive_rpc_secret` when `RUSTFS_RPC_SECRET` is unset. The derivation uses the
secret key as the HMAC key, so when the default secret key (`rustfsadmin`) is in
effect the derived RPC secret is a fixed, publicly computable value. Any network
peer can then forge valid `x-rustfs-signature` headers and invoke internode RPC
routes (e.g. `read_file_stream`), bypassing S3 IAM entirely.
`normalize_rpc_secret` already rejected the literal default when it was supplied
directly, but `resolve_rpc_secret` still derived a secret from the default
credential pair. Make the derivation path fail closed: refuse to derive while
the default secret key is in effect, forcing operators to set `RUSTFS_RPC_SECRET`
(or a non-default `RUSTFS_SECRET_KEY`). A default access key paired with a
non-default secret key remains safe and is still allowed.
Addresses GHSA-68cw-96m3-h2cf (incomplete-fix follow-up to CVE-2026-45039).
Replication deletes dropped the S3 `versionId` query parameter for every
replication request, conveying the version only via the internal
x-*-source-version-id header. A generic (non-MinIO/RustFS) S3 target ignores
that header, so a version purge degenerated into a delete-marker creation while
the source still stamped VersionPurgeStatus=Complete — a silent divergence.
Only omit the query `versionId` when propagating a delete-marker CREATION
(the target must mint its own marker); version purges, delete-marker purges and
force deletes now address the exact version. Extracted into
resolve_delete_api_version_id with unit coverage.
Fixesrustfs/backlog#857
Disk-replacement heal previously repaired only the latest version of each
object and never enumerated objects whose latest version is a delete marker,
so old versions were left unrepaired on a replaced drive.
Switch heal enumeration from list_objects_v2 (latest-only) to
list_object_versions (every version incl. delete markers), thread the concrete
version_id into the existing per-version heal_object, and make resume
cursor-based instead of positional: an opaque (marker, version_marker) paging
token persisted in ResumeState, a length-prefixed injective per-version dedup
key, schema_version bumps (v2) migrated independently in each of the two
persisted files, and a retry that resets both managers together (fixing a
latent rescan-skips-everything defect). Adds a real-disk-wipe e2e regression
suite proving old versions and delete-marker-latest objects are physically
restored.
Fixesrustfs/backlog#918Fixesrustfs/backlog#919Closesrustfs/backlog#854
* fix(ecstore): make post-commit old data dir cleanup best-effort (backlog#898)
A write is authoritatively committed once rename_data returns Ok (the new
version is durable on >= write_quorum disks and immediately readable). The
subsequent reclamation of the now-dereferenced old object/<data_dir> is pure
space reclamation, yet commit_rename_data_dir propagated a below-quorum GC
failure via `?` into ErasureWriteQuorum -> 503, producing a false-negative
ACK for an already-persisted write. This is a deliberate divergence from
MinIO (erasure-object.go:1577), which couples the two; the divergence is
justified by durability semantics, not parity.
Changes:
- commit_rename_data_dir now returns a structured OldDataDirCleanup receipt
and never returns Err. Adds an old==committed-dir anti-misdelete guard and
a committed_data_dir parameter. Classification is extracted into pure
functions (classify_old_data_dir_cleanup / map_cleanup_join_result /
is_cleanup_not_found) so it is unit-testable. Task panic/cancel is mapped to
a non-ignored DiskError::other (never DiskNotFound), and not-found is
normalized to reclaimed.
- object.rs / multipart.rs consume the receipt instead of `?`. The result
reverts to Ok, so the invalidate_get_object_metadata_cache self-heal and the
capacity/compression accounting that a `?` early-return previously skipped
now run on the cleanup-failure path too.
- On residue, report_old_data_dir_cleanup emits leak metrics and enqueues an
object heal over the existing heal channel (disk-health signal replacing the
503). heal_object -> reclaim_orphan_data_dirs already reclaims unreferenced
local data dirs, closing the loop end to end.
- Adds rustfs_old_data_dir_* counters (attempted/reclaimed/leaked/below_quorum)
as the operator-visible backstop for leaked residue.
- Adds a test-only (#[cfg(test)]) delete fault-injection seam; in production it
inlines to a no-op None and has no behavioral effect.
Tests: pure-function A/C group + join-error mapping + actions decision; A5/A5b
real-disk guard/reclaim integration; end-to-end overwrite returning 200 while
old-data-dir cleanup fails. #864 rollback guard test remains green.
* fix(ecstore): resolve merge conflicts with origin/main in io_primitives.rs
---------
Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: houseme <housemecn@gmail.com>
fix(protocols): allow clippy type_complexity in test mock struct
The MockExpirationObjectBackend test struct uses a nested generic type
that triggers clippy::type_complexity. Add #[allow(clippy::type_complexity)]
since this is test-only code where the type is inherent to the mock design.
Co-authored-by: houseme <housemecn@gmail.com>
Merge the hotpath-rs wall-time instrumentation from the backlog#936 analysis worktree behind an opt-in 'hotpath' cargo feature, keeping the default build at zero overhead and zero dependency.
- hotpath is an optional dependency everywhere (dep:hotpath feature syntax); the default dependency tree contains no hotpath crate at all
- 40+ measurement points across S3 handlers, ECStore/SetDisks object and multipart ops, erasure encode/decode, bitrot, LocalDisk I/O, FileMeta codec, and HashReader
- attribute sites use #[cfg_attr(feature = "hotpath", hotpath::measure)]; async_trait bodies use per-crate hp_guard! macros (ecstore + rustfs bin); rio gates measure_block! behind hp_measure_block!
- feature chain: rustfs -> rustfs-ecstore -> rustfs-rio / rustfs-filemeta, each crate owning its own gate
- hotpath-alloc is intentionally not wired up (hotpath 0.21.x TLS panic on cross-thread guard drop under tokio, see backlog#935); mimalloc stays the unconditional global allocator
- docs/development/hotpath-profiling.md documents building, HOTPATH_* env vars, SIGTERM report flow, and how to reproduce the backlog#936 timing reports
Refs: https://github.com/rustfs/backlog/issues/935 (HP-14, item 2), https://github.com/rustfs/backlog/issues/936
Co-authored-by: heihutu <heihutu@gmail.com>
* feat(ecstore): add stripe-advance handles for deferred bitrot readers
Give DeferredObjectReader a shared pending state and expose a
DeferredReaderStripeHandle that advances the still-unopened source by whole
bitrot blocks using the same bitrot_encoded_range geometry the reader was
created with (identity mapping when hash_size == 0). This lets the GET decode
path open a parity shard aligned to the stripe where a data shard failed
instead of reading every parity shard on every stripe (backlog#923).
An already-opened (or failed) reader rejects the advance so callers retire it
rather than engage it out of alignment; bitrot verification after an advance
checks the advanced stripe's block against that stripe's stored hash.
Co-Authored-By: heihutu <heihutu@gmail.com>
* perf(ecstore): read only data shards on healthy lockstep GET behind opt-in gate
PR #4289's lockstep fix made every reconstruction-verifying GET read all
data+parity shards per stripe; the parity blocks are read, bitrot-hashed and
then discarded, a deterministic 2x read-bytes/IOPS/hash-CPU amplification on
healthy 2+2 objects (backlog#923). With the new opt-in gate
RUSTFS_GET_LOCKSTEP_DATA_SHARDS_ONLY_ENABLE=true (default: false, behavior
identical to main):
- read_lockstep keeps only the data slots engaged while the object is
healthy; parity slots stay unopened deferred readers.
- When a data shard is missing or dies at stripe k, parity readers are
engaged mid-object by advancing their deferred stripe handle to stripe k,
preserving the lockstep alignment invariant from backlog#832.
- Degraded stripes engage one parity beyond the decode quorum so
reconstruction verification keeps an extra source to check against
(erasure.rs only verifies when available > data shards); an engaged parity
reader that errors is retired for the rest of the object like any other,
and a parity reader that cannot be realigned is retired instead of being
read out of position.
- fill_deferred_bitrot_readers records stripe handles for deferred slots and,
gate-on only, swaps eagerly opened parity readers for unopened deferred
ones so they remain engageable mid-object; ready/error bookkeeping used by
quorum decisions is untouched.
- Both GET paths (legacy duplex via Erasure::decode_with_stripe_handles,
codec streaming via ParallelReader::with_deferred_parity_handles) carry the
handles from reader setup.
Short-read -> UnexpectedEof -> whole-object retirement and the
inconsistent-source rejection are unchanged in both gate modes; tests lock
the healthy-path data-shards-only call counts, the default read-all-shards
behavior, mid-object parity engagement for streaming and hash_size==0
formats, and mid-stream inconsistent-parity rejection.
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
fix(lock): renew distributed locks via heartbeat; wire server refresh (backlog#899)
A held distributed write lock had a fixed 30s TTL and was never renewed, so
any operation exceeding it got its per-node lease reclaimed and stolen by a
contender, causing split-brain writes. This implements Phase 0 + Phase 1 of the
#899 design (Phase 2 abort-on-loss is deferred and tracked in code comments).
Phase 0 (server refresh wiring, P0):
- node_service handle_refresh was a no-op stub that parsed args then always
returned success=true. Extract a testable `refresh_lock` free function that
actually delegates to the node's lock backend. Not-found maps to
success=false with no error_info, so RemoteClient::refresh keeps its
Ok(resp.success) semantics and yields a real not_found signal to the
coordinator heartbeat. Without this, client heartbeats were silently no-ops.
Phase 1 (client heartbeat + safe interval + observability):
- DistributedLockGuard spawns a heartbeat that refreshes every per-client lease
on a derived interval; interval is derived without Duration::clamp
(entries<=1 or interval>=ttl => no spawn), fixing the sub-second-ttl panic.
- Add LockLostSignal: declare the lock lost when not_found exceeds
entries.len() - refresh_quorum; RPC errors are not counted (absorbed by the
ttl > interval margin). Expose is_lock_lost()/lock_lost() for observers.
- disarm(), release(), and Drop now abort the heartbeat before releasing so no
refresh races the unlock (refresh only extends, never creates, a lease).
- Reclaim path stays behaviorally unchanged but now warns with owner/resource/
lease age and records a metric (#698 scavenger preserved).
- Add DEFAULT_LOCK_REFRESH_INTERVAL, LockRequest.refresh_interval (serde default
for RPC back-compat) + builder, and lock lifecycle metrics.
Open questions adopt the design's documented defaults (marked TODO in code):
refresh not-found -> Ok(false)/error_info=None; lost-quorum base entries.len();
DEFAULT_LOCK_REFRESH_INTERVAL=10s.
Tests: heartbeat keepalive/quorum-loss/jitter/boundary/disarm (lock crate),
server refresh delegation (rustfs), and end-to-end survives-past-ttl plus
crashed-owner-reclaim regressions (namespace).
* perf(ecstore): move speculative tmp cleanup off the PUT hot path
On a successful PUT, rename_data has already moved the data dir out of the tmp workspace, so the delete_all(RUSTFS_META_TMP_BUCKET) at the end of SetDisks::put_object is a speculative no-op safety net. It was awaited inline on the response path, where profiling (backlog#924 / HP-3) showed the same-disk queueing behind fsync-heavy load turns a ~49us no-op into ~9ms average (p99 77ms, macOS F_FULLFSYNC amplified) added to every PUT.
Run that cleanup on a spawned task instead, keeping it as a real backstop (rename_data's remove_std only removes empty dirs and silently ignores failures). The failure path (quorum loss / rollback) keeps the cleanup inline so a failed PUT never returns with tmp shards still on disk. If the process dies before the spawned task runs, cleanup_stale_tmp_objects (24h expiry, 5-minute loop) reclaims the entry.
Scope note: ops/multipart.rs delete_all on RUSTFS_META_MULTIPART_BUCKET is intentionally untouched; it removes real leftovers and deferring it would widen CompleteMultipartUpload/Abort races.
Regression tests (hermetic SetDisks on formatted local disks, no global state): PUT success drains the tmp workspace (polling the spawned task), and PUT failure (missing bucket volume, rename_data quorum error after tmp shards were written) cleans the workspace inline before returning.
Ref: https://github.com/rustfs/backlog/issues/924
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(ecstore): do not retry NotFound in reliable_rename_inner
reliable_rename_inner blindly retried the rename once on any error. A NotFound retry cannot succeed: nothing recreates the missing source or parent directory between attempts, so the second rename fails identically and speculative cleanup renames (e.g. move_to_trash on an already-removed tmp path) always paid for two syscalls.
Extract the retry decision into should_retry_rename: NotFound returns immediately, any other error keeps the existing single retry. This helper is shared by the rename_data commit path via rename_all, so behavior there is covered by a new rename_all success regression test alongside the retry-predicate tests.
Ref: https://github.com/rustfs/backlog/issues/924
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
Step 1 of 4 for rustfs/backlog#922 (HP-1): write_all_internal previously
coupled file-content durability (fdatasync) with directory-entry
durability (parent dir fsync) behind a single bool. For tmp files that
are immediately renamed away, the tmp parent dir fsync contributes
nothing to crash consistency: the safe-rename recipe only needs file
content fdatasync -> rename -> fsync of the destination parent, because
the rename removes the tmp directory entry and a crash before the
rename means the PUT was never acknowledged.
Replace the bool with a SyncMode enum (None / FileAndDir / FileOnly)
and use FileOnly at exactly the two write-then-rename tmp write points:
the tmp xl.meta write in the non-inline rename_data path and the tmp
write inside write_all_meta. write_all_public (format.json etc.) and
the old-metadata rollback backup keep FileAndDir since those files stay
where they are written. The rest of the commit sequence (shard
sync_dir_files, rename, destination parent fsync) is untouched, and
behavior with drive sync disabled is unchanged.
This saves one directory fsync per disk per non-inline PUT (4 on a
4-drive set). Unit tests assert, via a test-only fsync-dir recorder,
that tmp write points no longer fsync their parent while the public
write point, the rollback backup, and the commit-rename destination
parent still do.
Co-authored-by: heihutu <heihutu@gmail.com>
Under a full nextest run on loaded machines the legitimately serialized
cross-disk commits in concurrent_resend_same_part_commits_one_generation
exceed the acquire deadline by themselves: observed at the 5s default,
at the 30s production default (#4370), and on CI even at 60s — which is
a hard ceiling, because fast_lock clamps every requested timeout to
MAX_ACQUIRE_TIMEOUT (60s) while the Timeout error still reports the
requested value, so raising the env override higher is a no-op.
Request the full 60s ceiling explicitly and cap the queue depth at three
concurrent resends, bounding the last waiter to two serialized commits
(~12s each on the slowest observed CI runner). Three resends still race
the streaming phase and contend on the commit lock, which is all the
generation-mixing regression (backlog#853) needs; every correctness
assertion is unchanged.
Co-authored-by: heihutu <heihutu@gmail.com>
fix(protocols): factor swift expiration mock result type into alias
The swift feature clippy matrix on main fails with clippy::type_complexity on the MockExpirationObjectBackend test struct introduced with the expiration worker tests, blocking CI for every open PR. Introduce a MetadataResult type alias in the test module; no behavior change.
Co-authored-by: heihutu <heihutu@gmail.com>
MetaObject::into_fileinfo indexed part_sizes[i]/part_actual_sizes[i] by
part_numbers.len() without checking the arrays are the same length,
unlike the adjacent part_etags/part_indices which are length-guarded.
decode_from pushes the three arrays independently and the xl.meta CRC
only covers bytes, so a CRC-valid but internally inconsistent xl.meta
(foreign writer / MinIO interop) triggers an out-of-bounds panic on the
GET/HEAD/LIST decode path.
Guard the three arrays for equal length and return Err(FileCorrupt) so a
divergent shard is skipped and quorum uses the other disks, instead of
panicking the request task. Cascade into_fileinfo to Result across its
callers, and fix io_primitives early-return to derive the version id from
the merged header and fall into the per-disk loop (single-disk survival +
heal). The 2118 merge-first path is left as a documented follow-up.
Refs backlog#900 (filemeta-01).
test(interop): real-MinIO read + migration parity, Phase 1/2 (backlog#580)
Capture authentic on-disk fixtures from MinIO RELEASE.2025-07-23 (a bucket with
versioning, object-lock, lifecycle, tagging, quota, a public policy, SSE-S3
encryption, a webhook notification target, and a replication rule, plus inline /
versioned / multipart objects and a delete marker) and prove RustFS reads and
migrates them losslessly:
- filemeta parses_real_minio_object_xlmeta: small inline, two-object-version +
delete marker, and multipart object xl.meta parse to the expected FileInfo.
- ecstore parses_real_minio_bucket_metadata_blob_without_loss: the MinIO
.metadata.bin msgpack decodes via the PascalCase field names and
parse_all_configs loads all ten config types present (policy, lifecycle incl.
<ExpiryUpdatedAt>, object-lock, versioning, tagging, quota, notification,
encryption/SSE-S3, replication incl. DeleteMarkerReplication /
ExistingObjectReplication) without loss.
- ecstore reads_minio_inline_bucket_metadata_via_bitrot: MinIO inlines an object
body as [HighwayHash256 32B][body]; RustFS's BitrotReader with HighwayHash256S
verifies and yields the exact blob (the "inline_data 前缀不同" is that prefix).
- ecstore migrates_real_minio_bucket_metadata_end_to_end: on a throwaway 4-drive
local ECStore, a real MinIO .metadata.bin seeded under .minio.sys is migrated
into .rustfs.sys byte-identically for every config, exercising the Phase 2
source adapter (MIGRATING_META_BUCKET = ".minio.sys") through the object layer.
All four run as ordinary crate tests (nextest CI). Phase 4 (MinIO re-reading a
RustFS drive) is documented as out of scope for one-way migration.
Refs rustfs/backlog#580
ENV_OBJECT_DIRECT_IO_ENABLE, DEFAULT_OBJECT_DIRECT_IO_ENABLE,
ENV_OBJECT_DIRECT_IO_THRESHOLD and DEFAULT_OBJECT_DIRECT_IO_THRESHOLD
were never read anywhere in the workspace. The real O_DIRECT read path
landed in PR #4365 uses RUSTFS_OBJECT_DIRECT_IO_READ_ENABLE /
RUSTFS_OBJECT_DIRECT_IO_READ_THRESHOLD (crates/ecstore/src/disk/local.rs).
Keeping the near-identically named dead knobs invites operators to set
the wrong variable and believe O_DIRECT is enabled.
Co-authored-by: heihutu <heihutu@gmail.com>
* refactor(ecstore): extract LocalIoBackend trait behind LocalDisk
Model the LocalDisk per-file I/O hot path as a LocalIoBackend trait
(pread_bytes / open_read_stream / open_full_read / open_write) and move
the existing method bodies verbatim into a default StdBackend. LocalDisk
holds Arc<dyn LocalIoBackend> and the DiskAPI methods forward to it.
This is a behavior-preserving refactor: no logic, error-mapping, metrics,
or cfg-branch changes. It creates the seam for an alternative
runtime-probed io_uring backend (rustfs/backlog#894) without touching
DiskAPI callers. Commit-point durability (fdatasync -> rename ->
fsync-dir in rename_data) deliberately stays outside the trait.
Add a differential test asserting all four read shapes return identical
bytes across page-boundary and file-tail ranges.
Tracking: rustfs/backlog#891 (parent rustfs/backlog#897)
Co-Authored-By: heihutu <heihutu@gmail.com>
* feat(ecstore): true O_DIRECT read path with per-disk graceful fallback (#4366)
* feat(ecstore): true O_DIRECT read path with per-disk graceful fallback
Implement a real O_DIRECT positioned read inside StdBackend::pread_bytes
(Linux only) and wire up the previously dead RUSTFS_OBJECT_DIRECT_IO_READ_*
knobs, which had zero call sites.
Open with rustix OFlags::DIRECT, probe the DIO alignment once per disk via
statx STATX_DIOALIGN (4096 fallback), read the aligned superset into an
alignment-allocated bounce buffer with a short-read loop, and slice out the
exact logical range so padding never reaches BitrotReader.
Any O_DIRECT failure falls back to the buffered read methods; EINVAL or
EOPNOTSUPP (tmpfs, overlayfs, 9p) latches the path off per disk with one
warning. O_DIRECT errors never surface: EINVAL maps to FileNotFound in
to_file_error and would trigger spurious EC rebuilds.
Default behavior is unchanged (knob off). macOS keeps F_NOCACHE.
Tracking: rustfs/backlog#892 (parent rustfs/backlog#897)
Co-Authored-By: heihutu <heihutu@gmail.com>
* test(ecstore): add P1.5 benchmark gate harness for O_DIRECT reads (#4369)
* test(ecstore): add P1.5 benchmark gate harness for O_DIRECT reads
Add an ignored, Linux-only release-mode test (direct_read_bench_gate)
that measures DiskAPI::read_file_mmap_copy through a real LocalDisk with
cold-cache enforcement (fadvise DONTNEED between rounds), reporting
p50/p95/p99/mean latency, wall time, process CPU time, and throughput as
one JSON line for A/B diffing between the buffered baseline and the
O_DIRECT candidate selected by the production env knobs.
Content is verified byte-for-byte before any timing starts.
Tracking: rustfs/backlog#893 (parent rustfs/backlog#897)
Co-Authored-By: heihutu <heihutu@gmail.com>
* test(ecstore): add concurrency dimension to P1.5 bench harness
Model the EC GET shape (FuturesUnordered over concurrent shard reads)
via RUSTFS_BENCH_CONCURRENCY (default 1, sequential as before). Needed
to evaluate blocking-pool pressure for the io_uring gate decision.
Tracking: rustfs/backlog#893
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
* ci: retrigger after cancelled required check
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(ecstore): use is_multiple_of in O_DIRECT bench cache-drop check
clippy's manual_is_multiple_of (rust 1.96) fails -D warnings on the benchmark helper's `done % file_count == 0`.
Verification:
- cargo clippy -p rustfs-ecstore --all-targets
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
A node could show OFFLINE in the console with zero logs explaining why
(rustfs/backlog#888, reported in rustfs#4304): the consecutive-failure
threshold crossing in handle_server_info_failure marked the peer offline
silently, the per-call warnings only existed on the observing node and
never named the transition, and the PeerRestClient offline flag plus its
background recovery monitor ran without any start/success log.
Logging-only change, no behavior change:
- handle_server_info_failure / handle_storage_info_failure: WARN
event="peer_marked_offline" exactly once at the threshold crossing
(later failures while already offline stay DEBUG), and DEBUG
event="peer_probe_failure" while returning cached state below the
threshold.
- update_server_info_cache / update_storage_info_cache: INFO
event="peer_recovered_online" when a probe succeeds after the peer had
been reported offline.
- PeerRestClient::mark_offline_and_spawn_recovery: WARN
event="peer_connection_marked_offline" when the offline flag is first
set (guarded by the recovery_running CAS so repeated failures do not
spam), and INFO event="peer_connection_recovered" with the attempt
count when connectivity is restored.
An "offline then back" episode now leaves a complete, correlatable
trace: N probe failures -> peer_marked_offline -> recovery monitor ->
peer_recovered_online.
Verification:
- cargo test -p rustfs-ecstore --lib (notification + peer_rest suites)
- make pre-commit
Ref: rustfs/backlog#888, rustfs#4304
Co-authored-by: heihutu <heihutu@gmail.com>
GitHub renders single newlines inside a paragraph as line breaks, so hard-wrapped PR/issue/discussion prose shows up with ugly mid-sentence breaks. Add a rule under Git and PR Baseline to keep each paragraph on one line.
concurrent_resend_same_part_commits_one_generation keeps failing on CI
with Lock(Timeout ... 5s) even after the fast-lock lost-wakeup fix
(NOTIFY_WAIT_CAP re-polling) landed — observed on rustfs#4365's Test and
Lint runs. Two independent causes exist and both are real:
1. the lost/stolen wakeup stall — fixed in fast_lock::shard; and
2. the six legitimately serialized cross-disk commits exceeding the
small 5s default acquire timeout under full-suite CI disk load.
The lost-wakeup fix reverted the earlier 30s test override on the
assumption that cause 1 was the whole story; CI shows cause 2 stands on
its own. Restore the temp_env override (production-default 30s) around
the concurrent section so the regression guard asserts the correctness
property (exactly one intact generation), not CI disk latency. The
NOTIFY_WAIT_CAP fix stays untouched.
Verification:
- cargo test -p rustfs-ecstore --lib concurrent_resend_same_part_commits_one_generation
Ref: rustfs/backlog#882
Co-authored-by: heihutu <heihutu@gmail.com>
* fix(iam): load IAM bootstrap snapshot without namespace locks
IAM bootstrap (init_iam_sys -> load_all) read every config object with
default ObjectOptions (no_lock=false), so each read acquired a
distributed namespace read lock. Lock quorum is counted over cluster
nodes and unreachable peers are hard failures, so during a sequential
restart the very first read failed with
"Quorum not reached: required 2, achieved 0" and IAM could not come up
until enough peers' lock RPC surfaces converged - even when the storage
read quorum was already satisfiable (rustfs#4304).
Extend the startup contract from rustfs#4056 ("startup metadata I/O must
not require namespace locks") to the IAM bootstrap path:
- Introduce LoadMode {Locked, BootstrapNoLock} and plumb it through the
load_all chain (groups, users, policies, mapped policies and their
concurrent variants) down to the storage read options.
- load_all now performs all reads with no_lock=true; on-line
single-object loads via the Store trait keep locked semantics.
- Fail-closed behavior is unchanged: any loader error still aborts the
whole snapshot load.
Safety: config objects are atomic whole-object writes, so a lock-free
read only observes an old or a new value; staleness is bounded by the
existing periodic IAM reload. Listing (walk) never took namespace locks,
and maybe_schedule_lazy_rewrite stays a best-effort background task.
Verification:
- cargo test -p rustfs-iam --lib (153 passed, incl. new LoadMode tests)
- cargo clippy -p rustfs-iam --all-targets
- cargo check -p rustfs
- make pre-commit
Ref: rustfs#4304; tracking rustfs/backlog#884, rustfs/backlog#885
Co-Authored-By: heihutu <heihutu@gmail.com>
* test(iam): sequential-restart regression test for lock-free bootstrap
Add an integration test reproducing the rustfs#4304 failure mode against
a real 4-disk temp-dir ECStore:
- Seed IAM group data in single-node mode, then flip the runtime into
distributed-erasure mode. new_ns_lock now builds a distributed lock
over the set's (empty) lock-client list, so every namespace-locked
read fails exactly like a sequential restart with unreachable peers
(lock quorum unavailable, storage read quorum healthy).
- Assert the locked load_group path fails in that state, while the
bulk snapshot load_all (no_lock plumbing from the previous commit)
succeeds, and the data survives intact once single-node mode is
restored.
Reverse-verified: temporarily switching load_all back to the locked
mode makes the test fail, so it genuinely guards the contract.
Verification:
- cargo test -p rustfs-iam --test iam_bootstrap_no_lock_test
- cargo test -p rustfs-iam --lib
Ref: rustfs#4304; tracking rustfs/backlog#886
Co-Authored-By: heihutu <heihutu@gmail.com>
* test(iam): route test ECStore imports through ecstore_test_compat boundary
The new integration test imported rustfs_ecstore facade paths directly,
tripping three architecture migration rules. Move every ECStore import
behind crates/iam/tests/ecstore_test_compat/mod.rs (the sanctioned
test-compat pattern), and register that module as a reviewed test-only
global-facade boundary in check_architecture_migration_rules.sh: the
sequential-restart regression test needs api::global::update_erasure_type
to flip into distributed-erasure mode for lock-quorum fault injection.
Verification:
- ./scripts/check_architecture_migration_rules.sh
- cargo test -p rustfs-iam --test iam_bootstrap_no_lock_test
- make pre-commit
Co-Authored-By: heihutu <heihutu@gmail.com>
* feat(server): expose readiness blocking reason + rolling-restart runbook
Operators hitting the rustfs#4304 sequential cold start could not tell
from the outside why a node stayed unavailable. Three additions:
- The readiness gate's 503 now names the blocking dependency in both the
body ("Service not ready: waiting for storage_quorum") and a new
x-rustfs-readiness-pending header (storage_quorum | iam |
startup_finalization), derived from the current startup stage.
/health/ready already returned details + degradedReasons; this covers
the plain S3 requests that hit the gate.
- IAM bootstrap retry logs now carry an actionable `hint` field that
classifies the failure (storage read quorum vs lock quorum vs
uninitialized metadata) instead of only echoing the storage error.
- New docs/operations/rolling-restart.md runbook: correct rolling
restart procedure, sequential cold-start expectations (degraded ->
auto-recovery), readiness signal reference, and
RUSTFS_STARTUP_READINESS_MAX_WAIT_SECS guidance.
Verification:
- cargo test -p rustfs --lib -- hint_tests service_not_ready readiness_pending
- make pre-commit
Ref: rustfs#4304; tracking rustfs/backlog#887
Co-Authored-By: heihutu <heihutu@gmail.com>
* upgrade deps version and improve import
* feat(iam): notification-path cache refreshes read without namespace locks (#4368)
P3 step 1 of rustfs/backlog#884 (scoped down from full MinIO readConfig
alignment after review): cross-node notification handlers
(group/policy/policy-mapping/user) refresh the local IAM cache with
single-object reads that previously took distributed namespace read
locks. These refreshes are asynchronous, best-effort, and already
stale-tolerant (the periodic reload converges them), so a node-counted
lock quorum failure or lock RPC hiccup on a peer must not fail them —
the same rationale as the lock-free bootstrap load_all (rustfs#4304).
- Store trait: add load_user_no_lock / load_group_no_lock /
load_policy_doc_no_lock / load_mapped_policy_no_lock with defaults
forwarding to the locked variants, so existing implementations and
test mocks keep their behavior.
- ObjectStore overrides them via the existing LoadMode::BootstrapNoLock
plumbing. Deletions triggered by the handlers keep locked writes.
- manager.rs: the four *_notification_handler paths (8 call sites)
switch to the lock-free variants.
- Integration test: while the lock quorum is unavailable (DistErasure
with empty lockers), load_group_no_lock must succeed exactly where
the locked load_group fails.
Request-path loads (check_key, verify_temp_user_persistence) and admin
write-then-reload paths intentionally stay locked: load_user_identity
embeds expiry deletions, so those need the side-effect extraction
tracked in rustfs/backlog#884 before going lock-free.
Verification:
- cargo test -p rustfs-iam --lib (156 passed)
- cargo test -p rustfs-iam --test iam_bootstrap_no_lock_test
- make pre-commit
Ref: rustfs/backlog#884, rustfs#4304
Co-authored-by: heihutu <heihutu@gmail.com>
* fix(server): drop unused iam_bootstrap_failure_hint import in tests
The hint tests live in their own hint_tests module with a local import;
the stale re-import in mod tests failed clippy's -D warnings on the
Test and Lint CI variants.
Verification:
- cargo clippy -p rustfs --all-targets
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix
---------
Co-authored-by: heihutu <heihutu@gmail.com>
Drop the [target.'cfg(target_os = "linux")'.dependencies] tokio
"io-uring" feature from 6 crates and the rustfs binary. Because
.cargo/config.toml enables --cfg tokio_unstable globally, this feature
switched every Linux build's file I/O onto tokio's io_uring runtime
backend. Restricted Linux environments (Docker default seccomp, gVisor,
proot, old kernels) reject io_uring_setup with EACCES/ENOSYS, which
tokio surfaced as PermissionDenied and RustFS reported as
DiskAccessDenied at startup.
Add scripts/check_no_tokio_io_uring.sh so the feature cannot silently
return: it fails on any tokio dependency line enabling "io-uring", while
still allowing a future application-level io-uring crate dependency.
Wire it into make pre-commit/pre-pr/dev-check and CI.
Tracking: rustfs/backlog#890 (parent rustfs/backlog#897)
Co-authored-by: heihutu <heihutu@gmail.com>
* fix(migration): decrypt MinIO IAM & server config on drop-in migration
MinIO encrypts IAM identity/service-account files and the server config at
rest with a key derived from the root credentials. The drop-in migration
paths read those blobs from the legacy `.minio.sys` bucket and parsed them
as plaintext JSON, so any encrypted blob failed to parse and was silently
skipped with "incompatible format". This is why users migrating from MinIO
kept their buckets/objects/policies but lost users and access keys (#2212).
The IAM load path already knows how to decrypt these blobs (RustFS master
keys plus MinIO-compatible legacy keys derived from the root credentials),
but that logic lived behind a private method and was never used by the
migration paths. Expose it as `rustfs_iam::try_decrypt_iam_blob` and inject
it into both migration paths via a `LegacyBlobDecryptFn` callback (ecstore
cannot depend on the IAM crate, so the closure is wired in the binary crate).
When a blob cannot be decrypted the raw bytes are used as-is, preserving the
previous plaintext-only behavior with no regression.
Also improve object-layer migration observability without changing control
flow: `try_migrate_format` now distinguishes "no legacy format" (a normal
fresh install) from "legacy format present but incompatible", and the caller
logs a loud error before initializing a fresh format that would leave the
existing MinIO objects unreadable. Topology/version skip reasons are promoted
from debug to warn.
Fixes a pre-existing test isolation race by marking
`test_recovery_falls_back_to_default_config_when_blob_stays_corrupt` serial,
since it reads a process-wide env var toggled by a sibling test.
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(migration): box FormatV3 in LegacyFormatOutcome to satisfy clippy
Co-Authored-By: heihutu <heihutu@gmail.com>
* test(ecstore): stabilize concurrent multipart resend lock timeout
concurrent_resend_same_part_commits_one_generation spawns 6 same-part
resends whose cross-disk commits serialize on the per-uploadId commit
lock. Under the full nextest suite the parallel disk load pushes those
serialized commits past the small default lock-acquire timeout (5s),
producing a spurious `Lock(Timeout ...)` unrelated to the property under
test (observed on CI at 5.775s vs ~0.5s in isolation).
Raise RUSTFS_OBJECT_LOCK_ACQUIRE_TIMEOUT to the production default (30s)
for the concurrent-commit section via temp_env, so the regression guard
reflects correctness (exactly one intact generation) rather than disk
latency under CI load. The meaningful assertions are unchanged, and
#[serial] keeps the process-wide env override isolated.
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(lock): bound fast-lock notification wait to prevent lost-wakeup stall
The real cause of the concurrent_resend_same_part_commits_one_generation
failures was a lost wakeup in the fast-lock slow path, not disk latency:
raising the acquire timeout to 30s only delayed the failure (it then timed
out at 30s), proving a genuine stall rather than overload.
In acquire_lock_slow_path a waiter that reaches the notification phase did a
single `timeout(remaining, wait_for_write())` spanning the whole acquire
budget, and treated that wait's elapse as a hard `Timeout`. But the release
path only notifies when `writer_waiters > 0`, so if the holder releases in
the gap after the waiter's `try_acquire` fails and before it registers as a
waiter, no notification (and no stored permit, since the pooled `Notify` is
gated) is produced. The waiter then blocks until the deadline even though the
lock is free and stays free — a spurious lock-acquire timeout. The shared
process-wide notify pool makes it worse: a wakeup can be consumed by a waiter
of a different lock hashing to the same slot.
Bound each notification wait (NOTIFY_WAIT_CAP = 50ms) and, on elapse, loop
back and re-`try_acquire` instead of returning `Timeout`; the deadline check
at the top of the loop is the single source of truth for timing out. A
lost/stolen wakeup now degrades to bounded re-polling (acquire within ~50ms
of the lock becoming free) instead of stalling for the whole timeout.
Correctness (mutual exclusion) is unchanged — acquisition still only happens
via `try_acquire_*`.
Add a regression test that reproduces the stall (holder + late waiter across
many keys): it times out without the fix and passes in ~1s with it. Revert
the earlier acquire-timeout workaround in the multipart test now that the
underlying stall is fixed, so it runs under the default timeout again.
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
* fix(server): raise default HTTP/1.1 idle keep-alive timeout for proxies
In hyper's HTTP/1.1 stack `header_read_timeout` is armed as soon as the
connection is ready to read the next request head, so on a keep-alive
connection it also bounds how long an idle upstream connection may sit
before RustFS closes it. The previous 5s default meant RustFS FIN'd pooled
upstream connections while reverse proxies (Caddy ~2min, Nginx 60s) still
believed they were alive. The proxy then reused a dead socket and clients
saw `socket hang up` / connection reset, most visibly on non-idempotent
`PUT` uploads that proxies will not transparently retry (issue #3076).
Raise DEFAULT_HTTP1_HEADER_READ_TIMEOUT to 75s (above common proxy
idle-keepalive windows) and document the coupling. Still overridable via
RUSTFS_HTTP1_HEADER_READ_TIMEOUT for deployments that expose RustFS
directly to untrusted slow clients and want tighter slowloris protection.
Co-Authored-By: heihutu <heihutu@gmail.com>
* docs(operations): add reverse-proxy deployment guide
Document the request/body semantics RustFS expects from a proxy layer, the
idle keep-alive mismatch that causes `socket hang up` on large PutObject
writes, and known-good Caddy/Nginx configs plus Cloudflare caveats. Closes
the documentation gap called out in issue #3076 and consolidates the
scattered findings from #609/#934/#1492/#1766.
Co-Authored-By: heihutu <heihutu@gmail.com>
* feat(object): bound stalled PutObject request-body reads with diagnostics
When a reverse proxy or CDN forwards a partial request body and then goes
silent without closing the connection, the inner body stream neither yields
more bytes nor reports EOF, so RustFS waited forever for bytes that never
arrive and the client saw a silent hang/abort (issue #3076). A short body
that ends with a proper EOF was already rejected promptly; the gap was the
no-EOF stall case.
Add a single-point request-body guard on the PutObject path that wraps the
incoming StreamingBlob with an inter-chunk read timeout. The timer resets on
every chunk, so slow-but-progressing uploads are unaffected; it only fires
after RUSTFS_HTTP_REQUEST_BODY_READ_TIMEOUT (default 300s, 0 disables) of
complete silence. On timeout it logs a structured `put_object_body_read_stalled`
event with received/expected byte counts and fails the read with
ErrorKind::TimedOut instead of hanging. remaining_length/size_hint are
forwarded so wrapping is transparent to downstream length handling.
Covered by unit tests for the stall path, length-preserving pass-through, and
the disabled (timeout=0) pass-through.
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
* fix(server): make startup readiness wait configurable and raise default (#4264)
The startup runtime-readiness wait was a hardcoded 30s constant with no env
override. On slow multi-node cold starts (Docker/K8s/Synology NAS) this window
is shorter than the internal startup budgets it depends on — the endpoint
DNS-retry window (~90s) and the format-load retry loop (~100s worst case) — so
readiness times out and the node exits with
`startup readiness timed out after 30s: storage_ready=false, lock_quorum_ready=false`
before storage/lock quorum can converge, feeding the restart storm reported in
the issue.
- Add `RUSTFS_STARTUP_READINESS_MAX_WAIT_SECS` (default 120s), documented in
rustfs-config health constants.
- Resolve the wait at runtime via `startup_runtime_readiness_max_wait()`; a
value of `0` falls back to the default instead of timing out instantly.
- Repoint `STARTUP_RUNTIME_READINESS_MAX_WAIT` at the shared config default so
there is a single source of truth, and cover the getter with unit tests.
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(ecstore): stop peer/disk background monitors on graceful shutdown (#4264)
Long-lived peer health/recovery and remote-disk monitors are detached
`tokio::spawn` tasks that each hold a `tracing::Span` via `.instrument(..)` for
their whole lifetime. Nothing cancelled them at shutdown, so on the normal
return path the Tokio runtime was dropped while they were still alive and their
`Span`s were dropped during worker-thread thread-local-storage (TLS)
destruction. At that point `tracing-subscriber`'s fmt `on_close` can touch an
already-destroyed TLS slot and panic with
`cannot access a Thread Local Storage value during or after destruction`, which
escalates to a panic-during-panic abort (SIGILL / exit 132) — the crash
reported on Synology in issue #4264, amplified by the restart storm.
- Add `cluster::rpc::background_monitor` with a process-global shutdown token,
`spawn_background_monitor()` (races the monitor future against that token so
its span drops while the runtime is alive), and public
`shutdown_background_monitors()`.
- Route every span-holding peer_s3 / peer_rest / remote_disk monitor spawn
through `spawn_background_monitor` instead of `tokio::spawn(..).instrument()`.
- Expose `rustfs_ecstore::shutdown_background_monitors()` and call it from the
graceful shutdown sequence (right after `ctx.cancel()`, before runtime
teardown) via the `storage_api` compatibility boundary.
Existing recovery-probe span-context tests still pass, confirming log
correlation is preserved.
Co-Authored-By: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
test(e2e): add SHA256 verify-on-write & HEAD-checksum regression for #4341
Issue #4341 reported (on beta.8) that RustFS accepted mismatched S3
SHA256 checksums on PutObject (HTTP 200 instead of 400 BadDigest) and
did not return ChecksumSHA256 on HeadObject with ChecksumMode=ENABLED.
Both behaviors are already correct on current main, but the existing
e2e coverage only asserted the happy path (upload succeeds + GetObject
content matches). It did not encode the issue's two acceptance criteria,
so a future regression would go undetected.
Add two focused e2e tests that assert exactly the issue's contract:
- test_put_object_rejects_mismatched_sha256: a body that does not match
the declared x-amz-checksum-sha256 must be rejected with BadDigest and
must not be stored.
- test_head_object_returns_stored_sha256: after a correct upload,
HeadObject with ChecksumMode=ENABLED must return the stored base64
SHA256 digest.
Both tests pass against a real rustfs server (mismatch -> HTTP 400
BadDigest verified).
Co-authored-by: heihutu <heihutu@gmail.com>
* perf(ecstore): replace linear merge scan with k-way heap and drop clone-to-parse (backlog#874 backlog#875)
merge_entry_channels advanced the k-way merge with a linear scan over all
channel heads (O(entries x channels)) and allocated two fresh Strings per
pairwise comparison via path::clean. Every step also cloned MetaCacheEntry
values, including entry.clone().xl_meta() clone-to-parse calls.
- Introduce MergeHead with a cached cleaned name (allocated only when the
raw name is not already clean) and drive the merge with a BinaryHeap of
boxed heads: O(log channels) per entry, allocation-free comparisons.
- Move entries through the merge instead of cloning; the winner is sent
without an intermediate copy.
- Remove the dead merge_file_meta_versions block: it only ran for
prefix-dir groups whose entries have empty metadata, so xl_meta() always
failed; cross-drive version merging happens in the resolve path.
- Keep legacy same-name semantics (dir groups collapse, objects shadow
prefix dirs, later object candidate wins) and add regression tests for
interleaved ordering, dir/object precedence, uncleaned-name grouping,
and prefix-dir collapse.
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(ecstore): honor ascending versions_sort in ListObjects walk (#4348)
* fix(ecstore): honor ascending versions_sort in walk and document ordering invariant (backlog#876)
The walk loop carried a bare `//TODO: SORT` inside the
`WalkVersionsSortOrder::Ascending` branch, so the requested ascending
order was silently ignored and versions streamed newest-first (the raw
FileMeta order). WalkOptions defaults to Ascending, so every default
walker -- notably replication resync, which replays versions and needs
oldest-first to preserve the version-stack order -- received the exact
opposite of the contract.
FileMeta maintains versions newest-first (sort_by_mod_time is
descending) and into_file_info_versions preserves that order, so
ascending emission is the exact reverse of file_info_versions output.
Reverse in place when ascending is requested and add a regression test
locking the newest-first invariant plus the reversal contract.
Key-ordering audit result (no gap found): per-disk walkers emit sorted
streams, merge_entry_channels performs an ordered k-way merge, and
gather_results only filters by marker/limit, so ListObjects key order is
guaranteed upstream and needs no post-sort.
Co-Authored-By: heihutu <heihutu@gmail.com>
* perf(ecstore): enable GET metadata early-stop by default (#4349)
* perf(ecstore): enable GET metadata early-stop by default with env opt-out (backlog#872)
The metadata early-stop fanout (read_all_fileinfo_early_stop) has been
implemented and instrumented for a while but stayed behind an opt-in
flag, so default GETs always waited for every disk to answer the
metadata read even after quorum agreement was reached.
Flip RUSTFS_GET_METADATA_EARLY_STOP_ENABLE to default-on. The gate stays
conservative: should_allow_metadata_early_stop only admits metadata-only
reads (read_data=false) without version_id, healing, or free-version
requirements, everything else falls back to the full-wait fanout, and
setting the env var to false restores the old behavior entirely. The
version-aware gate (RUSTFS_GET_METADATA_VERSION_EARLY_STOP_ENABLE)
remains opt-in because versioned reads carry a higher stale-selection
risk profile.
Also replace the stale "optimize concurrency" TODO in
get_object_fileinfo with a pointer to the early-stop implementation and
add regression tests for the new default plus the explicit opt-out path.
Co-Authored-By: heihutu <heihutu@gmail.com>
* perf(ecstore): lazily construct codec streaming multipart readers (#4350)
* perf(ecstore): lazily construct codec streaming multipart part readers (backlog#871)
get_object_decode_reader_with_fileinfo opened shard readers for every
part of a multipart object before returning the streaming reader, so
TTFB paid for parts x disks file opens up front and an early client
disconnect wasted the setup work for every unread part.
Replace the eager loop with LazyMultipartCodecStreamingReader: the first
part is still built eagerly so the dominant fallback conditions (missing
shards / read quorum) are detected before any byte is streamed and the
whole request can fall back to the legacy duplex path exactly as before.
Each subsequent part is built on demand -- when the previous part hits
EOF -- via a spawned task handle owned by the reader; dropping the
reader aborts an in-flight build so disconnects stop all further IO.
If a later part hits a fallback condition mid-stream (a shard vanished
after the request started), the reader surfaces an explicit read error
with a pipeline-failure metric instead of silently degrading; the
client's retry then detects the condition on the eager first-part setup
and takes the legacy path cleanly.
Adds unit tests for in-order streaming across lazy boundaries, deferred
construction (no build when the client stops within part 1), and the
mid-stream fallback error path.
Co-Authored-By: heihutu <heihutu@gmail.com>
* perf(ecstore): prefetch next multipart part reader setup during decode (#4351)
* perf(ecstore): prefetch next multipart part reader setup during decode (backlog#870)
get_object_with_fileinfo processed multipart parts strictly serially:
the next part's bitrot reader setup (file opens + read-quorum wait
across all disks) only started after the current part finished
decoding, so large multipart reads paid full setup latency between
every part.
Overlap the two stages with a depth-one pipeline: right after the
current part's readers are obtained, the next part's setup is spawned
(shared inputs behind Arc) and joined when the loop reaches that part.
The shared setup_multipart_part_readers helper keeps stage-duration
metrics semantics identical for both paths; a failed or stale prefetch
falls back to the synchronous setup, and the PrefetchedReaderSetup
guard aborts the in-flight task on error returns, early breaks, or
caller drop so disconnects stop background disk IO.
Gate: RUSTFS_GET_MULTIPART_READER_SETUP_PREFETCH (default on, env
opt-out). Adds a three-part end-to-end read test covering the prefetch
hit path and cross-part content ordering.
Co-Authored-By: heihutu <heihutu@gmail.com>
* perf(ecstore): move FileInfo through GET shuffle instead of cloning (#4352)
perf(ecstore): move FileInfo entries through the GET shuffle instead of cloning (backlog#873)
shuffle_disks_and_parts_metadata_by_index deep-cloned every valid
FileInfo (parts, erasure info, metadata map) once per disk on each GET.
Add an ownership-taking variant that runs the same by-index consistency
check as a read-only first pass and then moves entries into their
shuffled slots with mem::take, and switch get_object_with_fileinfo to
it -- that call site already owned the parts metadata vector. Disk
handles are Arc clones and stay cheap.
Scope notes from the backlog#873 audit:
- get_object_fileinfo's disks.clone() stays: DiskStore is Arc<Disk>, so
the clone is per-slot refcounting and correctly avoids holding the
RwLock read guard across the metadata fanout awaits.
- get_object_decode_reader_with_fileinfo keeps the borrowing shuffle:
its caller must retain files/disks for the legacy fallback path, so an
owned variant would just shift the same clone upstream.
- The metadata-cache hit path still clones parts_metadata; sharing the
cached entry via Arc changes the read-path return types and is left
as a follow-up.
Equivalence tests cover both the by-index placement and the mod-time
fallback against the borrowing variant.
Co-authored-by: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
---------
Co-authored-by: heihutu <heihutu@gmail.com>
* fix(ecstore): gate merge emission on cleaned key and clear clippy redundant_clone
Address review + CI findings on the ListObjects/GET optimization PR:
- merge_entry_channels gated emission on the raw entry name while the heap
orders by the cleaned key, so entries whose cleaned order and raw byte order
disagree (e.g. redundant slashes) could be dropped. Gate on the same cleaned
sort key the heap uses; add a regression test (`a//c` after `a/b`).
- Drop three redundant `.clone()` calls in test code flagged by
clippy::redundant_clone (owned-shuffle equivalence tests and the walk
ascending-versions contract test) that failed the CI clippy gate.
- Document the known mid-stream fallback limitation of the opt-in multipart
codec streaming reader (default off) and mark the in-place per-part legacy
degradation as a follow-up.
Co-Authored-By: heihutu <heihutu@gmail.com>
* fix(ecstore): force full metadata fanout for object tagging writes (backlog#872)
put_object_tags reads the object fileinfo with read_data=false and then
writes the updated tags to the online-disk set that read returned. With
metadata early-stop enabled by default, that read now returns as soon as
read quorum is reached, so the online-disk set is only a read-quorum
subset. Writing tags to that subset fails write quorum -> ErasureWriteQuorum
-> S3 SlowDown, which is exactly the s3-tests tagging failures
(PutObjectTagging/DeleteObjectTagging, reached max retries).
Thread a caller-controlled `allow_early_stop` gate through
read_all_fileinfo_observed/_inner and add get_object_fileinfo_gated;
put_object_tags calls it with allow_early_stop=false so the metadata read
does the full quorum fanout and returns the complete online-disk set as
the write target. Pure-read callers (GET/HEAD/tag read) keep the
early-stop fast path unchanged.
Extract metadata_early_stop_permitted() as the single gate and add a unit
test locking the invariant: caller opt-out (and observe=false, and data
reads) never early-stop even with the env flags on.
Co-Authored-By: heihutu <heihutu@gmail.com>
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Co-authored-by: heihutu <heihutu@gmail.com>