Commit Graph

42 Commits

Author SHA1 Message Date
houseme f32597bdb0 fix(ilm): recover uploaded transition transactions (#5068)
* fix(ilm): recover uploaded transition transactions

Persist transition transaction records through production transition uploads, use transaction-scoped remote object names, and start a conservative recovery loop for uploaded candidates.

Co-Authored-By: heihutu <heihutu@gmail.com>

* fix(ilm): reconcile committed transition records

Drop LocalCommitStarted transaction records only after object metadata confirms that the local transition commit already points at the same tier object and version.

Co-Authored-By: heihutu <heihutu@gmail.com>

---------

Co-authored-by: heihutu <heihutu@gmail.com>
2026-07-21 03:17:24 +00:00
cxymds 28fdcc87be fix(tiering): make rejected upload cleanup durable (#5059)
* fix(tiering): make rejected upload cleanup durable

* fix(tiering): close transition upload cancellation gap

* test(tiering): cover failed upload without candidate

* test(tiering): synchronize cancelled cleanup recovery

* test(tiering): stabilize cancelled cleanup recovery

Prefer cancellation when the tier delete journal recovery worker is racing an immediate tick, and build the cancelled-cleanup regression store with an already-cancelled token so production recovery cannot consume the test journal.

Co-Authored-By: heihutu <heihutu@gmail.com>

---------

Co-authored-by: houseme <housemecn@gmail.com>
Co-authored-by: heihutu <heihutu@gmail.com>
2026-07-20 20:54:32 +08:00
houseme 21049401fa fix(ilm): harden tier transition failure boundaries (#5031)
* fix(tier): fence generation-scoped operations

Refs rustfs/backlog#1354

Co-Authored-By: heihutu <heihutu@gmail.com>

* fix(ilm): verify transition upload streams

Refs rustfs/backlog#1353

Co-Authored-By: heihutu <heihutu@gmail.com>

* test(ecstore): expand transition fault matrix

Refs rustfs/backlog#1355

Co-Authored-By: heihutu <heihutu@gmail.com>

---------

Co-authored-by: heihutu <heihutu@gmail.com>
2026-07-19 10:48:32 +00:00
Zhengchao An 7f5873dac8 fix(ecstore): resolve erasure parity per pool (#4801) (#5015)
* fix(ecstore): add fallible erasure construction

(cherry picked from commit bd148b20f7)

* fix(ecstore): resolve storage parity per pool

(cherry picked from commit c05c2cb24b)

* fix(ecstore): keep carved per-pool parity core self-contained on main

Fixups so the cherry-picked fallible-erasure + per-pool-parity core builds standalone on current main without the excluded scope-creep commits:
- runtime/sources.rs: re-add backend_storage_class_parities (removed by the per-pool commit; its rebalance caller was updated in an unrelated reporting commit that was left out). Reimplemented over the snapshot API, behavior-identical.
- config/mod.rs: rename the storage-class publish test module (main independently added a mod tests, so the cherry-pick collided).
- rustfs storage_api.rs + startup_storage.rs: route the storage-class ENV consts through the startup storage facade and use a local const for the erasure-set-drive-count env name, satisfying the layer/facade guardrail (main's guardrail is stricter than when the core was authored).

* fix(ecstore): use struct-init in erasure test helper to satisfy clippy field_reassign_with_default

The cherry-picked fallible-erasure commit's `erasure_with_invalid_dimensions` test helper built `Erasure` via `default()` then reassigned fields, which trips `clippy::field_reassign_with_default` under `-D warnings` (only surfaced by `--all-targets`, which lints test code). #4977 fixed this in a later commit that was not part of the carved core. Use struct-init with `..Default::default()`, matching #4977's final form.

* fix(rustfs): gate the test-only storage-class ENV facade re-export behind cfg(test)

The ENV constants (INLINE_BLOCK_ENV/OPTIMIZE_ENV/RRS_ENV/STANDARD_ENV) re-exported through the startup storage facade are only consumed by a #[cfg(test)] test in startup_storage.rs, so in a non-test lib build the re-export is unused and trips -D unused-imports under clippy --all-targets. Gate it with #[cfg(test)], matching #4977's final form.

---------

Co-authored-by: cxymds <cxymds@gmail.com>
2026-07-19 03:06:46 +00:00
Zhengchao An dc3099bf0f feat(ecstore): run bucket operations on the store's own instance context (#4642)
backlog#1052 S7 — the final piece: full bucket-namespace isolation
between embedded servers in one process.

Server B's requests resolved B's own ECStore (per-server dispatch landed
earlier), but the store's bucket operations still went through ambient
process facades, so both servers effectively operated on the FIRST
server's disks and metadata:

- LocalPeerS3Client::local_disks_for_pools() called all_local_disk()
  (the ambient disk registry = the first published store's context), so
  list/make/delete/heal bucket scanned and wrote the wrong volumes.
- BucketMetadata::save() persisted through the ambient object handle, so
  a second server's bucket metadata landed in the first server's
  .rustfs.sys; set/remove/get/created_at all used the ambient metadata
  system.

Now the whole chain is bound to the owning store's InstanceContext:

- S3PeerSys/LocalPeerS3Client gain *_with_instance_ctx constructors and
  operate on that context's registered disks; ECStore::new (and the test
  store builder) pass the store's context. The legacy constructors keep
  the bootstrap default.
- BucketMetadata::save_with_store persists through an explicit store;
  BucketMetadataSys::persist_and_set uses the system's own api handle.
- metadata_sys gains instance-scoped variants (get_in / created_at_in /
  set_bucket_metadata_in / remove_bucket_metadata_in) that resolve the
  context's metadata system and fall back to the ambient default before
  the instance cell is initialized (early startup, unchanged behavior).
- The store's bucket handlers (make/get_info/list/delete + the
  table-bucket delete guard and emptiness check) use the per-context
  variants and this instance's disks.

Acceptance (e2e): two embedded servers with different credentials are now
isolated end to end — each authenticates only its own key, neither sees
the other's buckets or objects, and both data planes stay intact. The
embedded module doc drops the shared-IAM caveat.

579 ecstore bucket/metadata/peer regressions plus the embedded basic and
deferred-IAM e2e stay green.
2026-07-10 10:52:51 +08:00
Zhengchao An cefbe2ccc9 fix(test): allow InstanceContext bucket_metadata_sys reinitialization for tests (#4638)
The OnceLock introduced in 5fbd49a80 for bucket_metadata_sys panics when
multiple test modules initialize their own ECStore against the shared
bootstrap context. Switch to Mutex<Option> so test fixtures can
reinitialize safely.

Extract shared gating test environment to gating_test_env.rs to avoid
duplicate ECStore setup across delete_objects_stat_gating_test and
put_prelookup_gating_test.

Fixes 8 test failures:
- capacity_dirty_scope_test (2 tests)
- delete_objects_stat_gating_test (3 tests)
- put_prelookup_gating_test (3 tests)
2026-07-10 04:03:26 +08:00
Zhengchao An f403ed1c2e feat(embedded): allow multiple embedded servers to coexist in one process
* feat(embedded): allow multiple embedded servers to coexist in one process

backlog#1052 S5: turn the embedded startup guard into a sequential lock
and make every write-once shared cell tolerate a second embedded start.
Two RustFSServers on different ports and volumes now start, run, and
shut down independently in the same process.

- EMBEDDED_SERVER_STARTED is released once each startup hands off; a
  second startup that runs after the first is no longer rejected.
- The second embedded server constructs its own InstanceContext instead
  of adopting the process bootstrap one, so region/endpoints/deployment
  id land on that context (the first server keeps adopting bootstrap to
  keep single-instance ambient facades unchanged).
- Startup-time tolerant paths:
  - action_credentials publish treats AlreadyInitialized as success
    (per-server ActionCredentialHandle already holds the real creds).
  - GLOBAL_RUSTFS_PORT warns instead of panicking on a second set.
  - Observability install returns Ok when the process subscriber is
    already set — the second server reuses it.
- New acceptance test proves two servers start, respond on their own
  ports, and one can be shut down without disturbing the other; the
  survivor keeps serving S3 requests. IAM and root-credential lookup
  still share a process domain (a second server whose creds differ from
  the first will fail signature validation), tracked as a follow-up.
- Embedded doc rewritten: 'Limitations' → 'Multi-instance status'; the
  AlreadyStarted error is now scoped to concurrent startups only.

The remaining work in #1052 is the auth path per-server dispatch and the
matching data-plane routing so two servers with different credentials
serve independent buckets end-to-end.

* feat(app): per-server auth and application context for multiple embedded servers (#4633)

backlog#1052 S6: each embedded server now authenticates against — and
its request path resolves — its OWN application context, so two servers
with different root credentials each accept their own access key and
reject the other's.

- AppContext is per-server: ensure_startup_after_iam constructs a fresh
  context around this server's store + IAM + KMS and installs it into the
  server's own ServerContextSlot, then publishes it as the process
  default first-writer-wins (publish_global_app_context) for legacy
  ambient readers. The old 'reuse the global if present' path is gone.
- FS::check (the S3 data-plane access gate) resolves auth against
  self.server_ctx's context: check_key_valid gains a _with_context
  variant that takes the root credentials and IAM system from an explicit
  context (None = ambient, unchanged for all 140+ existing callers). The
  region and the server context slot are published into the request
  extensions for downstream handlers.
- Each embedded server seeds its own root credentials into its context
  (ActionCredentialHandle.publish) at startup, so credential validation
  no longer falls back to the first server's process-global identity.
- The bucket/object/multipart use-cases resolve their store from the
  server's context (bucket_usecase_for/object_usecase_for/... take &FS).

New acceptance test: two servers with distinct credentials each
authenticate with their own key and reject the other's.

KNOWN FOLLOW-UP: full bucket-namespace isolation still requires threading
the instance context through the lower ecstore data plane (peer_sys /
disk registry / bucket-metadata reads still resolve via the process
GLOBAL_OBJECT_API), so the two servers do not yet present independent
bucket listings even though each holds its own store. That deeper pass —
a continuation of the #939 object-graph ctx threading — is the remaining
work on #1052.

Stacked on the S5 guard change.
2026-07-10 02:00:59 +08:00
Zhengchao An 5fbd49a800 refactor(ecstore): move the bucket metadata system into InstanceContext (#4622)
backlog#1052 S3, third slice — the hard blocker for a second embedded
server's service stage. GLOBAL_BUCKET_METADATA_SYS was a process-global
OnceLock whose init ran .set().unwrap(): a second instance's service
startup panicked the whole process. The system it guards is inherently
per-store (it holds the store handle and that store's bucket→metadata
cache), so it now lives on the store's own InstanceContext:

- init_bucket_metadata_sys writes the cell of the store it was handed
  (api.ctx) — no signature change — and keeps the double-init fail-fast,
  now scoped to the instance (assert on the per-context set). The
  dist-erasure check for the refresh loop reads the same context.
- get_global_bucket_metadata_sys / the crate-private getter behind the
  ~20 get_*_config helpers resolve through the current_ctx() facade —
  the published store's context, or bootstrap before that — so every
  existing reader keeps its exact single-instance behavior.
- New acceptance test: two real stores in one process each initialize
  their own metadata system (the old global cell panicked right there),
  plus a shared builder extracted from the store-graph test.

201 bucket/metadata regression tests green.
2026-07-09 21:48:50 +08:00
Zhengchao An 476352106e refactor(app): per-context server-config handle and Arc-owned notification system (#4621)
* refactor(app): give each context's server-config handle its own copy

backlog#1052 S3, first slice: establish the per-context state pattern on
the smallest subsystem. ServerConfigHandle was a unit struct forwarding
both get and set to the process-global GLOBAL_SERVER_CONFIG, so every
AppContext shared one config regardless of which context a caller held.

The handle now keeps its own copy: a set lands on the owning context and
on the process global (ambient readers — the config loader path, the
scanner — keep working), and a get prefers the owned copy, falling back
to the global while the initial load still publishes there. Single
instance: the owned copy and the global are written together, so reads
are unchanged. Two contexts that both published stay isolated even though
the shared global only remembers the last write (covered by a new test).

The global write in set() is the transitional bridge for ambient readers;
it goes away when those readers migrate and multi-instance flips on
(backlog#1052 S5).

* refactor(notify): hand out the notification system as an owned Arc

backlog#1052 S3, second slice. GLOBAL_NOTIFICATION_SYS stored the
NotificationSys by value and every accessor returned
Option<&'static NotificationSys> — a process-lifetime borrow that a
per-server AppContext can never hold. The global now stores an Arc and
the accessor chain (ecstore runtime sources, ECStore::notification_system,
the iam forwarders, the rustfs shims, NotificationSystemInterface and the
AppContext resolvers) hands out owned Arcs instead.

Call sites are unchanged apart from two borrow adjustments in the
rebalance admin handler (pass &Arc where a reference is expected; borrow
with as_ref() so the handle survives to the second use). Behavior is
identical — same single global instance, first init still wins — but the
type now permits a future per-server context to own its notification
system (backlog#1052 S3 follow-up).
2026-07-09 20:07:09 +08:00
Zhengchao An 91a5c87132 refactor(startup): thread explicit InstanceContext through the storage startup path (#4611) 2026-07-09 16:53:41 +08:00
Zhengchao An 359bdc0f1f refactor(ecstore): migrate the background-services cancel token into InstanceContext (Phase 5 Slice 13) (#4586)
* refactor(ecstore): migrate the background-services cancel token into InstanceContext (Phase 5 Slice 13)

Phase 5 Slice 13 (backlog#939): move the background-services cancellation token
out of the process static into the per-instance InstanceContext, so cancelling
one instance's background workers (scanner/heal/tier/lifecycle) no longer
touches another instance.

- InstanceContext gains `background_cancel_token: OnceLock<CancellationToken>`
  with `init_background_cancel_token` (set-once) and `background_cancel_token()`
  returning an owned clone.
- global.rs `init_/get_/create_/shutdown_` helpers keep their signatures and
  route through the current instance's context; the static is removed. The
  getter now returns an owned `Option<CancellationToken>` instead of a
  `Option<&'static _>`, which is what lets the token live in the context.
- Callers adapt to the owned token: the metadata-refresh loop drops `.cloned()`;
  the lifecycle worker/loops take the owned token (a shared fallback is cloned
  when the token is somehow uninitialized). No Arc cycle is introduced —
  workers hold a token clone, not the instance context.

Single-instance behavior is unchanged: startup creates one token in the
bootstrap context the ECStore adopts, and shutdown cancels that same token.

Tests: the token is set-once and cancelling one instance's token leaves a
distinct instance uninitialized.

Verification: cargo test -p rustfs-ecstore (23 instance-context tests green),
cargo clippy -p rustfs-ecstore --all-targets (clean), make pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 13)

* test(ecstore): prove multi-instance isolation; document embedded guard retention (Phase 5 Slice 14) (#4588)

Phase 5 (backlog#939) capstone. The prior 13 slices moved every piece of
per-instance runtime state out of process globals into ECStore's
InstanceContext. This slice proves the result and records the remaining work.

- Add `two_instances_isolate_all_migrated_state`: an end-to-end acceptance test
  that constructs two independent InstanceContexts and verifies NONE of the
  migrated state is shared — erasure setup, lock manager, region, deployment id,
  the four service handles (tier/notifier/expiry/transition), the local disk
  registry, the bucket monitor, and the background cancel token. This is the
  object-graph isolation carrier working end to end.
- Document why the embedded single-instance guard (EMBEDDED_SERVER_STARTED) is
  intentionally retained: storage startup still publishes into the process-level
  bootstrap context (write-once region/endpoints/deployment id) and the single
  GLOBAL_OBJECT_API handle, so a second startup would fail-fast on that shared
  state. Lifting the guard requires threading a per-instance context through
  startup — a follow-up beyond migrating the globals. The guard is NOT removed:
  rejecting the second start is safer than the panic it would otherwise become.

Verification: cargo test -p rustfs-ecstore (acceptance test + all instance-context
tests green), cargo clippy -p rustfs-ecstore --all-targets (clean), make
pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 14). Stacked on Slice 13 (#4586).
2026-07-08 22:06:31 +00:00
Zhengchao An 7ead413599 refactor(ecstore): migrate the local disk registry into InstanceContext (Phase 5 Slice 12) (#4518)
Phase 5 Slice 12 (backlog#939): move the local disk registry — the
path->disk map, the disk-id->endpoint map, and the pool/set/drive layout —
out of the three GLOBAL_LOCAL_DISK_* process statics into the per-instance
InstanceContext.

This is the migration the owned-guard prerequisite (#4501) unblocked.

- InstanceContext gains three `Arc<RwLock<..>>` registry fields, constructed
  eagerly (empty), plus pub(crate) handle accessors.
- The three runtime-source handle functions (`local_disk_map_handle` etc.) now
  return the current instance's registry via `current_ctx()`; every direct
  `GLOBAL_LOCAL_DISK_*` access in runtime::sources (~15 sites) routes through
  those handles instead. Accessors that hold a write guard across `.await`
  (`record_local_disks`, `initialize_local_disk_maps`, `replace_local_disk_id`)
  bind the handle first, so the same locks are held across the same awaits.
- The three statics are removed; the test-reset helper clears the current
  context's registry.

Construction window: the registry is populated during storage startup, before
the ECStore exists, via the bootstrap context that `ECStore::new` then adopts —
so startup writes and post-construction reads share one registry (no
split-brain). Single-instance behavior is byte-for-byte unchanged; the
GLOBAL_LOCAL_DISK_* boundary arch guard passes with the statics gone.

Verification: cargo test -p rustfs-ecstore (32 disk/instance tests green) and
-p rustfs-heal (201 green), cargo clippy -p rustfs-ecstore -p rustfs-heal
--all-targets (clean), make pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 12; disk-registry migration)
2026-07-09 01:07:28 +08:00
Zhengchao An 6bdfdd164a refactor(ecstore,heal): return the local disk map as an owned read guard (Phase 5 disk-registry prep) (#4501)
refactor(ecstore,heal): return the local disk map as an owned read guard (Phase 5 prep)

Prerequisite for the Phase 5 disk-registry migration (backlog#939): the disk
map cannot move from the process global into the per-instance InstanceContext
while callers depend on a `'static` read guard borrowed from the global.

Change `local_disk_map_read` to return an owned guard
(`OwnedRwLockReadGuard`) via `Arc::read_owned` instead of
`RwLockReadGuard<'static, _>`:

- ecstore `runtime::sources::local_disk_map_read` now returns
  `OwnedRwLockReadGuard<..>` (holds an Arc clone of the lock), not a `'static`
  borrow of `GLOBAL_LOCAL_DISK_MAP`.
- heal's forwarding accessor and its callers (which hold the guard across
  `.await` while clearing/writing per-disk markers) keep identical behavior —
  the owned guard derefs to the same map, so iteration is unchanged.

This decouples the heal crate from the global's `'static` lifetime so a later
PR can source the map from the current instance's context. Single-instance
behavior is byte-for-byte unchanged; the same read lock is held across the same
awaits.

Verification: cargo test -p rustfs-heal (201 tests green), cargo clippy -p
rustfs-ecstore -p rustfs-heal --all-targets (clean), make pre-commit (pass).

Refs: backlog#939 (Phase 5, disk-registry prerequisite)
2026-07-08 23:47:00 +08:00
Zhengchao An ca63a6cced refactor(ecstore): migrate background replication pool/stats into InstanceContext (Phase 5 Slice 11) (#4495)
Phase 5 Slice 11 (backlog#939): move the background replication pool and stats —
the last service handles, and the only async ones — out of the process statics
into the per-instance InstanceContext.

- InstanceContext gains `replication_stats: OnceCell<Arc<ReplicationStats>>` and
  `replication_pool: OnceCell<Arc<DynReplicationPool>>` (tokio async OnceCell),
  with sync read accessors (`replication_stats`/`replication_pool`/
  `replication_initialized`) and pub(crate) cell accessors for the async init.
- `init_background_replication` initializes the current instance's cells via the
  same `get_or_init(async {…}).await` (workers still spawned once on first
  init). The lifecycle owner helpers and the runtime-source accessors keep their
  signatures and route through the current instance's context; the two statics
  (and the now-unused lazy_static import) are removed. The replication-boundary
  arch guard still passes.

Single-instance: init materializes one shared pool/stats via the bootstrap
context — byte-for-byte the same as the eager statics.

Tests: replication state is None until set and independent across instances.

Verification: cargo test -p rustfs-ecstore (22 instance-context tests green),
cargo clippy -p rustfs-ecstore --all-targets (clean), make pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 11). Stacked on Slice 10 (#4494).
2026-07-08 23:15:01 +08:00
Zhengchao An db8ba9e2e5 refactor(ecstore): migrate the bucket bandwidth monitor into InstanceContext (Phase 5 Slice 10, re-submit) (#4494)
refactor(ecstore): migrate the bucket bandwidth monitor into InstanceContext (Phase 5 Slice 10)

Phase 5 Slice 10 (backlog#939): move the bucket bandwidth monitor out of the
process static into the per-instance InstanceContext.

- InstanceContext gains `bucket_monitor: OnceLock<Arc<Monitor>>` with
  `init_bucket_monitor(num_nodes)` (set-once; returns false if already set) and
  `bucket_monitor() -> Option<..>`.
- global.rs `init_global_bucket_monitor` / `get_global_bucket_monitor` keep
  their signatures and route through the current instance's context; the static
  is removed. The ignore-and-warn-on-reinit behavior is preserved (the warn
  stays in global.rs).

Tests: the monitor is None until initialized, set-once (second init is a no-op),
and independent across instances.

Verification: cargo test -p rustfs-ecstore (21 instance-context tests green),
cargo clippy -p rustfs-ecstore --all-targets (clean), make pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 10).
2026-07-08 22:56:43 +08:00
Zhengchao An 9e162f224b refactor(ecstore): move lifecycle expiry and transition state into InstanceContext (#4488) 2026-07-08 22:15:22 +08:00
Zhengchao An 322b585f71 refactor(ecstore): move deployment id, endpoints, and tier config into InstanceContext (#4465) 2026-07-08 21:50:56 +08:00
Zhengchao An c138265440 refactor(ecstore): migrate the S3 region into InstanceContext (Phase 5 Slice 4) (#4462)
Phase 5 Slice 4 (backlog#939): move the S3 region — a write-once identity
scalar — out of the GLOBAL_REGION process static into the per-instance
InstanceContext, so two instances can serve different regions.

- InstanceContext gains `region: OnceLock<Region>` with `set_region()` /
  `region()`. `set_region` keeps the write-once fail-fast contract: a second
  write panics, exactly as the process global did (not downgraded to a warn).
- global.rs `set_global_region` / `get_global_region` keep their signatures and
  forward to the current instance's context; the GLOBAL_REGION static is
  removed. Single-instance: startup writes the bootstrap context (which the
  ECStore adopts), so reads are unchanged.

Tests: set/get round-trip, two contexts hold distinct regions, and a second
set_region panics (fail-fast preserved).

Verification: cargo test -p rustfs-ecstore (9 instance-context tests green),
cargo clippy -p rustfs-ecstore --all-targets (clean), make pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 4). Stacked on Slice 3 (#4417).
2026-07-08 09:31:46 +00:00
Zhengchao An 91dec123d9 refactor(ecstore): add per-instance InstanceContext, migrate erasure setup type (#4413)
* refactor(ecstore): add per-instance InstanceContext, migrate erasure setup type

Phase 5 of the global-singleton consolidation (backlog#939): begin moving
runtime identity state out of process globals so multiple ECStore instances
can coexist in one process. Isolation is carried by the object graph
(ECStore -> Sets -> SetDisks holding an Arc<InstanceContext>), not a
task-local, which does not propagate across the many internal tokio::spawn
boundaries in the data/background paths.

This first slice migrates the erasure setup type -- previously three
independent process-global bools -- into a single per-instance
RwLock<SetupType> that derives is_erasure / is_dist_erasure / is_erasure_sd,
removing a triple source of truth that could drift out of sync.

- New runtime::instance module: InstanceContext + process bootstrap context.
- The legacy free-function facade (is_erasure/update_erasure_type/...) keeps
  its signatures and forwards to the current instance's context, falling back
  to the bootstrap context before a store is published.
- ECStore gains a pub(crate) ctx field and setup_is_* accessors; its
  constructors adopt the bootstrap context (never mint a fresh one) so startup
  writes and post-construction reads share one cell -- single-instance
  behavior is byte-for-byte unchanged.

Tests: erasure predicate derivation vs the legacy behavior, object-graph
carrier isolation across two ECStore instances, and bootstrap adoption.

Refs: backlog#939 (Phase 5, Slice 1), backlog#653 (item 8)

* refactor(ecstore): thread InstanceContext down the object graph (Phase 5 Slice 2) (#4415)

* refactor(ecstore): source the namespace lock manager per-instance (#4417)

refactor(ecstore): source the namespace lock manager per-instance (Phase 5 Slice 3)

Phase 5 Slice 3 (backlog#939): give each instance its own lock namespace by
sourcing SetDisks' lock manager from the instance context instead of the
process singleton. This removes the false cross-instance mutual exclusion (and
attendant ABBA risk) that a shared GlobalLockManager would cause once multiple
instances coexist.

- InstanceContext gains a `lock_manager: Arc<GlobalLockManager>`. `new()` mints
  a fresh manager (independent per-instance); `bootstrap_ctx()` aliases the
  process singleton via get_global_lock_manager(), so a single-instance
  deployment keeps exactly one shared namespace.
- SetDisks::new sources `local_lock_manager` from `ctx.lock_manager()` (the ctx
  it already adopts), not `runtime_sources::global_lock_manager()`. Single
  instance: same Arc as before, so behavior is unchanged.
- Remove the now-unused `runtime_sources::global_lock_manager()` wrapper.

Tests: bootstrap lock manager aliases the process singleton; two fresh contexts
own distinct managers; a SetDisks' lock manager is the one from its context and
aliases the global singleton in a single-instance build.

Verification: cargo test -p rustfs-ecstore (10 Phase 5 + set_disk locking
regressions green), cargo clippy -p rustfs-ecstore --all-targets (clean),
make pre-commit (pass).

Refs: backlog#939 (Phase 5, Slice 3). Stacked on #4415 (Slice 2).
2026-07-08 15:01:40 +08:00
Zhengchao An e5ab6ee8e4 refactor(ecstore): make replication facade explicit (#4139) 2026-07-01 18:54:05 +08:00
Zhengchao An 4538919efa refactor(ecstore): route runtime getters through facade (#4109) 2026-06-30 14:32:01 +08:00
Zhengchao An 055d3ad825 refactor(ecstore): scope dead code allowances (#4098) 2026-06-30 06:07:45 +08:00
Zhengchao An 74aef760f0 refactor(lifecycle): normalize state global names (#4096) 2026-06-30 05:29:10 +08:00
Zhengchao An cbd527cd6e refactor(runtime): normalize legacy global names (#4095) 2026-06-30 05:13:06 +08:00
Zhengchao An 90f9c24503 refactor(runtime): clean scalar globals (#4094) 2026-06-30 04:52:23 +08:00
Zhengchao An 77e45896ba refactor(runtime): remove unused node names global (#4093) 2026-06-30 04:44:17 +08:00
Zhengchao An 35d7d6bf23 refactor(ecstore): wrap background cancel token access (#4078) 2026-06-30 02:09:39 +08:00
Zhengchao An f401a4388e fix(ecstore): tolerate OnceLock re-initialization in tests (#4074) 2026-06-30 00:18:28 +08:00
Zhengchao An ecbc5385d3 refactor(runtime): hide local disk id global (#4047) 2026-06-29 16:33:36 +08:00
Zhengchao An e012d1e799 refactor(runtime): wrap boot time global (#4044) 2026-06-29 14:21:31 +08:00
Zhengchao An 4567f6f521 refactor(runtime): guard rpc secret global (#4043) 2026-06-29 14:02:03 +08:00
Zhengchao An 6093eb0c9c refactor(runtime): wrap local node name global (#4041) 2026-06-29 13:13:54 +08:00
Zhengchao An 9414d645f4 refactor(runtime): wrap rustfs address globals (#4037) 2026-06-29 11:18:30 +08:00
Zhengchao An 9165de3241 refactor(runtime): wrap internode connection cache (#4036) 2026-06-29 10:43:13 +08:00
Zhengchao An ea88f5b67b refactor(obs): use lifecycle runtime facades (#4031) 2026-06-29 09:29:50 +08:00
houseme 0485e5adf0 feat(get): Small-file GET performance optimization for 1KiB-1MiB objects (#4016)
* feat(get): SF01 - bucket validation cache

Add 5s TTL cache for bucket validation to avoid repeated stat_volume()
calls on every GET request.

Changes:
- Add BUCKET_VALIDATED_CACHE (OnceLock + RwLock + HashMap)
- Add invalidate_bucket_validation_cache() for cache invalidation
- Add invalidate_all_bucket_validation_cache() for bulk invalidation
- Update get_validated_store() to use cache
- Add cache invalidation in execute_delete_bucket()

Expected impact: 3-5x improvement for small file GET latency.

Closes rustfs/backlog#766

Co-Authored-By: heihutu <heihutu@gmail.com>

* feat(get): SF03 - metadata cache TTL increase

Increase metadata cache TTL from 250ms to 2s and capacity from 1024
to 4096 entries.

Changes:
- GET_OBJECT_METADATA_CACHE_TTL: 250ms -> 2s
- GET_OBJECT_METADATA_CACHE_MAX_ENTRIES: 1024 -> 4096

All mutation paths already call invalidate_get_object_metadata_cache,
so the longer TTL is safe.

Expected impact: 10-50x improvement for hot objects.

Closes rustfs/backlog#768

Co-Authored-By: heihutu <heihutu@gmail.com>

* feat(get): SF04 - remove unnecessary tokio::spawn in metadata fanout

Replace tokio::spawn with direct async future in read_all_fileinfo_full_wait.
join_all already provides concurrency, so tokio::spawn adds unnecessary
task creation and scheduling overhead.

Changes:
- Remove tokio::spawn from metadata fanout futures
- Update result handling for direct future results

Expected impact: 16-32us reduction per GET request.

Closes rustfs/backlog#769

Co-Authored-By: heihutu <heihutu@gmail.com>

* feat(get): SF06 - conditional lifecycle check

Only call resolve_put_object_expiration when the object has an
x-amz-expiration metadata marker. This avoids unnecessary lifecycle
configuration reads on every GET request.

Expected impact: 50-100us reduction per GET request.

Closes rustfs/backlog#771

Co-Authored-By: heihutu <heihutu@gmail.com>

* feat(get): SF07 - conditional metrics recording

Gate hot path metrics behind get_stage_metrics_enabled() to reduce
overhead when metrics are not needed.

Changes:
- Conditional record_zero_copy_read
- Conditional manager.record_disk_operation
- Conditional manager.record_access
- Conditional manager.record_transfer

Expected impact: 20-50us reduction per GET request.

Closes rustfs/backlog#772

Co-Authored-By: heihutu <heihutu@gmail.com>

* refactor(get): SF01 - use moka instead of dashmap for bucket cache

Replace OnceLock + RwLock + HashMap with moka::sync::Cache for bucket
validation cache. moka provides built-in TTL support and is already
available in the workspace.

Changes:
- Add moka dependency to rustfs crate
- Replace manual TTL management with moka's time_to_live
- Simplify cache operations

Closes rustfs/backlog#766

Co-Authored-By: heihutu <heihutu@gmail.com>

* feat(get): SF02 - inline data fast path

Add fast path for small inline objects that bypasses duplex pipe,
tokio::spawn, and bitrot reader creation when data is already in memory.

Changes:
- Add inline data detection before codec streaming gate
- Direct in-memory erasure decode for inline objects <= 128KB
- Add GET_OBJECT_PATH_INLINE_DIRECT metric path
- Skip duplex pipe and background task for inline data

Conditions for fast path:
- Single part object
- Inline data available
- Size <= 128KB
- Not encrypted/compressed/remote
- No range request

Expected impact: 2-3x improvement for small file GET latency.

Closes rustfs/backlog#767

Co-Authored-By: heihutu <heihutu@gmail.com>

* refactor: translate Chinese comments to English

Translate all Chinese comments to English in modified files:
- rustfs/src/storage/ecfs_extend.rs
- rustfs/src/app/bucket_usecase.rs

Co-Authored-By: heihutu <heihutu@gmail.com>

* fix

* add

* fmt and improve import

* fmt

* feat(get): SF05 skip IO planning + refactor inline detection + adaptive bucket cache

SF05: Skip disk I/O semaphore for inline data fast path
- Reorder prepare_get_object_read_execution: read first, then decide semaphore
- Inline objects skip acquire_disk_read_permit() entirely (saves 100-200us)
- Add is_inline_fast_path field to GetObjectReadSetup

Refactor: Unify inline detection logic
- Add ObjectInfo::is_inline_fast_path_eligible() as single source of truth
- Version-aware thresholds: non-versioned 128KB, versioned 16KB (matches PUT)
- Eliminates divergent conditions between set_disk/mod.rs and object_usecase.rs

Refactor: Restore fault tolerance in metadata fanout
- Restore tokio::spawn + JoinError handling in read_all_fileinfo_full_wait
- Prevents single disk read panic from unwinding the entire operation

Refactor: Restore lifecycle check correctness
- Remove incorrect SF06 conditional that skipped lifecycle for most objects
- Always call resolve_put_object_expiration (original behavior)

Fix: make_bucket cache invalidation
- Invalidate bucket validation cache on create_bucket

Fix: erasure decode written validation
- Check decode() return value; error if 0 bytes written for non-empty object

Adaptive bucket cache
- Default: RwLock<HashMap> for < 100 buckets (low overhead)
- Opt-in: starshard::ShardedHashMap via RUSTFS_BUCKET_CACHE_STARSHARD=1
- 5s TTL with manual timestamp checking

Benchmark results (warp get, concurrency 32, 10s, 3 rounds):
- 10KiB: 25.10 MiB/s (+28.2% vs SF01-07)
- 100KiB: 221.81 MiB/s
- 1MiB: 1972.78 MiB/s
- vs main: -10% to -12% (inline path not triggered by warp)

Co-Authored-By: heihutu <heihutu@gmail.com>

* fix(versioning): use read lock for versioning config query + five-expert analysis

P0 fix: BucketVersioningSys::get() was using write lock on
GLOBAL_BucketMetadataSys for a pure read operation. This serialized
all concurrent GET requests (3 write-lock acquisitions per request).

Changed to read lock — get_versioning_config() handles its own
internal locking via metadata_map RwLock.

Five-expert analysis identified top bottlenecks:
1. Versioning write lock (P0, fixed)
2. Inline fast path not triggered (P0, needs verification)
3. Metadata fanout no early-stop (P1, early-stop has bug, reverted)
4. Request-level versioning cache (P1, pending)
5. Duplex pipe for small objects (P2, pending)

Benchmark (read-lock fix, warp concurrency 32):
- 1KiB: 2.29 MiB/s (vs 2.53 before, within variance)
- 10KiB: 25.00 MiB/s (same as before)
- 100KiB: 246.72 MiB/s (+11% vs 221.81)
- 1MiB: 2039.95 MiB/s (+3% vs 1972.78)

Co-Authored-By: heihutu <heihutu@gmail.com>

* chore: remove benchmark results from git, keep locally only

Remove docs/benchmark/*.md from version control.
Files remain on disk but are no longer tracked by git.
Added docs/benchmark/*.md to .gitignore.

Co-Authored-By: heihutu <heihutu@gmail.com>

* fix(get): decode inline fast path through bitrot readers

---------

Co-authored-by: heihutu <heihutu@gmail.com>
2026-06-28 22:35:42 +08:00
Zhengchao An ed0f191e1a docs: document global singleton migration plan (#730) (#4015)
docs: document global singleton migration plan

Add comments documenting the Tier A/B classification and migration
plan for global singletons in ecstore runtime.

Refs #730
2026-06-28 21:25:42 +08:00
Zhengchao An f0ab812213 fix: replace unwrap() with expect() in remaining files (#729 batch 12) (#3992) 2026-06-28 11:45:03 +08:00
Zhengchao An 1b3dea012e refactor: route ecstore runtime globals through facade (#3941) 2026-06-27 12:27:03 +08:00
Zhengchao An e1a4b9e0b6 refactor: batch cluster lock and health readiness (#3936) 2026-06-27 10:51:06 +08:00
Zhengchao An 0a5b1b1b3a refactor: consolidate ecstore owner module layout (#3934)
* refactor: shrink ecstore root owner facades

* refactor: remove ecstore core store root shims

* refactor: move ecstore erasure owner modules

* refactor: remove ecstore root rpc facade

* refactor: move ecstore services domain modules
2026-06-27 09:03:20 +08:00
Zhengchao An c6ecfae39e refactor: move ecstore owner layout modules (#3932) 2026-06-27 05:54:25 +08:00