Commit Graph

254 Commits

Author SHA1 Message Date
唐小鸭 e11ce2f132 fix(site-replication): route every state RMW through the locked transaction (#6097)
* fix(site-replication): route every state RMW through the locked transaction

P1-15 PR2 (rustfs/backlog#1796, batch B2 of rustfs/backlog#1675), the
follow-up promised by rustfs/rustfs#5882.

PR1 left ~26 read-modify-write call sites on
config/site-replication/state.json in the pre-transaction shape: a
process-local mutex around load / mutate / save, each IO taking its own
object lock. Nothing held a distributed lock across the whole sequence, so
two nodes of one site still lost each other's updates, and the transitional
mutex kept the old shape available to copy.

Every remaining RMW now runs inside update_site_replication_state;
read-only sites use load_site_replication_state, whose object read comes
with the object-level read lock. SITE_REPLICATION_STATE_LOCK and its owner
helper are gone, together with their architecture-guard allowlist entry and
inventory row.

The multi-stage flows (add / edit / peer join / peer edit / remove / rotate)
keep their updated_at and pending-id CAS, but the CAS now runs inside the
transaction that writes, against the state that transaction loaded. Peer
probes, IAM work and fan-outs run between transactions and hold no lock at
all — the add no longer blocks every writer of the site across its peer join
round trips, and it re-checks the precondition right after the capability
probes so the common race is rejected before any IAM write or remote join.
When the add's commit CAS still fails, the error says the peers may already
be joined and that re-running the add reconverges. The add adopts only the
fields it computed (exhaustive destructure — adding a state field is a
compile error until classified); fields owned by writers that do not bump
updated_at keep their freshly loaded values.

Ordering of peer-edit deliveries now rests on the generation fence landed in
PR1 rather than on a guard that could never order two nodes: the add's
finalize fan-out carries the generation allocated in its commit. An accepted
peer join PRESERVES the applied-generation high-water marks — join fan-outs
are routine (adds and rotations both deliver SRPeerJoin to existing peers),
so wiping them would let stalled older edits land after any join; the
unilateral-removal rejoin misfence that a wipe would have patched is
pre-existing since the fence landed and needs an epoch in the fence instead.

The rotation handler now takes the lifecycle guard: the background
service-account reconciler runs its repair under a lifecycle try-acquire,
and its pending-rotation precheck is only sound if a rotation cannot start
mid-repair — an exclusion the removed process mutex used to provide as a
side effect.

update_site_replication_state_when_changed adds persist-or-skip so ack
markers and pending-clearing paths stop rewriting the object on a miss —
load-bearing, because the shared persist helper clears the whole object for
a ≤1-peer pending-free state — and save_site_replication_state is now
cfg(test): the pre-P1-15 shape can no longer be written in production code.

No on-disk format change.

Verification: cargo nextest run -p rustfs -E
'test(/admin::handlers::site_replication::/)' (181 passed); site-replication
dual/three-node e2e (13 passed); cargo clippy -p rustfs --all-targets -D
warnings; make pre-commit. Mutation checks: dropping the state-object lock
from the boundary reds the separate-node concurrency tests; flipping a
persist-or-skip miss to a persist reds
test_missed_pending_clear_must_not_rewrite_the_state_object. Reviewed by
three independent adversarial passes (correctness/concurrency,
security/compatibility, simplicity/test-coverage); their confirmed findings
are folded in.

* fix(site-replication): serialize peer-join admission around its IAM write

Review follow-up (overtrue): two joins accepted by the same node could
interleave as "A checks a stale snapshot and pauses reading its body, B
applies secret B and commits, A resumes, overwrites IAM with secret A, and
A's commit is refused as superseded" — the persisted state advertised B's
contract while IAM only accepted A's secret, failing every peer
control-plane call. The pre-P1-15 process mutex serialized same-node joins
end to end; removing it dropped that exclusion.

admit_peer_join now runs the staleness check, the IAM upsert and the state
commit under the lifecycle guard, with the authoritative pre-check taken
against a load under that guard BEFORE IAM changes anything. The closing
transaction still re-checks staleness: the guard is process-local (exactly
as far as the old mutex reached) and the state-object lock arbitrates joins
accepted by different nodes. The body is fully read before the guard so a
stalling sender cannot block add/remove/rotate/reconciler.

The IAM step is injected, and the gated-body regression test reproduces the
review's ordering: join A is held mid-IAM while a newer join B arrives; B
must wait at the guard, and both IAM order and the final persisted state end
on B. Mutation-verified: removing the lifecycle guard from admit_peer_join
turns the test red.

Verification: cargo nextest run -p rustfs -E
'test(/admin::handlers::site_replication::/)' (182 passed);
site-replication dual/three-node e2e (13 passed); cargo clippy -p rustfs
--all-targets -D warnings; make pre-commit.

* fix(site-replication): fence peer-join admission across nodes

Review follow-up (overtrue, round 2): the lifecycle guard only serializes
joins within one process. Node A could pass the staleness check for an
older T1, node B write secret B to IAM and commit a newer T2, and node A
then overwrite IAM with secret A while its own state commit is refused as
superseded — state advertising T2's contract while IAM only accepts A's
secret.

The admission (staleness check -> IAM upsert -> state commit) now also runs
under a distributed join-admission lock, a namespace-lock key with no
backing object, following the repair execution lock's pattern — including
its nesting of config-object locks (admission -> state), and delegating
crash safety to the lock subsystem's lease expiry instead of a hand-rolled
TTL. The staleness check runs against a load taken inside the lock, before
IAM changes anything, so a superseded join exits without touching IAM. The
closing transaction keeps its re-check for defence in depth and for
old-version nodes that do not take the admission lock during a rolling
upgrade (that mixed-version window keeps today's behavior and closes when
the upgrade completes).

admit_peer_join_across_nodes is the admission minus the process-local
lifecycle guard — exactly what a second node runs — and the new
separate-nodes regression test drives it directly with join A gated
mid-IAM: join B must wait at the distributed lock, and both the IAM write
order and the final persisted state end on B. Mutation-verified: removing
the admission lock turns the test red while the same-node test (which
drives the full admit_peer_join) stays green.

Verification: cargo nextest run -p rustfs -E
'test(/admin::handlers::site_replication::/)' (183 passed);
site-replication dual/three-node e2e (13 passed); cargo clippy -p rustfs
--all-targets -D warnings; make pre-commit.
2026-08-14 22:13:37 +08:00
Zhengchao An db4707f187 chore(io-metrics): make the server label injected, drop two leaf-violating deps (#6051) 2026-08-13 03:20:18 +00:00
Henry Guo 7211f29498 feat(table-catalog): complete namespace REST contracts (#5745)
* feat(table-catalog): complete namespace REST contracts

* fix(table-catalog): simplify namespace existence guard

* fix(table-catalog): restore migration guard coverage

* fix(table-catalog): preserve encoded namespace segments

* fix(table-catalog): reject implicit namespace creates

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

---------

Co-authored-by: Henry Guo <marshawcoco@users.noreply.github.com>
Co-authored-by: houseme <housemecn@gmail.com>
Co-authored-by: heihutu <heihutu@gmail.com>
2026-08-05 21:07:30 +00:00
cxymds b0c6c4cbce fix(storage): resolve erasure parity per pool (#4977)
* fix(filemeta): add state-aware file info validation

* fix(filemeta): validate shard arithmetic and delete paths

* fix(ecstore): add fallible erasure construction

* fix(ecstore): resolve storage parity per pool

* fix(storage): report heterogeneous erasure layouts

* fix(admin): publish prepared storage config atomically

* fix(storage): harden per-pool parity boundaries

* fix(storage): address pre-PR validation findings

* test(ci): fix strict-topology validation fixtures

* fix(heal): preserve delete markers during repair

* refactor(filemeta): drop unused ValidatedFileInfo witness

ValidatedFileInfo wrapped an unread `_file_info` reference alongside an `Option<ValidatedErasureLayout>`, but only the layout was ever consumed. Return the layout directly from `FileInfo::validate` so the sole production consumer (`LocalDisk::check_parts`) and the two unit tests read it without the extra witness type and lifetime.

No behavior change.

* fix(filemeta): keep compressed and MinIO-migrated tiered objects readable

The new decode-path validation rejected several legitimate on-disk shapes that older RustFS and MinIO-migrated data carry, turning readable objects into FileCorrupt:

- Compressed objects written with an unknown upload size persist a negative per-part actual_size (the documented "unknown size" sentinel that ObjectInfo::get_actual_size already tolerates). validate_collection_contents rejected it via usize::try_from; now a negative actual_size skips shard validation and only real, non-negative sizes are checked.
- MinIO-migrated objects transitioned to a versioned remote tier store the tier version id as a UUID string, not 16 raw bytes. MetaObject::into_fileinfo returned FileCorrupt (main tolerated it as None), making all versions of the object unreadable; MetaDeleteMarker free-version records took a Some(nil) sentinel path with the same effect, which also breaks free-version expiry (remote-tier leak). Both now decode through a shared transitioned_version_id_from_meta_sys helper: 16 raw bytes or a UUID string are accepted, anything else is tolerated as None instead of failing the read.

Regression tests updated to assert the readable/compat behavior, with new tests covering MinIO string-form recovery.

* fix(scanner): build the delete-marker test fixture without erasure geometry

get_size_counts_delete_markers_separately_from_versions built its delete marker with `FileInfo::new(object, 1, 1)`, which attaches erasure geometry (data=1/parity=1/distribution). This PR classifies versions by shape via `is_storage_delete_marker()` (no geometry) rather than the raw `deleted` flag, so a geometry-bearing "delete marker" is correctly serialized as a purge-pending payload Object and counted as a version — CI saw summary.versions=3, expected 2.

Real delete markers carry no erasure geometry (delete paths build them as `FileInfo { deleted: true, ..Default::default() }`), so construct the fixture the same way. It then classifies as a storage delete marker and the counts (versions=2, delete_markers=1) hold. This keeps the PR's more-correct classification, which prevents a purge-pending object's geometry from being dropped when serialized as a bare delete marker.

* docs(changelog): note per-pool parity fix and storage-class startup upgrade caveat

Records the #4801 per-pool erasure parity fix under Fixed, and documents the upgrade behavior where a persisted storage class that a small or heterogeneous pool cannot satisfy now fails startup — with the RUSTFS_STORAGE_CLASS_STANDARD recovery steps. Docs-only; covers R4 from the on-disk compatibility audit.

* fix(heal): report parity from erasure geometry, not is_valid()

heal_object set HealResultItem.parity_blocks via `if lfi.is_valid()`, which was missed by the migration of the other quorum/metadata predicates. With the new `is_valid()` semantics (full payload validation; delete markers now return false), a delete marker or a geometry-bearing version with a benign collection quirk would misreport parity as the pool default instead of its own. Use `has_valid_erasure_geometry()` — the narrow "does this carry erasure geometry" predicate the rest of the migration uses — so reporting matches the object's actual layout. Reporting-only; no data-path change.

* fix(filemeta): do not silently serialize a non-canonical deleted FileInfo as an Object

`From<FileInfo> for FileMetaVersion` classifies by `is_storage_delete_marker()` (shape), which correctly routes canonical delete markers to Delete and purge-pending payloads (deleted=true with real erasure geometry) to Object. But a `deleted` FileInfo that is neither a canonical marker nor a valid erasure payload would silently serialize as a zero-geometry MetaObject that later fails `validate_for_metadata_read`. Write paths validate first (`validate_for_erasure_write` / `validate_for_metadata_read`), so this is a caller bug; `From` is infallible, so surface it with a structured `warn!` on the malformed branch instead of writing corrupt metadata silently. Legitimate purge-pending objects (valid geometry) are unaffected — the guard only fires for `deleted && !has_valid_erasure_geometry()`.

* test(filemeta): assert real historical xl.meta versions pass metadata-read validation

Empirical companion to the code-reasoned decode-tolerance invariants (docs/architecture/erasure-coding.md §11) and the rolling-upgrade / MinIO-migration compatibility concern: the tightened `validate_for_metadata_read` runs on every local disk read and peer-RPC-decoded FileInfo, so it must accept every version of real historically-written xl.meta, never reject it as FileCorrupt.

Loads five real fixtures — MinIO small-inline, MinIO versioned (two object versions + a delete marker), MinIO large multipart, a legacy V1 (xl.json-derived) object, and a legacy meta_ver 2 object — decodes every version with parts materialized, and asserts validate_for_metadata_read() is Ok for each. Reverting the tolerant handling (delete-marker shape, legacy per-part checksums, string/short transitioned-versionID, negative actual_size) turns this red.

* fix(ci): remove duplicate storage test re-exports

---------

Co-authored-by: overtrue <anzhengchao@gmail.com>
2026-07-19 21:52:31 +08:00
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 f63af3df63 chore: retire completed-migration scaffolding, wire orphaned boundary check (#4719)
The ecstore/global-state migrations are done (backlog#815, #939, #1052 all
closed). Review of every migration-era test/gate measure found three things
actually retirable or broken — everything else is a live anti-regression
guard and stays.

Remove:
- scripts/check_metrics_migration_refs.sh — guards a migration that
  finished: rustfs_metrics:: has zero hits, the metrics crate no longer
  exists, and the script was never wired into CI or make (only reference
  was one line in config-model-boundary-adr.md, also removed).
- crates/obs init_metrics_collectors — the "backward-compatible alias kept
  during migration" the removed script was guarding. Zero callers; pure
  delegate to init_metrics_runtime.

Archive (docs/superpowers/plans/, continuing the 2026-07 convention,
with the standard archived banner):
- startup-timeline.md, scheduler-baseline.md,
  profiling-numa-capability-inventory.md,
  kms-development-defaults-inventory.md — one-shot snapshots whose only
  consumer is the already-archived migration-progress ledger (their
  same-dir links there start resolving again after the move); zero script
  pins; fed the closed backlog#660/#665 architecture-review ledger.
  Fixed the one outbound link (startup-timeline -> readiness-matrix) that
  the move would have broken — check_doc_paths.sh deliberately does not
  scan plans/, so nothing else would have caught it.

Wire (found orphaned by the same review):
- scripts/check_extension_schema_boundaries.sh guards a live contract
  crate but was never invoked anywhere. Add lint-fmt.mak target, include
  in pre-commit/pre-pr/dev-check, add ci.yml Quick Checks step (job
  already installs ripgrep), sync the CONTRIBUTING.md enumerated list,
  and harden the script against a silently-passing rg probe when src/
  is missing.

Keep (verified live, documented so the next cleanup pass does not repeat
this analysis):
- scripts/check_architecture_migration_rules.sh — added a header stating
  it is a permanent boundary guard, not retirable migration scaffolding;
  'migration' in the name is historical.
- check_migration_gate_count.sh + floor, delete-marker e2e proof, all
  pinned docs, compat-cleanup-register sync, remaining inventories
  (referenced by live docs).

Verification: all 7 guard scripts pass, actionlint clean,
cargo check --workspace (excl e2e) clean, cargo fmt --check clean.
Adversarially reviewed by two independent skeptic passes; their 7
findings (alias left behind, broken outbound link, missing banners,
wrong backlog attribution, CONTRIBUTING drift, rg exit-2 hole, missing
header rationale) are all folded in.
2026-07-11 13:42:56 +08:00
houseme 7001373316 fix(iam): load IAM bootstrap snapshot without namespace locks (#4363)
* 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>
2026-07-07 20:07:09 +08:00
Zhengchao An 46bb7e52b6 refactor(ecstore): extract read IO primitives to set_disk::core::io_primitives (backlog#820) (#4285)
* refactor(ecstore): extract read IO primitives to set_disk::core::io_primitives (backlog#820)

P5 step 1 of the SetDisks God-Object split (tracking backlog#815, issue
backlog#820). Relocate the module-level low-level read/erasure primitives out of
the 5,898-line set_disk/read.rs into a new core/io_primitives.rs module home:

- Metadata-fanout quorum machinery (MetadataQuorumAccumulator,
  MetadataFanoutDiagnostics/Observation, MetadataEarlyStopDecision,
  MetadataCacheLookup).
- Bitrot reader scheduling/creation (BitrotReaderSetup and the
  create_bitrot_readers_* / schedule / fill helpers).
- Shard-cost classification, read-repair heal dedup, and codec-streaming
  reader helpers.

Pure move + visibility adjustment, zero logic change. The moved block is
byte-identical to the pre-move read.rs source modulo the module header swap
(use super::* -> use super::super::*) and item visibility widening
(module-private / pub(super) -> pub(in crate::set_disk) so read.rs still
reaches them). read.rs's impl SetDisks body and imports are byte-identical to
before; mod.rs only gains 'mod core;' and repoints two
GetCodecStreamingReaderBuildOutcome references to the new path.

Verification:
- cargo check / clippy -D warnings -p rustfs-ecstore --all-targets: clean
- cargo test -p rustfs-ecstore --lib: 1840 passed, 0 failed
- normalized + token-stream diff of moved block vs original: identical modulo
  visibility tokens and rustfmt signature re-wrapping

* fix(arch): allow io_primitives as READ_REPAIR_HEAL_CACHE owner (backlog#820)

The READ_REPAIR_HEAL_CACHE owner-path guard in
check_architecture_migration_rules.sh pinned the cache to
set_disk/read.rs. P5 step 1 relocated the cache (and its accessor
helpers) to set_disk/core/io_primitives.rs, so allow that path too.
Guard intent is unchanged: the cache stays behind the ECStore set-disk
read-owner helpers.

---------

Co-authored-by: houseme <housemecn@gmail.com>
2026-07-05 20:23:49 +08:00
Zhengchao An 0271d7aa2b refactor(ecstore): narrow api facade exports (#4270)
* refactor(ecstore): narrow bucket api facade

* refactor(ecstore): narrow more api facades

* test(ecstore): stabilize multipart cleanup test
2026-07-05 06:06:39 +08:00
Zhengchao An a6b3e4f5d6 refactor: use canonical Rust module paths (#4269) 2026-07-05 03:01:14 +08:00
Zhengchao An d0792b87be refactor(lifecycle): extract core rule contracts (#4258) 2026-07-04 20:05:56 +08:00
Zhengchao An 123552d32b refactor(replication): own utility wire contracts (#4255) 2026-07-04 08:00:37 +08:00
Zhengchao An 3d4fb532e5 refactor(replication): own filemeta wire contracts (#4254) 2026-07-04 06:39:54 +08:00
Zhengchao An 125c228832 refactor(replication): own delete DTO contracts (#4253) 2026-07-04 04:00:27 +08:00
Zhengchao An 8a0617865b refactor(replication): route app storage through ecstore (#4251) 2026-07-04 02:00:28 +08:00
Zhengchao An 4883d3eb50 refactor(replication): route runtime facades through ecstore (#4248) 2026-07-03 23:49:24 +08:00
Zhengchao An 7cc470cb08 refactor(replication): isolate ecstore boundary imports (#4247) 2026-07-03 23:18:27 +08:00
Zhengchao An d19ee6c51c refactor(replication): isolate storage api contracts (#4244) 2026-07-03 22:48:21 +08:00
Zhengchao An 24e88a2cf4 refactor(replication): isolate filemeta facade contracts (#4243) 2026-07-03 22:20:46 +08:00
Zhengchao An 6839e57c96 refactor(replication): isolate storage api contracts (#4240)
* refactor(replication): isolate storage api contracts

* docs(replication): record storage api contract boundary
2026-07-03 22:10:16 +08:00
Zhengchao An 6a81445a96 refactor(replication): isolate ecstore owner contracts (#4239) 2026-07-03 21:42:45 +08:00
Zhengchao An 769549dd2c refactor(replication): isolate status contract boundaries (#4236) 2026-07-03 19:40:49 +08:00
Zhengchao An 7001e53546 refactor(replication): isolate stats and app contract boundaries (#4235)
* refactor(replication): isolate stats boundary adapters

* refactor(replication): route app contracts through storage boundary
2026-07-03 18:48:26 +08:00
Zhengchao An aecac5c0ae refactor(replication): isolate object decision contracts (#4219) 2026-07-03 11:36:14 +08:00
Zhengchao An c260a2f20f refactor(replication): isolate queue boundary adapters (#4216) 2026-07-03 09:43:31 +08:00
Zhengchao An 48b70f6e4f refactor(replication): isolate resync boundary adapters (#4215) 2026-07-03 08:59:42 +08:00
Zhengchao An 31df11beb7 refactor(replication): isolate multipart and target adapters (#4211)
* refactor(replication): isolate multipart part planning

* refactor(replication): isolate target head adapters
2026-07-03 08:06:17 +08:00
Zhengchao An 008b7fcb6f refactor(replication): move heal queue routing contracts (#4176)
* refactor(replication): move heal queue routing contracts

* fix(replication): satisfy feature clippy
2026-07-02 15:15:08 +08:00
Zhengchao An 98a0cca4a2 refactor(replication): move resync decision contracts (#4173)
* refactor(replication): move resync decision contracts

* fix(replication): avoid resync status clones
2026-07-02 14:13:05 +08:00
Zhengchao An 48f8443626 refactor(replication): move object compare contracts (#4171) 2026-07-02 13:19:47 +08:00
Zhengchao An d666028cdc refactor(replication): move resync classifiers into crate (#4170) 2026-07-02 12:57:59 +08:00
Zhengchao An 953a080b37 refactor(replication): move runtime sizing contracts (#4169) 2026-07-02 12:33:11 +08:00
Zhengchao An 473132f36b refactor(replication): move stats contracts into crate (#4168) 2026-07-02 12:14:36 +08:00
Zhengchao An 8ce0f824cf refactor(replication): move queue contracts into crate (#4167) 2026-07-02 11:40:49 +08:00
Zhengchao An 2cf856a51d Move replication delete worker contract into crate (#4166)
refactor(replication): move delete worker contract into crate
2026-07-02 11:03:24 +08:00
Zhengchao An df6ce41acd Move replication operation contracts into crate (#4165)
refactor(replication): move operation contracts into crate
2026-07-02 10:48:02 +08:00
Zhengchao An b57820a486 refactor(replication): move config contracts into crate (#4162) 2026-07-02 10:17:48 +08:00
Zhengchao An 18b79ccc2a refactor(replication): route filemeta paths through crate (#4161) 2026-07-02 09:08:47 +08:00
Zhengchao An 2de38d3e5c refactor(replication): move mrf wire format to replication crate (#4157)
* refactor(replication): move mrf wire format to replication crate

* refactor(replication): match re-exported error variants
2026-07-02 04:27:53 +08:00
Zhengchao An 8f01012071 fix(replication): address resync review follow-up (#4155)
* fix(replication): address resync crate review

* fix(replication): skip fixext fields correctly

* fix(replication): satisfy resync clippy
2026-07-02 04:00:28 +08:00
Zhengchao An e80391f1aa refactor(replication): extract resync contracts crate (#4154) 2026-07-02 01:30:01 +08:00
Zhengchao An 572a001f93 refactor(storage): hide replication runtime handles (#4152) 2026-07-02 00:40:42 +08:00
Zhengchao An 14016dbe8c refactor(scanner): hide replication queue DTOs (#4150) 2026-07-02 00:17:03 +08:00
Zhengchao An 644a472e52 refactor(obs): hide replication stats handle (#4149) 2026-07-01 23:37:23 +08:00
Zhengchao An b43655ccdd refactor(app): hide replication object DTOs (#4147) 2026-07-01 23:02:00 +08:00
Zhengchao An b94e7d514d refactor(admin): hide replication resync DTOs (#4146) 2026-07-01 22:18:06 +08:00
Zhengchao An 22cbd41ee9 refactor(ecstore): add replication owner bridges (#4141)
* refactor(ecstore): add replication owner bridges

* fix(ecstore): tighten replication owner guards
2026-07-01 21:51:26 +08:00
Zhengchao An c0dfc260ca refactor(ecstore): add replication object bridge (#4140) 2026-07-01 19:24:20 +08:00
Zhengchao An e5ab6ee8e4 refactor(ecstore): make replication facade explicit (#4139) 2026-07-01 18:54:05 +08:00
Zhengchao An fc806679fb refactor(ecstore): add replication work bridges (#4137) 2026-07-01 18:37:01 +08:00