* fix(sse): resolve bucket default encryption per request
PUT and the POST-object/extract path resolved a bucket's default
encryption with a hard-coded "no explicit SSE-C" flag, so the default was
layered onto a request that already carried an SSE-C header triple and
then tripped that request's own mutual-exclusion check. Every bucket with
default encryption refused SSE-C single PUTs with 400 InvalidArgument,
while CreateMultipartUpload on the same bucket succeeded because it
resolves SSE elsewhere. Both call sites now derive the flag from the
request headers, as COPY already did.
The bucket default's KMS key id was also inherited independently of the
effective algorithm, so an explicit AES256 request against an aws:kms
default bucket produced a self-contradictory algorithm/key-id pair and
was rejected. The key id is now inherited only when the effective
algorithm is aws:kms, matching the storage-layer resolver.
Refs backlog#2368 B1, B2.
* fix(sse): refuse SSE-KMS without a running KMS service
A write requesting aws:kms on a node with no KMS service fell back to the
node-local SSE-S3 provider: the data key was wrapped with
RUSTFS_SSE_S3_MASTER_KEY while the object metadata still recorded
aws:kms and the requested KMS key id. The stored object claimed a KMS
protection it never had, under a key that was never consulted, and no
signal distinguished it from a genuine SSE-KMS object.
The managed-encryption path now asks the resolved DEK provider whether it
wraps with a node-local master key and refuses SSE-KMS in that case:
InvalidRequest when KMS was never configured, ServiceUnavailable when a
configured service is not running. The check sits after the per-key
authorization gate so an unauthorized caller still receives AccessDenied
whatever the KMS runtime state is, and asks the provider rather than a
parallel availability signal because the provider is what actually wraps
the key. A missing master key no longer answers an SSE-KMS request with
an SSE-S3-worded configuration error.
The SSE-S3 local fallback is unchanged.
Refs backlog#2368 B4.
* fix(ecstore): restore and archive tiers in stored coordinates
Multipart restore addressed the remote tier in plaintext coordinates
while the copy-back reads the stored representation. Each part received a
misaligned slice of the remote object whose length still satisfied the
range, the hash reader and the completion size check, so the restore
reported success and silently replaced the object's bytes. Encrypted and
compressed multipart objects were both affected. Restore now accumulates
stored part sizes, passes the stored length to the hash reader alongside
the plaintext length, and validates against the stored size.
The copy-back digests stored bytes, so its computed MD5 is not the
object's public ETag. Restore now preserves the object ETag on both the
single-part and multipart paths, and gives each restored part its own
recorded part ETag rather than the object-level value.
Transition also handed the tier the object's SSE headers and its
RustFS-wrapped data key as request headers. Any S3 target rejected an
SSE-C archive outright, an SSE-KMS archive asked the target to encrypt a
second time under a key id it does not own, and the wrapped DEK left the
cluster. The archive request now strips every SSE header and encryption
marker with the predicate the replication path already uses; the local
xl.meta keeps all of it, so read-through and restore are unaffected.
Objects restored by an affected release are not detected or repaired
retroactively and must be re-restored from the tier.
Refs backlog#2368 B3, B5; backlog#2369 P7.1.
* fix(rio): lock the v1 nonce layout within a segment
Decrypting a v1 segment tried three historical nonce layouts per frame,
independently for every frame. The last of them exists for streams
written before 1.0.0-alpha.91, which reused a segment's part nonce for
every block in it; because block zero's derived nonce equals that base
nonce, a frame encrypted at index zero authenticated at any position. An
attacker able to rewrite the underlying shards could replay it and have
the forged plaintext returned with 200 and an unchanged length. Shard
integrity uses a keyed-hash-free checksum, which such an attacker can
recompute, so it is not a barrier.
A segment now locks onto whichever layout decoded its first non-zero-index
frame and rejects any later frame needing a different one. That leaves one
residual shape: a stream built purely from repeats of frame zero has no
later frame to disagree. New RUSTFS_ENCRYPTION_LEGACY_NONCE_FALLBACK
(default true, so pre-alpha.91 objects keep decrypting) drops the third
layout entirely when set to false, which closes it. Turning it off refuses
pre-alpha.91 objects, so migrate them first by rewriting in place.
Refs backlog#2369 P2.
* fix(kms): reload a service that failed to start
POST /rustfs/admin/v3/kms/reload short-circuited whenever the persisted
configuration matched the in-memory one byte for byte. A node whose KMS
failed to start keeps that configuration and sits in Error, so the
documented recovery call returned "reloaded successfully" while leaving
the node down. Peers reached the same path through the reload broadcast,
so a cluster that lost Vault during a rolling restart had no working
recovery route other than the node-local start endpoint. Reload now
short-circuits only for a service that is actually running, and otherwise
reconfigures, which starts a service that is not running.
The AWS backend also advertised key-version enumeration through
kms/status, which its own documentation says it cannot do; the capability
and its golden snapshot now say false.
Refs backlog#2369 P1, P7.3.
* docs: record the SSE and KMS changes for 1.0.0
The Unreleased changelog section carried no entry for any encryption work
merged since 1.0.0-rc.5, including three items with operational impact:
the config-secret variable whose absence persists secrets in cleartext
with only a warning, the v2 frame write switch and its rolling-upgrade
constraint, and per-key authorization making a public bucket incompatible
with SSE-KMS objects. Adds those plus this batch, including the SSE-KMS
refusal as a breaking change with both routes out.
Also corrects four places where documentation contradicted the code: the
cleanup register still called encrypted range seek opt-in after its
default flipped, the Helm README claimed vault_mount_path only applies to
Transit while the template also feeds the KV2 mount, the disaster-recovery
drill listed bundle contents for backends whose export is refused with
501, and the Chinese README capability table predated most of the feature
set. Documents the SSE-S3 local master key as a first-class operational
mode with its rotation dead end, and what the v1 frame layout does and
does not authenticate.
Refs backlog#2369 P5.
* fix(kms): classify data-path KMS failures by what the caller can do
Only "key not found" and a backend outage were classified; every other
KMS failure that reached the S3 data path fell through to
500 InternalError with a generic message. A disabled or pending-deletion
key, a denied KMS grant, an encryption-context mismatch, an unsupported
algorithm, a credential or timeout failure, and a capability the
configured backend does not have all looked identical to a server fault.
SDKs therefore applied exponential backoff to configuration errors no
retry can fix, and monitoring counted every one of them against the
server's own error rate.
Unusable-key and request-side failures now answer 400, a denied grant
403, transient backend failures 503, and a missing backend capability
501. Damaged, unreadable, or unknown-format key material keeps its 500:
it is a server-side integrity fault, and existing tests pin it.
The classifier is deliberately separate from the admin lifecycle
mapping, which answers 404 for a missing key because there a key id is
the resource being addressed; on the data path it arrives inside a
request header or a bucket default. Messages either name what the caller
asked for or stay generic, with deployment-side detail left on the error
source the way the storage-IO mapping already does.
Refs backlog#2368 B6.
* fix(kms): track and renew static Vault tokens
Token authentication hard-coded "this token carries no lease", so the
renewal task never started, the remaining-TTL gauge was never published,
and nothing looked wrong. `vault token create` grants a 768-hour TTL by
default, so a cluster that had been healthy for a month turned every KMS
call into a 403 and could not recover without a restart or a
reconfigure. Production configuration validation only rejects the
literal dev-token, so an ordinary expiring token reaches a whole cluster.
The source now reads `auth/token/lookup-self` at login and adopts what
Vault reports. A token with no expiry behaves exactly as before. An
expiring renewable one is picked up by the existing renewal loop and
renewed at half TTL like every other auth method. An expiring
non-renewable one warns with its remaining lifetime and publishes the
gauge, so the fail-closed window is visible before it arrives.
The probe never fails the login: a policy that omits lookup-self, or a
Vault that is briefly unreachable, warns and falls back to exactly the
previous behaviour rather than taking down a deployment that works
today. The scripted Vault test double answers the lookup out of band so
existing scripts keep describing only the protocol under test.
Refs backlog#2369 P3.
* feat(sse): report SSE-C requests that arrive without TLS
An SSE-C request carries the customer's AES key in a request header, so
AWS S3 and MinIO both refuse one that did not arrive over TLS. RustFS
accepted them on any transport: a plaintext hop hands the key to anyone
on the path, and since the object cannot be read without that same key,
the exposure lasts as long as the object does.
Refusing outright is the correct end state but not a safe default to
adopt inside a release window, because the project's own s3-tests and
e2e lanes and most staging deployments speak plain HTTP. This release
reports instead: each such request increments
rustfs_ssec_plaintext_requests_total and logs one warning per process, so
an operator can confirm nothing would break before the default flips.
RUSTFS_SSE_C_REQUIRE_TLS=true opts into the AWS 400 now.
The verdict is per connection rather than per deployment: the layer is
built with whether this listener terminated TLS, and additionally accepts
an https protocol forwarded by a proxy the trusted-proxy configuration
already vetted. It sits beside the rate limiter, after the layer that
makes a forwarded protocol trustworthy and after the request context, so
a rejection can echo the request id.
Refs backlog#2369 P7.2.
* fix(kms): say what a node-local backend means for a cluster
The Local backend keeps key material on each node's own disk and
generates its Argon2id salt per node, so two nodes derive different keys
from the same master_key and an object encrypted on one node cannot be
decrypted on another. Behind a load balancer that surfaces as
intermittent 500s on reads that succeeded moments earlier, with nothing
tying the symptom to the cause: the only signal was a generic
"development, testing and demos only" positioning warning that says
nothing about what actually breaks.
Configuring or reconfiguring Local while the deployment is distributed
now logs a dedicated event and appends the consequence to the configure
response, so the operator who made the change sees it. The product
decision to warn rather than refuse is unchanged.
Refs backlog#2369 P7.4.
* docs: record the remaining SSE and KMS changes for 1.0.0
Adds changelog entries for the KMS data-path status classification, the
Vault static-token lease probe, the SSE-C plaintext-transport report and
its switch, and the node-local backend warning.
Documents two things the backend security guide never stated: that SSE-C
belongs on a secure transport, with the counter and switch to plan the
change around, and that the Local backend cannot be shared by a
multi-node deployment because each node derives different keys from the
same master key.
Refs backlog#2368 B6; backlog#2369 P3, P5, P7.2, P7.4.
* fix(kms): report an unreadable key store as an outage on the S3 path
A backend now distinguishes a key store it could not read from a key
that is genuinely absent, but the S3 boundary collapsed the first one
back onto 500 InternalError through the fallthrough for integrity
faults. The distinction was therefore invisible to the client: a
temporary key-directory outage looked exactly like a permanently damaged
key record, and neither the status nor the metric said the request was
worth retrying.
An unreadable key store joins the retryable class and answers 503, next
to a backend error and a credential failure. Damaged, unreadable or
unknown-format key material keeps its 500.
Refs backlog#2368 B6; builds on rustfs/rustfs#7470.
Merge main at 73957d0faf into release. Resolve the multipart test conflict with the current main fixture and remove its superseded ReadPlan test export.
* fix(ecstore): attest fresh multi-pool bootstrap per pool creator
A fresh deployment whose pools have their first endpoint on different nodes could never publish its initial pool.bin: each node held fresh-bootstrap proof only for the pool it formatted, combine_across_pools collapsed the deployment-wide proof to None, the elected writer never wrote a pending identity, and startup died with "no durable bootstrap identity or pool.bin replica is available" once the init retry budget ran out.
Track first-hand bootstrap authority per pool. The first pool's creator mints the pending cluster identity on the pool it created, every other creator copies that nonce-bound identity onto the pool it formatted first-hand (a scoped identity write that only ever touches pools the process holds first-hand proof for), and the elected writer publishes pool.bin once it holds first-hand proof for pool 0 and every pool replica carries the same pending identity. Fresh + None is still never promoted, corrupt or disagreeing replicas still fail closed, an initialized deployment never reopens bootstrap for an expansion pool, and an elected restart without first-hand proof still cannot reuse a complete pending set.
Startup classification no longer latches the pool-metadata write gate for the two transient outcomes a healthy bootstrap passes through (a non-elected node waiting for the elected writer, the elected writer waiting for the other creators); recover_pool_meta_transaction never clears write_blocked, so a non-elected node that started before pool.bin existed stayed write-blocked for the life of the process. Genuine recovery-required states still latch.
Refs rustfs/backlog#2375, rustfs/backlog#2338
* fix(lock): contain remote lock RPC timeout storms
A lock RPC deadline evicted the shared internode HTTP/2 channel and re-dialed it unconditionally, so one slow lock endpoint produced a cluster-wide RST_STREAM / GOAWAY too_many_resets / reconnect loop (rustfs#7363).
The remote lock client now keeps a per-peer channel history: a timeout evicts only when the peer has completed no lock RPC for two deadlines, evictions and transport-failure re-dials are rate limited per peer (RUSTFS_OBJECT_LOCK_RPC_EVICTION_COOLDOWN_MS, default 5 s), and a timed-out request is detached instead of cancelled, bounded per peer by RUSTFS_OBJECT_LOCK_RPC_DETACHED_LIMIT (default 256) and by the internode RPC timeout; a lock granted after its caller gave up is released immediately. Unlocks that fail the quick retries continue on a deferred 1/2/4/8/16 s schedule before the server lease reclaims them. New rustfs_remote_lock_* metrics cover timeouts, evictions, suppressed evictions, detached streams, late completions and late releases per peer; docs/operations/lock-rpc-storm-protection.md documents the policy.
Refs rustfs/backlog#2375, rustfs#7363
* ci: refresh nightly test selection digests
The replication nightly membership guard expected the 68-test digest from #7422 while the current listing has 71 tests (additions only: test_bucket_replication_sse_c_compressed_passthrough from #7366, matrix_mint_own_version_ids_addresses_mutations_through_the_ledger and matrix_removed_replication_config_abandons_pending_purge from #7368), and the cluster fault lane expected 50 tests while #7374 added test_cluster_root_heal_recovers_remote_shards_after_background_target_crash. Both lanes have failed before running a single test since 2026-09-07. Bind the Linux digests to the listings from scheduled run 34187469350 and the Darwin e2e-nightly digest to the matching local listing.
Refs rustfs/backlog#2375
* test(scanner): measure heal pacing and cache cost
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
* fix(error): merge equivalent api message branches
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
* fix(heal): cleanup consumed MRF replay journals
Do not retain Accepted or Merged replay intents as startup anchors after they have been handed to the heal manager. Only refused or still-pending replay records keep the journal on disk until a successor snapshot can persist them.
This keeps successor snapshots limited to the pending queue, which lets successful replay remove both authoritative and legacy journal paths and restores the crash-boundary tests around successor flush.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
(cherry picked from commit d5b8f49c9d)
---------
Co-authored-by: zhi22915 <qiuzgang@gmail.com>
Co-authored-by: Zhengchao An <anzhengchao@gmail.com>
* test: summarize scanner heal perf artifacts
Add a quiet Scanner/Heal performance artifact summarizer that normalizes ABBA report verdicts, key regression metrics, cache-cost profile records, and provenance hashes for CI or PR handoff.
Document the summary command in the scanner benchmark runbook and cover measured, synthetic, pending, and invalid cache-cost paths with focused Python tests.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
* fix(error): merge equivalent api message branches
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
* fix(heal): cleanup consumed MRF replay journals
Do not retain Accepted or Merged replay intents as startup anchors after they have been handed to the heal manager. Only refused or still-pending replay records keep the journal on disk until a successor snapshot can persist them.
This keeps successor snapshots limited to the pending queue, which lets successful replay remove both authoritative and legacy journal paths and restores the crash-boundary tests around successor flush.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
(cherry picked from commit d5b8f49c9d)
---------
Co-authored-by: zhi22915 <qiuzgang@gmail.com>
Co-authored-by: Zhengchao An <anzhengchao@gmail.com>
* fix(kms): report a missing KMS key as 400 KMS.NotFoundException
A PutObject whose resolved SSE-KMS key (request header or bucket default
rule) does not exist in the KMS answered 500 InternalError with a generic
message: KmsError::KeyNotFound fell through to the default arm of the
StorageError-to-ApiError mapping. S3 reports this client mistake as 400
KMS.NotFoundException; the mapping now does the same and names the key.
s3s has no status for a custom code, so the ApiError-to-S3Error conversion
supplies it.
The legacy create-key aliases behind /minio/admin/v3/kms/key/create ignored
the key-id query parameter that mc sends, creating a key under a generated
id instead of the requested name. The alias now honors key-id (and its
keyId/key spellings) alongside the name tag, and refuses a request whose
two sources disagree.
Refs: rustfs/backlog#2330 (KMS-312, KMS-110)
* fix(error): merge equivalent api message branches
Combine the MaxVersionsExceeded and internal IO message branches so Clippy no longer flags identical if blocks while preserving the existing response messages.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
* fix(heal): cleanup consumed MRF replay journals
Do not retain Accepted or Merged replay intents as startup anchors after they have been handed to the heal manager. Only refused or still-pending replay records keep the journal on disk until a successor snapshot can persist them.
This keeps successor snapshots limited to the pending queue, which lets successful replay remove both authoritative and legacy journal paths and restores the crash-boundary tests around successor flush.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
(cherry picked from commit d5b8f49c9d)
---------
Co-authored-by: houseme <housemecn@gmail.com>
Co-authored-by: zhi22915 <qiuzgang@gmail.com>
Co-authored-by: Zhengchao An <anzhengchao@gmail.com>
* feat(observability): expose pool write-block diagnostics
* fix(error): merge equivalent api message branches
Combine the MaxVersionsExceeded and internal IO message branches so Clippy no longer flags identical if blocks while preserving the existing response messages.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
* fix(heal): cleanup consumed MRF replay journals
Do not retain Accepted or Merged replay intents as startup anchors after they have been handed to the heal manager. Only refused or still-pending replay records keep the journal on disk until a successor snapshot can persist them.
This keeps successor snapshots limited to the pending queue, which lets successful replay remove both authoritative and legacy journal paths and restores the crash-boundary tests around successor flush.
Co-Authored-By: heihutu <heihutu@gmail.com>
Co-Authored-By: zhi22915 <qiuzgang@gmail.com>
(cherry picked from commit d5b8f49c9d)
---------
Signed-off-by: houseme <housemecn@gmail.com>
Co-authored-by: houseme <housemecn@gmail.com>
Co-authored-by: zhi22915 <qiuzgang@gmail.com>
Co-authored-by: Zhengchao An <anzhengchao@gmail.com>
* fix(replication): resolve drifted replicas via a target version ledger
A replication target that mints its own version ids (Wasabi, AWS S3)
never answers to the source uuid, so every version-addressed mutation
after the initial PUT failed forever: permanent version deletes answered
NoSuchVersion every heal cycle, and tag / retention / legal-hold updates
re-PUT the object, minting one more target version per update
(rustfs/backlog#2340).
Record the id the target assigned as a per-target ledger on the source
version (replication-target-version-<arn>, written through the existing
status writeback) and resolve every later mutation through it: version
deletes DELETE the ledger id, metadata updates go through the
metadata-only Object Lock and tagging APIs. Replicas written before the
ledger existed are located by exact key and ETag, minus the candidates
other generations of the key already claim through their own ledgers; an
ambiguous remainder is refused with a backoff instead of guessed, since a
wrong pick would destroy a live generation. A fresh write never consults
content identity. NoSuchVersion on a version-addressed DELETE counts as
purged.
The fake target gains the Wasabi shape (404 NoSuchVersion on an unknown
id, per-version Object Lock APIs) and the matrix covers the three
mutation classes plus the same-bytes generation case.
* fix(scanner): drop the unused Digest import
Same one-line change as rustfs/rustfs#7366 (main is red with it under -D warnings); carried here so the stacked PRs' merge commits compile until that fix lands.
* fix(admin): probe replication-check mutations by the assigned version id (#7373)
On a target that mints its own version ids the DeleteMarker and
VersionDelete phases of ?replication-check were skipped: they addressed
the source id, which such a target never had. The replication worker now
addresses the id the target assigned (the target-version ledger), and
the probe already holds that id from its own PUT, so run both phases
against it. VersionFidelity keeps failing with the mismatch code and the
target stays FAILED; the phases report whether ledger-addressed purges
work against this endpoint (rustfs/backlog#2340).
* fix(replication): abandon purges to targets the bucket no longer names (#7377)
* fix(admin): probe replication-check mutations by the assigned version id
On a target that mints its own version ids the DeleteMarker and
VersionDelete phases of ?replication-check were skipped: they addressed
the source id, which such a target never had. The replication worker now
addresses the id the target assigned (the target-version ledger), and
the probe already holds that id from its own PUT, so run both phases
against it. VersionFidelity keeps failing with the mismatch code and the
target stays FAILED; the phases report whether ledger-addressed purges
work against this endpoint (rustfs/backlog#2340).
* fix(replication): abandon purges to targets the bucket no longer names
A permanent version delete whose replication keeps failing stays in
xl.meta as a PENDING purge, hidden from listings, until every target
confirms it. Once the operator removes the replication configuration or
the rule naming that target nothing ever confirms it: the heal path
derived its delete decision from the configuration (the decision string
is not persisted) and skipped the version forever, so DeleteBucket
answered BucketNotEmpty for a residue the client could neither list nor
remove (rustfs/backlog#2340).
Owe a version purge to the targets its purge state names, let the heal
path through without a configuration, and have the delete worker settle
a target the configuration no longer names as abandoned: the purge is
reported complete locally through the normal writeback, the replica on
the former target is left alone, and the event
replication_purge_abandoned plus a counter are the record.
* fix(admin): send replication-check marker creation without a version id
Running the DeleteMarker / VersionDelete phases on a target that mints
its own version ids exposed two probe-shape bugs on real Wasabi:
- the DeleteMarker phase put the assigned version id on its DELETE. A
RustFS peer reads the source-deletemarker header and creates a marker,
but a generic S3 target executes it as a permanent delete of the probe
version, so VersionDelete then answered NoSuchVersion. Use the same wire
shape as live delete replication: no versionId on a marker creation.
- cleanup treated NoSuchVersion on the version the VersionDelete phase had
already removed as a failure (RustFS/MinIO answer 204 there).
Also gate the no-configuration heal pass-through for pending purges on a
purge state that actually names targets, so a purge without a recorded
target keeps the ordinary skip (scanner unit test), and merge origin/main
(#7365 settles the pool-metadata probe test that failed in CI).
---------
Co-authored-by: houseme <housemecn@gmail.com>
Run one supervised cleanup attempt for an existing operator reset, with
strict phase and revision checks under the original leader lock. Keep v3
reset authorization and responses unchanged, report deferred status, and
bound probe and shutdown waits without aborting in-flight reset ownership.
Co-authored-by: heihutu <heihutu@gmail.com>
Co-authored-by: zhi22915 <qiuzgang@gmail.com>
Stop task completion and legacy notices from discharging scanner retry hints. Preserve existing hints and their retry due time across admission observations, bound retry scheduling, and synchronize changed batches once even on cancellation.
Exercise the production MRF consumer, manager, event channel and scanner ledger. Document producer durability gaps without enabling successor activation or garbage collection.
Co-authored-by: heihutu <heihutu@gmail.com>
Co-authored-by: zhi22915 <qiuzgang@gmail.com>
* feat(ecstore): add a native azure blob odm source backend
* feat(ecstore): add a native gcs odm source backend and one backend contract
* fix(ecstore): refuse an empty azure account key at client build
* fix(ecstore): probe gcs sources with the listing permission
* fix(app): drop a redundant match guard on the sse config lookup
* fix(ecstore): drop stale rename commit duplicates from local.rs
* test(ecstore): use the sanctioned placeholder key in the gcs fixture
* test(odm): drive the migration cases from an env-named source
The ODM e2e suite only ever migrates from the in-process fake source, so
path-style addressing, region handling, ETag shape and list pagination on
real implementations stay untested. OdmInteropEnv resolves the source from
RUSTFS_ODM_INTEROP_*, seeding into a per-run source_prefix so a shared real
bucket can host concurrent runs and every seeded key is removed afterwards.
A named provider with a missing variable is an error, never a silent
fallback to the fake source.
interop_test holds the four cases that run against either source, and the
e2e-odm-interop profile is the lane that selects them; e2e-full excludes
them, so its committed selection is unchanged. wait_until_odm_engaged
replaces the fake source's journal probe for the readiness wait, since a
real source keeps no journal.
* ci(odm): add the scheduled provider interop lane
on-demand-migration-interop.yml runs the interop cases against a pinned
MinIO container with a 5,000-object backfill - past the fake source's 4,096
version and journal caps - and the three-case minimum against AWS, R2 and
GCS when their ODM_INTEROP_* secrets exist, skipping with a summary note
when they do not. Each provider gets one JSON report merging the per-case
entries with the nextest JUnit, which stays authoritative for what ran.
Report-only and never required: it depends on third-party endpoints and on
secrets a fork does not have.
* feat(odm): merge the source listing into ListObjectsV2
Adds policy.list_through: ListObjectsV2 merges the local and source
listings into one ordered page so clients see the whole namespace during
an on-demand migration. Local entries win a key both sides hold,
CommonPrefixes are unioned under a delimiter, and the continuation token
is an opaque versioned envelope carrying both cursors.
A source listing failure or an open breaker follows policy.source_error:
propagate answers 424, not_found answers from local state and marks the
response x-rustfs-on-demand-migration-list: local_only. Source listings
are capped at 10 per second per bucket.
* test(odm): refresh the e2e-full darwin selection digest
The list-through e2e module adds seven cases to the merge lane.
* fix(odm): declare the remote client retry policy per consumer
The SDK retry policy was an inherited default: one logical call could cost
three wire requests, so the migration breaker counted logical calls on top
of a threefold amplification against a source that was already failing.
Make it an explicit RemoteS3EndpointSpec field. Replication targets declare
today's standard three attempts and keep their behaviour; the on-demand
migration source and its admin probe declare a disabled policy, so one
counted failure is exactly one source request and pull.rs owns the only
retry budget.
* fix(odm): count a stalled inline source as a source timeout
The inline tee wraps its source body in the idle guard, but the tee turns a
stalled source into an ordinary body read error, so the write-back reported
it as a local write failure. Hand commit_inline the guard so the pull is
counted under source_timeout instead.
The background pump now enforces the idle budget through the same guard
rather than a second copy of the timeout loop.
* test(odm): cover a stalled source body end to end
The fake target can now deliver a GetObject body in slices with a pause
between them, so the inline abort can be driven by a stalled source instead
of a truncated one. Two fault cases drop the workarounds they carried for
the SDK's retries: the scripted fault count and the observed source request
count now have to agree.
The operations guide records the retry and idle-timeout guarantees.
* fix(replication): send an integrity header on Object Lock replication PUTs
AWS S3, MinIO and most compatible targets reject a PutObject that carries
x-amz-object-lock-* headers unless it also carries Content-MD5 or an
x-amz-checksum-* header. Since rustfs#6895 the replication client sends
plain signed payloads with no SDK checksum, so every replicated object
with a retention period or legal hold failed against such targets.
TargetClient::put_object now decides per request through the pure
rustfs_replication::object_lock_put_integrity: a plaintext single-part
object whose source ETag is its MD5 gets Content-MD5 derived from the
ETag (no body pass, framing unchanged); a multipart-layout ETag, managed
SSE or SSE-C passthrough falls back to an SDK CRC32; a forwarded source
checksum or an unlocked PUT is left alone.
The outbound target matrix flips its two KnownFailing(rustfs#7082) cells
to Completed and every Completed cell now asserts that a locked
PutObject carried an integrity header.
Fixes rustfs#7082.
* test(e2e): keep the matrix expectation table clippy-clean under -D warnings
The CI lint runs cargo clippy --all-targets -- -D warnings. With every cell
green the single-arm match tripped match_single_binding and the unused
KnownFailing variant tripped dead_code, and the target-client tests tripped
field_reassign_with_default. Drive the expectation table from a
KNOWN_FAILING_CELLS constant (so the variant stays live and adding a red
cell is a one-line entry), build the test options as struct literals, and
refresh the e2e-repl-nightly selection digest for the renamed table test.