Files uploaded before chunk_manifests landed (20260414000000) are stored
as ONE whole-file blob with no manifest. Every legacy fallback in
DedupService exists to serve them, and the cost concentrates on Range
reads: with encryption enabled, seeking inside a legacy video decrypts
the ENTIRE blob (AES-GCM is all-or-nothing), where a CDC file decrypts
only the overlapping <=1 MiB chunks.
This adds a one-time, idempotent background migration (spawned from the
composition root after dedup init, maintenance pool) that converts each
legacy blob into a regular CDC file, indistinguishable from a native
upload:
1. Spool the blob through the normal read path (decrypts when
encryption is on) to a per-attempt-unique temp file, verifying
BLAKE3 == hash; sizes come from the verified spool, never from the
legacy storage.blobs.size column (the manifest's total_size drives
Range arithmetic).
2. CDC-chunk + store chunks via the existing store_chunks (one
manifest reference per distinct chunk).
3. One short accounting TX with the blob row locked: manifest INSERT
with ref_count = N current file references, blob ref_count -= N,
row deleted only at exactly 0 - so single-chunk files (chunk hash
== file hash) keep the physical blob, which IS the chunk; only
bookkeeping moves, no bytes are rewritten.
4. Physical whole-file blob deleted only when its row dropped.
Races lean on the row lock: a concurrent identical upload landing a
legacy reference after commit keeps the blob row alive and that file
readable via the fallback (bounded space leak, never data loss); a
crash between chunk store and the TX over-counts one file's chunk refs
(also a bounded leak). Corrupt blobs (content != hash) are logged,
counted, excluded from the sweep and left untouched, with a hard cap
before aborting.
Per-hash failures never block the sweep; manifests are the resumability
marker, so a restart continues where it left off. The legacy read/write
fallbacks stay in place as the safety net while a deployment converges;
they can be deleted once fleets report "legacy re-chunk: nothing to do".
Opt-out via OXICLOUD_LEGACY_RECHUNK=false (documented in example.env)
for metered remote backends where the one-time re-read should be
scheduled deliberately.
Covered by five integration tests against real PostgreSQL (multi-chunk
accounting + Range across a chunk boundary, single-chunk physical-blob
preservation, corrupt-blob isolation, empty blob, and the full
encrypted-backend roundtrip); they run concurrently, which also
exercises the cross-sweep race handling.
https://claude.ai/code/session_0193Hff42gaA962wThxMGSd1
Two hot-path fixes for DAV sync clients, which poll continuously:
1. App-password Basic Auth cache TTL 30s → 300s. Every cache miss costs
a full Argon2id verification (~50-100ms CPU) plus two DB queries; at
30s a continuously-syncing client re-paid that every 30s. 5 min cuts
it ~10x. Safe because revoke() already invalidates the user's cached
entries immediately; expiry/deactivation are only re-checked on a
miss, so they now have a <=5 min grace window (comparable to a JWT
access-token lifetime) — documented on the constant.
2. WebDAV lock store: replace the tokio::spawn + sleep scheduled per
acquire/refresh with Moka's per-entry Expiry policy. Office clients
refresh locks constantly, leaving thousands of orphaned sleeping
timers pinned in the runtime that were never cancelled. by_path now
carries the exact per-lock TTL via LockExpiry (no background tasks);
by_token keeps a 24h backstop and resolves through by_path, so a
lingering reverse-index entry can never resurrect an expired lock.
Adds unit tests for the expiry policy and acquire/refresh/release
(the module had none).
https://claude.ai/code/session_0193Hff42gaA962wThxMGSd1
Request-path thumbnail generation (REST get_thumbnail and NC preview)
read the full source blob into RAM and decoded it with no concurrency
bound — a first-view gallery of K images stacked K full-size buffers
and K parallel decodes on the blocking pool. The background hook had
the inverse ordering problem: it read the blob eagerly and only then
queued on the decode semaphore, so N concurrent uploads held N
originals in memory while waiting.
All three paths now acquire the decode semaphore first and read the
blob under the permit, capping peak RAM at permits x image size:
- new ThumbnailService::get_thumbnail_from_blob defers the blob read
into the moka init closure (cache and disk hits never touch the
blob); both handlers use it and no longer pre-read.
- get_thumbnail_from_bytes (direct-bytes variant) now also takes a
permit before decoding; shared generate_and_persist core keeps the
two entrypoints duplicate-free.
- generate_all_sizes_background_from_blob (renamed from _from_bytes)
checks blob existence and disk-dedup state, then acquires the
permit, then reads; the redundant pre-read spawn wrapper in
ThumbnailRefreshHook is gone.
https://claude.ai/code/session_01QxwJDHqQhbMkHK333QtMme
Resolves the four-file conflict with PR #444, which landed a parallel
implementation of the same batch-fsync design (unsynced chunk writes plus
one sync_blobs durability barrier). Both sides converged on identical
trait signatures; main's version is kept for all overlapping code since
it is already merged and carries unit tests:
- blob_storage_ports.rs: doc-comment-only conflict, main's docs kept
- dedup_service.rs: main's pipeline kept. The naive textual merge would
have retained BOTH durability-barrier/INSERT blocks, double-counting
ref_count for every new chunk; the duplicated block from this branch
is dropped
- encrypted_blob_backend.rs, local_blob_backend.rs: main's
implementations kept (fsync_paths_parallel + tests); this branch's
equivalent helpers (fsync_dir, fsync_blob_file, SYNC_BLOBS_CONCURRENCY)
are referenced nowhere else and are dropped
Everything unique to this branch (streaming PROPFIND, range requests,
batch ID resolution, CalDAV/CardDAV indexed lookups, transcode and
breadcrumb changes) merges cleanly and is unchanged.
https://claude.ai/code/session_01GpprjxjtXFYLfXNkoKnHuL
The CDC chunk path paid `sync_all` + parent-dir fsync + one ref-count
upsert round-trip PER ~256 KB chunk: a new 1 GB file ≈ 8 000 fsyncs +
4 000 sequential INSERTs on the upload critical path (seconds on SSD,
tens of seconds on HDD).
- New `put_blob_from_bytes_unsynced` + `sync_blobs` on
BlobStorageBackend. Defaults delegate to the durable variants, so
remote backends (S3/Azure — durable on PUT) are untouched.
LocalBlobBackend writes chunks without fsync and `sync_blobs` then
fsyncs all files concurrently (kernel coalesces the writeback) plus
one fsync per DISTINCT shard directory — at most 256 — instead of one
per chunk. EncryptedBlobBackend delegates both so encryption over the
local backend keeps the optimization.
- store_chunks: uploads use the unsynced variant; one `sync_blobs`
barrier runs before anything references the chunks, and the per-chunk
ref-count upserts collapse into a single
`INSERT ... SELECT unnest(...) ON CONFLICT` statement.
Durability contract is unchanged: every chunk is on stable storage
before the manifest row that references it commits. A crash mid-upload
leaves chunk files without DB rows — the same orphan class the
per-chunk scheme already produced, just a wider window.
https://claude.ai/code/session_01Dp3oWon5GBMVn4j3QXZdgx
Every GET of a JPEG ≤5 MB with `Accept: image/webp` ran a full decode +
lossless-WebP encode on the rayon pool (hundreds of ms of CPU), found
the result LARGER than the original — the `image` crate's WebP encoder
is lossless-only, which practically never beats an already-lossy photo —
and threw the work away. Nothing recorded the verdict, so the next GET
of the same file repeated it, forever. A 20-photo gallery saturated the
transcode pool on every visit.
- `can_transcode` no longer accepts `image/jpeg` — photos skip the
pipeline entirely. PNG/GIF stay (lossless WebP genuinely shrinks them).
- Negative verdicts for the remaining formats are now remembered: an
empty-Bytes sentinel in the moka cache (expires with the 10-min TTL)
plus a zero-byte `.skip` marker on disk that survives restarts.
`invalidate()` removes the marker alongside the cached transcode.
https://claude.ai/code/session_01Dp3oWon5GBMVn4j3QXZdgx
Closes#323.
LoginLockoutService cached failed-attempt counters keyed only on
the username, so any caller that could reach the auth endpoint and
guess (or enumerate) a username could lock that account out for the
entire lockout window — the rate limiter happily lets each IP make
its share of bad-password attempts before clamping, which is enough
to trip the per-account threshold in seconds. The reporter
demonstrated a complete DOS by spoofing X-Forwarded-For with
OXICLOUD_TRUST_PROXY_HEADERS=true.
Fix: change the lockout cache key from `username` to `username|ip`.
A flood from one IP locks that IP out of that account, but a
legitimate user coming from a different IP is unaffected.
Changes:
- LoginLockoutService::{check, record_failure, record_success} take
client_ip as a second argument; cache key is built via Self::key
(`format!("{username}|{ip}")`).
- middleware/rate_limit.rs: factor out extract_client_ip_from_parts
(HeaderMap + Option<&SocketAddr>) so handlers that don't take a
full Request<B> can still derive the same client identifier
extract_client_ip uses. extract_client_ip now delegates to it.
- auth_handler.rs login: derive client_ip from headers (the only
signal available without ConnectInfo) and pass it through to all
three lockout calls.
- nextcloud/basic_auth_middleware.rs: do the same with the full
Request via extract_client_ip.
Tests:
- Updated existing 4 unit tests to thread an IP arg.
- New does_not_lock_out_other_ips_for_same_account: lock from IP1,
assert IP2 still allowed (the #323 regression).
- New success_resets_only_the_acting_ip: a successful login from
IP2 must NOT clear an attacker's lockout from IP1.
Verification:
- `cargo build` ✅
- `cargo test login_lockout` → 6 passed (4 existing thread an IP
arg without behaviour change, 2 new pin the per-IP scoping).
Signed-off-by: SAY-5 <say.apm35@gmail.com>
store_chunks bumped storage.blobs.ref_count once per chunk *occurrence* (it
looped over the full chunk list, duplicates included), but
remove_manifest_reference decrements once per *distinct* chunk
(WHERE hash = ANY(chunk_hashes) matches each row a single time). For any file
that repeats a chunk -- zero-filled regions in disk/VM images, repeated
document structures, concatenated archives -- storing added +N while deleting
removed -1, so the blob's ref_count never returned to 0 and the chunk was
never garbage-collected: a permanent storage leak.
Count per distinct chunk on the store side too, matching deletion. This also
makes it faster:
- existing chunks: one batched `UPDATE ... WHERE hash = ANY($1)` instead of
one UPDATE per occurrence;
- a brand-new chunk repeated within a file is read, uploaded and INSERTed
once instead of once per occurrence.
The manifest still stores the full per-occurrence chunk sequence (needed to
reassemble the file). Forward fix: blobs already over-counted by the old path
stay over-counted (a reconcile/verify pass could recompute them), but the
bias is upward (leak), so no data is ever deleted early.
CDC tests pass (12); fmt + clippy clean.
https://claude.ai/code/session_01UtfkS3nZF1vrF5jNAps6wV
StoragePath::join deep-cloned the whole Vec<String> (every segment String)
just to append one element. Take self by value and push in place. All callers
pass owned values except PathService::create_file_path, which holds a borrow
and now clones explicitly — the same copy the old &self join already made.
File::with_name / with_folder / with_size took &self and rebuilt the struct,
cloning every carried-over field (id, mime_type, folder_id, blob_hash, ...).
Consume self and mutate only the fields that change. Behaviour is identical;
the fallible builders now drop the input on Err, which is fine for these
rename/move/resize transforms (all current callers replace the file).
Impact is small in practice — with_folder/with_size have no callers and
with_name is test-only, while the one hot join caller (create_file_path)
must copy segments regardless — but the consuming form is the idiomatic one.
Verified: cargo fmt + clippy --all-features --all-targets -D warnings clean;
domain tests (path_service::, entities::file::) pass — 30 + 6.
https://claude.ai/code/session_01UtfkS3nZF1vrF5jNAps6wV
list_incoming_grants and list_grants_on_resource ran fetch_all with no
LIMIT, so a pathological number of grants on one resource (or targeting one
subject) would be pulled fully into memory. These back the grant-management
endpoints ("Manage sharing", "Shared with me"), not the hot require() path.
A blind LIMIT is unsafe here: apply_role reads the full grant set to compute
an add/remove diff, so a silently truncated list would be acted on as if
complete (stale grants never revoked). Instead fetch MAX_GRANT_ROWS + 1 and
reject with an audit line (authz.grant_list_rejected / reason=over_row_cap)
when the cap is exceeded, bounding worst-case RAM without ever returning a
partial set. The check is shared via PgAclEngine::guard_grant_row_cap. Cap is
10_000 — orders of magnitude above any realistic single-resource/subject
grant count.
https://claude.ai/code/session_01UtfkS3nZF1vrF5jNAps6wV
CachedBlobBackend held its single tokio::Mutex<LruCache> across filesystem
syscalls, serializing every concurrent cache operation behind one lock:
- get_blob_stream / get_blob_range_stream: held across File::open()/seek()
- delete_blob: held across remove_file()
- initialize: held across the full cache-dir walk
- eviction (insert + fetch paths): held across remove_file() loops
Now the lock only guards the in-memory LRU. Presence checks bump recency
and release the guard before touching the filesystem (a vanished file falls
through to the existing fetch-and-cache path, covering the race), and
eviction selects victims under the lock then unlinks them after releasing
it. The duplicated eviction loop is extracted into
CachedRef::collect_evictions.
db: set test_before_acquire(false). With warm min_connections and a bounded
max_lifetime, the liveness ping sqlx issues on every acquire() costs more
than the rare dead connection it catches; stale sockets surface as a query
error and the pool recycles them either way.
https://claude.ai/code/session_01UtfkS3nZF1vrF5jNAps6wV
a prefix path as been add to avoid collision if OXICLOUD_UPLOAD_TMPDIR=OXICLOUD_CHUNK_DIR
upgrade to this version will convert previous upload chunked into the prefixed version at server start
explain OXICLOUD_CHUNK_DIR and OXICLOUD_UPLOAD_TMPDIR
and also the OXICLOUD_CHUNK_MAX_BYTES & OXICLOUD_UPLOAD_TMPDIR
to help administratorrs to defined correctly their storage architecture
purpose: avoid current scheme:
1. write to disk
2. reopen file to read data and digest it
now: digest is done while writing data to disk
all other implementation than Nextcloud are corrrect
add OXICLOUD_CHUNK_MAX_BYTES which correspond to the max upload chunk allowed
(differs from OXICLOUD_MAX_UPLOAD_SIZE which is the max total size of a file)
hurl test validate the change
Streams the request body straight to the chunk file with peak heap of
~one HTTP frame, regardless of chunk size or the configured cap. The
`storage.chunk_max_bytes` config (env `OXICLOUD_CHUNK_MAX_BYTES`,
default 100 MB) bounds a single PUT — separate from `max_upload_size`
which governs whole-file uploads. Without this separation, a client
could submit a chunk up to the whole-file cap (10 GB default) and
monopolise server memory.
PROPFIND on upload chunk is necessary for application to resume the upload
it is used at least by Nextcloud Android app
issue has been raised via #415
unable to test, so I am using a playbook in test/webdav to simulate a
PROPIND on remote.php/dav/uploads/{user}/{session}
Large uploads (e.g. ~800 MB ISOs) could OOMKill the process, even on
dedup hits, due to three separate full-file-in-memory paths:
- NextCloud PUT (/remote.php/dav) buffered the entire body in RAM via
body::to_bytes before any dedup logic, then re-wrote and re-hashed it.
Now streams the body to a temp file with incremental BLAKE3 and goes
through update_file_streaming (shared spool helper with the native
WebDAV PUT handler); peak heap is ~one HTTP frame regardless of size.
- DedupService::store_chunks materialized every new chunk's data in a Vec
before uploading. Now reads each new chunk by positioned I/O
(read_exact_at, off the runtime via spawn_blocking) just before its
upload; peak heap bounded to ~CHUNK_UPLOAD_CONCURRENCY x CDC_MAX_CHUNK.
- The upload spool used the OS temp dir, often tmpfs/RAM in containers
where its page-cache counts against the cgroup memory limit. Add
OXICLOUD_UPLOAD_TMPDIR to point the spool at real disk.
Also collapse a pre-existing clippy collapsible_else_if in carddav_handler.
Refs #404
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
- add coalesced protection to avoid mail bombing if an invited goes many grant in a short period
- add resentd method in share menu item (work for both internal and external users)
- user can disable email notification via his properties
- add env variable from admin to disable notifications
- OIDC JIT define the locale only at user creation, user can so change his preference later
- invited users will inherit inviter's locale
- email will use prefered_locale
- login to a new browser will use prefered_locale
- remove the hardcoded list of locales in favor of a discovry on start time
- server will stop on badly formatted locale .json
- add server.* entries for serer side translation
server side translation will be used for templating and email
note: no json in some embded html (like in /magic), amount of work was similar
username: now optional, if defined 2..64 chars
password: now optional (no mode __NO_PASSWORD...__)
oidc: now optional
important: if need Nextcloud, username must be defined
- SMTP has a mock to enable end to end test and validate the whole path
(via OXICLOUD_SMTP_MOCK)
- add email normalisation ( including punicode)
- api to share to external user
reflect OIDC
schema migration, User entity additions, and three defense-in-depth gaps closed, with all 280 unit tests and 13 Hurl files green
infrastructure (lettre + EmailSender port).
- Migration migrations/20260612000003_users_username_email_login.sql — adds nullable given_name/family_name columns to auth.users.
- User entity (src/domain/entities/user.rs) — has_login_credential() placeholder-check encapsulation, set_username revalidating setter, given/family-name fields + getters/setters, validate_username widened 32→254 and now accepts email shape.
from_data_full extended with two new params; all 7 callsites in user_pg_repository.rs updated.
- Schema-side legacy guards (src/application/services/auth_application_service.rs) — bumped the duplicated 32-char check in setup_create_admin and admin_create_user to 254 to match.
- Gap #1 (subject_group_service.rs) — add_member now rejects external candidates with an audit-logged AccessDenied. Service gained an Arc<UserPgRepository> field, wired through DI. New integration test test_external_user_cannot_be_added_as_member.
- Gap #2 (user_repository.rs + auth_ports.rs + user_pg_repository.rs) — list_users/search_users gained an include_external: bool param defaulting effectively to false everywhere internal-user-facing. auth_application_service exposes a new
list_users_including_external for the admin surface.
- Gap #3 (pg_acl_engine.rs) — expand_user now SELECTs is_external and skips INTERNAL_GROUP_ID for externals; defaults to is_external=true on missing user to fail closed.
- AuthzCacheLifecycleHook — invalidates the user_groups_cache Moka entry on logout/delete.
- SessionRevocationLifecycleHook — explicit per-session firing of on_user_logout (currently per-call); session revocation inside the user-delete transaction.
- DeletionMode-driven policy in HomeFolderLifecycleHook::on_user_deleted (trash vs hard-delete based on AdminDelete / GdprPurge).
- Refactor delete_user_admin to expose a transaction handle so on_user_deleted can abort atomically.
this implements first version (manageable only by admin right now)
routes:
GET /api/groups
List subject groups (paginated). Admin-only.
POST /api/groups
Create a new ReBAC subject group. Admin-only. The name must match the RFC 5321 local-part shape and be globally unique (case-insensitive).
GET /api/groups/search
Search non-virtual groups by name substring. Authenticated only (no admin role required) — backs the share-dialog recipient autocomplete.
GET /api/groups/{id}
Fetch a single group's details. Admin-only.
DELETE /api/groups/{id}
Delete a group. Cascades to `subject_group_members` (FK) and to `access_grants` rows referencing this group as a subject. Admin-only.
PATCH /api/groups/{id}
Update a group's metadata. Admin-only. v1 only persists name renames.
GET /api/groups/{id}/effective-members
List every user transitively reached through this group (members of members of members, etc.). Used by admin / audit tooling. Admin-only.
GET /api/groups/{id}/members
List the *direct* members of a group (one level only). Admin-only.
POST /api/groups/{id}/members
Add a member to a group. Exactly one of `user_id` / `group_id` must be provided. Adding a group-member runs a write-time cycle check and a nesting-depth check (max 8). Admin-only.
DELETE /api/groups/{id}/members/group/{gid}
Remove a nested group-member from a group. Admin-only.
DELETE /api/groups/{id}/members/user/{uid}
Remove a user-member from a group. Admin-only.
fix hurl
groups
round
groups
* make more coherent lifecycles
* remove specific implementation on different handlers (they do not need to know existence of ThumbnailSerice nor AudioMetadataService)
* reduce risk of orphean objects
* ensure additional services are correctly wired (ex: Thumbnail generation was not covering all upload cases)
* more details on docs/architecture/file-and-blob-lifecycle.md :
```rust
// application/ports/file_lifecycle.rs
pub trait FileLifecycleHook {
fn on_file_created(file_id, blob_hash, content_type, is_new_blob);
fn on_file_updated(file_id, blob_hash, content_type);
fn on_file_copied(file_id, blob_hash, content_type, source_id)
fn on_file_deleted(file_id);
}
// application/ports/blob_lifecycle.rs
pub trait BlobLifecycleHook {
fn on_blob_created(blob_hash, content_type);
fn on_blob_deleted(blob_hash);
}
```