An app's OWN store had no ceiling of any kind — only the group-SHARED
collections did, which is the inversion of what you'd expect. And
`authz::script_gate` returns `Ok(())` when there is no principal, so a
PUBLIC UNAUTHENTICATED route could reach `files::collection(..).create(..)`
and write blobs in a loop until the disk filled. `PICLOUD_FILES_MAX_FILE_SIZE_BYTES`
caps ONE file at 100 MB; nothing capped the count. Same for KV keys and docs
against Postgres.
Ceilings: `PICLOUD_APP_KV_MAX_ROWS` / `PICLOUD_APP_DOCS_MAX_ROWS` (100k) and
`PICLOUD_APP_FILES_MAX_TOTAL_BYTES` (10 GiB).
They are enforced DIFFERENTLY from the group ones, on purpose — porting the
group design as-is would have been a serious regression:
* KV/docs check a ROW count, on INSERT only, with NO lock. `kv::set` is the
hottest write path in the system; taking a per-app advisory lock on every
set would serialize an app's entire data plane, and a `SUM(...)` scan would
make write cost grow with the app's stored size. What the lock buys is
small — unlocked overshoot is bounded by write concurrency (32) against a
ceiling of 100k, ~0.03%. These are anti-DoS rails, not billing. An update
adds no row and is bounded by the per-value cap, so it pays nothing at all.
* No per-app BYTE ceiling for KV/docs: every value is already capped at
`PICLOUD_KV_MAX_VALUE_BYTES`, so `max_rows x max_value_bytes` is ALREADY a
finite bound. A second scan would buy nothing.
* FILES are the exception and DO lock + sum: one blob may be 100 MB, so 32
racing uploads could overshoot by gigabytes of real disk, and a file write
is heavy enough that the lock and the SUM are lost in the noise. Checked on
create AND update — an update that skipped the ceiling would be a free
bypass (the same bug just fixed for group files: grow a 1-byte file to
100 MB, repeat).
`group_quota` is renamed `quota`: it now serves both owners, and the module
doc is where the two enforcement strategies are contrasted.
Pinned by tests/atomic_write.rs: the key ceiling refuses a new key while
still allowing an update at the ceiling (rejecting updates would brick an app
the moment it filled up — worse than the DoS the rail exists to stop), and 10
concurrent uploads cannot exceed the disk ceiling, nor can an update grow past it.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Remediate the HIGH and security-relevant findings from the 2026-07-11 audit.
H1 — the per-env approval gate is now server-authoritative. The governing
project is resolved from the target node's nearest-claimed ancestor
(`governing_env_policy`/`_tree` + `governing_project_id` +
`ProjectRepository::get_environments_by_id`), independent of the client-supplied
`[project]`. Omitting or spoofing the project block can no longer skip a gate the
owning project established; a to-create group resolves its declared parent's
chain so a fresh subtree node inherits the gate. Fails closed on any read error.
H2 — the API-key prefix slice (`&rest[..8]`) is now the boundary-safe
`rest.get(..8)`, so an attacker-supplied multibyte bearer can't panic the request
task (unauthenticated per-request DoS). Regression test added.
C1 — admin sessions gain an absolute lifetime cap (migration 0070,
`PICLOUD_SESSION_ABSOLUTE_TTL_HOURS`, default 30d): `lookup` filters it, `touch`
clamps the sliding bump to it, so a continuously-used or stolen-but-warm token
self-expires. Mirrors the data-plane app-user cap.
C2 — `Cache-Control: no-store` on the login and API-key-mint responses (the two
that return a raw credential), so a proxy/CDN/browser cache can't retain it.
B8 — file downloads are header-safe: `sanitize_stored_filename` guarantees a
valid `HeaderValue` (no panic on a control-char name) and BOTH the per-app and
group download paths now set attachment + `X-Content-Type-Options: nosniff` +
a restrictive CSP, closing a group-path stored-XSS gap.
Also folds in the server-side plan-warning plumbing (`plan_warnings`,
`PlanResult::warnings`) and the `app_only_reject` message helper that the CLI
plan-preview change builds on, plus operator security notes (reads-open shared-
topic SSE; the `--env` label is advisory, not a boundary).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
C-2 follow-up: sanitize_stored_content_type previously let a CRLF pass
through an allowlisted prefix (e.g. "image/png\r\nX-Injected: 1" matched
the image/ branch and returned the original), which would inject a
response header / panic HeaderValue on download. Now any control byte
(<0x20 or 0x7f) coerces to application/octet-stream up front.
F-SE-H-03: disable_symbol("debug") to match "print" (the comment
already claimed both were disabled) so scripts can't write
attacker-controlled bytes to the operator's stderr.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Stored XSS: the previous get_file handler streamed user-supplied bytes
with Content-Disposition: inline, the user-supplied Content-Type, and
no X-Content-Type-Options / CSP. A Rhai script could store an SVG or
HTML payload whose download URL rendered same-origin under the admin
session cookie.
Closes the response side and the storage side:
* shared::sanitize_stored_content_type: allowlist
(octet-stream/pdf/json/text-plain/text-csv/image-non-svg/audio/video)
with anything else coerced to application/octet-stream. New unit tests
cover the safe/unsafe/case-insensitive/parameter-preserving paths.
* files_service::create/update: sanitize the stored content_type after
the shape checks pass (sanitize-after-validate keeps the existing
MissingField / TooLong errors intact). Two new tests confirm text/html
and image/svg+xml are coerced to application/octet-stream on
create/update respectively.
* files_api::get_file (admin download):
- Content-Disposition: attachment (was inline)
- Content-Type re-sanitized via the shared helper as belt-and-
suspenders for any pre-existing row that pre-dates this change.
- X-Content-Type-Options: nosniff
- Content-Security-Policy: default-src 'none'; sandbox;
frame-ancestors 'none'
- Referrer-Policy: no-referrer
Audit ref: security_audit/07_http_cors_csrf_xss.md#c07-02 (response side)
+ security_audit/06_files_pathtraversal.md#f-fs-001 (storage side).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Filesystem-backed blob storage as the fifth concrete trigger kind.
- `files::collection(c).{create,head,get,update,delete,list}` Rhai SDK
(blob in/out; metadata maps; missing-field throws naming the field).
- `FilesService` trait in picloud-shared; `FsFilesRepo` (atomic
write: temp→fsync→rename→fsync-dir→DB; single-pass SHA-256;
checksum-verified reads → Corrupted) + `FilesServiceImpl` in
manager-core. Metadata in Postgres (0018), bytes on disk under
PICLOUD_FILES_ROOT with 0o700 shard dirs.
- `files:*` trigger kind via the Layout-E pattern (0019: widen both
CHECKs + files_trigger_details), TriggerEvent::Files (metadata only,
no bytes), emit_files fan-out, dispatcher arm, admin endpoint
POST /triggers/files (reuses validate_trigger_target).
- AppFilesRead/AppFilesWrite capabilities → script:read/script:write
(seven-scope commitment held). AppPubsubPublish reserved for v1.1.6.
- Admin files API (list + delete) + dashboard Files view per app.
Cross-app isolation keyed on cx.app_id at every layer. ~45 new tests
(service in-memory, fs tempdir, bridge integration). No DB required
for the suite. publish_ephemeral and the orphan sweep stay deferred.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>