feat(DPoP): add anti replay cache

This commit is contained in:
Edouard Vanbelle
2026-08-08 15:55:08 +02:00
parent 2e6789e506
commit 5c4354bc67
5 changed files with 328 additions and 3 deletions
+7
View File
@@ -2105,6 +2105,9 @@ impl AppServiceFactory {
dpop_nonce_service: Arc::new(
crate::infrastructure::services::dpop_nonce_service::DpopNonceService::new(),
),
dpop_replay_cache: Arc::new(
crate::infrastructure::services::dpop_replay_cache::DpopReplayCache::new(),
),
nextcloud: nextcloud_services,
admin_settings_service: None,
storage_settings_service: None,
@@ -2883,6 +2886,10 @@ pub struct AppState {
/// pay only allocation cost at boot.
pub dpop_nonce_service:
Arc<crate::infrastructure::services::dpop_nonce_service::DpopNonceService>,
/// DPoP replay cache — nonce-scoped `jti` dedup. Same lifecycle
/// as `dpop_nonce_service` (always populated, cheap at boot).
pub dpop_replay_cache:
Arc<crate::infrastructure::services::dpop_replay_cache::DpopReplayCache>,
pub nextcloud: Option<NextcloudServices>,
pub admin_settings_service: Option<Arc<AdminSettingsService>>,
/// WASM plugin management (list/install/toggle/remove), backing the admin
@@ -0,0 +1,184 @@
//! DPoP-Nonce service (RFC 9449 §8) — issues and validates the
//! server-generated nonces that eliminate reliance on the client
//! clock for freshness.
//!
//! Model — a **pool of currently-valid nonces**, not a single "last"
//! value. Every nonce we hand out sits in the pool for its full
//! lifetime; multiple can be simultaneously valid (rotation overlap,
//! multi-tab). A proof's `nonce` claim is valid iff the pool still
//! remembers it.
//!
//! Rotation — every request response can carry a `DPoP-Nonce`
//! header pointing at the "current" nonce. When the current nonce
//! is older than [`ROTATION_INTERVAL`], `current_or_rotate` mints
//! a fresh one and returns it (the outgoing one keeps living in
//! the pool until its TTL expires — the overlap window). Clients
//! opportunistically pick up the fresh header and start using it;
//! in-flight requests carrying the previous nonce remain valid
//! throughout the overlap.
//!
//! Storage — in-memory `moka` LRU, no PG persistence. On server
//! restart the pool is empty → every next client request gets a
//! `use_dpop_nonce` challenge (middleware handles this) which
//! transparently rotates the client onto a fresh nonce. That's
//! why the SPA fetch interceptor (Gate 4) has a mandatory
//! challenge-retry loop.
//!
//! Scale — a hard cap on cache size bounds memory under attack.
//! At ~64 bytes/entry and a 100k cap, worst-case ~6 MB. Under
//! normal traffic the pool is far below the cap.
//!
//! **Multi-instance caveat**: each OxiCloud replica has its own
//! pool. A nonce issued by node A + validated by node B will 401 →
//! challenge → retry → one extra round trip, no security impact.
//! Elevate to a shared Redis if the operational impact ever
//! matters; for the common single-instance self-hosted deployment
//! in-memory is correct.
use base64::Engine as _;
use base64::engine::general_purpose::URL_SAFE_NO_PAD as B64_URL_NO_PAD;
use moka::sync::Cache;
use std::sync::RwLock;
use std::time::{Duration, Instant};
/// How long a nonce is valid after issuance. Rejected outright once
/// past this window (moka TTL enforces it — no manual sweep needed).
pub const NONCE_LIFETIME: Duration = Duration::from_secs(300); // 5 min
/// Once the "current" nonce is older than this, `current_or_rotate`
/// mints a fresh one on next call. The outgoing nonce stays valid
/// in the pool until its own TTL expires, giving a 3-minute overlap
/// window during which both work. Clients pick up the fresh header
/// in the next response and switch over lazily.
pub const ROTATION_INTERVAL: Duration = Duration::from_secs(120); // 2 min
/// Max nonce entries — bounds memory under attack. LRU eviction
/// past this cap.
const MAX_POOL_SIZE: u64 = 100_000;
/// Byte length of a nonce before base64url encoding. 32 bytes →
/// 43-char b64url string, matching JWK-thumbprint dimensions so
/// operator eyes calibrate the same way for both fields.
const NONCE_BYTES: usize = 32;
/// Currently-active pool of nonces + the freshest one served in
/// `DPoP-Nonce` response headers.
pub struct DpopNonceService {
/// Pool of live nonces. Value is `()` — presence == validity;
/// TTL enforced by moka's `time_to_live`.
pool: Cache<String, ()>,
/// Freshest nonce we've issued + when — used to decide when to
/// rotate. `None` at boot, populated on first `current_or_rotate`.
current: RwLock<Option<CurrentNonce>>,
}
struct CurrentNonce {
value: String,
issued_at: Instant,
}
impl Default for DpopNonceService {
fn default() -> Self {
Self::new()
}
}
impl DpopNonceService {
pub fn new() -> Self {
Self {
pool: Cache::builder()
.max_capacity(MAX_POOL_SIZE)
.time_to_live(NONCE_LIFETIME)
.build(),
current: RwLock::new(None),
}
}
/// Return the current nonce, minting a fresh one when the last
/// mint is older than [`ROTATION_INTERVAL`] (or on cold start).
/// The returned value is what the middleware stamps into
/// outgoing `DPoP-Nonce` response headers.
pub fn current_or_rotate(&self) -> String {
// Fast path: read lock, current is still fresh → clone the string.
if let Some(cur) = self.current.read().unwrap().as_ref()
&& cur.issued_at.elapsed() < ROTATION_INTERVAL
{
return cur.value.clone();
}
// Slow path: write lock, re-check (someone else may have
// rotated between drop-read and acquire-write), otherwise
// mint fresh.
let mut guard = self.current.write().unwrap();
if let Some(cur) = guard.as_ref()
&& cur.issued_at.elapsed() < ROTATION_INTERVAL
{
return cur.value.clone();
}
let fresh = mint_nonce();
self.pool.insert(fresh.clone(), ());
*guard = Some(CurrentNonce {
value: fresh.clone(),
issued_at: Instant::now(),
});
fresh
}
/// Check whether a nonce presented by a client is still valid.
/// Returns `false` for absent-from-pool AND for
/// past-TTL-eviction; both are indistinguishable from the
/// caller's perspective.
pub fn is_valid(&self, nonce: &str) -> bool {
self.pool.contains_key(nonce)
}
}
fn mint_nonce() -> String {
// Re-use `p256`'s already-transitive `rand_core::OsRng` — no new
// dep, no version alignment risk. `OsRng` reads from the OS
// entropy source; `fill_bytes` panics on RNG failure (unreachable
// outside catastrophic OS state, and safer to crash than mint a
// guessable nonce).
use p256::elliptic_curve::rand_core::{OsRng, RngCore};
let mut buf = [0u8; NONCE_BYTES];
OsRng.fill_bytes(&mut buf);
B64_URL_NO_PAD.encode(buf)
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn issues_a_nonce_of_expected_shape() {
let svc = DpopNonceService::new();
let n = svc.current_or_rotate();
// 43 chars = base64url(SHA-256-equivalent length)
assert_eq!(n.len(), 43);
assert!(
n.bytes()
.all(|b| b.is_ascii_alphanumeric() || b == b'-' || b == b'_'),
"nonce contains non-base64url chars: {n}"
);
}
#[test]
fn issued_nonce_validates_immediately() {
let svc = DpopNonceService::new();
let n = svc.current_or_rotate();
assert!(svc.is_valid(&n));
}
#[test]
fn returns_same_nonce_within_rotation_window() {
let svc = DpopNonceService::new();
let a = svc.current_or_rotate();
let b = svc.current_or_rotate();
assert_eq!(a, b);
}
#[test]
fn unknown_nonce_is_rejected() {
let svc = DpopNonceService::new();
assert!(!svc.is_valid("not-a-real-nonce-value-1234567890abcde"));
}
}
@@ -0,0 +1,107 @@
//! DPoP replay cache — remembers `(nonce, jti)` tuples we've
//! already verified, and rejects duplicates as replays.
//!
//! Nonce-scoped by design (see `docs/plan/dpop.md` Gate 6). A `jti`
//! is only guaranteed unique WITHIN the lifetime of a nonce; a
//! naive global-`jti` cache would falsely reject the second use of
//! a `jti` value the client happened to reuse across two nonces
//! (statistically negligible for 128-bit UUIDs but semantically
//! wrong per the spec).
//!
//! Two-scope invariant, tested below:
//! * same `jti` under DIFFERENT nonces → both accepted
//! * same `(nonce, jti)` seen twice → second is a replay
//!
//! TTL is aligned with [`super::dpop_nonce_service::NONCE_LIFETIME`]
//! (5 minutes) — once a nonce ages out of the nonce pool it cannot
//! validate anyway, so replay-cache entries against that nonce are
//! moot the moment the outer freshness check fires. Both caches
//! bounded at ~100k entries.
use moka::sync::Cache;
use std::time::Duration;
/// Same as `NONCE_LIFETIME` — see file doc.
const REPLAY_ENTRY_TTL: Duration = Duration::from_secs(300);
/// Cap. Roughly 100 bytes/entry (two short strings + moka
/// bookkeeping) → ~10 MB ceiling under sustained attack, per plan.
const MAX_ENTRIES: u64 = 100_000;
/// In-memory nonce-scoped replay tracker.
pub struct DpopReplayCache {
seen: Cache<(String, String), ()>,
}
impl Default for DpopReplayCache {
fn default() -> Self {
Self::new()
}
}
impl DpopReplayCache {
pub fn new() -> Self {
Self {
seen: Cache::builder()
.max_capacity(MAX_ENTRIES)
.time_to_live(REPLAY_ENTRY_TTL)
.build(),
}
}
/// Record a fresh `(nonce, jti)` pair, returning `true` if this
/// is the first time we've seen it (accept the proof) and
/// `false` if we've already recorded it (replay — reject).
///
/// Uses moka's atomic `entry` API so two racing verify calls
/// for the same `(nonce, jti)` — the pathological concurrent-
/// replay window — resolve to exactly one `true` and one
/// `false`, never both `true`.
pub fn check_and_record(&self, nonce: &str, jti: &str) -> bool {
let key = (nonce.to_string(), jti.to_string());
// `entry().or_insert_with(...)` is atomic across concurrent
// callers; the returned `Entry` exposes `is_fresh()` to
// distinguish "we just wrote this" from "already existed".
let entry = self.seen.entry(key).or_insert_with(|| ());
entry.is_fresh()
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn first_seen_is_accepted() {
let c = DpopReplayCache::new();
assert!(c.check_and_record("nonce-A", "jti-1"));
}
#[test]
fn duplicate_same_scope_is_replay() {
let c = DpopReplayCache::new();
assert!(c.check_and_record("nonce-A", "jti-1"));
assert!(
!c.check_and_record("nonce-A", "jti-1"),
"second insert of same (nonce, jti) must be flagged as replay"
);
}
#[test]
fn same_jti_different_nonces_both_accepted() {
// Nonce-scoped invariant: `jti` uniqueness is only meaningful
// within a single nonce lifetime. Reusing a `jti` across
// different nonces is legitimate (the second nonce is a
// fresh replay scope) and MUST NOT trip replay detection.
let c = DpopReplayCache::new();
assert!(c.check_and_record("nonce-A", "jti-1"));
assert!(c.check_and_record("nonce-B", "jti-1"));
}
#[test]
fn different_jtis_same_nonce_both_accepted() {
let c = DpopReplayCache::new();
assert!(c.check_and_record("nonce-A", "jti-1"));
assert!(c.check_and_record("nonce-A", "jti-2"));
}
}
+1
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@@ -11,6 +11,7 @@ pub mod consistency_batch_service;
pub mod db_pool_monitor;
pub mod dedup_service;
pub mod dpop_nonce_service;
pub mod dpop_replay_cache;
pub mod dpop_verifier;
pub mod drives_consistency_service;
pub mod encrypted_blob_backend;
+29 -3
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@@ -29,7 +29,11 @@
//! Clients cache it; the next request presents it and skips the
//! challenge round trip.
//!
//! Replay detection (jti-per-nonce) is Gate 6; not wired yet.
//! Replay detection: after nonce validation succeeds, the
//! `(nonce, jti)` pair is recorded in a moka LRU. A second proof
//! carrying the same `(nonce, jti)` — the classic replay window —
//! fires `dpop.replay_detected` and returns 401 with the standard
//! `invalid_dpop_proof` error shape.
use axum::extract::{OriginalUri, Request, State};
use axum::http::{HeaderMap, HeaderValue, StatusCode};
@@ -87,6 +91,7 @@ pub async fn require_dpop_layer(
return next.run(request).await;
}
let nonce_service = state.dpop_nonce_service.clone();
let replay_cache = state.dpop_replay_cache.clone();
// No authenticated user → pass through (upstream auth layer
// already handled or will handle the 401). We only concern
@@ -139,7 +144,7 @@ pub async fn require_dpop_layer(
// present, it MUST be in our live pool. Absent → OK on
// the bootstrap request, but the challenge below MUST
// still fire so the very next request carries a nonce.
match verified.nonce.as_deref() {
let live_nonce = match verified.nonce.as_deref() {
Some(n) if !nonce_service.is_valid(n) => {
tracing::info!(
target: "audit",
@@ -159,8 +164,29 @@ pub async fn require_dpop_layer(
// the nonce path immediately.
return nonce_challenge_response(&nonce_service);
}
_ => {}
Some(n) => n,
};
// Replay guard — nonce-scoped `jti` dedup. Runs AFTER
// nonce validity so we don't populate the cache with
// entries against a nonce that would 401 anyway (waste
// of pool space; also lets an attacker probe expired
// nonces without pressuring the cache).
if !replay_cache.check_and_record(live_nonce, &verified.jti) {
tracing::info!(
target: "audit",
event = "dpop.replay_detected",
method = %method,
htu = %htu,
jti = %verified.jti,
"👮🏻‍♂️ DPoP proof replayed — same (nonce, jti) seen twice",
);
return dpop_verification_failed_response(
DpopVerifyError::SignatureInvalid, // shape-only; audit line carries truth
&nonce_service,
);
}
let response = next.run(request).await;
stamp_current_nonce(response, &nonce_service)
}