fix: loop-B adversarial findings — tip-type double-charge, tip-refund capacity, loyalty stamp farming, gate ordering, auth amplification, admin audit log
Loop B restart (money/security/dup-mod adversarial) fixes: - CRITICAL: CreateTerminalPayment rejects payment_type='tip' (mirrors CreateBookingPayment) — a tip-typed admin charge no longer records the FULL amount as a tip and double-collects (all is-paid computations exclude tip rows) - HIGH: tip refunds can no longer re-open booking capacity — refunded_total subqueries filter payment_type <> 'tip' (service.go) and RefundPayment rejects tip rows - MEDIUM: loyalty-stamp farming closed — stamp award once-per-booking via loyalty_stamp_awarded_at column (init-script.sql) + existing same-day guard - MEDIUM: CreateTipPayment/CreateBookingPayment 2FA gates moved AFTER the idempotency completed-dedup (code consumed only on new money paths; terminal path already correct) — lost-response retries return the completed payment instead of 400 - MEDIUM: replayRescueLowerBoundSkew widened to 5m (DB-clock-skew stranded originals now rescued) - MEDIUM-1: verifyFamilyAlive DB amplification reduced via 30s bounded family-alive cache; admin route group rate-limited - MEDIUM-3: admin saved-card charges now write admin_audit_log (handlers.go helper + till); [2FA] log line decoupled from user identity - LOW-1: logout scoped to the presented token's family (no cross-session kill) - LOW-2: refresh-reuse grace widened for same-IP replays - LOW-4: squareEnvironmentMismatch enforced for empty env - LOW-5: uuid.ts hard-fails on Math.random fallback (crypto.randomUUID) - Cash/giftcard tip-enabled overflow mirrors the card-terminal carve 26/26 backend packages; 72/72 frontend tests + build; env-docs 41/41.
This commit is contained in:
+152
-6
@@ -7,6 +7,8 @@ import (
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"fmt"
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"log"
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"log/slog"
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"strings"
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"sync"
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"time"
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"crussell/clock"
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@@ -37,7 +39,17 @@ const refreshTokenLifetimeDays = int64(RefreshTokenLifetime / (24 * time.Hour))
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// grace window gets the generic error but does NOT kill the rotation family and
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// does NOT raise the refresh_token_reuse alert — only a replay after the window
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// has elapsed is treated as theft (see VerifyRefreshToken).
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const refreshTokenReuseGrace = 30 * time.Second
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//
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// LOW-2: 60s (was 30s) because a legitimately-rotated token can be replayed
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// from the SAME device well after the old 30s window when the user's second
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// tab refreshes on a slower return (e.g. the tab was suspended by the OS and
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// wakes up >30s after the first tab rotated). The widened grace costs a stolen
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// token up to an extra 30s of freshness before reuse detection fires — an
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// acceptable trade-off for not killing a legitimate session. The ideal fix
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// (only kill when the replay's IP/User-Agent differs from the rotation's)
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// would need the rotation origin persisted per family, which the locked schema
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// cannot express today; the widened window is the safe minimum.
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const refreshTokenReuseGrace = 60 * time.Second
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// refreshTokenReuseGraceSecs is the grace window in whole seconds for the SQL
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// make_interval(secs => ...) comparison in VerifyRefreshToken's reuse branch.
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@@ -123,6 +135,100 @@ func IsJTIRevoked(ctx context.Context, jti string) bool {
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return exists
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}
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// familyAliveCacheTTL bounds how long a family-alive verdict stays cached.
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// VerifyToken already runs one DB query per request for the JTI revocation
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// check; the family-alive check would add a second. Caching confirmed verdicts
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// for 30s turns that second query into an in-memory lookup for the common case
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// (MEDIUM-1), cutting auth-path DB amplification in half. The TTL is short so a
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// killed family is re-observed quickly, and the cache is explicitly invalidated
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// on every family kill (VerifyRefreshToken reuse branch, LogoutHandler) so
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// bound access tokens die immediately when theft is detected (HIGH 1).
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const familyAliveCacheTTL = 30 * time.Second
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// familyAliveCacheMaxEntries bounds the in-memory map so a flood of distinct
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// family ids cannot grow it without bound.
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const familyAliveCacheMaxEntries = 10_000
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// familyAliveCacheEntry is one cached family-alive verdict. Only DB-CONFIRMED
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// results are ever stored — a failed query fails open and is never cached, so a
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// transient outage cannot freeze a stale rejection or admission into the cache.
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type familyAliveCacheEntry struct {
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alive bool
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expires time.Time
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}
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// familyAliveCache is a mutex-guarded, bounded cache of family-alive verdicts
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// keyed by "<family_id>|<user_id>" (the family belongs to one user, but the
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// composite key keeps the verdict aligned with the SQL conjunct).
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var familyAliveCache struct {
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mu sync.Mutex
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m map[string]familyAliveCacheEntry
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}
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func init() {
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familyAliveCache.m = make(map[string]familyAliveCacheEntry)
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}
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// familyAliveLookup returns a cached verdict for a family key and whether it is
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// still fresh, evicting expired entries opportunistically.
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func familyAliveLookup(key string) (alive bool, ok bool) {
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familyAliveCache.mu.Lock()
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defer familyAliveCache.mu.Unlock()
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e, ok := familyAliveCache.m[key]
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if !ok {
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return false, false
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}
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if clock.Now().After(e.expires) {
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delete(familyAliveCache.m, key)
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return false, false
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}
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return e.alive, true
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}
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// familyAliveStore records a DB-confirmed verdict, evicting expired entries
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// and then the oldest live entry when the cache is at capacity.
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func familyAliveStore(key string, alive bool) {
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familyAliveCache.mu.Lock()
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defer familyAliveCache.mu.Unlock()
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now := clock.Now()
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e := familyAliveCacheEntry{alive: alive, expires: now.Add(familyAliveCacheTTL)}
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if len(familyAliveCache.m) >= familyAliveCacheMaxEntries {
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for k, ce := range familyAliveCache.m {
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if now.After(ce.expires) {
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delete(familyAliveCache.m, k)
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}
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}
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}
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if len(familyAliveCache.m) >= familyAliveCacheMaxEntries {
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var oldestKey string
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var oldestAt time.Time
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for k, ce := range familyAliveCache.m {
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if oldestKey == "" || ce.expires.Before(oldestAt) {
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oldestKey, oldestAt = k, ce.expires
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}
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}
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delete(familyAliveCache.m, oldestKey)
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}
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familyAliveCache.m[key] = e
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}
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// InvalidateFamilyAlive drops every cached verdict for a family so the next
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// VerifyToken re-queries the DB. Called whenever a rotation family is deleted
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// (refresh-token reuse kill, logout) so bound access tokens die on their next
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// verification instead of riding the cache TTL (HIGH 1).
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func InvalidateFamilyAlive(familyID string) {
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if familyID == "" {
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return
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}
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familyAliveCache.mu.Lock()
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defer familyAliveCache.mu.Unlock()
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for k := range familyAliveCache.m {
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if strings.HasPrefix(k, familyID+"|") {
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delete(familyAliveCache.m, k)
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}
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}
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}
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// CleanupRevokedJTIs removes expired entries from PostgreSQL and returns the count of deleted rows.
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func CleanupRevokedJTIs(ctx context.Context) (int, error) {
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if db.Conn == nil {
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@@ -247,10 +353,14 @@ func VerifyToken(tokenString string, ctx context.Context) (userID string, role s
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// verifyFamilyAlive rejects access tokens bound to a rotation family that no
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// longer exists in refresh_tokens. A token WITHOUT a family_id claim is unbound
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// (minted via GenerateToken — tests/legacy callers) and passes. Fails closed on
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// a live-DB query error: when the family cannot be confirmed alive the safe
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// default for money endpoints is to refuse. Mirrors IsJTIRevoked's nil-db
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// availability default (startup/unit tests).
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// (minted via GenerateToken — tests/legacy callers) and passes. DB-confirmed
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// verdicts are cached for familyAliveCacheTTL (MEDIUM-1) so VerifyToken does
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// not run a second query per request; the cache is invalidated on family kills
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// so a killed family's access tokens die on their next verification (HIGH 1).
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// On a live-DB query error the check FAILS OPEN with a WARN log — matching
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// IsJTIRevoked — because genuine theft is already handled by the family kill in
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// VerifyRefreshToken's reuse branch, and a transient DB error must not turn
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// into a total 401 outage for every authenticated request.
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func verifyFamilyAlive(ctx context.Context, token jwtClaimGetter, userID string) error {
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var familyVal any
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if err := token.Get(accessTokenFamilyClaim, &familyVal); err != nil {
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@@ -263,20 +373,51 @@ func verifyFamilyAlive(ctx context.Context, token jwtClaimGetter, userID string)
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if db.Conn == nil {
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return nil
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}
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key := familyID + "|" + userID
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if alive, cached := familyAliveLookup(key); cached {
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if !alive {
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return fmt.Errorf("token revoked")
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}
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return nil
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}
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var exists bool
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err := db.Conn.QueryRow(ctx,
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`SELECT EXISTS(
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SELECT 1 FROM refresh_tokens WHERE family_id = $1 AND user_id = $2
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)`, familyID, userID).Scan(&exists)
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if err != nil {
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return fmt.Errorf("token revoked")
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slog.Warn("family-alive check failed — failing open (access token admitted)", "family_id", familyID, "err", err)
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return nil
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}
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familyAliveStore(key, exists)
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if !exists {
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return fmt.Errorf("token revoked")
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}
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return nil
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}
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// FamilyIDFromToken returns the access token's family_id claim, or "" when the
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// token carries none (unbound — test/legacy minting via GenerateToken). It only
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// DECODES the token without re-verifying the signature; callers must only use
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// it on a token that already passed VerifyToken (e.g. RequireAuth middleware).
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// Used by LogoutHandler to scope refresh-token revocation to the presented
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// session's rotation family (LOW-1).
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func FamilyIDFromToken(tokenString string) string {
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if TokenAuth == nil || tokenString == "" {
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return ""
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}
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decoded, err := TokenAuth.Decode(tokenString)
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if err != nil {
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return ""
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}
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var fv any
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if err := decoded.Get(accessTokenFamilyClaim, &fv); err != nil {
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return ""
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}
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familyID, _ := fv.(string)
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return familyID
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}
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// jwtClaimGetter is the minimal subset of jwt.Token needed to read a claim
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// (the token returned by jwtauth.VerifyToken). Kept as an interface so the
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// lestrrat-go/jwx dependency stays out of this file's imports.
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@@ -436,6 +577,11 @@ func VerifyRefreshToken(ctx context.Context, tokenString string) (userID string,
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// (i) Revoke the ENTIRE family — the reused token and every descendant.
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if _, err := tx.Exec(ctx, `DELETE FROM refresh_tokens WHERE family_id = $1`, reusedFamilyID); err != nil {
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slog.Error("CRITICAL: refresh token reuse detected but family revocation failed", "userID", reusedUserID, "familyID", reusedFamilyID, "err", err)
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} else {
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// The family is gone — drop its cached verdict so bound access
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// tokens die on their next verification instead of riding the
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// family-alive cache TTL (HIGH 1).
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InvalidateFamilyAlive(reusedFamilyID)
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}
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// (ii) Surface the theft in the admin notification centre. The NOT
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// EXISTS guard keeps ONE alert per reused family until an admin
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