GHSA-hr66-5mqr-8mpx
HIGHBudibase: Unauthenticated user information disclosure via public tenant user lookup endpoint
Blast Radius
Weekly download volume for affected packages — a proxy for how broadly this vulnerability is deployed.
@budibase/servernpmDescription
Summary
The Budibase Worker service exposes a public, unauthenticated API endpoint (GET /api/global/users/tenant/:id) that returns sensitive user information including tenantId, userId, email, and ssoId. The endpoint is registered in the PUBLIC_ENDPOINTS list with a TODO comment acknowledging it "should be an internal API." Any unauthenticated party can enumerate user emails or IDs to extract sensitive tenant and user metadata, enabling targeted attacks against multi-tenant deployments.
Details
Public endpoint registration at packages/worker/src/api/index.ts lines 56-59:
// TODO: This should be an internal api
{
route: "/api/global/users/tenant/:id",
method: "GET",
},
This endpoint is listed in PUBLIC_ENDPOINTS, which is passed to auth.buildAuthMiddleware(PUBLIC_ENDPOINTS) at line 154. When a request matches a public endpoint pattern, the authentication middleware sets ctx.publicEndpoint = true and calls next() without performing any authentication (verified at packages/backend-core/src/middleware/authenticated.ts lines 124-126, 249-251).
All subsequent middleware also skips for public endpoints:
buildTenancyMiddleware— passes throughactiveTenant— passes throughbuildCsrfMiddleware— skipped for GET methods (line 48 of csrf.ts)- The
budibaseAccessgate at lines 160-168 explicitly returnsnext()whenctx.publicEndpointis true
Route registration at packages/worker/src/api/routes/global/users.ts line 139:
loggedInRoutes
.get("/api/global/users/tenant/:id", controller.tenantUserLookup)
loggedInRoutes has no auth middleware group — it is created with endpointGroupList.group() (no middleware).
Handler implementation at packages/worker/src/api/controllers/global/users.ts lines 548-562:
export const tenantUserLookup = async (
ctx: UserCtx<void, LookupTenantUserResponse>
) => {
const id = ctx.params.id
// is email, check its valid
if (id.includes("@") && !emailValidator.validate(id)) {
ctx.throw(400, `${id} is not a valid email address to lookup.`)
}
const user = await userSdk.core.getFirstPlatformUser(id)
if (user) {
ctx.body = user // Returns full PlatformUser object — no field filtering
} else {
ctx.throw(400, "No tenant user found.")
}
}
The id parameter accepts either an email address (detected by @ presence) or a user ID. The response returns the full PlatformUser object from packages/types/src/documents/platform/users.ts:
export interface PlatformUserByEmail extends Document {
tenantId: string // Tenant identifier
userId: string // Internal user ID
}
export interface PlatformUserById extends Document {
tenantId: string // Tenant identifier
email?: string // User email address
ssoId?: string // SSO provider identifier
}
export interface PlatformUserBySsoId extends Document {
tenantId: string // Tenant identifier
userId: string // Internal user ID
email: string // User email address
ssoId?: string // SSO provider identifier
}
The lookup function (packages/backend-core/src/users/lookup.ts:48-53) queries the PLATFORM_USERS_LOWERCASE CouchDB view with include_docs: true, returning the complete platform user document including CouchDB _id and _rev.
Affected files:
packages/worker/src/api/index.ts:56-59— Public endpoint registrationpackages/worker/src/api/routes/global/users.ts:139— Route on unauthenticated grouppackages/worker/src/api/controllers/global/users.ts:548-562— Handler returning full user objectpackages/backend-core/src/users/lookup.ts:48-53— Platform user lookup withinclude_docs: truepackages/types/src/documents/platform/users.ts:6-36— PlatformUser types
PoC
Static verification:
- Observe
packages/worker/src/api/index.ts:56-59: endpoint inPUBLIC_ENDPOINTSwith// TODO: This should be an internal api - Trace handler at
packages/worker/src/api/controllers/global/users.ts:548-562: no auth checks, returnsctx.body = user(full object) - Trace middleware chain: all middleware passes through for
ctx.publicEndpoint === true - Confirm no field filtering, sanitization, or authorization between request and response
Dynamic verification (requires running Budibase instance with at least one user):
# No authentication headers or cookies required
# Lookup by email:
curl -s http://localhost:4002/api/global/users/tenant/[email protected]
# Response (200 OK):
# {
# "_id": "[email protected]",
# "_rev": "1-abc123...",
# "tenantId": "tenant-uuid-here",
# "userId": "us_uuid-here"
# }
# Lookup by user ID:
curl -s http://localhost:4002/api/global/users/tenant/us_someuserid123
# Response (200 OK):
# {
# "_id": "us_someuserid123",
# "_rev": "1-abc123...",
# "tenantId": "tenant-uuid-here",
# "email": "[email protected]",
# "ssoId": "google-oauth-id"
# }
# Non-existent user:
curl -s http://localhost:4002/api/global/users/tenant/[email protected]
# Response: 400 "No tenant user found."
# (Different response confirms user enumeration)
Negative case: Requesting a non-existent user returns HTTP 400 with "No tenant user found.", while an existing user returns HTTP 200 with full data. The different status codes confirm user existence, enabling enumeration.
Impact
This is a CWE-200: Exposure of Sensitive Information to an Unauthorized Actor vulnerability.
Who is impacted: All Budibase deployments — both self-hosted and cloud. The impact is highest for multi-tenant (cloud) deployments where tenant IDs are security boundaries and user enumeration across tenants enables targeted attacks.
An unauthenticated attacker can:
- Enumerate all user accounts by testing known or guessed email addresses against the endpoint
- Extract tenant IDs for any known user, enabling targeted cross-tenant attacks
- Extract user IDs (
userId) for use in other API calls or attacks - Extract SSO identifiers (
ssoId) which may link to external identity providers (Google, OIDC) - Confirm user existence through different HTTP responses (200 vs 400)
- Harvest CouchDB revision tokens (
_rev) which could assist in CouchDB-level attacks
The returned tenant IDs are particularly dangerous in multi-tenant deployments because they identify the security boundary between organizations. Combined with the hardcoded session keys (separate finding), an attacker could use enumerated tenant IDs to craft targeted session fixation attacks.
Suggested remediation
- Remove the endpoint from
PUBLIC_ENDPOINTSand move it to internal-only routes, as the TODO comment at line 56 already suggests - Add authentication and authorization if the endpoint must remain accessible — require at least
builderOrAdminrole - Limit returned fields to only what the consumer actually needs (strip
_rev,ssoId, and other sensitive fields) - Return generic 404 for both "not found" and "access denied" to prevent user enumeration
- Add rate limiting to prevent automated mass enumeration
- Regression test: Add a test verifying
GET /api/global/users/tenant/:idreturns 403 without authentication
Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| 📦npm | @budibase/server | all versions | No fix |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for @budibase/server. O3's reachability analysis confirms whether the vulnerable code path is actually invoked in your application, so you act on real exposure instead of every transitive match.
Remediation status
No patched version of @budibase/server has shipped for GHSA-hr66-5mqr-8mpx yet. Where your build allows, override or pin the dependency away from the vulnerable range, and apply any maintainer-recommended mitigation.
Mitigate without a patch
If you can't upgrade right away: gate or disable the affected feature, validate untrusted input at the boundary, and avoid passing attacker-controlled data into the vulnerable path. O3's runtime protection blocks exploitation in production as an interim safeguard until the upgrade lands.
How O3 protects you
O3 pinpoints whether GHSA-hr66-5mqr-8mpx is reachable in your code and exactly where to fix it, then blocks exploitation in production at runtime until the patched version is deployed.
Tailored to GHSA-hr66-5mqr-8mpx. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.
Frequently Asked Questions
Is GHSA-hr66-5mqr-8mpx in your dependencies?
O3 detects GHSA-hr66-5mqr-8mpx across npm dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.