CVE-2026-73302
Fix: Budibase/budibase@9ecd004CVE-2026-73302 is a security vulnerability in @budibase/server. O3 Security confirms whether CVE-2026-73302 is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.
Budibase: OIDC SSO account takeover: incoming identity linked by email without checking email_verified
Real-World Exposure
How broadly this vulnerability is actually deployed: weekly install volume shows current usage, and reverse-dependency count shows how many other packages break if it stays unpatched.
@budibase/servernpmDescription
Summary
Budibase's OIDC SSO login links an incoming SSO identity to an existing Budibase account by email address alone, without ever checking the email_verified claim of the OIDC ID token. Budibase first tries to match the IdP sub; when that misses (any fresh attacker IdP account) it silently falls back to matching by the email claim and merges into the existing account by email, preserving that account's _id and roles. Because the email_verified flag is never read, an attacker who can make a configured/trusted IdP emit a token carrying email = <victim> with email_verified = false is logged into Budibase as the victim, inheriting the victim's roles (including global admin/builder). Per OIDC Core §5.7 the email claim MUST NOT be used as an identity key unless email_verified is true; Budibase effectively delegates all account-linking trust to every configured IdP's email-verification policy while checking nothing itself. Full account takeover of any existing Budibase user, including the instance owner.
Details
The OIDC verify callback extracts the email and never consults email_verified:
packages/backend-core/src/middleware/passport/sso/oidc.ts:59—email: getEmail(profile, jwtClaims).getEmail(oidc.ts:113-135) returnsprofile._json.email->jwtClaims.email->preferred_username. Noemail_verifiedcheck.buildJwtClaims(oidc.ts:99-107) assembles claims from_json.email/emails[0].value— no verification flag is read.grep -r email_verified packages/-> 0 hits.
The email is then used as the account-linking key:
sso.authenticate(...)->packages/backend-core/src/middleware/passport/sso/sso.ts::38,44users.getById(generateGlobalUserID(details.userId))keyed on the IdPsub; for a fresh attacker IdP account this 404s and is swallowed (:45-54).:57-59fallback:dbUser = await users.getGlobalUserByEmail(details.email)-> loads the victim's account (victim_id+ roles) purely by email (packages/backend-core/src/users/users.ts:100-124,USER_BY_EMAILview, no binding to the IdPsub).syncUser(...)(sso.ts:80,102-138) spreads...user, preserving the victim_id/tenantId/roles; only overwrites provider fields.
UserDB.save(packages/backend-core/src/users/db.ts:235): becausessoUser._idis the victim's, the_idbranch runs (:253),getById(_id)matches the victim (:256), the "Email address cannot be changed" guard (:257-259) does not fire (dbUser.email === email), and theEmailUnavailableErrorguard (:269-275) is skipped (it only runs in the!dbUserbranch). The merge proceeds silently; a session JWT is issued for the victim.
Per OIDC Core §5.7, the email claim MUST NOT be used as an identity key unless email_verified is true. Budibase never reads the flag.
Preconditions (attack requirement — AT:P): the attacker must be able to authenticate through an IdP that the Budibase instance trusts AND get that IdP to assert the victim's email with email_verified = false. This is reachable, not exotic:
- Self-registration with an unverified email — Keycloak and Authentik ship with "Verify Email" OFF by default; if the trusted IdP allows public sign-up, the attacker registers a new account and simply enters
email = <victim>at sign-up. No confirmation email is needed — the IdP stores and asserts it unverified. - Self-service profile editing — many IdPs let a logged-in user change their own email without forced re-verification.
- Attacker-operated / federated IdP or permissive social login — where the attacker controls or influences a trusted provider, or the provider asserts a user-typed (unverified) email.
It is not exploitable through a strict corporate IdP that enforces email verification (there
email_verified = trueand the attacker cannot claim the victim's address) — which is exactly why Budibase must check the flag rather than assume every configured IdP enforces it. The defect is unconditional on the Budibase side; the attack requirement is purely the (default, common) IdP email policy.
PoC
Reproduced live on Budibase 3.39.14 (self-hosted, community license) against a stock Keycloak 26 realm budi with default "Verify Email" = off; OIDC client registered and activated in Budibase.
Setup: a pre-existing victim global-admin Budibase account [email protected] (_id = us_1ab2dfcf…, local account, no IdP link). The attacker owns their own IdP account (attacker, distinct sub) and can set its email attribute unverified.
Step 1 — the IdP asserts the claim (proves email_verified=false):
POST /realms/budi/protocol/openid-connect/token (Keycloak)
grant_type=password&client_id=budibase&client_secret=…&username=attacker&password=Attacker123!&scope=openid email profile
-> id_token payload: { "sub":"3cf58c45-…", "preferred_username":"attacker",
"email":"[email protected]", "email_verified":false }
The authenticated principal is provably attacker (its own sub/preferred_username/password), merely claiming the victim's email, unverified.
Step 2 — drive the standard OIDC flow as attacker:
GET /api/global/auth/default/oidc/configs/kc-oidc-1 -> IdP login as attacker/Attacker123! -> GET /api/global/auth/oidc/callback?code=…&state=….
Step 3 — result (takeover): Budibase sets budibase:auth to a session JWT
{ "userId":"us_1ab2dfcf…", "email":"[email protected]", "tenantId":"default" }, and
GET /api/global/self returns the victim: _id = us_1ab2dfcf…, admin.global = true, builder.global = true, providerType = oidc. The attacker authenticated as a different IdP principal with an unverified email yet now holds a full global-admin session for the victim.
Negative control (proves the email claim is the cause, not a normal self-login):
A second attacker attacker2 with a benign unverified email [email protected] (matching no Budibase user) runs the identical flow:
id_token: { "sub":"55794bf2-…", "preferred_username":"attacker2", "email":"[email protected]", "email_verified":false }
-> budibase:auth: { "userId":"us_55794bf2-…" } (a NEW account, _id derived from the IdP sub)
-> /api/global/self: { "_id":"us_55794bf2-…", "email":"[email protected]", admin.global: null, builder.global: null }
<img width="1153" height="489" alt="image" src="https://github.com/user-attachments/assets/8f6cb849-e6f3-49f1-b576-8aeba026a3be" />
<img width="1089" height="466" alt="image" src="https://github.com/user-attachments/assets/a892ec3e-3753-4bc0-9eee-9f0613b2d92e" />
<img width="826" height="532" alt="image" src="https://github.com/user-attachments/assets/cc30bd9c-1bdb-4bea-934f-a8b3e228940e" />
With a benign email the attacker gets their own new low-privilege account; only when the email claim equals the victim's does the same flow yield the victim's admin account. Same self-authentication, single variable changed = the unverified-email merge is the vulnerability.
Impact
Takeover of any existing Budibase account by email, including the instance owner / global admin -> full control of the tenant (apps, datasources, automations, user management, stored datasource credentials). The attacker authenticates as their own (different) IdP principal and ends up holding the victim's session and roles. The only requirement beyond a trusted IdP login is that the IdP assert the victim's email unverified — the default for a freshly-created Keycloak/Authentik realm and common in social logins (see Preconditions). Any deployment that trusts an OIDC IdP without enforced email verification is exposed; the Budibase-side flaw (ignoring email_verified) is unconditional.
Remediation
Primary fix: in the OIDC verify path, require email_verified === true before using email to look up / link an existing account; otherwise reject the login (or fall back to sub-only matching and never merge into a pre-existing local/SSO account). Concretely, thread the email_verified claim through buildJwtClaims/getEmail (oidc.ts) and gate the getGlobalUserByEmail fallback in sso.ts:57-59 on it.
Audit the whole class: apply the same email_verified (and, for SAML, EmailVerified/assertion-signature) gate to every SSO strategy that links by email — OIDC, SAML, and any social provider — not only the Google strategy (which already passes requireLocalAccount=true). Email-based account linking anywhere must require a verified email.
Defense-in-depth for operators who cannot patch immediately:
- On the IdP, enable "Verify Email" / require verified email before issuing tokens (Keycloak: realm -> Login -> Verify Email = on), and restrict which email domains the IdP will assert.
- Prefer
sub-based account mapping over email in the IdP/Budibase mapping config where available. - Audit existing accounts for unexpected OIDC links to privileged users; rotate sessions.
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 CVE-2026-73302 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 CVE-2026-73302 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 CVE-2026-73302. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.
Frequently Asked Questions
Is CVE-2026-73302 in your dependencies?
O3 detects CVE-2026-73302 across npm dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.