Summary
Traefik: ForwardAuth identity spoofing via dot-form header alias
There is a medium severity vulnerability in Traefik's handling of request headers whose name aliases another header name. Go canonicalizes header names on dashes only, so X-Auth-User, X_Auth_User and X.Auth.User are three distinct headers to Traefik, while backends that derive variable names from header names (CGI, WSGI, PHP, NGINX, and others) collapse all of them into the same variable. A client can therefore smuggle an alias of a header that Traefik manages past the middleware managing it, for example a dot-form X.Authenticated.User alongside the canonical X-Authenticated-User written by the ForwardAuth middleware, and have such a backend read the client-supplied value instead of the identity Traefik asserted. Any header Traefik sets is exposed, not only ForwardAuth's. This is an incomplete-fix sibling of GHSA-x677-9fxg-v5c5, which blocked only the underscore form.
The mitigation is the new aliasHeadersStrategy entry point option. It defaults to keep, which preserves the previous behavior for backwards compatibility, so it must be explicitly set to delete or reject to take effect.
Traefik v1.x, the v2 releases up to v2.11.55 and the v3 releases from v3.0.0 to v3.7.11 are affected. The unmaintained lines among them will not receive a patch of their own, and the remedy for their users is to upgrade to v2.11.56 or v3.7.12 and set aliasHeadersStrategy.
For more information
If you have any questions or comments about this advisory, please open an issue.
Original DescriptionTraefik's ForwardAuth middleware removes the configured canonical identity header before copying the value returned by the auth service. However, a client-supplied dot-form alias such as X.Authenticated.User survives both this replacement and underscoreHeadersStrategy: delete.
The tested PHP 8.2 built-in SAPI maps X-Authenticated-User and X.Authenticated.User to the same HTTP_X_AUTHENTICATED_USER server variable. In Traefik's tested HTTP/1 backend path, the client value is serialized last and overrides the identity asserted by ForwardAuth.
A client whom ForwardAuth permits as a lower-privilege identity can therefore be treated by the backend as another user or role.
Details
At v3.7.10, pkg/server/server_entrypoint_tcp.go:800-818 removes or rejects only names containing _. After successful authentication, pkg/middlewares/auth/forward.go:314-326 deletes and replaces only the canonical authResponseHeaders key. The dot alias remains in req.Header and the standard reverse proxy forwards both legal field names.
Go's HTTP/1 writer sorts header names lexically, placing X-Authenticated-User before X.Authenticated.User. PHP then collapses both into one $_SERVER key, so the attacker value deterministically wins.
This is an incomplete-fix sibling of GHSA-x677-9fxg-v5c5: the published underscore input is blocked by the new entry-point strategy, while the dot input bypasses that mitigation on the current stable release.
PoC
traefik-dot-forwardauth-poc.zip
run:
docker compose up -d
bash verify.sh
docker compose down
The decisive request is:
GET /probe HTTP/1.1
Host: 127.0.0.1:18080
X.Authenticated.User: admin
Connection: close
Expected backend identity: lab-user, as returned by ForwardAuth.
Observed on v3.7.10: admin.
The script also verifies that requests without the alias, with the canonical header, and with the already-fixed underscore alias all produce lab-user.
Impact
Applications that authorize requests using a ForwardAuth-provided identity header can receive an attacker-selected username or role instead. This was runtime-verified with PHP 8.2.27 and 8.2.33; impact on other normalization-prone backends is conditional. A lower-privilege permitted client may consequently impersonate another user or administrative role, affecting confidentiality and integrity.
This report does not claim bypass of a ForwardAuth denial: the auth service must first permit the request.
---Affected versions
Security releases
Kodem intelligence
Severity tells you how bad this could be in the worst case. It does not tell you whether you are exposed. Exploitability and impact are functions of runtime truth: whether the vulnerable code is present, reachable, and actually executes in your application. A vulnerable package can sit in your dependency tree and never run.
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Frequently Asked Questions
- What is CVE-2026-88011? CVE-2026-88011 is a medium-severity security vulnerability in github.com/traefik/traefik/v2 (go), affecting versions < 2.11.56. It is fixed in 2.11.56, 3.7.12.
- Which packages are affected by CVE-2026-88011?
github.com/traefik/traefik/v2(go) (versions < 2.11.56)github.com/traefik/traefik/v3(go) (versions >= 3.0.0, < 3.7.12)
- Is there a fix for CVE-2026-88011? Yes. CVE-2026-88011 is fixed in 2.11.56, 3.7.12. Upgrade to this version or later.
- Is CVE-2026-88011 exploitable, and should I be worried? Whether CVE-2026-88011 is exploitable in your environment depends on whether the vulnerable code is present and reachable. A CVSS score is a worst-case rating; it does not account for your specific deployment, configuration, or usage patterns. Kodem, an Intelligent Application Security platform, uses runtime intelligence to show which vulnerabilities actually execute in production, so you can focus on the ones that represent real risk. Get a demo
- What actually determines whether CVE-2026-88011 is exploitable, and how bad it is? Exploitability and impact are not fixed properties of a CVE. They depend on runtime truth: whether the vulnerable code is present, reachable, and actually executes in your application. A high CVSS score on a dependency that never runs is not the same as real risk. Kodem, an Intelligent Application Security platform, uses runtime intelligence to reveal which vulnerabilities actually execute in production, so teams prioritize the ones that genuinely matter.
- How do I fix CVE-2026-88011?
- Upgrade
github.com/traefik/traefik/v2to 2.11.56 or later - Upgrade
github.com/traefik/traefik/v3to 3.7.12 or later
- Upgrade