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CVE-2026-56675: 9router /v1 APIs has unauthenticated access via reverse proxy locality collapse

GitHub Advisories · officialPublished Sep 23, 2026Risk 37/100

## Summary 9router treats local loopback requests as trusted and allows access to `/v1/*` without an API key. In a documented/common reverse-proxy deployment where nginx forwards public traffic to the backend via `127.0.0.1`, external non-`Origin` requests are misclassified as local. This allows unauthenticated access to `/v1` APIs such as `/v1/models`, and may allow abuse of configured upstream provider credentials depending on the enabled providers. ## Details - **Affected version / commit:** 9router `v0.4.80` @ `b282f05`. - **Deployment precondition:** a same-host reverse proxy (e.g. nginx) forwarding public traffic to the backend on `127.0.0.1` / `localhost`. This mirrors the documented cloud deployment (`proxy_pass http://localhost:20128` with `X-Real-IP` / `X-Forwarded-For`). - **Observed behaviour:** - The **direct backend** (`direct-backend`, port `18081`) returns `401` for `/v1/models` without an API key. - A **direct request that spoofs** `X-9r-Real-IP: 127.0.0.1` still returns `401`: the custom server deletes the client-supplied header and overwrites it with the real socket address, so naive header spoofing does not work against the direct backend. - The **proxied path** (`reverse-proxy`, port `18080`) returns `200` with the full model catalog for the same `/v1/models` request **without any API key**. - A **proxied request that carries an `Origin` header** returns `401`. The bypass therefore primarily affects curl / SDK / server-side / non-browser clients, which do not send `Origin`. - **Root cause:** the backend's local/remote decision relies on perceived socket/loopback locality after reverse proxying. Because nginx connects to the backend from `127.0.0.1`, the backend stamps a loopback client address for **every** internet client and treats the request as local, skipping the `/v1` API-key requirement. The forwarded `X-Real-IP` / `X-Forwarded-For` headers that carry the true client IP are ignored for this decision. - This is **not** a simple client header-spoofing issue (the direct-spoof control above proves header spoofing is rejected); it is a property of how loopback proxy traffic is trusted. ## Proof of Concept This repository is a self-contained Docker Compose reproduction. No real provider is called and no real API key is required. 1. Build and start the stack: ```bash docker compose up --build ``` 2. Direct baseline (no API key): ```bash curl -i http://127.0.0.1:18081/v1/models ``` 3. Direct spoof control: ```bash curl -i -H "X-9r-Real-IP: 127.0.0.1" http://127.0.0.1:18081/v1/models ``` 4. Reverse-proxy bypass (no API key): ```bash curl -i http://127.0.0.1:18080/v1/models ``` 5. Reverse-proxy `Origin` control: ```bash curl -i -H "Origin: http://evil.example" http://127.0.0.1:18080/v1/models ``` ### Expected evidence | Request | Result | |---------|--------| | Direct `18081`, no key | `401 Unauthorized` (`{"error":"API key required for remote API access"}`) | | Direct `18081`, `X-9r-Real-IP: 127.0.0.1` spoof | `401 Unauthorized` | | Proxied `18080`, no key | `200 OK` with the full model catalog | | Proxied `18080`, with `Origin` | `401 Unauthorized` | ## Impact - Unauthenticated access to the `/v1` API surface in the affected reverse-proxy deployment. - Model enumeration via `/v1/models`. - Possible abuse of the operator's configured upstream provider credentials through `/v1/chat/completions` and other `/v1` proxy endpoints (the attacker spends the operator's provider quota/keys without holding any key of their own). - Actual impact depends on which providers are configured and how the instance is exposed to the public internet. - The attacker requires **no API key**. ## Suggested Fix - Do not use client/proxy/socket IP locality as an authentication bypass. - Require an API key by default for `/v1/*` on public listeners. - If local trust is genuinely needed, bind it to an unguessable server-generated secret or to a Unix domain socket that is only accessible locally — not to "the connection looks like loopback". - When running behind reverse proxies, use an explicit trusted-proxy configuration and a real client-IP derivation (e.g. a vetted `X-Forwarded-For` chain), and never treat all loopback proxy traffic as end-user-local. - Document a secure reverse-proxy configuration for operators.

Upgrade affected packages to a patched version: 9router 0.5.2.

Vendor
Not specified
Product
9router
Exploitation
none known
Evidence
official
CVSS
8.3

This record is attributed to GitHub Advisories. Exploitation status and remediation guidance are kept separate from the vulnerability's technical severity.

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