CVE-2026-12210 is a medium-severity (CVSS 4.7) Server-Side Request Forgery (SSRF) vulnerability in utcp-gql. O3 Security confirms whether CVE-2026-12210 is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.
utcp-gql SSRF: CVE-2026-44661 fix not applied to the GraphQL and WebSocket plugins
Exploitation Status
Proof-of-concept exploit code exists
- CISA’s SSVC triage found public proof-of-concept exploit code for this CVE, though no confirmed active exploitation.
Exploitation and automatability from CISA’s SSVC triage for CVE-2026-12210.
Real-World Exposure
utcp-gql🐍utcp-websocketReal-time download stats are indexed for npm and PyPI packages. This vulnerability affects PyPI packages — download data is not available via public APIs for these ecosystems.
Description
Summary
The fix for CVE-2026-44661 (commit 5b16e43) added the ensure_secure_url() / is_secure_url() helpers and wired them into the three HTTP-family plugins, but it did not reach the GraphQL or WebSocket plugins. The GraphQL plugin (utcp-gql) still uses the startswith prefix check that the fix explicitly replaced, so http://127.0.0.1.attacker.example and http://localhost.evil.com pass it. The WebSocket plugin (utcp-websocket) performs no URL validation at all, even though its own docstrings state it enforces "WSS or localhost only." Both plugins reach the same SSRF that CVE-2026-44661 was filed for, and because both attach the call template's configured auth headers to the outbound connection, the SSRF can also leak API keys and OAuth tokens to an attacker-controlled host.
Details
In the CVE-2026-44661 fix (commit 5b16e43 ("fix(http): block SSRF via attacker-controlled OpenAPI servers[0].url")), two things in it pointed at sibling issues. The commit message says the change is "replacing the duplicated prefix check", and the new utcp_http/_security.py docstring names the exact bug:
URLs whose hostname starts with
localhost/127.0.0.1but isn't actually loopback (e.g.http://localhost.evil.com,http://127.0.0.1.attacker.example). The earlierstartswithcheck let these through.
The word "duplicated" says the vulnerable check existed in more than one place. The fix only updated the three HTTP-family plugins (http, streamable_http, sse). The other communication-protocol plugins were also inspected.
GraphQL plugin (utcp-gql). plugins/communication_protocols/gql/src/utcp_gql/gql_communication_protocol.py still has the pre-fix check at line 43:
def _enforce_https_or_localhost(self, url: str) -> None:
if not (
url.startswith("https://")
or url.startswith("http://localhost")
or url.startswith("http://127.0.0.1")
):
raise ValueError("Security error: URL must use HTTPS or start with ...")
It is called on manual_call_template.url in register_manual (line 102) and on tool_call_template.url in call_tool (line 181). The URL then goes into AIOHTTPTransport(url=...) and a live GraphQL request.
"http://127.0.0.1.attacker.example/graphql".startswith("http://127.0.0.1") is True, so the check passes. If the attacker controls DNS for attacker.example, that hostname resolves to any address they choose, including 169.254.169.254, 127.0.0.1, or an internal 192.168.x.x host, and the GraphQL client sends a plain-HTTP request there. http://localhost.evil.com/graphql behaves the same way. This is the exact prefix bypass CVE-2026-44661 was filed for.
WebSocket plugin (utcp-websocket). plugins/communication_protocols/websocket/src/utcp_websocket/websocket_communication_protocol.py. The module and class docstrings state:
"Security enforcement (WSS or localhost only)" "Enforces security by requiring WSS or localhost connections" "Security validation of connection URLs"
There is no such validation in the code. _get_connection(), the only connection path (used by register_manual, call_tool, and call_tool_streaming), calls:
ws = await session.ws_connect(call_template.url, headers=headers, ...) # line 197
with no scheme or host check. Any URL in a WebSocketCallTemplate connects, including ws://169.254.169.254/, ws://127.0.0.1:<internal-port>/, or any internal hostname.
Credential exposure. Both plugins build connection headers in _prepare_headers(), which attaches the configured auth: ApiKeyAuth as a header, BasicAuth as an Authorization: Basic header, and OAuth2Auth as an Authorization: Bearer token. When the bypass is used to force a plain-HTTP or plain-WS connection to an attacker-resolved host, those credentials are sent to the attacker.
This is the threat model CVE-2026-44661 already established: a UTCP client ingests tool manuals, and a malicious manual is attacker-influenced. The GraphQL and WebSocket plugins consume the same kind of call template, with the same url field, at the same trust level as the HTTP plugins that were fixed.
Affected packages: utcp-gql and utcp-websocket, both at the current release 1.1.0. Neither plugin has been modified since 2025-11-30, so both are unpatched on main.
PoC
The discrepancy is directly observable. With utcp-gql and utcp-http installed:
from utcp_gql.gql_communication_protocol import GraphQLCommunicationProtocol
from utcp_http._security import is_secure_url
bypass = "http://127.0.0.1.attacker.example/graphql"
# The fixed HTTP plugin rejects the bypass URL:
print("utcp_http is_secure_url:", is_secure_url(bypass)) # -> False
# The GraphQL plugin accepts it (no exception is raised):
GraphQLCommunicationProtocol()._enforce_https_or_localhost(bypass)
print("utcp_gql _enforce_https_or_localhost: ACCEPTED")
End to end: a UTCP client that registers a manual declaring a GraphQL tool with url: "http://127.0.0.1.<attacker-domain>/graphql", where that domain resolves to an internal target, issues the request to that internal service. For WebSocket, a manual declaring a tool with url: "ws://169.254.169.254/" connects with no check at all. To confirm the request lands, point the URL at a listener you control on a host the client can reach but the attacker cannot, or at the client's own loopback.
Impact
Server-Side Request Forgery (CWE-918), the same class and trust boundary as CVE-2026-44661. An attacker who can get a UTCP client to register a malicious manual can:
- Make the client send GraphQL requests (GraphQL plugin) or open WebSocket connections (WebSocket plugin) to internal services and cloud metadata endpoints it would not otherwise reach.
- Force plain-HTTP / plain-WS connections to an attacker-resolved host, defeating the "HTTPS or loopback only" guarantee both plugins are meant to provide.
- Receive the call template's configured credentials (API key, Basic auth, OAuth Bearer token), because those headers are attached to the forged request.
Suggested fix. The correct helper already exists in the codebase. Promote is_secure_url / ensure_secure_url from utcp_http into a shared module (or replicate the urlparse-based hostname logic), then replace _enforce_https_or_localhost in the GraphQL plugin with it, and add an equivalent check in the WebSocket plugin's _get_connection before ws_connect, adapted for the ws and wss schemes. This is the same centralization commit 5b16e43 already applied to the three HTTP plugins; it just needs to cover the remaining two transports.
Patched
utcp-gql1.1.1 replaces the broken_enforce_https_or_localhostprefix check with hostname-basedensure_secure_url, applied at bothregister_manualandcall_tool. The underlying aiohttp session is also patched afterconnect()to refuse 3xx responses, closing the post-validation redirect SSRF on the GraphQL endpoint.utcp-websocket1.1.1 introducesensure_secure_ws_url(the WebSocket-scheme companion ofensure_secure_url) and enforces it in both theWebSocketCallTemplatePydantic field validator and_get_connection.ws_connectis called withallow_redirects=False. The OAuth2 token-fetch path uses the same redirect-safe helper introduced inutcp-http1.1.4.
Both plugins duplicate _security.py from utcp-http (rather than
adding a cross-plugin runtime dependency); keep the copies in sync
when changing validator behaviour.
Upgrade to utcp-gql >= 1.1.1 and/or utcp-websocket >= 1.1.1. No
workaround in earlier versions.
Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| 🐍PyPI | utcp-gql | all versions | 1.1.1 |
| 🐍PyPI | utcp-websocket | all versions | 1.1.1 |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for utcp-gql. 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.
Fix
Update utcp-gql to 1.1.1 or later, then make sure no transitive (indirect) dependency still pins the vulnerable range — O3 confirms CVE-2026-12210 is resolved across your whole dependency graph.
Workarounds
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-2026-12210 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-2026-12210. 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-2026-12210 in your dependencies?
O3 detects CVE-2026-12210 across PyPI dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.