GHSA-2xwm-4h2q-ggfx is a medium-severity (CVSS 5.4) CWE-863 vulnerability in open-webui. O3 Security confirms whether GHSA-2xwm-4h2q-ggfx is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.
Open WebUI: Model meta.knowledge read-only file access can be upgraded to file write/delete
Exploitation Status
No confirmed exploitation observed yet
- CISA’s own triage has not observed active exploitation or public proof-of-concept code for this CVE as of its last assessment.
Exploitation and automatability from CISA’s SSVC triage for GHSA-2xwm-4h2q-ggfx.
EPSS Exploitation Probability
EPSS (Exploit Prediction Scoring System) is a daily probability model maintained by FIRST.org. It estimates the likelihood a CVE will be exploited in production environments within the next 30 days, derived from real-world threat intelligence signals.
How urgent is this, really
GHSA-2xwm-4h2q-ggfx plotted by exploitation likelihood (EPSS) against impact (CVSS). The shaded corner — EPSS 50%+ and CVSS 7.0+ — is where this CVE doesn't sit, though severity or exploitability alone can still warrant action.
Where this sits among everything scored
Of 370,894 CVEs with a current EPSS score, this one falls in the < 10% band (highlighted). Real counts from FIRST.org, not a sample — log-scaled since the landscape is heavily right-skewed.
Real-World Exposure
open-webuiReal-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
Current main and v0.9.6 still allow an authenticated user to turn read-only access to another user's file into write/delete access by attaching that file ID to an attacker-controlled workspace model.
This is an incomplete-fix variant of GHSA-vjqm-6gcc-62cr. The current fix adds _verify_knowledge_file_access(), but the validator only checks has_access_to_file(file_id, "read", user). The file write/delete routes later trust has_access_to_file(file_id, "write", user), and that function grants access through any writable model whose meta.knowledge contains the file ID.
The PoV includes a negative control showing the current validator rejects an inaccessible arbitrary file ID. The residual issue is narrower: a file ID that is readable only through a KB read grant is accepted into direct model file metadata, then the same model metadata satisfies later file write/delete checks.
Technical Details
backend/open_webui/routers/models.py::_verify_knowledge_file_access() accepts model meta.knowledge file entries when the caller can read the file:
if not await has_access_to_file(file_id, 'read', user, db=db):
raise HTTPException(...)
backend/open_webui/utils/access_control/files.py::has_access_to_file() then uses attacker-writable model metadata as a source for any requested access type:
for model in await Models.get_models_by_user_id(user.id, permission=access_type, db=db):
knowledge_items = getattr(model.meta, 'knowledge', None) or []
for item in knowledge_items:
if isinstance(item, dict) and item.get('type') == 'file' and item.get('id') == file.id:
return True
For access_type="write", the attacker-owned model satisfies the model query, so the victim file becomes writable even though the attacker only had read access through the KB grant.
This crosses another user's integrity and availability boundary, not just the attacker's own account. Before model metadata is involved, the attacker can read the file through a KB grant but cannot write it. After the model metadata entry is accepted, the same file becomes writable/deletable.
The official docs distinguish attached knowledge permissions: knowledge-base collections may use explicit read grants, while individual files are owner/admin-only. This issue lets a read grant to a KB become direct write/delete authority over an individual file.
This is also consistent with the documented RBAC model: resource grants have separate read and write permissions, where write means the user can update or delete the resource. The exploit starts from a read-only KB grant and reaches file write/delete without a corresponding file owner/admin/write authorization.
The required Models workspace access is not root-equivalent in Open WebUI's documentation. The policy's root-equivalent warning applies to Tools/Functions code execution. This report does not use Tools/Functions, custom Python, admin actions, or a legacy-only path.
Impact
An authenticated non-admin user with Models workspace access and read-only access to a victim file through a knowledge-base grant can create/import/update a model that references the file, then rename, overwrite, or delete the victim user's file through write-gated file routes.
Confirmed sinks in current head:
POST /api/v1/files/{id}/renamePOST /api/v1/files/{id}/data/content/updateDELETE /api/v1/files/{id}
Suggested severity: High.
Suggested CVSS:
CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:H
Suggested CWE:
CWE-863: Incorrect Authorization
I am not claiming Critical severity because the attacker must be authenticated, must have Models workspace access, and must already have read-only access to the victim file through a KB grant. The High score is based on the post-condition: that limited read access becomes destructive cross-user file write/delete.
Appendix: AI Disclosure
Appendix: Local PoV
The PoV is local-only. It does not start a server, send network traffic, or use a real database. It loads and executes the current-head function bodies for:
has_access_to_file()_verify_knowledge_file_access()delete_file_by_id()
Run from the harness root:
uv run python attached-evidence/poc/pov_openwebui_model_file_read_to_write.py
Observed output:
{
"confirmed": true,
"control_inaccessible_file_rejected_by_validator": true,
"control_read_allowed_via_kb_read_grant": true,
"control_write_allowed_before_model_laundering": false,
"model_metadata_validator_passed_with_read_only_access": true,
"write_allowed_after_attacker_owned_model_contains_file": true,
"delete_route_result": {
"message": "File deleted successfully"
},
"deleted_file_ids": [
"victim-file"
]
}
This demonstrates expected versus actual behavior:
- Expected: a user with only read access through a KB grant cannot mutate the victim file.
- Actual: after the read-only file ID is accepted into attacker-owned model metadata, the same user satisfies the file write/delete guard and deletes the victim file.
Appendix: Remediation
Recommended defense-in-depth fix:
- In
_verify_knowledge_file_access(), require direct file ownership or admin fortype: "file"model knowledge entries. Do not accept indirect KB read access as sufficient authority to attach an individual file to a model. - In
has_access_to_file(), do not let the modelmeta.knowledgebranch grant write access to files. Model-attached knowledge should be read-only unless the caller separately owns/administers the underlying file or has an explicit write-capable file authorization path. - Add regression tests covering the KB-read control, the blocked model attach, and rename/update/delete denial for the victim file.
Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| 🐍PyPI | open-webui | ≥ 0.9.6&&< 0.10.0 | 0.10.0 |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for open-webui. 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 open-webui to 0.10.0 or later, then make sure no transitive (indirect) dependency still pins the vulnerable range — O3 confirms GHSA-2xwm-4h2q-ggfx 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 GHSA-2xwm-4h2q-ggfx 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 GHSA-2xwm-4h2q-ggfx. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.
Frequently Asked Questions
Is GHSA-2xwm-4h2q-ggfx in your dependencies?
O3 detects GHSA-2xwm-4h2q-ggfx across PyPI dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.