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GHSA-8mxv-9xhp-86h4
No affected components available
1. Summary
The S3 redirect callback strips X-Amz-Security-Token when a redirect changes scheme or host, but it does not strip IBM IAM bearer authorization or customer-provided encryption keys. Two independently validated paths remain:
- a same-host HTTPS-to-HTTP redirect preserves
Authorization: Bearer ...and exposes a reusable IBM IAM token to the plaintext network path; - a cross-origin redirect preserves SSE-C and copy-source SSE-C key headers.
The High rating is driven by the reusable IBM IAM bearer token. The SSE-C cross-origin disclosure is a secondary confidentiality issue. The meaningful threat is a trusted endpoint, gateway, or accelerator that emits an unsafe redirect, followed by an adjacent/on-path observer; describing the originally configured endpoint itself as the attacker would be weak because that endpoint already receives the request secrets.
2. Affected Assets & Attack Surface
- S3 redirect policy:
backend/s3/s3.go:1345-1379 - IBM IAM signer:
backend/s3/ibm_signer.go:28-40 - SSE-C key preparation:
backend/s3/s3.go:1821-1837 - Affected operations: requests carrying IBM IAM authorization, SSE-C keys, or copy-source SSE-C keys
- Confirmed affected version:
<= v1.74.0-240-ga0c09f138
3. Technical Root Cause Analysis
s3CheckRedirect applies a one-header denylist:
if s3RedirectCrossesHost(req, via) {
req.Header.Del("X-Amz-Security-Token")
}
Go removes Authorization on some hostname changes, but preserves it for a same-host redirect and does not treat a scheme downgrade as sufficient reason to remove it. Go also has no generic knowledge that the SSE-C headers contain raw encryption keys. The rclone callback recognizes the STS token but not these additional origin-bound secrets.
4. Proof-of-Concept & Evidence
Using the actual redirect callback:
- An HTTPS endpoint redirected to HTTP on the same hostname.
- The plaintext destination received the planted IBM bearer token and SSE-C headers.
- A separate redirect to an unrelated hostname caused Go to remove
Authorization, but the destination still received both SSE-C key headers. - In both cases, rclone removed the planted STS token, proving that the S3-specific callback executed while omitting the other secret classes.
The related GHSA-gx4c-2hqx-cw2r covers the STS downgrade path and confirms that rclone treats scheme changes as a credential boundary. It does not cover the IBM bearer or SSE-C variants retained here.
5. Impact Assessment
A captured IBM bearer token can authorize reads, writes, and deletes within its IAM scope. A disclosed SSE-C key can expose corresponding ciphertext available to the recipient; copy-source keys can expose protected source objects. The exact impact is limited by token policy and the attacker's access to encrypted objects.
6. Remediation Guidance
- Reject every HTTPS-to-HTTP redirect before replay.
- Do not automatically follow secret-bearing cross-origin redirects.
- On any scheme, host, or effective-port change, remove all authorization, cookies, session tokens, SSE-C fields, copy-source SSE-C fields, and provider-specific credentials.
- Where redirects are required, allowlist exact destinations and reconstruct/re-sign a new request.
- Add redirect tests for every secret header class and for scheme, hostname, subdomain, and port changes.
The vulnerability can be exploited over a local network, such as Wi-Fi. It is difficult for an attacker to exploit this vulnerability and may require special conditions. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a high impact on the confidentiality of the information.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
Probability that this vulnerability will be exploited in the wild within the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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