REDHAT-BUG-2481892: Low severity OpenSSL OpenSSL vulnerability
Multi-RecipientInfo Bleichenbacher Oracle in CMSdecrypt() and PKCS7decrypt()
Multi-RecipientInfo Bleichenbacher Oracle in CMSdecrypt() and PKCS7decrypt() (CVE-2026-42768) Severity: Low
Issue summary: The CMSdecrypt and PKCS7decrypt functions are vulnerable to Bleichenbacher-style attack when an attacker is able to provide the CMS or S/MIME messages and observe the error code and/or decryption output.
Impact summary: The Bleichenbacher-style attack allows an attacker to use the victim's vulnerable application as a way to decrypt or sign messages with the victim's private RSA key.
The attack is possible in 2 variants.
The decryption API (CMSdecrypt(), PKCS7decrypt()) is used without providing the recipient certificate. In this case OpenSSL iterates over every KeyTransRecipientInfo (KTRI) without stopping at the first success. An attacker who authors a message with two KTRI entries — the first one wrapping a real CEK under the victim's public key, the second with an arbitrary probe ciphertext — obtains opportunity to iterate the 2nd KTRI to get a valid PKCS#1 v1.5 padding if the error code of the application is available.
That is a Bleichenbacher oracle (Bleichenbacher, CRYPTO '98): an adaptive-chosen-ciphertext side channel from which the attacker decrypts any RSA ciphertext to the victim's key or forges any PKCS#1 v1.5 signature under it.
When the decryption API (CMSdecrypt(), PKCS7decrypt()) is provided with the recipient certificate, and the recipient is not found, a random key is substituted. An attacker who authors a message and is able to compare both error code and the result of the decryption, can mount a Bleichenbacher oracle.
We are not aware of any applications that provide a remote attacker an opportunity to mount an attack described in these scenarios. We consider the existence of such application very unlikely, and for this reason this CVE has been evaluated as Low severity.
To avoid these attacks, when RSA PKCS#1 v1.5 Key Transport is in use, the invoked EVPPKEYdecrypt() will use the implicit rejection mechanism described in draft-irtf-cfrg-rsa-guidance. In previous OpenSSL releases the implicit rejection was explicitly disabled.
The implicit rejection mechanism always returns a plaintext value, the symmetric key. This result is deterministic for the ciphertext and the private key. The length of the decryption result can happen to match the length of the key of the symmetric cipher that was used for the content encryption. When a certificate is not provided, the last RecipientInfo producing a key that looks valid will be used. It may cause getting garbage content on decryption. As a proper way to deal with this a recipient certificate has to be provided to identify the particular RecipientInfo for decryption.
The FIPS modules in 4.0, 3.6, 3.5, and 3.4 are not affected by this issue, as CMS and S/MIME processing happens outside the OpenSSL FIPS module boundary.
OpenSSL 4.0, 3.6, 3.5, 3.4 are vulnerable to this issue.
OpenSSL 3.0, 1.1.1, and 1.0.2 do not implement RSA implicit rejection. These branches are affected by variants of Bleichenbacher/Marvin attack, but the proper fix would require a breaking change of RSA decryption behavior, which is unfeasible for stable branches.
OpenSSL 4.0 users should upgrade to OpenSSL 4.0.1. OpenSSL 3.6 users should upgrade to OpenSSL 3.6.2. OpenSSL 3.5 users should upgrade to OpenSSL 3.5.6. OpenSSL 3.4 users should upgrade to OpenSSL 3.4.5.
This issue was reported by Alex Gaynor (Anthropic) on 16th April 2026. The fix was developed by Dmitry Belyavskiy (Red Hat) and Alicja Kario (Red Hat) based on reporter's recommendations.
Affected Software
Remediation
Recommended actions to resolve this vulnerability, in priority order.
- Upgrade
Upgrade
OpenSSLto a version that resolves this vulnerability.Fixed in 3.4.5 - Upgrade
Upgrade
OpenSSLto a version that resolves this vulnerability.Fixed in 3.5.6 - Upgrade
Upgrade
OpenSSLto a version that resolves this vulnerability.Fixed in 3.6.2 - Upgrade
Upgrade
OpenSSLto a version that resolves this vulnerability.Fixed in 4.0.1 - Compensating control
Ensure CMS and S/MIME processing occurs inside the OpenSSL FIPS module boundary; the FIPS modules in OpenSSL 4.0, 3.6, 3.5, and 3.4 are not affected by this issue.
Event History
Frequently Asked Questions
What is the severity of REDHAT-BUG-2481892?
The severity of REDHAT-BUG-2481892 is classified as low.
What software is affected by REDHAT-BUG-2481892?
The vulnerability REDHAT-BUG-2481892 affects OpenSSL.
How do I fix REDHAT-BUG-2481892?
To fix REDHAT-BUG-2481892, update OpenSSL to the latest version provided by your vendor.
What type of attack is associated with REDHAT-BUG-2481892?
REDHAT-BUG-2481892 is associated with a Bleichenbacher-style attack.
What functions are vulnerable in REDHAT-BUG-2481892?
The CMS_decrypt and PKCS7_decrypt functions are vulnerable in REDHAT-BUG-2481892.