Описание
ELSA-2026-500005: openssl security update (MODERATE)
[3.5.5-2.0.1]
- Replace upstream references [Orabug: 34340177]
- Update FIPS provider name [Orabug: 35824276]
[1:3.5.5-2]
- Fix CVE-2026-31790 Resolves: RHEL-161574
[1:3.5.5-1]
- Rebase to OpenSSL 3.5.5 Resolves: RHEL-122599 Resolves: RHEL-141987 Resolves: RHEL-142009 Resolves: RHEL-142022 Resolves: RHEL-142026 Resolves: RHEL-142030 Resolves: RHEL-142034 Resolves: RHEL-142038 Resolves: RHEL-142042 Resolves: RHEL-142046 Resolves: RHEL-142050 Resolves: RHEL-142054
Обновленные пакеты
Oracle Linux 10
Oracle Linux aarch64
openssl
3.5.5-2.0.1.ksplice1.el10_2
openssl-devel
3.5.5-2.0.1.ksplice1.el10_2
openssl-libs
3.5.5-2.0.1.ksplice1.el10_2
openssl-perl
3.5.5-2.0.1.ksplice1.el10_2
Oracle Linux x86_64
openssl
3.5.5-2.0.1.ksplice1.el10_2
openssl-devel
3.5.5-2.0.1.ksplice1.el10_2
openssl-libs
3.5.5-2.0.1.ksplice1.el10_2
openssl-perl
3.5.5-2.0.1.ksplice1.el10_2
Связанные CVE
Связанные уязвимости
Issue summary: Applications using RSASVE key encapsulation to establish a secret encryption key can send contents of an uninitialized memory buffer to a malicious peer. Impact summary: The uninitialized buffer might contain sensitive data from the previous execution of the application process which leads to sensitive data leakage to an attacker. RSA_public_encrypt() returns the number of bytes written on success and -1 on error. The affected code tests only whether the return value is non-zero. As a result, if RSA encryption fails, encapsulation can still return success to the caller, set the output lengths, and leave the caller to use the contents of the ciphertext buffer as if a valid KEM ciphertext had been produced. If applications use EVP_PKEY_encapsulate() with RSA/RSASVE on an attacker-supplied invalid RSA public key without first validating that key, then this may cause stale or uninitialized contents of the caller-provided ciphertext buffer to be disclosed to the attacker i...
Issue summary: Applications using RSASVE key encapsulation to establish a secret encryption key can send contents of an uninitialized memory buffer to a malicious peer. Impact summary: The uninitialized buffer might contain sensitive data from the previous execution of the application process which leads to sensitive data leakage to an attacker. RSA_public_encrypt() returns the number of bytes written on success and -1 on error. The affected code tests only whether the return value is non-zero. As a result, if RSA encryption fails, encapsulation can still return success to the caller, set the output lengths, and leave the caller to use the contents of the ciphertext buffer as if a valid KEM ciphertext had been produced. If applications use EVP_PKEY_encapsulate() with RSA/RSASVE on an attacker-supplied invalid RSA public key without first validating that key, then this may cause stale or uninitialized contents of the caller-provided ciphertext buffer to be disclosed to the attacker i...
Issue summary: Applications using RSASVE key encapsulation to establish a secret encryption key can send contents of an uninitialized memory buffer to a malicious peer. Impact summary: The uninitialized buffer might contain sensitive data from the previous execution of the application process which leads to sensitive data leakage to an attacker. RSA_public_encrypt() returns the number of bytes written on success and -1 on error. The affected code tests only whether the return value is non-zero. As a result, if RSA encryption fails, encapsulation can still return success to the caller, set the output lengths, and leave the caller to use the contents of the ciphertext buffer as if a valid KEM ciphertext had been produced. If applications use EVP_PKEY_encapsulate() with RSA/RSASVE on an attacker-supplied invalid RSA public key without first validating that key, then this may cause stale or uninitialized contents of the caller-provided ciphertext buffer to be disclosed to the attacker i
Incorrect Failure Handling in RSA KEM RSASVE Encapsulation
Issue summary: Applications using RSASVE key encapsulation to establis ...