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CVE-2023-4807 (High) detected in cryptography-2.9.1-cp35-abi3-manylinux2010_x86_64.whl #54

Open mend-bolt-for-github[bot] opened 6 months ago

mend-bolt-for-github[bot] commented 6 months ago

CVE-2023-4807 - High Severity Vulnerability

Vulnerable Library - cryptography-2.9.1-cp35-abi3-manylinux2010_x86_64.whl

cryptography is a package which provides cryptographic recipes and primitives to Python developers.

Library home page: https://files.pythonhosted.org/packages/6d/f1/c69d53593eb92a5e5382fa2101cd9ae861936c6a428092605b4257336171/cryptography-2.9.1-cp35-abi3-manylinux2010_x86_64.whl

Path to dependency file: /server/requirements.txt

Path to vulnerable library: /server/requirements.txt

Dependency Hierarchy: - pyOpenSSL-19.1.0-py2.py3-none-any.whl (Root Library) - :x: **cryptography-2.9.1-cp35-abi3-manylinux2010_x86_64.whl** (Vulnerable Library)

Found in base branch: dev

Vulnerability Details

Issue summary: The POLY1305 MAC (message authentication code) implementation contains a bug that might corrupt the internal state of applications on the Windows 64 platform when running on newer X86_64 processors supporting the AVX512-IFMA instructions. Impact summary: If in an application that uses the OpenSSL library an attacker can influence whether the POLY1305 MAC algorithm is used, the application state might be corrupted with various application dependent consequences. The POLY1305 MAC (message authentication code) implementation in OpenSSL does not save the contents of non-volatile XMM registers on Windows 64 platform when calculating the MAC of data larger than 64 bytes. Before returning to the caller all the XMM registers are set to zero rather than restoring their previous content. The vulnerable code is used only on newer x86_64 processors supporting the AVX512-IFMA instructions. The consequences of this kind of internal application state corruption can be various - from no consequences, if the calling application does not depend on the contents of non-volatile XMM registers at all, to the worst consequences, where the attacker could get complete control of the application process. However given the contents of the registers are just zeroized so the attacker cannot put arbitrary values inside, the most likely consequence, if any, would be an incorrect result of some application dependent calculations or a crash leading to a denial of service. The POLY1305 MAC algorithm is most frequently used as part of the CHACHA20-POLY1305 AEAD (authenticated encryption with associated data) algorithm. The most common usage of this AEAD cipher is with TLS protocol versions 1.2 and 1.3 and a malicious client can influence whether this AEAD cipher is used by the server. This implies that server applications using OpenSSL can be potentially impacted. However we are currently not aware of any concrete application that would be affected by this issue therefore we consider this a Low severity security issue. As a workaround the AVX512-IFMA instructions support can be disabled at runtime by setting the environment variable OPENSSL_ia32cap: OPENSSL_ia32cap=:~0x200000 The FIPS provider is not affected by this issue.

Publish Date: 2023-09-08

URL: CVE-2023-4807

CVSS 3 Score Details (7.8)

Base Score Metrics: - Exploitability Metrics: - Attack Vector: Local - Attack Complexity: Low - Privileges Required: Low - User Interaction: None - Scope: Unchanged - Impact Metrics: - Confidentiality Impact: High - Integrity Impact: High - Availability Impact: High

For more information on CVSS3 Scores, click here.

Suggested Fix

Type: Upgrade version

Origin: https://www.openssl.org/news/vulnerabilities.html

Release Date: 2023-09-08

Fix Resolution: openssl-3.0.11,openssl-3.1.3,OpenSSL_1_1_1w, cryptography - 41.0.4


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