Better Bounds for Block Cipher Modes of Operation via Nonce-Based Key Derivation

S. Gueron, Yehuda Lindell
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引用次数: 30

Abstract

Block cipher modes of operation provide a way to securely encrypt using a block cipher. The main factors in analyzing modes of operation are the \emph{level of security} achieved (chosen-plaintext security, authenticated encryption, nonce-misuse resistance, and so on) and \textit{performance}. When measuring the security level of a mode of operation, it does not suffice to consider asymptotics, and a concrete analysis is necessary. This is especially the case today, when encryption rates can be very high, and so birthday bounds may be approached or even reached. In this paper, we show that key-derivation at every encryption significantly improves the security bounds in many cases. We present a new key-derivation method that utilizes a \emph{truncated block cipher}, and show that this is far better than standard block-cipher based key derivation. We prove that by using our key derivation method, we obtain greatly improved bounds for many modes of operation, with a result that the lifetime of a key can be significantly extended. We demonstrate this for AES-CTR (CPA-security), AES-GCM (authenticated encryption) and AES-GCM-SIV (nonce-misuse resistance). Finally, we demonstrate that when using modern hardware with AES instructions (AES-NI), the performance penalty of deriving keys at each encryption is insignificant for most uses.
基于非基于密钥派生的块密码操作模式的更好边界
分组密码操作模式提供了一种使用分组密码进行安全加密的方法。分析操作模式的主要因素是所实现的\emph{安全级别}(选择明文安全、经过身份验证的加密、防误用等)和\textit{性能}。在度量一种运行模式的安全级别时,仅仅考虑渐近是不够的,需要进行具体的分析。今天的情况尤其如此,加密率可能非常高,因此可能会接近甚至达到生日界限。在本文中,我们证明了在许多情况下,每种加密的密钥派生都显著提高了安全边界。我们提出了一种利用\emph{截断块密码}的密钥派生方法,并证明了这种方法远优于基于块密码的标准密钥派生方法。我们证明了使用我们的密钥派生方法,我们得到了许多操作模式的极大改进的界,结果是密钥的生存期可以显著延长。我们在AES-CTR (CPA-security)、AES-GCM (authenticated - encryption)和AES-GCM- siv (non -误用抵抗)中证明了这一点。最后,我们证明,当使用带有AES指令(AES- ni)的现代硬件时,在大多数情况下,每次加密时获取密钥的性能损失是微不足道的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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