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Provable security of modes of operation for symmetric-key cryptography considering initial vectors

机译:考虑初始向量的对称密钥密码操作模式的可证明安全性

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The study of the security of symmetric-key cryptography is classified into two areas, namely the security evaluation of schemes and that of the cryptographic primitives. Assuming the security of cryptographic primitives, the security of the scheme is proven. The security proof also requires limitations of adversary's ability and the IV generation. So far all symmetric-key schemes are proven by IV generations based on secret randomness or internal counters. Otherwise, it is known that all schemes are fail to achieve the strongest notions, e.g. Left-or-Right sense. In this paper, we discuss the relationship between IV generation and security of the symmetric-key cryptography. First we give the formalization of a block cipher and a stream cipher. For each of two mechanisms, we discuss the relationship between the IV and security. We put a special interest to specific modes of a block cipher. That mode requires very strict conditions to achieve the Left-or-Right sense security. In contrast, the mode can achieve the weaker security notions by the weakest IV generation, while securities of many schemes in symmetric-key cryptography suddenly fail to hide information by that IV generation.
机译:对对称密钥密码安全性的研究分为两个领域,即方案的安全性评估和密码原语的安全性评估。假设密码原语的安全性,则证明了该方案的安全性。安全证明还要求限制对手的能力和IV代。到目前为止,所有的对称密钥方案都是基于秘密随机性或内部计数器的IV代证明的。否则,已知所有方案都无法实现最强的概念,例如左右感。在本文中,我们讨论了IV生成与对称密钥加密的安全性之间的关系。首先,我们给出分组密码和流密码的形式化形式。对于这两种机制,我们都讨论了IV和安全性之间的关系。我们对分组密码的特定模式特别感兴趣。该模式需要非常严格的条件才能实现左右感的安全性。相反,该模式可以通过最弱的IV代来实现较弱的安全性概念,而对称密钥密码术中许多方案的安全性突然无法通过该IV代来隐藏信息。

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