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HCH: A New Tweakable Enciphering Scheme Using the Hash-Counter-Hash Approach

机译:HCH:使用哈希计数器反哈希方法的新的可调整加密方案

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The notion of tweakable block ciphers was formally introduced by Liskov–Rivest–Wagner at Crypto 2002 (the 2002 Annual International Cryptology Conference). The extension and the first construction, called CMC, of this notion to tweakable enciphering schemes which can handle variable length messages was given by Halevi–Rogaway at Crypto 2003. In this paper, we present HCH, which is a new construction of such a scheme. The construction uses two universal hash computations with a counter mode of encryption in-between. This approach was first proposed by McGrew–Viega to build a scheme called XCB and later used by Wang–Feng–Wu, to obtain a scheme called HCTR. A unique feature of HCH compared to all known tweakable enciphering schemes is that HCH uses a single key, can handle arbitrary length messages, and has a quadratic security bound. An important application of a tweakable enciphering scheme is disk encryption. HCH is well suited for this application. We also describe a variant, which can utilize precomputation and makes one less block cipher call. This compares favorably to other hash-encrypt-hash-type constructions, supports better key agility and requires less key material.
机译:Liskov–Rivest–Wagner在Crypto 2002(2002年度国际密码学会议)上正式引入了可调整分组密码的概念。 Halevi–Rogaway在Crypto 2003中给出了此概念到可处理可变长度消息的可调整编码方案的扩展和第一个构造(称为CMC)。在本文中,我们介绍了HCH,它是这种方案的新构造。 。该构造使用两个通用哈希计算以及介于两者之间的反加密模式。这种方法最初是由McGrew-Viega提出的,以建立一个称为XCB的方案,后来由Wang-Feng-Wu使用,从而获得了一个称为HCTR的方案。与所有已知的可调整加密方案相比,HCH的独特之处在于HCH使用单个密钥,可以处理任意长度的消息,并且具有二次安全边界。可调整的加密方案的重要应用是磁盘加密。六氯环己烷非常适合该应用。我们还描述了一种变体,它可以利用预计算并减少块密码调用。与其他hash-encrypt-hash类型的构造相比,它具有优势,支持更好的密钥敏捷性,并且所需的密钥材料更少。

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