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Tweaks and Keys for Block Ciphers: The TWEAKEY Framework

机译:块密码的调整和密钥:TWEAKEY框架

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We propose the TWEAKEY framework with goal to unify the design of tweakable block ciphers and of block ciphers resistant to related-key attacks. Our framework is simple, extends the key-alternating construction, and allows to build a primitive with arbitrary tweak and key sizes, given the public round permutation (for instance, the AES round). Increasing the sizes renders the security analysis very difficult and thus we identify a subclass of TWEAKEY, that we name STK, which solves the size issue by the use of finite field multiplications on low hamming weight constants. Overall, this construction allows a significant increase of security of well-known authenticated encryptions mode like ΘCB3 from birthday-bound security to full security, where a regular block cipher was used as a black box to build a tweakable block cipher. Our work can also be seen as advances on the topic of secure key schedule design.
机译:我们提出了TWEAKEY框架,其目标是统一可调整的分组密码和抵抗相关密钥攻击的分组密码的设计。我们的框架很简单,扩展了键替换结构,并允许在给定公共回合排列(例如AES回合)的情况下,通过任意调整和键长来构建基元。增大大小会使安全性分析变得非常困难,因此我们确定了TWEAKEY的子类(我们将其命名为STK),该子类通过在低汉明权重常数上使用有限域乘法来解决大小问题。总体而言,这种结构可以使从生日约束安全性到完全安全性的已知认证加密模式(例如ΘCB3)的安全性显着提高,在常规安全性中,常规分组密码被用作黑盒来构建可调整的分组密码。我们的工作也可以看作是安全密钥计划设计主题的进步。

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