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Ultra-Small Designs for Inversion-Based S-Boxes

机译:基于反转的S箱的超小型设计

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With RFID-tags becoming a part of our everyday lives, the need for (ultra-)lightweight implementations of cryptographic algorithms are a major challenge for researchers and engineers alike. While purpose-built algorithms offer low hardware-footprint, their usage is often impeded by the need to comply with standards, most notably the Advanced Encryption Standard (AES). We take on this challenge by devising a new way to design inversion based S-Boxes, such as the Rijndael S-Box. The design is based on the observation that inversion in Galois-fields can be simulated using Linear Feedback Shift Registers (LFSRs), a fact that has been neglected until recently. Our contribution is threefold: First, we develop a general framework to describe inversion in arbitrary extension fields as linear-feedback structures. Second, we give alternative constructions for inversion circuits based on linear-feedback structures. Third we leverage our framework to find linear-feedback structures of minimal size for inversion in the Rijndael-field used in AES S-Boxes. Using our framework we are able to fully explore the design space and give the first description of an (unprotected) AES S-Box with an area requirement of less than 180 gate equivalents.
机译:随着RFID标签成为我们日常生活的一部分,加密算法的需求(Ultra-)轻量级实现是研究人员和工程师的主要挑战。虽然专用算法提供低硬件足迹,但它们的用法通常需要遵守标准,最重要的是先进的加密标准(AES)。我们通过设计新的方式来设计基于反转的S箱,例如Rijndael S-Box来承担这一挑战。该设计基于观察,可以使用线性反馈移位寄存器(LFSRS)模拟Galois场中的反转,这是直到最近忽略的事实。我们的贡献是三倍:首先,我们开发一般框架,以描述任意扩展字段中的反转作为线性反馈结构。其次,我们为基于线性反馈结构提供反转电路的替代结构。第三,我们利用我们的框架找到了在AES S箱中使用的Rijndael-younts中的最小尺寸的线性反馈结构。使用我们的框架,我们能够完全探索设计空间,并提供一个(未受保护的)AES S-Box的第一个描述,区域要求小于180门等价物。

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