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Customising Hardware Designs for Elliptic Curve Cryptography

机译:定制椭圆曲线密码学的硬件设计

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This paper presents a method for producing hardware designs for Elliptic Curve Cryptography (ECC) systems over the finite field GF(2~m), using the optimal normal basis for the representation of numbers. A design generator has been developed which can automatically produce a customised ECC hardware design that meets user-defined requirements. This method enables designers to rapidly explore and implement a design with the best trade-offs in speed, size and level of security. To facilitate performance characterisation, we have developed formulae for estimating the number of cycles for our generic ECC architecture. The resulting hardware implementations are among the fastest reported, and can often run several orders of magnitude faster than software implementations.
机译:本文提出了一种在有限域GF(2〜m)上使用椭圆曲线密码学(ECC)系统生成硬件设计的方法,该方法使用最佳法则表示数字。已开发出一种设计生成器,可以自动生成满足用户定义要求的定制ECC硬件设计。这种方法使设计人员能够在速度,大小和安全级别之间取得最佳平衡,从而快速探索和实施设计。为便于性能表征,我们开发了公式来估算通用ECC体系结构的周期数。最终的硬件实现是报告最快的方法之一,通常比软件实现快几个数量级。

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