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VLSI algorithms, architectures, and implementation of a versatile GF(2/sup m/) processor

机译:VLSI算法,体系结构和通用GF(2 / sup m /)处理器的实现

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With the explosive growth of electronic commerce, dedicated cryptographic processors are becoming essential since general-purpose processors cannot provide the performance and functionality directly needed, This paper proposes an architecture for a versatile Galois field GF(2/sup m/) processor for cryptographic applications. This processor uses both canonical and triangular bases for field elements representation and manipulation. The variable dimension datapath of the processor is versatile enough to meet the varying requirements for different applications and environments. To provide flexibility for different cryptographic applications, an instruction set architecture is designed. Finally, a prototype VLSI implementation of the Galois field processor is presented and discussed.
机译:随着电子商务的爆炸性增长,专用密码处理器变得越来越重要,因为通用处理器无法提供直接需要的性能和功能。本文提出了一种适用于密码学应用的通用Galois现场GF(2 / sup m /)处理器的体系结构。该处理器使用规范和三角形基数来表示和操纵场元素。处理器的可变维数据路径具有足够的通用性,可以满足不同应用和环境的变化需求。为了为不同的密码应用程序提供灵活性,设计了一种指令集体系结构。最后,介绍并讨论了Galois现场处理器的原型VLSI实现。

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