High-speed generation of LFSR signatures

Ming-Der Shieh, Hsin-Fu Lo, M. Sheu
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引用次数: 2

Abstract

We investigate techniques for speeding up the compaction simulation of a single-input signature register based on its equivalent multiple-input implementation. Our approach is to systematically decompose the original input sequence into a set of subsequences based on the theory of finite field. High-speed signature computations can then be achieved by inputting those subsequences at the same time and employing the lookahead technique for those subsequences to speed up compaction. Both the internal-XOR and external-XOR LFSRs are implemented to demonstrate the flexibility of our development. Compared with the existing methods that were mainly developed for software programming, our results are suitable for both software and hardware implementation and have the potential of reducing the memory requirement of off-line determination of signatures.
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高速生成LFSR签名
我们研究了基于等效多输入实现的单输入签名寄存器加速压缩模拟的技术。我们的方法是基于有限域理论,将原始输入序列系统地分解为一组子序列。然后,通过同时输入这些子序列并对这些子序列采用前瞻性技术来加速压缩,可以实现高速签名计算。实现内部xor和外部xor lfsr都是为了展示我们开发的灵活性。与现有的主要用于软件编程的方法相比,我们的结果既适用于软件实现,也适用于硬件实现,并且具有降低离线签名确定对内存需求的潜力。
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