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An Efficient Multimode Multiplier Supporting AES and Fundamental Operations of Public-Key Cryptosystems

机译:支持AES和公钥密码系统基本操作的高效多模乘法器

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This paper presents a highly efficient multimode multiplier supporting prime field, namely, polynomial field, and matrix-vector multiplications based on an asymmetric word-based Montgomery multiplication (MM) algorithm. The proposed multimode 128 × 32 b multiplier provides throughput rates of 441 and 511 Mb/s for 256-b operands over GF(P) and GF(2n) at a clock rate of 100 MHz, respectively. With 21 930 additional gates for Advanced Encryption Standard (AES), the multiplier is extended to provide 1.28-, 1.06-, and 0.91-Gb/s throughput rates for 128-, 192-, and 256-b keys, respectively. The comparison result shows that the proposed integration architecture outperforms others in terms of performance and efficiency for both AES and MM that is essential in most public-key cryptosystems.
机译:本文提出了一种高效的多模乘法器,它支持基于非对称单词的蒙哥马利乘法(MM)算法的质数域(即多项式域)和矩阵矢量乘法。拟议的多模128×32 b乘法器在GF(P)和GF(2n)上分别以100 MHz的时钟速率为256-b操作数提供了441和511 Mb / s的吞吐速率。借助21 930个用于高级加密标准(AES)的附加门,该乘数得以扩展,分别为128、192和256b密钥提供1.28、1.06和0.91 Gb / s的吞吐速率。比较结果表明,在大多数公钥密码系统中必不可少的AES和MM方面,所提出的集成体系结构在性能和效率方面都优于其他集成体系结构。

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