An improved unified scalable radix-2 Montgomery multiplier

D. Harris, R. Krishnamurthy, M. Anders, S. Mathew, S. Hsu
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引用次数: 107

Abstract

This paper describes an improved version of the Tenca-Koc unified scalable radix-2 Montgomery multiplier with half the latency for small and moderate precision operands and half the queue memory requirement. Like the Tenca-Koc multiplier, this design is reconfigurable to accept any input precision in either GF(p) or GF(2/sup n/) up to the size of the on-chip memory. An FPGA implementation can perform 1024-bit modular exponentiation in 16 ms using 5598 4-input lookup tables, making it the fastest unified scalable design yet reported.
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改进的统一可伸缩基数-2蒙哥马利乘法器
本文描述了Tenca-Koc统一可伸缩的基数-2蒙哥马利乘法器的改进版本,它将小精度和中等精度操作数的延迟降低了一半,并将队列内存需求降低了一半。与Tenca-Koc乘法器一样,该设计可重新配置,以接受GF(p)或GF(2/sup n/)的任何输入精度,直至片上存储器的大小。FPGA实现可以使用5598个4输入查找表在16毫秒内执行1024位模块化幂运算,使其成为迄今为止报道的最快的统一可扩展设计。
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