在可重构对称密码处理器上提高椭圆曲线密码算法能量效率的方法

Zhao Tuo, Tao Chen, Wei Li, Danyang Yang
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引用次数: 0

摘要

可重构超长指令字(VLIW)密码处理器在处理椭圆曲线密码算法时,需要大量的指令和较长的执行周期。通过在密码处理器中增加模块化运算加速单元,提高了密码处理器处理椭圆曲线密码算法的能量效率。在130nm制程标准单元库下合成后,实验结果表明,模块运算加速单位面积为30 Kgate,占处理器面积的6%,256位二进制域点乘法运算时间由22.8ms缩短至5.8ms,能效提高约372%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for improving energy efficiency of elliptic curve cryptography algorithm on reconfigurable symmetric cipher processor
The reconfigurable very-long instruction word (VLIW) cipher processor need a large number of instructions and a long execution period when processing the elliptic curve cryptographic algorithm. By adding a modular operation acceleration unit to the cryptographic processor, the energy efficiency of the cipher processor processing the elliptic curve cryptographic algorithm is improved. After synthesis under the 130nm process standard cell library, the experimental results show that the module operation acceleration unit area is 30 Kgate, accounting for 6% of the processor area, and the 256-bit binary domain point multiplication operation time is reduced from 22.8ms to 5.8ms, and the energy efficiency is improved by about 372%.
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