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A Performance Comparison of Elliptic Curve Scalar Multiplication Algorithms on Smartphones

机译:椭圆曲线标量乘法算法对智能手机的性能比较

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This work presents an evaluation of different software implementations of algorithms to compute the most demanding operation in cryptographic schemes based on Elliptic Curve Cryptography (ECC), the scalar multiplication. Five different methods were studied, including traditional and more sophisticated methods for elliptic curve cryptography defined over prime and binary fields. For evaluation, the key generation algorithm in ECC consisting on a single scalar multiplication was implemented on a P500h LG smarthphone, which includes an ARM processor running at 600MHz. Both execution time and memory usage was evaluated. It was found that in general, scalar multiplication runs 8 times faster for ECC defined over prime fields, being the NAF the best performer method. For ECC over binary fields, the best performer method was wNAF. The results presented in this work could help a designer to select the most appropriate method when implementing ECC-based cryptographic schemes such as encryption or digital signatures on mobile devices like smartphones, meeting implementation requirements in terms of execution time and memory usage.
机译:这项工作提出了对算法的不同软件实现的评估,以基于椭圆曲线加密(ECC),标量乘法计算加密方案中最苛刻的操作。研究了五种不同的方法,包括在素数和二进制字段上定义的椭圆曲线密码的传统和更复杂的方法。为了评估,在P500H LG Smarthphone上实现了在单个标量乘法上组成的ECC中的密钥生成算法,其包括以600MHz运行的臂处理器。评估执行时间和内存使用情况。发现通常,标量乘法运行8倍,因为在Prime字段中定义的ECC速度快8倍,是NAF是最好的执行者方法。对于二进制字段的ECC,最好的执行者方法是WNAF。在本工作中提供的结果可以帮助设计人员在实现基于ECC的加密方案(如智能手机等移动设备上的加密或数字签名)时选择最合适的方法,以执行时间和内存使用率满足实现要求。

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