A performance evaluation of ARM ISA extension for elliptic curve cryptography over binary finite fields

S. Bartolini, I. Branovic, R. Giorgi, E. Martinelli
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引用次数: 16

Abstract

In this paper, we present an evaluation of possible ARM instruction set extension for elliptic curve cryptography (ECC) over binary finite fields GF(2/sup m/). The use of elliptic curve cryptography is becoming common in embedded domain, where its reduced key size at a security level equivalent to standard public-key methods (such as RSA) allows for power consumption savings and more efficient operation. ARM processor was selected because it is widely used for embedded system applications. We developed an ECC benchmark set with three widely used public-key algorithms: Diffie-Hellman for key exchange, digital signature algorithm, as well as El-Gamal method for encryption/decryption. We analyzed the major bottlenecks at function level and evaluated the performance improvement, when we introduce some simple architectural support in the ARM ISA. Results of our experiments show that the use of a word-level multiplication instruction over binary field allows for an average 33% reduction of the total number of dynamically executed instructions, while execution time improves by the same amount when projective coordinates are used.
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二元有限域上椭圆曲线密码的ARM ISA扩展的性能评价
本文给出了在二进制有限域GF(2/sup m/)上椭圆曲线密码(ECC)的ARM指令集扩展的一个可能的评价。椭圆曲线加密的使用在嵌入式领域变得越来越普遍,它在与标准公钥方法(如RSA)相当的安全级别上减小了密钥大小,从而节省了功耗并提高了操作效率。选择ARM处理器是因为ARM处理器在嵌入式系统应用中应用广泛。我们开发了一个ECC基准集,其中包括三种广泛使用的公钥算法:用于密钥交换的Diffie-Hellman算法、数字签名算法以及用于加密/解密的El-Gamal方法。当我们在ARM ISA中引入一些简单的架构支持时,我们分析了功能级别的主要瓶颈并评估了性能改进。我们的实验结果表明,在二进制字段上使用单词级乘法指令可以使动态执行指令的总数平均减少33%,而当使用投影坐标时,执行时间也会提高相同的数量。
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