首页> 外文会议>4th International Workshop on Cryptographic Hardware and Embedded Systems ― CHES 2002, Aug 13-15, 2002, Redwood Shores, CA, USA >Secure Elliptic Curve Implementations: An Analysis of Resistance to Power-Attacks in a DSP Processor
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Secure Elliptic Curve Implementations: An Analysis of Resistance to Power-Attacks in a DSP Processor

机译:安全的椭圆曲线实现:DSP处理器中抗电源攻击的分析

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With the popularity of wireless communication devices a growing new important dimension of embedded systems design is that of security. This paper presents exploration of power attack resistance, using a statistical approach for identifying regions of the power trace which pose a possible security threat. Unlike previous power analysis research, a new metric supporting small timing shifts and complex processor architectures is presented. This research helps to identify how to create secure implementations of software. Elliptic curve point multiplications using the Weierstrass curve and Jacobi form over 192-bit prime fields were implemented and analyzed. Over 60 real measured power traces of elliptic curve point multiplications running at 100MHz on a DSP VLIW processor core were analyzed. Modification of power traces through software design was performed to maximize resistance to power attacks in addition to improving energy dissipation and performance by 44% with a 31% increase in code size. This research is important for industry since efficient yet secure cryptography is crucial for wireless communication embedded system devices and future IP enabled smart cards.
机译:随着无线通信设备的普及,嵌入式系统设计越来越重要的新方面是安全性。本文介绍了一种使用统计方法来识别电源走线可能构成安全威胁的区域的方法,以探索对电源攻击的抵抗能力。与以前的功耗分析研究不同,本文提出了一种支持小定时偏移和复杂处理器体系结构的新指标。这项研究有助于确定如何创建软件的安全实现。在192位素数场上使用Weierstrass曲线和Jacobi形式进行椭圆曲线点乘法,并进行了分析。分析了在DSP VLIW处理器内核上以100MHz运行的椭圆曲线点乘法的60多个实测功率曲线。通过软件设计对电源走线进行了修改,以最大程度地抵抗电源攻击,同时将能耗和性能提高了44%(代码大小增加了31%)。这项研究对行业至关重要,因为高效而安全的加密技术对于无线通信嵌入式系统设备和未来启用IP的智能卡至关重要。

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