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Differential Power Analysis Attacks to Precharged Buses: A General Analysis for Symmetric-Key Cryptographic Algorithms

机译:预充电母线的差分功率分析攻击:对称密钥密码算法的一般分析

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摘要

In this paper, a general model of multibit Differential Power Analysis (DPA) attacks to precharged buses is discussed, with emphasis on symmetric-key cryptographic algorithms. Analysis provides a deeper insight into the dependence of the DPA effectiveness (i.e., the vulnerability of cryptographic chips) on the parameters that define the attack, the algorithm, and the processor architecture in which the latter is implemented. To this aim, the main parameters that are of interest in practical DPA attacks are analytically derived under appropriate approximations, and a novel figure of merit to measure the DPA effectiveness of multibit attacks is proposed. This figure of merit allows for identifying conditions that maximize the effectiveness of DPA attacks, i.e., conditions under which a cryptographic chip should be tested to assess its robustness. Several interesting properties of DPA attacks are derived, and suggestions to design algorithms and circuits with higher robustness against DPA are given. The proposed model is validated in the case of DES and AES algorithms with both simulations on an MIPS32 architecture and measurements on an FPGA-based implementation of AES. The model accuracy is shown to be adequate, as the resulting error is always lower than 10 percent and typically of a few percentage points.
机译:在本文中,讨论了对预充电总线的多位差分功率分析(DPA)攻击的通用模型,重点是对称密钥密码算法。通过分析可以更深入地了解DPA有效性(即加密芯片的脆弱性)对定义攻击的参数,算法和实现后者的处理器体系结构的依赖性。为此,在适当的近似值下分析得出了实际DPA攻击中感兴趣的主要参数,并提出了一种新的品质因数来衡量多位攻击的DPA有效性。该品质因数允许确定使DPA攻击的有效性最大化的条件,即应测试密码芯片以评估其鲁棒性的条件。推导了DPA攻击的几个有趣的特性,并提出了针对DPA的更高鲁棒性的算法和电路设计建议。在DES和AES算法的情况下,通过在MIPS32架构上的仿真和在基于FPGA的AES实现上的测量,均可以验证所提出的模型。由于最终误差始终低于10%(通常为几个百分点),因此模型精度已被证明是足够的。

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