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High-Level Side-Channel Attack Modeling and Simulation for Security-Critical Systems on Chips

机译:芯片安全关键系统的高级边通道攻击建模和仿真

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摘要

The design flow of a digital cryptographic device must take into account the evaluation of its security against attacks based on side channels observation. The adoption of high level countermeasures, as well as the verification of the feasibility of new attacks, presently require the execution of timeconsuming physical measurements on the prototype product or the simulation at a low abstraction level. Starting from these assumptions, we developed an exploration approach centered on high level simulation, in order to evaluate the actual implementation of a cryptographic algorithm, being it software or hardware based. The simulation is performed within a unified tool based on SystemC, that can model a software implementation running on a microprocessor-based architecture or a dedicated hardware implementation as well as mixed software-hardware implementations with cycle-accurate resolution. Here we describe the tool and provide a large set of design explorations and characterizations based on actual implementations of the AES cryptographic algorithm, demonstrating how the execution of a large set of experiments allowed by the fast simulation engine can lead to important improvements in the knowledge and the identification of the weaknesses in cryptographic algorithm implementations.
机译:数字密码设备的设计流程必须考虑基于旁通道观察的针对攻击的安全性评估。采用高级对策以及验证新攻击的可行性,目前需要在原型产品或低抽象级别的仿真上执行耗时的物理测量。从这些假设出发,我们开发了一种以高级仿真为中心的探索方法,以便评估基于软件或硬件的密码算法的实际实现。仿真是在基于SystemC的统一工具内执行的,该工具可以对在基于微处理器的体系结构上运行的软件实现或专用硬件实现以及具有精确周期的分辨率的混合软件-硬件实现进行建模。在这里,我们描述了该工具,并基于AES密码算法的实际实现提供了大量设计探索和特征,展示了快速仿真引擎所允许的大量实验的执行如何导致知识和知识的重大改进。识别密码算法实现中的弱点。

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