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Countermeasures Optimization in Multiple Fault-Injection Context

机译:多重故障注入环境下的对策优化

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Fault attacks consist in changing the program behavior by injecting faults at run-time, either at hardware or at software level. Their goal is to change the correct progress of the algorithm and hence, either to allow gaining some privilege access or to allow retrieving some secret information based on an analysis of the deviation of the corrupted behavior with respect to the original one. Countermeasures have been proposed to protect embedded systems by adding spatial, temporal or information redundancy at hardware or software level. First we define Countermeasures Check Point (CCP) and CCPs-based countermeasures as an important subclass of countermeasures. Then we propose a methodology to generate an optimal protection scheme for CCPs-based countermeasure. Finally we evaluate our work on a benchmark of code examples with respect to several Control Flow Integrity (CFI) oriented existing protection schemes.
机译:故障攻击在于通过在运行时在硬件或软件级别注入故障来更改程序行为。他们的目标是更改算法的正确进度,从而基于对损坏行为相对于原始行为的偏差的分析,允许获得某些特权访问或允许检索某些秘密信息。已经提出了通过在硬件或软件级别增加空间,时间或信息冗余来保护嵌入式系统的对策。首先,我们将对策检查点(CCP)和基于CCP的对策定义为对策的重要子类。然后,我们提出了一种方法来为基于CCP的对策生成最佳保护方案。最后,我们针对一些面向控制流完整性(CFI)的现有保护方案,在代码示例的基准上评估了我们的工作。

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