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Hardware-Oriented Algebraic Fault Attack Framework with Multiple Fault Injection Support

机译:带有多个故障注入支持的面向硬件的代数故障攻击框架

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The evaluation of fault attacks on security-critical hardware implementations of cryptographic primitives is an important concern. In such regards, we have created a framework for automated construction of fault attacks on hardware realization of ciphers. The framework can be used to quickly evaluate any cipher implementations, including any optimisations. It takes the circuit description of the cipher and the fault model as input. The output of the framework is a set of algebraic equations, such as conjunctive normal form (CNF) clauses, which is then fed to a SAT solver. We consider both attacking an actual implementation of a cipher on an field-programmable gate array (FPGA) platform using a fault injector and the evaluation of an early design of the cipher using idealized fault models. We report the successful application of our hardware-oriented framework to a collection of ciphers, including the advanced encryption standard (AES), and the lightweight block ciphers LED and PRESENT. The corresponding results and a discussion of the impact to different fault models on our framework are shown. Moreover, we report significant improvements compared to similar frameworks, such as speedups or more advanced features. Our framework is the first algebraic fault attack (AFA) tool to evaluate the state-of-the art cipher LED-64, PRESENT and full-scale AES using only hardware-oriented structural cipher descriptions.
机译:对加密基元的安全关键硬件实现的故障攻击的评估是一个重要的问题。在这方面,我们创建了一个框架,用于在密码的硬件实现上自动构建故障攻击。该框架可用于快速评估任何密码实现,包括任何优化。它以密码的电路描述和故障模型为输入。框架的输出是一组代数方程,例如合取范式(CNF)子句,然后将其馈送到SAT解算器。我们既考虑使用故障注入器攻击在现场可编程门阵列(FPGA)平台上加密算法的实际实现,又考虑使用理想化故障模型评估加密算法的早期设计。我们报告了面向硬件的框架在一组密码中的成功应用,其中包括高级加密标准(AES)以及轻量级分组密码LED和PRESENT。显示了相应的结果以及对不同故障模型对我们框架的影响的讨论。此外,与类似的框架相比,我们报告了重大改进,例如加速或更高级的功能。我们的框架是第一个仅使用面向硬件的结构密码描述来评估最新密码LED-64,PRESENT和全尺寸AES的代数故障攻击(AFA)工具。

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