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PMTP: A MAX-SAT-Based Approach to Detect Hardware Trojan Using Propagation of Maximum Transition Probability

机译:PMTP:使用最大转换概率的传播检测硬件木马的最大基于SAT的方法

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Hardware Trojan attacks have emerged as a major security issue for hardware at different level of abstractions, which relate to malicious tampering of a hardware during design or fabrication process. In this paper, a new low overhead and high speed design for trust methodology for increasing both full activation and side channel sensitivity of Trojan is proposed. The main idea is that the increase in transition probability of individual nets does not necessarily increase the transition probability of the succeeding nets of the circuit. Accordingly, the rules and conflicts of the propagation of maximum transition probability for individual gates have been presented to ensure that a full transition path is constructed between each low transition probability net and primary inputs of the circuit. The results show that the proposed methodology achieves superior efficiency in Trojan full activation by more than 4x through logic testing approach besides higher sensitivity averagely around 20x for power-based side channel analysis compared to existing methods.
机译:硬件特洛伊木马攻击已成为不同水平的硬件的主要安全问题,这与设计或制造过程中硬件的恶意篡改有关。本文提出了一种新的低开销和高速设计,用于增加特洛伊木马的全激活和侧通道敏感性。主要思想是,各个网的转变概率的增加不一定增加电路后续网的过渡概率。因此,已经提出了用于各个门的最大转变概率的传播的规则和冲突,以确保在每个低转换概率网和电路的主输入之间构建完整的转换路径。结果表明,该方法通过逻辑测试方法在4倍的情况下实现了超过4倍的特洛伊木马完全激活的效率,而与现有方法相比,对于功率为基础的侧通道分析,较高的灵敏度。

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