Since the development of semiconductor technologies, exascale computing and its associated applications have required increasing degrees of efficiency. Semiconductor-transistor-based circuits (STbCs) have struggled in increasing the GHz frequency. Emerging as an alternative to STbC, the superconducting electrons (SCE) technology promises higher-speed clock frequencies at ultra-low power consumption. The rapid single flux quantum (RSFQ) circuits have a theoretical potential for three orders of magnitude reduction in power while operating at clock frequencies higher than 100 GHz. Although the security in semiconductor technology has been extensively researched and developed, the security design in the superconducting field requires field demands attention. In this paper, C-SAR is presented that aims to protect the superconducting circuit electronics from Boolean satisfiability (SAT) based attacks. The SAT attack is an attack that can break all the existing combinational logic locking techniques. C-SAR can immunize against SAT attacks by increasing the key search space and prolonging the clock cycles of attack inputs. Even in the worst case of C-SAR, in face of S-SAT a specially designed SAT attack, C-SAR can also soar the attack cost exponentially with key bits first, then linearly with the length of camouflaged DFF array. We have shown in this work that the cost of C-SAR is manageable as it only linearly increases as a function of key bits.
翻译:自开发半导体技术以来,超导计算及其相关应用要求提高效率水平。半导体-中继器电路(STbC)在增加GHz频率方面挣扎。作为STbC的替代品,超导电子技术(SCE)的出现意味着超导电子(SCE)在超低电耗时超低时钟频率下会出现更高速度的频率。快速单通量量量量(RSFQ)电路在理论上有可能使在超过100千兆赫的时钟频率上运行时,动力减少3级。虽然对半导体技术的安全进行了广泛的研究和开发,但超导场的安全设计需要实地关注。在本论文中,C-SAR的目的是保护超导电路电子,使其不受基于超低电能的电源消耗。快速通量量量量量量子电(RSFQ)电路是能够打破所有现有的组合逻辑锁定技术的攻击。C-SAR能够通过增加关键搜索空间和延长袭击的时钟周期来为SAT攻击进行免疫。即使在最糟糕的C-SAR轨道运行中,SAR的C-C-SAR轨道运行中也以特别设计了SAR的C-SAR的C-C-C-C-SAR的C-C-SAR