具有优化量子成本和延迟的可逆密码硬件

A. Banerjee
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引用次数: 20

摘要

为了防御功率分析攻击,可逆逻辑是一个很好的候选,因为它理想地不散发任何热量,今天可逆逻辑是一个新兴的研究领域。在文献中提出了不同的可逆硬件加密设计,但它们都是使用复杂的门库实现的,并且提出了进一步的定理来定义实现成本的下限,即量子成本。我们提出了一种新的加密处理器的可逆ALU设计,并在标准门库中实现,本文报道的量子成本优于文献报道的下界。此外,我们还计算了拟议设计的延迟。我们已经验证了我们提出的设计在门数方面是最小的,这是通过在RevKit中模拟电路成本。这是首次将优化量子成本和延迟的优化算法应用于可逆ALU设计的成本度量。
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Reversible cryptographic hardware with optimized quantum cost and delay
In order to defend the power analysis attack reversible logic is a good candidate as it ideally does not dissipate any heat and today reversible logic is an emerging research area. In literature different designs for reversible hardware cryptography have been proposed but they have been implemented using complex gate libraries and further theorems have been proposed defining lower limit of implementation cost which is quantum cost. We have proposed novel designs for reversible ALU of a cryptoprocessor which have been implemented in standard gate library and the quantum cost reported here are better than the lower bounds reported in literature. Further we have calculated delay of the proposed designs. We have verified that our proposed designs are minimal with respect to gate count which is circuit cost by simulating it in RevKit. This is for the first time that the optimization algorithms to optimize quantum cost and delay have been applied to improvise on the cost metric in reversible ALU design.
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