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Exploiting Spin-Orbit Torque Devices As Reconfigurable Logic for Circuit Obfuscation

机译:利用自旋轨道扭矩设备作为电路混淆的可重新配置逻辑

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Circuit obfuscation is a frequently used approach to conceal logic functionalities in order to prevent reverse engineering attacks on fabricated chips. Efficient obfuscation implementations are expected with lower design complexity and overhead but higher attack difficulties. In this paper, an emerging obfuscation approach is proposed by leveraging spin-orbit torque (SOT) devices-based look-up-tables as reconfigurable logic to replace the carefully selected gates. It is essentially impossible to identify the obfuscated gate with SOTs inside according to the physical geometry characteristics because the configured functionalities are represented by magnetization states. Such an obfuscation approach makes the circuit security further improved with high exponential attack complexities. Experiments on MCNC and ISCAS 85/89 benchmark suits show that the proposed approach could reduce the area overheads due to obfuscation by 10% averagely.
机译:电路混淆是隐藏逻辑功能的一种常用方法,以防止对制造的芯片进行反向工程攻击。期望有效的混淆实现具有较低的设计复杂性和开销,但具有较高的攻击难度。在本文中,通过利用基于自旋轨道转矩(SOT)设备的查找表作为可重新配置的逻辑来替代精心选择的门,提出了一种新兴的混淆方法。根本不可能根据物理几何特征来识别内部具有SOT的模糊门,因为配置的功能由磁化状态表示。这种混淆方法使电路安全性以高指数攻击复杂性进一步提高。在MCNC和ISCAS 85/89基准套装上进行的实验表明,该方法可将由于混淆而导致的区域开销平均减少10%。

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