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A Low Overhead DPA Countermeasure Circuit Based on Ring Oscillators

机译:基于环形振荡器的低开销DPA对策电路

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Side-channel attacks, particularly differential power analysis (DPA) attacks, are efficient ways to extract secret keys of the attacked devices by leaked physical information. To resist DPA attacks, hiding and masking methods are commonly used, but it usually resulted in high area overhead and performance degradation. In this brief, a DPA countermeasure circuit based on digital controlled ring oscillators is presented to efficiently resist the first-order DPA attack. The implementation of the critical S-box of the advanced encryption standard (AES) algorithm shows that the area overhead of a single S-box is about 19% without any extra delay in the critical path. Moreover, the countermeasure circuit can be mounted onto different S-box implementations based on composite field or look-up table (LUT). Based on our approach, a DPA-resistant AES chip can be proposed to maintain the same throughput with less than 2K extra gates.
机译:边信道攻击,特别是差分功率分析(DPA)攻击,是通过泄漏的物理信息提取受攻击设备的秘密密钥的有效方法。为了抵御DPA攻击,通常使用隐藏和掩蔽方法,但通常会导致较高的区域开销和性能下降。在此简介中,提出了一种基于数控环形振荡器的DPA对策电路,以有效抵抗一阶DPA攻击。高级加密标准(AES)算法的关键S-box的实现表明,单个S-box的区域开销约为19%,而关键路径上没有任何额外的延迟。此外,可以根据复合字段或查找表(LUT)将对策电路安装到不同的S-box实现中。基于我们的方法,可以提出一种抗DPA的AES芯片,以通过少于2K的额外门来保持相同的吞吐量。

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