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Private Circuits II: Keeping Secrets in Tamperable Circuits

机译:专用电路II:在可篡改电路中保守秘密

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摘要

Motivated by the problem of protecting cryptographic hardware, we continue the investigation of private circuits initiated in [16]. In this work, our aim is to construct circuits that should protect the secrecy of their internal state against an adversary who may modify the values of an unbounded number of wires, anywhere in the circuit. In contrast, all previous works on protecting cryptographic hardware relied on an assumption that some portion of the circuit must remain completely free from tampering. We obtain the first feasibility results for such private circuits. Our main result is an efficient transformation of a circuit C, realizing an arbitrary (reactive) functionality, into a private circuit C′ realizing the same functionality. The transformed circuit can successfully detect any serious tampering and erase all data in the memory. In terms of the information available to the adversary, even in the presence of an unbounded number of adaptive wire faults, the circuit C′ emulates a black-box access to C.
机译:由于保护密码硬件的问题,我们继续对[16]中启动的专用电路进行调查。在这项工作中,我们的目标是构建一种电路,该电路应保护其内部状态的保密性,以防对手在电路中的任何地方修改无限制数量的导线的值。相反,以前所有有关保护密码硬件的工作都是基于这样的假设,即电路的某些部分必须完全不受篡改。我们获得了此类专用电路的第一个可行性结果。我们的主要结果是将电路C有效地转换为实现相同功能的私有电路C',该电路C实现了任意(无功)功能。转换后的电路可以成功检测到任何严重的篡改,并擦除存储器中的所有数据。就对手可用的信息而言,即使存在无限数量的自适应线路故障,电路C'也会模拟对C的黑匣子访问。

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