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Fault Template Attacks on Block Ciphers Exploiting Fault Propagation

机译:故障模板对块密码的攻击利用了故障​​传播

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Fault attacks (FA) are one of the potent practical threats to modern cryptographic implementations. Over the years the FA techniques have evolved, gradually moving towards the exploitation of device-centric properties of the faults. In this paper, we exploit the fact that activation and propagation of a fault through a given combinational circuit (i.e., observability of a fault) is data-dependent. Next, we show that this property of combinational circuits leads to powerful Fault Template Attacks (FTA), even for implementations having dedicated protections against both power and fault-based vulnerabilities. The attacks found in this work are applicable even if the fault injection is made at the middle rounds of a block cipher, which are out of reach for most of the other existing fault analysis strategies. Quite evidently, they also work for a known-plaintext scenario. Moreover, the middle round attacks are entirely blind in the sense that no access to the ciphertexts (correct/faulty) or plaintexts are required. The adversary is only assumed to have the power of repeating an unknown plaintext several times. Practical validation over a hardware implementation of SCA-FA protected PRESENT, and simulated evaluation on a public software implementation of protected AES prove the efficacy of the proposed attacks.
机译:故障攻击(FA)是对现代密码实施的潜在实际威胁之一。多年以来,FA技术不断发展,逐渐朝着利用以设备为中心的故障特性发展。在本文中,我们利用了这样一个事实,即通过给定的组合电路来激活和传播故障(即故障的可观察性)取决于数据。接下来,我们证明了即使对于具有针对电源和基于故障的漏洞的专门保护的实现,组合电路的这种特性也会导致强大的故障模板攻击(FTA)。即使在块密码的中间轮进行故障注入,该工作中发现的攻击也适用,对于大多数其他现有的故障分析策略而言,这是无法达到的。很显然,它们也适用于已知明文场景。此外,从不需要访问密文(正确/错误)或明文的意义上讲,中间回合攻击完全是盲目的。仅假定对手具有多次重复未知明文的能力。通过SCA-FA保护的PRESENT的硬件实现进行的实际验证,以及对受保护的AES的公共软件实现的模拟评估,证明了所提出攻击的有效性。

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