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Side-Channel Analysis of Multiplications in GF(2~(128)) Application to AES-GCM

机译:GF中乘法的副信道分析(2〜(128))应用于AES-GCM

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In this paper, we study the side-channel security of the field multiplication in GF(2~n). We particularly focus on GF(2~(128)) multiplication which is the one used in the authentication part of AES-GCM but the proposed attack also applies to other binary extensions. In a hardware implementation using a 128-bit multiplier, the full 128-bit secret is manipulated at once. In this context, classical DPA attacks based on the divide and conquer strategy cannot be applied. In this work, the algebraic structure of the multiplication is leveraged to recover bits of information about the secret multiplicand without having to perform any key-guess. To do so, the leakage corresponding to the writing of the multiplication output into a register is considered. It is assumed to follow a Hamming weight/distance leakage model. Under these particular, yet easily met, assumption we exhibit a nice connection between the key recovery problem and some classical coding and Learning Parities with Noise problems with certain instance parameters. In our case, the noise is very high, but the length of the secret is rather short. In this work we investigate different solving techniques corresponding to different attacker models and eventually refine the attack when considering particular implementations of the multiplication.
机译:在本文中,我们研究了GF中的字段乘法的侧通道安全性(2〜n)。我们特别关注GF(2〜(128))乘法,该乘法是AES-GCM的认证部分中使用的乘法,但建议的攻击也适用于其他二进制扩展。在使用128位乘数的硬件实现中,立即操纵完整的128位密钥。在这种情况下,无法应用基于鸿沟和征服策略的经典DPA攻击。在这项工作中,乘法的代数结构被利用以恢复关于秘密多重的比例,而无需执行任何键猜测。为此,考虑了对应于写入寄存器的乘法的写入对应的泄漏。假设遵循汉明重/距离泄漏模型。在这些特定的情况下,仍然很容易满足,假设我们在关键恢复问题和一些经典编码和学习间位之间表现出具有噪声问题的良好连接,具有某些实例参数。在我们的情况下,噪音非常高,但秘密的长度相当短。在这项工作中,我们调查对应于不同攻击者模型的不同求解技术,并在考虑乘法的特定实现时最终改进攻击。

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