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Improved Interpolation Attacks on Cryptographic Primitives of Low Algebraic Degree

机译:改进了低代数度的加密基元的插值攻击

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Symmetric cryptographic primitives with low multiplicative complexity have been proposed to improve the performance of emerging applications such as secure Multi-Party Computation. However, primitives composed of round functions with low algebraic degree require a careful evaluation to assess their security against algebraic cryptanalysis, and in particular interpolation attacks. This paper proposes new low-memory interpolation attacks on symmetric key primitives of low degree. Moreover, we present generic attacks on block ciphers with a simple key schedule; our attacks require either constant memory or constant data complexity. The improved attack is applied to the block cipher MiMC which aims to minimize the number of multiplications in large finite fields. As a result, we can break MiMC-129/129 with 38 rounds with time and data complexity 2~(65.5) and 2~(60.2) respectively and with negligible memory; this attack invalidates one of the security claims of the designers. Our attack indicates that for MiMC-129/129 the full 82 rounds are necessary even with restrictions on the memory available to the attacker. For variants of MiMC with larger keys, we present new attacks with reduced complexity. Our results do not affect the security claims of the full round MiMC.
机译:已经提出了具有低乘法复杂性的对称加密基元以改善新兴应用的性能,例如安全的多方计算。然而,由具有低代数度的圆形函数组成的基元需要仔细评估,以评估其对代数密码分析的安全性,以及特定的插值攻击。本文提出了对对称关键基元的新的低内存插值攻击低位。此外,我们对块密码的通用攻击具有简单的关键时间表;我们的攻击需要恒定的内存或常量数据复杂性。改进的攻击应用于块密码MIMC,其旨在最小化大型有限场中的乘法数。结果,我们可以分别与38轮,时间和数据复杂度2〜(65.5)和2〜(60.2)分别打破MIMC-129/129,记忆忽略不计;此攻击使设计人员的安全声明之一无效。我们的攻击表明,对于MIMC-129/129,即使对攻击者可用的内存限制也是必要的完整82轮。对于具有较大键的MIMC的变体,我们具有降低复杂性的新攻击。我们的结果不影响全圆形MIMC的安全声明。

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