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Construction of RSBFs with improved cryptographic properties to resist differential fault attack on grain family of stream ciphers

机译:构造具有改进密码特性的RSBF,以抵抗对流密码的晶粒家族的差分故障攻击

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In recent literature, the differential fault analysis (DFA) on Grain family of stream ciphers has been shown to exploit the low algebraic degree of the derivative of the nonlinear combining function h of the stream cipher, h(x) ⊕ h(x ⊕ α). The low algebraic degree allows the DFA adversary to create a linearly independent system of equations generated from the faulty and fault-free keystreams and use these equations to extract the initial state of the NFSR and LFSR stages in the stream cipher. In this paper, we propose a construction scheme for rotation symmetric Boolean functions (RSBFs) h(x) along with an orbit-tuple flip based iterative hill-climbing based construction algorithm for balanced RSBFs with high nonlinearity, low absolute indicator value of global avalanche characteristics (GAC), and high algebraic degree of h(x) ⊕ h(x ⊕ α). The construction algorithm is scalable for higher input variables like n = 9,10,11 as shown in the paper. We find some interesting autocorrelation spectra and Walsh spectra properties for the class of RSBFs and then use them in the construction of RSBFs with improved cryptographic properties. We present the cryptographic properties of the RSBFs constructed for high input variables which can be used to make DFA attack harder using the existing techniques.
机译:在最近的文献中,流密码的谷物族的微分故障分析(DFA)已被证明利用了流密码的非线性组合函数h的导数的低代数度h(x)derivative h(x⊕α )。低代数程度使DFA对手可以创建一个由故障和无故障密钥流生成的线性独立方程组,并使用这些方程来提取流密码中NFSR和LFSR阶段的初始状态。在本文中,我们提出了一种旋转对称布尔函数(RSBFs)h(x)的构造方案,以及基于轨道元组翻转的基于迭代爬山的高非线性,低雪崩绝对指示值的平衡RSBFs构造算法。特性(GAC)和h(x)⊕h(x⊕α)的高代数度。该构造算法可扩展用于较高的输入变量,例如n = 9,10,11,如本文所示。我们为RSBF类找到了一些有趣的自相关谱和Walsh谱属性,然后将它们用于构造具有改进密码学特性的RSBF。我们介绍了针对高输入变量构建的RSBF的密码属性,这些密码属性可使用现有技术来使DFA攻击更加困难。

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