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Fast Discrete Fourier Spectra Attacks on Stream Ciphers

机译:流密码的快速离散傅立叶光谱攻击

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摘要

In this paper, some new results are presented on the selective discrete Fourier spectra attack introduced first as the Rønjom–Helleseth attack and the modifications due to Rønjom, Gong, and Helleseth. The first part of this paper fills some gaps in the theory of analysis in terms of the discrete Fourier transform (DFT). The second part introduces the new fast selective DFT attacks, which are closely related to the fast algebraic attacks in the literature. However, in contrast to the classical view that successful algebraic cryptanalysis of LFSR-based stream cipher depends on the degree of certain annihilators, the analysis in terms of the DFT spectral properties of the sequences generated by these functions is far more refined. It is shown that the selective DFT attack is more efficient than known methods for the case when the number of observed consecutive bits of a filter generator is less than the linear complexity of the sequence. Thus, by utilizing the natural representation imposed by the underlying LFSRs, in certain cases, the analysis in terms of DFT spectra is more efficient and has more flexibility than classical and fast algebraic attacks. Consequently, the new attack imposes a new criterion for the design of cryptographic strong Boolean functions, which is defined as the spectral immunity of a sequence or a Boolean function.
机译:在本文中,有关选择性离散傅立叶频谱攻击的一些新结果被介绍,该攻击首先作为Rønjom-Helleseth攻击引入,以及由于Rønjom,Gong和Helleseth引起的修改。本文的第一部分就离散傅里叶变换(DFT)填补了分析理论中的一些空白。第二部分介绍了新的快速选择性DFT攻击,它与文献中的快速代数攻击密切相关。但是,与经典观点不同的是,基于LFSR的流密码的成功代数密码分析取决于某些an灭者的程度,与传统观点相反,这些函数生成的序列的DFT光谱特性方面的分析要精细得多。结果表明,当观察到的滤波器生成器的连续比特数小于序列的线性复杂度时,选择性DFT攻击比已知方法更有效。因此,在某些情况下,通过利用底层LFSR施加的自然表示,与经典代数和快速代数攻击相比,按DFT谱进行分析更有效且更具灵活性。因此,新的攻击为密码学强布尔函数的设计施加了新标准,该准则被定义为序列或布尔函数的频谱免疫性。

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