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Analysis of the statistical cipher feedback mode of block ciphers

机译:分组密码统计密码反馈方式的分析

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In this paper, we examine a recently proposed mode of operation for block ciphers which we refer to as statistical cipher feedback (SCFB) mode. SCFB mode configures the block cipher as a keystream generator for use in a stream cipher such that it has the property of statistical self -synchronization, thereby allowing the stream cipher to recover from bit slips in the communication channel. Statistical self-synchronization involves feeding back ciphertext to the input of the block cipher similar to the conventional cipher feedback (CFB) mode, except that the feedback only occurs when a special synchronization pattern is recognized in the ciphertext. In the paper, we examine the efficiency, resynchronization, and error propagation characteristics of SCFB and compare these to conventional modes such as CFB and output feedback (OFB). In particular, we study these characteristics of SCFB as a function of the synchronization pattern size. As well, we examine implementation issues of SCFB, focusing on the buffer requirements and resulting delay for a practical realization of the cipher. We conclude that SCFB mode can be used to provide practical, efficient, self-synchronizing implementations for stream ciphers. In particular, SCFB mode is best used in circumstances where slips are a concern and where implementation efficiency is a high priority in comparison to encryption latency.
机译:在本文中,我们研究了最近提出的分组密码操作模式,我们将其称为统计密码反馈(SCFB)模式。 SCFB模式将块密码配置为用于流密码的密钥流生成器,以使其具有统计自同步的特性,从而允许流密码从通信信道的位滑动中恢复。统计自同步涉及类似于常规密码反馈(CFB)模式将密文反馈到分组密码的输入,只是反馈仅在密文中识别出特殊的同步模式时发生。在本文中,我们检查了SCFB的效率,重新同步和错误传播特性,并将它们与CFB和输出反馈(OFB)等常规模式进行了比较。特别是,我们研究了SCFB的这些特性,它们是同步模式大小的函数。同样,我们研究SCFB的实现问题,重点是缓冲区的要求以及由此带来的密码实际实现的延迟。我们得出结论,SCFB模式可用于为流密码提供实用,高效,自同步的实现。特别是,SCFB模式最适用于需要考虑滑移且与加密延迟相比实现效率为高优先级的情况。

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