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Linearization Framework for Collision Attacks: Application to CubeHash and MD6

机译:碰撞攻击的线性化框架:对Cubehash和MD6的应用

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In this paper, an improved differential cryptanalysis framework for finding collisions in hash functions is provided. Its principle is based on linearization of compression functions in order to find low weight differential characteristics as initiated by Chabaud and Joux. This is formalized and refined however in several ways: for the problem of finding a conforming message pair whose differential trail follows a linear trail, a condition function is introduced so that finding a collision is equivalent to finding a preimage of the zero vector under the condition function. Then, the dependency table concept shows how much influence every input bit of the condition function has on each output bit, Careful analysis of the dependency table reveals degrees of freedom that can be exploited in accelerated preimage reconstruction under the condition function. These concepts are applied to an in-depth collision analysis of reduced-round versions of the two SHA-3 candidates CubeHash and MD6, and are demonstrated to give by far the best currently known collision attacks on these SHA-3 candidates.
机译:在本文中,提供了一种用于发现在散列函数的碰撞的改进的差分密码分析的框架。它的原理是为了找到由CHABAUD和Joux的启动的低重量差的特点基础上,压缩功能的线性化。这是形式化和精制然而在几个方面:用于找到相符的消息对其差分线索遵循线性轨迹,条件函数被引入以便找到一个碰撞等效于条件下找到零矢量的原像的问题功能。然后,依赖关系表的概念示出的条件函数的每一个输入位多少影响对每个输出位,该依赖表的仔细分析表明,可以在加速原像重建的条件的作用下被利用的自由度。这些概念可用于减少轮版本两个SHA-3候选CubeHash和MD6的的深入碰撞分析,并展示了迄今为止就这些SHA-3名候选人的最佳目前已知的碰撞攻击。

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