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Cryptographic Hash-Function Basics: Definitions, Implications, and Separations for Preimage Resistance, Second-Preimage Resistance, and Collision Resistance

机译:加密散列功能基础:定义,含义和预测电阻,第二种预测和碰撞电阻的分离

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We consider basic notions of security for cryptographic hash functions: collision resistance, preimage resistance, and second-preimage resistance. We give seven different definitions that correspond to these three underlying ideas, and then we work out all of the implications and separations among these seven definitions within the concrete-security, provable-security framework. Because our results are concrete, we can show two types of implications, conventional and provisional, where the strength of the latter depends on the amount of compression achieved by the hash function. We also distinguish two types of separations, conditional and unconditional. When constructing counterexamples for our separations, we are careful to preserve specified hash-function domains and ranges; this rules out some pathological counterexamples and makes the separations more meaningful in practice. Four of our definitions are standard while three appear to be new; some of our relations and separations have appeared, others have not. Here we give a modern treatment that acts to catalog, in one place and with carefully-considered nomenclature, the most basic security notions for cryptographic hash functions.
机译:我们考虑了加密散列功能的基本概念:碰撞电阻,预测电阻和第二种预测电阻。我们给出了七种不同的定义,对应于这三个潜在的想法,然后我们在具体安全,可提供安全框架内的这七种定义中锻炼了所有的影响和分离。因为我们的结果是具体的,我们可以显示两种类型的含义,常规和临时,其中后者的强度取决于散列函数所实现的压缩量。我们还区分了两种类型的分离,条件和无条件。在为我们的分离构建监控器时,我们小心保留指定的哈希函数域和范围;这条规定了一些病理结果,并使分离在实践中更有意义。我们的四个定义是标准的,而三个似乎是新的;我们的一些关系和分离已经出现,其他人没有。在这里,我们给出了一个现代化的处理,它在一个地方和仔细考虑的命名,是加密哈希函数最基本的安全概念的目录。

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