哈希函数的新类和应用

M. Wegman, L. Carter
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引用次数: 149

摘要

在本文中,我们展示了几类具有某些理想性质的新哈希函数,并介绍了利用这些函数的两种新的哈希应用。有一类函数很小,但几乎是通用的。如果函数将n位长的名称散列到m位的索引中,那么指定类的成员只需要O((m + log2log2(n)) log2(n))位,而之前的技术则需要O(n)位。对于长名称,这大约比m+log2n-log2m位的下界大m倍。该类的一个应用是一种可证明的安全身份验证技术,用于在不安全的线路上发送消息。第二类函数满足比普适性强得多的性质。给出了等式检验集的应用。身份验证技术允许接收方确定消息是真实的。一个“敌人”——即使是一个拥有无限计算机资源的人——也不可能在不被发现的情况下伪造或修改信息。集合相等技术允许“向集合添加成员”、“从集合中删除成员”和“测试两个集合是否相等”等操作在预期的常数时间内执行,并且误差小于指定的概率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New classes and applications of hash functions
In this paper we exhibit several new classes of hash functions with certain desirable properties, and introduce two novel applications for hashing which make use of these functions. One class of functions is small, yet is almost universal2. If the functions hash n-bit long names into m-bit indices, then specifying a member of the class requires only O((m + log2log2(n)) log2(n)) bits as compared to O(n) bits for earlier techniques. For long names, this is about a factor of m larger than the lower bound of m+log2n-log2m bits. An application of this class is a provably secure authentication techniques for sending messages over insecure lines. A second class of functions satisfies a much stronger property than universal2. We present the application of testing sets for equality. The authentication technique allows the receiver to be certain that a message is genuine. An 'enemy' - even one with infinite computer resources - cannot forge or modify a message without detection. The set equality technique allows the the operations 'add member to set', 'delete member from set' and 'test two sets for equality' to be performed in expected constant time and with less than a specified probability of error.
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