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搜索结果: 1-10 共查到军事学 Random Permutations相关记录10条 . 查询时间(0.109 秒)
Pseudorandom functions are traditionally built upon block ciphers, but with the trend of permutation based cryptography, it is a natural question to investigate the design of pseudorandom functions fr...
The construction XORPXORP (bitwise-xor of outputs of two independent nn-bit random permutations) has gained broad attention over the last two decades due to its high security.
Our algorithm is based on a new structure (called a \emph{rank table}) which is used to analyze particular algebraic properties of a function that remain invariant under invertible affine transformati...
We describe a security-preserving construction of a random permutation of domain size N from a random function, the construction tolerating adversaries asking all N plaintexts, yet employing just \The...
RC4 has been the most popular stream cipher in the history of symmetric key cryptography till date. Its internal state contains a pseudo-random permutation over all $n$-bit words (typically $n = 8$) a...
A block cipher is intended to be computationally indistinguishable from a random permutation of appropriate domain and range. But what are the properties of a random permutation? By the aid of expon...
Xoring two permutations is a very simple way to construct pseudorandom functions from pseudorandom permutations. The aim of this paper is to get precise security results for this construction. Since...
Xoring the output of k permutations, k  2 is a very simple way to construct pseudo-random functions (PRF) from pseudo-random permutations (PRP). Moreover such construction has many applications in ...
Verifiable Random Permutations     verifiable  random  permutations       2008/11/3
Pseudorandom Functions (PRFs), introduced by Goldreich, Goldwasser and Micali [9], allow one to eciently simulate the computation of a function which is indistinguishable from a truly random functio...
We construct a reasonably efficient threshold and proactive pseudo-random permutation (PRP). Our protocol needs only O(1) communication rounds. It tolerates up to (n − 1)/2 of n dishonest s...

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