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搜索结果: 1-15 共查到军事学 Pseudorandom functions相关记录40条 . 查询时间(0.153 秒)
How to Build Pseudorandom Functions From Public Random Permutations     RP-to-PRF  SoEM  SoKAC       font style='font-size:12px;'> 2019/5/24
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...
Pseudorandom Functions: Three Decades Later     foundations  pseudorandom functions       font style='font-size:12px;'> 2017/7/6
In 1984, Goldreich, Goldwasser and Micali formalized the concept of pseudorandom functions and proposed a construction based on any length-doubling pseudorandom generator. Since then, pseudorandom fun...
Due to the vast number of successful related-key attacks against existing block-ciphers, related-key security has become a common design goal for such primitives. In these attacks, the adversary is no...
A constrained pseudorandom function (PRF) is a secure PRF for which one can generate constrained keys that can only be used to evaluate the PRF on a subset of the domain. Constrained PRFs are used wid...
On The Exact Security of Message Authentication Using Pseudorandom Functions     MAC  CBC  EMAC       font style='font-size:12px;'> 2017/2/28
Traditionally, modes of Message Authentication Codes(MAC) such as Cipher Block Chaining (CBC) are instantiated using block ciphers or keyed Pseudo Random Permutations(PRP). However, one can also use d...
We introduce a secure elliptic curve oblivious pseudorandom function (EC-OPRF) which operates by hashing strings onto an elliptic curve to provide a simple and efficient mechanism for computing an obl...
Constrained pseudorandom functions (CPRF) are a fundamental extension of the notion of traditional pseudorandom functions (PRF). A CPRF enables a master PRF key holder to issue constrained keys corres...
Fast Pseudorandom Functions Based on Expander Graphs     foundations  pseudo-random functions  Goldreich's OWF       font style='font-size:12px;'> 2016/12/10
Our proofs are based on a new search-to-decision reduction for expander-based functions. This extends a previous reduction of the first author (STOC 2012) which was applicable for the special case of ...
On the complexity of constructing pseudorandom functions (especially when they don't exist)     OWF  PRF       font style='font-size:12px;'> 2016/4/6
We study the complexity of black-box constructions of pseudorandom functions (PRF) from one-way functions (OWF) that are secure against non-uniform adversaries. We show that if OWF do not exist, the...
Constrained Pseudorandom Functions for Unconstrained Inputs     PRF  knowledge type       font style='font-size:12px;'> 2016/3/18
A constrained pseudo random function (PRF) behaves like a standard PRF, but with the added feature that the (master) secret key holder, having secret key K, can produce a constrained key, K{f}, that a...
We introduce a new technique for tight security proofs called work factor partitioning. Using this technique in a modified version of the framework of Dottling and Schr ¨ oder (CRYPTO 2015), we obta...
Pseudorandom functions (PRFs) play a central role in symmetric cryptography. While in principle they can be built from any one-way functions by going through the generic HILL (SICOMP 1999) and GGM (...
In the last few years the efficiency of secure multi-party computation (MPC) increased in several orders of magnitudes. However, this alone might not be enough if we want MPC protocols to be used in...
Publicly Evaluable Pseudorandom Functions and Their Applications     publicly evaluable  PRF  HPS       font style='font-size:12px;'> 2016/1/23
We put forth the notion of publicly evaluable pseudorandom functions (PEPRFs), which is a non-trivial extension of the standard pseudorandom functions (PRFs). Briefly, PEPRFs are defined over domain...
A constrained pseudorandom function (CPRF) PRF allows to derive constrained evaluation keys that only allow to evaluate PRF on a subset of inputs. CPRFs have only recently been introduced independen...

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