Finding state-of-the-art non-cryptographic hashes with genetic programming

Proceding of: 9th International Conference, Reykjavik, Iceland, September 9-13, 2006. The design of non-cryptographic hash functions by means of evolutionary computation is a relatively new and unexplored problem. In this paper, we use the Genetic Programming paradigm to evolve collision free and fa...

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Bibliographic Details
Main Authors: Estébanez Tascón, César, Hernández, Julio C., Ribagorda Garnacho, Arturo, Isasi, Pedro
Format: Conference Object
Language:English
Published: Springer 2006
Subjects:
Online Access:http://hdl.handle.net/10016/3987
https://doi.org/10.1007/11844297_83
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Summary:Proceding of: 9th International Conference, Reykjavik, Iceland, September 9-13, 2006. The design of non-cryptographic hash functions by means of evolutionary computation is a relatively new and unexplored problem. In this paper, we use the Genetic Programming paradigm to evolve collision free and fast hash functions. For achieving robustness against collision we use a fitness function based on a non-linearity concept, producing evolved hashes with a good degree of Avalanche Effect. The other main issue, efficiency, is assured by using only very fast operators (both in hardware and software) and by limiting the number of nodes. Using this approach, we have created a new hash function, which we call gp-hash, that is able to outperform a set of five human-generated, widely-used hash functions. This article has been financed by the Spanish founded research MCyT project OP:LINK, Ref:TIN2005-08818-C04-02.