Difference between revisions of "LAKE"

From The ECRYPT Hash Function Website
(Collision Attacks)
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=== Collision Attacks ===
 
=== Collision Attacks ===
 
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<bibtex>
 +
@inproceedings{acispMendelS08,
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  author    = {Florian Mendel and Martin Schl{\"a}ffer},
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  title    = {Collisions for Round-Reduced LAKE},
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  booktitle = {ACISP},
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  year      = {2008},
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  pages    = {267-281},
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  url      = {http://www.springerlink.com/content/882420671673224r/},
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  editor    = {Yi Mu and Willy Susilo and Jennifer Seberry},
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  publisher = {Springer},
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  series    = {LNCS},
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  volume    = {5107},
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  isbn      = {978-3-540-69971-2},
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  abstract  = {LAKE is a family of cryptographic hash functions presented at FSE 2008. It is an iterated hash function and defines two main instances with a 256 bit and 512 bit hash value. In this paper, we present the first security analysis of LAKE. We show how collision attacks, exploiting the non-bijectiveness of the internal compression function of LAKE, can be mounted on reduced variants of LAKE. We show an efficient attack on the 256 bit hash function LAKE-256 reduced to 3 rounds and present an actual colliding message pair. Furthermore, we present a theoretical attack on LAKE-256 reduced to 4 rounds with a complexity of $2^{109}$. By using more sophisticated message modification techniques we expect that the attack can be extended to 5 rounds. However, for the moment our approach does not appear to be applicable to the full LAKE-256 hash function (with all 8 rounds).},
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}
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</bibtex>
 
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Revision as of 14:16, 3 November 2008

1 Specification

  • digest size: 256,512 bits
  • max. message length: < 264 bits
  • compression function: 512-bit message block, 512,1024-bit chaining variable
  • Specification:

2 Cryptanalysis

2.1 Best Known Results


2.2 Generic Attacks


2.3 Collision Attacks

Florian Mendel, Martin Schl\"affer - Collisions for Round-Reduced LAKE

ACISP 5107:267-281,2008
http://www.springerlink.com/content/882420671673224r/
Bibtex
Author : Florian Mendel, Martin Schl\"affer
Title : Collisions for Round-Reduced LAKE
In : ACISP -
Address :
Date : 2008

2.4 Second Preimage Attacks


2.5 Preimage Attacks


2.6 Others