איתי דינור

אקדמי בכיר

Cube attacks and cube-attack-like cryptanalysis on the round-reduced Keccak sponge function

Itai Dinur, Paweł Morawiecki, Josef Pieprzyk, Marian Srebrny, Michał Straus

In this paper, we comprehensively study the resistance of keyed variants of SHA-3 (Keccak) against algebraic attacks. This analysis covers a wide range of key recovery, MAC forgery and other types of attacks, breaking up to 9 rounds (out of the full 24) of the Keccak internal permutation much faster than exhaustive search. Moreover, some of our attacks on the 6-round Keccak are completely practical and were verified on a desktop PC. Our methods combine cube attacks (an algebraic key recovery attack) and related algebraic techniques with structural analysis of the Keccak permutation. These techniques should be useful in future cryptanalysis of Keccak and similar designs. Although our attacks break more rounds than previously published techniques, the security margin of Keccak remains large. For Keyak - the Keccak-based authenticated encryption scheme - the nominal number of rounds is 12 and therefore its security margin is smaller (although still sufficient).

שפת פרסום אנגלית
דפים 733-761
סטטוס פרסום פורסם - 01.01.2015

Keywords

Cube attack
Keccak
SHA-3
Sponge function

ASJC Scopus subject areas

Theoretical Computer Science
General Computer Science
גישה למסמך
10.1007/978-3-662-46800-5_28
קבצים וקישורים אחרים
Link to publication in Scopus