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conference paper

Hash-and-Sign with Weak Hashing Made Secure

Pasini, Sylvain  
•
Vaudenay, Serge  
2007
Information Security and Privacy. ACISP 2007
12th Australasian Conference on Information Security and Privacy: ACISP '07

Digital signatures are often proven to be secure in the random oracle model while hash functions deviate more and more from this idealization. Liskov proposed to model a weak hash function by a random oracle together with another oracle allowing to break some properties of the hash function, e.g. a preimage oracle. To avoid the need for collision-resistance, Bellare and Rogaway proposed to use target collision resistant (TCR) randomized pre-hashing. Later, Halevi and Krawczyk suggested to use enhanced TCR (eTCR) hashing to avoid signing the random seed. To avoid the increase in signature length in the TCR construction, Mironov suggested to recycle some signing coins in the message preprocessing. In this paper, we develop and apply all those techniques. In particular, we obtain a generic preprocessing which allows to build strongly secure signature schemes when hashing is weak and the internal (textbook) signature is weakly secure. We model weak hashing by a preimage-tractable random oracle.

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Type
conference paper
DOI
10.1007/978-3-540-73458-1_25
Web of Science ID

WOS:000247866700025

Author(s)
Pasini, Sylvain  
Vaudenay, Serge  
Date Issued

2007

Publisher

Springer

Publisher place

Townsville, Queensland, Australia

Published in
Information Security and Privacy. ACISP 2007
Series title/Series vol.

Lecture Notes in Computer Science; 4586

Start page

338

End page

354

Subjects

Digital Signature

•

Cryptography

•

Hash-and-Sign

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASEC  
Event nameEvent placeEvent date
12th Australasian Conference on Information Security and Privacy: ACISP '07

Townsville, Queensland, Australia

July 2-4, 2007

Available on Infoscience
August 27, 2007
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/10903
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