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Efficient UC Commitment Extension with Homomorphism for Free (and Applications)

  • Ignacio Cascudo
    ,
  • Ivan Damgård
    ,
  • ,
  • Rafael Dowsley
    ,
  • Nico Döttling
    ,
  • Irene Giacomelli
Publikation:
Konference artikel i Proceeding eller bog/rapport kapitel
Konferencebidrag i proceedings
Peer-review

Open Access

Publikation information

Produktionstype

Publikation:
Konference artikel i Proceeding eller bog/rapport kapitel
Konferencebidrag i proceedings
Peer-review

Undertitel på værtspublikation

25th International Conference on the Theory and Application of Cryptology and Information Security, Kobe, Japan, December 8–12, 2019, Proceedings, Part II

Originalsprog

Engelsk

Sider fra-til (Antal sider)

Sider 606-635

Publikationsmilepæle

  • Udgivet - 22/11/2019

Publikationsstatus

Udgivet - 22/11/2019

Forlag

Springer, USA, Tyskland

Bogserie

  • Bogserienavn: Lecture Notes in Computer Science
    Bind: 11922
    ISSN: 0302-9743
978-3-030-34620-1

ISBN (Elektronisk)

978-3-030-34621-8

Publication IDs

  • Scopus: 85074983945

Titel på værtspublikation

Advances in Cryptology – ASIACRYPT 2019

Redaktører for værtspublikation

  • Steven Galbraith
  • Shiho Moriai

Resume

Homomorphic universally composable (UC) commitments allow for the sender to reveal the result of additions and multiplications of values contained in commitments without revealing the values themselves while assuring the receiver of the correctness of such computation on committed values. In this work, we construct essentially optimal additively homomorphic UC commitments from any (not necessarily UC or homomorphic) extractable commitment. We obtain amortized linear computational complexity in the length of the input messages and rate 1. Next, we show how to extend our scheme to also obtain multiplicative homomorphism at the cost of asymptotic optimality but retaining low concrete complexity for practical parameters. While the previously best constructions use UC oblivious transfer as the main building block, our constructions only require extractable commitments and PRGs, achieving better concrete eciency and oering new insights into the sucient conditions for obtaining homomorphic UC commitments. Moreover, our techniques yield public coin protocols, which are compatible with the Fiat-Shamir heuristic. These results come at the cost of realizing a restricted version of the homomorphic commitment functionality where the sender is allowed to perform any number of commitments and operations on committed messages but is only allowed to perform a single batch opening of a number of commitments. Although this functionality seems restrictive, we show that it can be used as a building block for more ecient instantiations of recent protocols for secure multiparty computation and zero knowledge non-interactive arguments of knowledge.

Metrikker

PlumX

Hentninger
14
Citationer
8

Relateret event

Titel

Asiacrypt 2019

Begivenhedstype

Konference

Grad af anerkendelse

International begivenhed

Dato

08/12/2019 - 12/12/2019