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Verifiable Decentralized Multi-client Functional Encryption for Inner Product

  • Institut Polytechnique de Paris
  • DI

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Résumé

Joint computation on encrypted data is becoming increasingly crucial with the rise of cloud computing. In recent years, the development of multi-client functional encryption (MCFE) has made it possible to perform joint computation on private inputs, without any interaction. Well-settled solutions for linear functions have become efficient and secure, but there is still a shortcoming: if one user inputs incorrect data, the output of the function might become meaningless for all other users (while still useful for the malicious user). To address this issue, the concept of verifiable functional encryption was introduced by Badrinarayanan et al. at Asiacrypt ’16 (BGJS). However, their solution was impractical because of strong statistical requirements. More recently, Bell et al. introduced a related concept for secure aggregation, with their ACORN solution, but it requires multiple rounds of interactions between users. In this paper, we first propose a computational definition of verifiability for MCFE. Our notion covers the computational version of BGJS and extends it to handle any valid inputs defined by predicates. The BGJS notion corresponds to the particular case of a fixed predicate in our setting;we then introduce a new technique called Combine-then-Descend, which relies on the class group. It allows us to construct One-time Decentralized Sum (ODSUM ) on verifiable private inputs. ODSUM is the building block for our final protocol of a verifiable decentralized MCFE for inner-product, where the inputs are within a range. Our approach notably enables the efficient identification of malicious users, thereby addressing an unsolved problem in ACORN.

langue originaleAnglais
titreAdvances in Cryptology – ASIACRYPT 2023 - 29th International Conference on the Theory and Application of Cryptology and Information Security, Proceedings
rédacteurs en chefJian Guo, Ron Steinfeld
EditeurSpringer Science and Business Media Deutschland GmbH
Pages33-65
Nombre de pages33
ISBN (imprimé)9789819987320
Les DOIs
étatPublié - 1 janv. 2023
Evénement29th Annual International Conference on the Theory and Application of Cryptology and Information Security, ASIACRYPT 2023 - Guangzhou, Chine
Durée: 4 déc. 20238 déc. 2023

Série de publications

NomLecture Notes in Computer Science
Volume14442 LNCS
ISSN (imprimé)0302-9743
ISSN (Electronique)1611-3349

Une conférence

Une conférence29th Annual International Conference on the Theory and Application of Cryptology and Information Security, ASIACRYPT 2023
Pays/TerritoireChine
La villeGuangzhou
période4/12/238/12/23

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