Advances in Cryptology – CRYPTO 2014
Volume 8616 of the series Lecture Notes in Computer Science pp 536-553
Maliciously Circuit-Private FHE
- Rafail OstrovskyAffiliated withDepartment of Computer Science and Mathematics, UCLA
- , Anat Paskin-CherniavskyAffiliated withDepartment of Computer Science, UCLA
- , Beni Paskin-Cherniavsky
Abstract
We present a framework for transforming FHE (fully homomorphic encryption) schemes with no circuit privacy requirements into maliciously circuit-private FHE. That is, even if both maliciously formed public key and ciphertext are used, encrypted outputs only reveal the evaluation of the circuit on some well-formed input x *. Previous literature on FHE only considered semi-honest circuit privacy. Circuit-private FHE schemes have direct applications to computing on encrypted data. In that setting, one party (a receiver) holding an input x wishes to learn the evaluation of a circuit C held by another party (a sender). The goal is to make receiver’s work sublinear (and ideally independent) of \(\left\lvert C \right\rvert \), using a 2-message protocol. The transformation technique may be of independent interest, and have various additional applications. The framework uses techniques akin to Gentry’s bootstrapping and conditional disclosure of secrets (CDS [AIR01]) combining a non circuit private FHE scheme, with a homomorphic encryption (HE) scheme for a smaller class of circuits which is maliciously circuit-private. We devise the first known circuit private FHE, by instantiating our framework by various (standard) FHE schemes from the literature.
Keywords
Fully homomorphic encryption computing on encrypted data privacy malicious setting- Title
- Maliciously Circuit-Private FHE
- Book Title
- Advances in Cryptology – CRYPTO 2014
- Book Subtitle
- 34th Annual Cryptology Conference, Santa Barbara, CA, USA, August 17-21, 2014, Proceedings, Part I
- Pages
- pp 536-553
- Copyright
- 2014
- DOI
- 10.1007/978-3-662-44371-2_30
- Print ISBN
- 978-3-662-44370-5
- Online ISBN
- 978-3-662-44371-2
- Series Title
- Lecture Notes in Computer Science
- Series Volume
- 8616
- Series ISSN
- 0302-9743
- Publisher
- Springer Berlin Heidelberg
- Copyright Holder
- Springer-Verlag Berlin Heidelberg
- Additional Links
- Topics
- Keywords
-
- Fully homomorphic encryption
- computing on encrypted data
- privacy
- malicious setting
- Industry Sectors
- eBook Packages
- Editors
-
-
Juan A. Garay
(15)
-
Rosario Gennaro
(16)
-
Juan A. Garay
- Editor Affiliations
-
- 15. Yahoo Labs
- 16. The City College of New York
- Authors
- Author Affiliations
-
- 17. Department of Computer Science and Mathematics, UCLA, USA
- 18. Department of Computer Science, UCLA, USA
Continue reading...
To view the rest of this content please follow the download PDF link above.