A Bit More Than a Bit Is More Than a Bit Better

Author:

Hafiz Syed Mahbub1,Henry Ryan2

Affiliation:

1. Indiana University

2. University of Calgary

Abstract

Abstract We study both the practical and theoretical efficiency of private information retrieval (PIR) protocols in a model wherein several untrusted servers work to obliviously service remote clients’ requests for data and yet no pair of servers colludes in a bid to violate said obliviousness. In exchange for such a strong security assumption, we obtain new PIR protocols exhibiting remarkable efficiency with respect to every cost metric—download, upload, computation, and round complexity—typically considered in the PIR literature. The new constructions extend a multiserver PIR protocol of Shah, Rashmi, and Ramchandran (ISIT 2014), which exhibits a remarkable property of its own: to fetch a b-bit record from a collection of r such records, the client need only download b + 1 bits total. We find that allowing “a bit more” download (and optionally introducing computational assumptions) yields a family of protocols offering very attractive trade-offs. In addition to Shah et al.’s protocol, this family includes as special cases (2-server instances of) the seminal protocol of Chor, Goldreich, Kushilevitz, and Sudan (FOCS 1995) and the recent DPF-based protocol of Boyle, Gilboa, and Ishai (CCS 2016). An implicit “folklore” axiom that dogmatically permeates the research literature on multiserver PIR posits that the latter protocols are the “most efficient” protocols possible in the perfectly and computationally private settings, respectively. Yet our findings soundly refute this supposed axiom: These special cases are (by far) the least performant representatives of our family, with essentially all other parameter settings yielding instances that are significantly faster.

Publisher

Walter de Gruyter GmbH

Subject

General Medicine

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Single-Server PIR via NTRU-Based FHE: Simpler, Smaller, and Faster;2024 IEEE 9th European Symposium on Security and Privacy (EuroS&P);2024-07-08

2. VPIR: an efficient verifiable private information retrieval scheme resisting malicious cloud server;Telecommunication Systems;2024-05-28

3. More is Merrier: Relax the Non-Collusion Assumption in Multi-Server PIR;2024 IEEE Symposium on Security and Privacy (SP);2024-05-19

4. TreePIR: Sublinear-Time and Polylog-Bandwidth Private Information Retrieval from DDH;Advances in Cryptology – CRYPTO 2023;2023

5. SPIRAL: Fast, High-Rate Single-Server PIR via FHE Composition;2022 IEEE Symposium on Security and Privacy (SP);2022-05

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