Efficient information-theoretic distributed point functions with general output groups


연구 분야: Databases



학회: Designs, Codes and Cryptography


초록

An n-server information-theoretic Distributed Point Function (DPF) allows a client to secret-share a point function with domain [N] and output group among n servers such that each server learns no information about the function from its share (called a key) but can compute an additive share of for any x. DPFs with small key sizes and general output groups are preferred. In this paper, we propose a new transformation from share conversions to information-theoretic DPFs. By applying it to the share conversions from Efremenko’s PIR and Dvir–Gopi PIR, we obtain both an 8-server DPF with key size and output group and a 4-server DPF with key size and output group . The former allows us to partially answer an open question by Boyle, Gilboa, Ishai, and Kolobov (ITC 2022) and the latter allows us to build the first DPFs that may take any finite Abelian groups as output groups. We also discuss how to further reduce the key sizes by using different PIRs, how to reduce the number of servers by resorting to statistical security or using nice integers, and how to obtain DPFs with t-security. We show the applications of the new DPFs by constructing new efficient PIR protocols with result verification.


Author Profile
Junru Li

Institute of Mathematical Sciences ShanghaiTech University Shanghai China

China
Author Profile
Pengzhen Ke

Institute for Interdisciplinary Information Sciences Tsinghua University Beijing China

China
Author Profile
Liang Feng Zhang

School of Information Science and Technology ShanghaiTech University Shanghai China

Andorra

📄 논문 정보

발행 연도 2025년
인용수 0
출판 국가 Andorra, China
사이트 Springer
좋아요 수 0

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