Linear Symmetric Private Information Retrieval for MDS Coded Distributed Storage with Colluding Servers
Abstract
The problem of symmetric private information retrieval (SPIR) from a coded database which is distributively stored among colluding servers is studied. Specifically, the database comprises files, which are stored among servers using an -MDS storage code. A user wants to retrieve one file from the database by communicating with the servers, without revealing the identity of the desired file to any server. Furthermore, the user shall learn nothing about the other files in the database. In the -colluding SPIR problem (hence called TSPIR), any out of servers may collude, that is, they may communicate their interactions with the user to guess the identity of the requested file. We show that for linear schemes, the information-theoretic capacity of the MDS-TSPIR problem, defined as the maximum number of information bits of the desired file retrieved per downloaded bit, equals , if the servers share common randomness (unavailable at the user) with amount at least times the file size. Otherwise, the capacity equals zero. We conjecture that our capacity holds also for general MDS-TSPIR schemes.
Keywords
Cite
@article{arxiv.1708.05673,
title = {Linear Symmetric Private Information Retrieval for MDS Coded Distributed Storage with Colluding Servers},
author = {Qiwen Wang and Mikael Skoglund},
journal= {arXiv preprint arXiv:1708.05673},
year = {2017}
}
Comments
arXiv admin note: text overlap with arXiv:1707.02152