Searchable Symmetric Encryption for Restricted Search
Author(s) -
Máté Horváth,
István Vajda
Publication year - 2018
Publication title -
journal of communications software and systems
Language(s) - English
Resource type - Journals
eISSN - 1846-6079
pISSN - 1845-6421
DOI - 10.24138/jcomss.v14i1.419
Subject(s) - computer science , encryption , symmetric key algorithm , bilinear interpolation , scheme (mathematics) , focus (optics) , cloud computing , identifier , keyword search , simple (philosophy) , sublinear function , theoretical computer science , database , computer security , information retrieval , public key cryptography , computer network , mathematical analysis , philosophy , physics , mathematics , epistemology , optics , computer vision , operating system
The proliferation of cloud computing highlights the importance of techniques that permit both secure storage of sensitive data and flexible data management at the same time. One line of research with this double motivation is the study of Searchable Symmetric Encryption (SSE) that has provided several outstanding results in the recent years. These solutions achieve sublinear keyword search in huge databases by using various data structures to store keywords and document identifiers. In this work, we focus on certain scenarios in which search over the whole database is not necessary and show that the otherwise inefficient sequential scan (in linear time) can be very practical. This is due to the fact that adding new entries to the database comes for free in this case while updating a complex data structure without information leakage is rather complicated. To demonstrate the practicality of our approach we build a simple SSE scheme based on bilinear pairings and prove its security against adaptive chosen-keyword attacks in the standard model under the widely used Symmetric eXternal Diffie-Hellman (SXDH) assumption.
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