Forward and Backward-Secure Range-Searchable Symmetric Encryption

Jiafan Wang, Sherman S. M. Chow
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引用次数: 27

Abstract

Abstract Dynamic searchable symmetric encryption (DSSE) allows a client to query or update an outsourced encrypted database. Range queries are commonly needed. Previous range-searchable schemes either do not support updates natively (SIGMOD’16) or use file indexes of many long bit-vectors for distinct keywords, which only support toggling updates via homomorphically flipping the presence bit. (ESORICS’18). We propose a generic upgrade of any (inverted-index) DSSE to support range queries (a.k.a. range DSSE), without homomorphic encryption, and a specific instantiation with a new trade-off reducing client-side storage. Our schemes achieve forward security, an important property that mitigates file injection attacks. Moreover, we identify a variant of injection attacks against the first somewhat dynamic scheme (ESORICS’18). We also extend the definition of backward security to range DSSE and show that our schemes are compatible with a generic upgrade of backward security (CCS’17). We comprehensively analyze the computation and communication overheads, including implementation details of client-side index-related operations omitted by prior schemes. We show high empirical efficiency for million-scale databases over a million-scale keyword space.
前向和后向安全范围可搜索对称加密
动态可搜索对称加密(DSSE)允许客户端查询或更新外包的加密数据库。通常需要范围查询。以前的范围搜索方案要么不支持本地更新(SIGMOD ' 16),要么为不同的关键字使用许多长位向量的文件索引,这只支持通过同态翻转存在位来切换更新。(ESORICS 18)。我们建议对任何(反向索引)DSSE进行通用升级,以支持范围查询(又称范围DSSE),而不使用同态加密,并提出具有减少客户端存储的新权衡的特定实例化。我们的方案实现了前向安全性,这是减轻文件注入攻击的重要特性。此外,我们确定了针对第一种动态方案(ESORICS ' 18)的注入攻击的变体。我们还将后向安全的定义扩展到DSSE范围,并表明我们的方案与后向安全的一般升级(CCS ' 17)兼容。我们全面分析了计算和通信开销,包括之前的方案忽略的客户端索引相关操作的实现细节。我们在百万规模的关键字空间上展示了百万规模数据库的高经验效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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