数据外包服务中容量隐藏范围查询的新型混合索引

K. Ren, Yu Guo, Jiaqi Li, X. Jia, Cong Wang, Yajin Zhou, Sheng Wang, N. Cao, Feifei Li
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引用次数: 19

摘要

加密索引是一种数据结构,它帮助不受信任的服务器在密文域中提供各种查询功能。尽管传统的索引设计可以防止服务器直接获取明文,但是通过观察不同查询的数量,外包数据的机密性仍然可能受到损害。最近的体积攻击已经证明了密封体积模式泄漏的重要性。为此,本文做了一些工作来设计具有卷隐藏特性的安全索引。然而,先前的设计只适用于加密的关键字搜索。由于距离查询结果的不可预测性,在实现有效的距离查询的同时很难保护体积模式泄漏。在本文中,我们首次定义并解决了具有挑战性的加密数据卷隐藏范围查询问题。我们提出的混合索引框架,称为HybrIDX,允许不受信任的服务器根据订单条件有效地搜索加密数据,而不会透露确切的交易量大小。它借助可信硬件技术,通过将比较算法移动到可信的SGX飞地来协助范围查询处理。为了启用卷隐藏数据检索,我们建议以加密的multimaps方式在enclave外托管加密的结果。除了这种新颖的混合索引设计之外,我们还进一步定制了一种批量刷新机制,以支持访问模式混淆。我们正式分析了安全优势并完成了原型实现。评价结果表明了设计的可行性和实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HybrIDX: New Hybrid Index for Volume-hiding Range Queries in Data Outsourcing Services
An encrypted index is a data structure that assisting untrusted servers to provide various query functionalities in the ciphertext domain. Although traditional index designs can prevent servers from directly obtaining plaintexts, the confidentiality of outsourced data could still be compromised by observing the volume of different queries. Recent volume attacks have demonstrated the importance of sealing volume-pattern leakage. To this end, several works are made to design secure indexes with the volume-hiding property. However, prior designs only work for encrypted keyword search. Due to the unpredictable range query results, it is difficult to protect the volume-pattern leakage while achieving efficient range queries.In this paper, for the first time, we define and solve the challenging problem of volume-hiding range queries over encrypted data. Our proposed hybrid index framework, called HybrIDX, allows an untrusted server to efficiently search encrypted data based on order conditions without revealing the exact volume size. It resorts to the trusted hardware techniques to assist range query processing by moving the comparison algorithm to trusted SGX enclaves. To enable volume-hiding data retrieval, we propose to host encrypted results outside the enclave in an encrypted multimaps manner. Apart from this novel hybrid index design, we further customize a bulk refresh mechanism to enable accesspattern obfuscation. We formally analyze the security strengths and complete the prototype implementation. Evaluation results demonstrate the feasibility and practicability of our designs.
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