SSE and SSD: Page-Efficient Searchable Symmetric Encryption
Angèle Bossuat, Raphael Bost, Pierre-Alain Fouque, Brice Minaud, Michael Reichle
摘要
Searchable Symmetric Encryption (SSE) enables a client to outsource a database to an untrusted server, while retaining the ability to securely search the data. The performance bottleneck of classic SSE schemes typically does not come from their fast, symmetric cryptographic operations, but rather from the cost of memory accesses. To address this issue, many works in the literature have considered the notion of locality, a simple design criterion that helps capture the cost of memory accesses in traditional storage media, such as Hard Disk Drives. A common thread among many SSE schemes aiming to improve locality is that they are built on top of new memory allocation schemes, which form the technical core of the constructions.
The starting observation of this work is that for newer storage media such as Solid State Drives (SSDs), which have become increasingly common, locality is not a good predictor of practical performance. Instead, SSD performance mainly depends on page efficiency, that is, reading as few pages as possible. We define this notion, and identify a simple memory allocation problem, Data-Independent Packing (DIP), that captures the main technical challenge required to build page-efficient SSE. As our main result, we build a page-efficient and storage-efficient data-independent packing scheme, and deduce the Tethys SSE scheme, the first SSE scheme to achieve at once O(1) page efficiency and O(1) storage efficiency. The technical core of the result is a new generalization of cuckoo hashing to items of variable size. Practical experiments show that this new approach achieves excellent performance.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper7
- Leakage-Abuse Attacks Against Forward and Backward Private Searchable Symmetric EncryptionLei Xu, Leqian Zheng, Chengzhi Xu, Xingliang Yuan 等CCS 2023 · 被引用 28 次
- I/O-Efficient Dynamic Searchable Encryption meets Forward & Backward PrivacyPriyanka Mondal, Javad Ghareh Chamani, Ioannis Demertzis, Dimitrios PapadopoulosUSENIX Security 2024 · 被引用 13 次
- Weighted Oblivious RAM, with Applications to Searchable Symmetric EncryptionLéonard Assouline, Brice MinaudEUROCRYPT 2023 · 被引用 9 次
- Over-Threshold Multiparty Private Set Intersection for Collaborative Network Intrusion DetectionOnur Eren Arpaci, Raouf Boutaba, Florian KerschbaumNSDI 2026 · 被引用 4 次
- ALERT: Machine Learning-Enhanced Risk Estimation for Databases Supporting Encrypted QueriesLongxiang Wang, Lei Xu, Yufei Chen, Ying Zou 等USENIX Security 2025
它引用的顶会 Paper4
- Forward and Backward Private Searchable Encryption from Constrained Cryptographic PrimitivesRaphaël Bost, Brice Minaud, Olga OhrimenkoCCS 2017 · 被引用 423 次
- Mitigating Leakage in Secure Cloud-Hosted Data Structures: Volume-Hiding for Multi-Maps via HashingSarvar Patel, Giuseppe Persiano, Kevin Yeo, Moti YungCCS 2019 · 被引用 139 次
- IO-DSSE: Scaling Dynamic Searchable Encryption to Millions of Indexes By Improving LocalityIan Miers, Payman MohasselNDSS 2017 · 被引用 60 次
- Alibi: A Flaw in Cuckoo-Hashing Based Hierarchical ORAM Schemes and a SolutionBrett Hemenway Falk, Daniel Noble, Rafail OstrovskyEUROCRYPT 2021 · 被引用 10 次
相关 Paper
- Dynamic Local Searchable Symmetric EncryptionBrice Minaud, Michael ReichleCRYPTO 2022 · 被引用 19 次
- DDR-SSE: Duplicated Retrieval of Documents for System-wide Secure Searchable Symmetric EncryptionZichen Gui, Simon-Philipp Merz, Kenneth G. Paterson, Sikhar PatranabisUSENIX Security 2026
- Obfuscated Access and Search Patterns in Searchable EncryptionZhiwei Shang, Simon Oya, Andreas Peter, Florian KerschbaumNDSS 2021
- Rethinking Searchable Symmetric EncryptionZichen Gui, Kenneth G. Paterson, Sikhar PatranabisS&P 2023
- ∑oφoς: Forward Secure Searchable EncryptionRaphael BostCCS 2016 · 被引用 382 次
