OBLIVIATE: A Data Oblivious Filesystem for Intel SGX
Adil Ahmad, Kyungtae Kim, Muhammad Ihsanulhaq Sarfaraz, Byoungyoung Lee
Abstract
Intel SGX provides confidentiality and integrity of a program running within the confines of an enclave, and is expected to enable valuable security applications such as private information retrieval. This paper is concerned with the security aspects of SGX in accessing a key system resource, files. Through concrete attack scenarios, we show that all existing SGX filesystems are vulnerable to either system call snooping, page fault, or cache based side-channel attacks. To address this security limitations in current SGX filesystems, we present OBLIVIATE, a data oblivious filesystem for Intel SGX. The key idea behind OBLIVIATE is in adapting the ORAM protocol to read and write data from a file within an SGX enclave. OBLIVIATE redesigns the conceptual components of ORAM for SGX environments, and it seamlessly supports an SGX program without requiring any changes in the application layer. OBLIVIATE also employs SGX-specific defenses and optimizations in order to ensure complete security with acceptable overhead. The evaluation of the prototype of OBLIVIATE demonstrated its practical effectiveness in running popular server applications such as SQLite and Lighttpd, while also achieving a throughput improvement of 2×-8× over a baseline ORAM-based solution, and less than 2× overhead over an in-memory SGX filesystem. 1 The term "Obliviate" is used as an incantation in the Harry Potter series which is used to wipe a person's memory. attacks confirm that the security of current SGX filesystems can be breached through side-channel attacks.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext cf5745a2-9c79-4c7e-83b0-03aa87ea725dCited by top-tier papers59
- CURE: A Security Architecture with CUstomizable and Resilient EnclavesRaad Bahmani, Ferdinand Brasser, Ghada Dessouky, Patrick Jauernig et al.USENIX Security 2021 · 150 citations
- BITE: Bitcoin Lightweight Client Privacy using Trusted ExecutionSinisa Matetic, Karl Wüst, Moritz Schneider, Kari Kostiainen et al.USENIX Security 2019 · 109 citations
- Data Oblivious ISA Extensions for Side Channel-Resistant and High Performance ComputingJiyong Yu, Lucas Hsiung, Mohamad El Hajj, Christopher W. FletcherNDSS 2019 · 106 citations
- OBFUSCURO: A Commodity Obfuscation Engine on Intel SGXAdil Ahmad, Byunggill Joe, Yuan Xiao, Yinqian Zhang et al.NDSS 2019 · 83 citations
- DORY: An Encrypted Search System with Distributed TrustEmma Dauterman, Eric Feng, Ellen Luo, Raluca Ada Popa et al.OSDI 2020 · 77 citations
Builds on11
- Oblivious Multi-Party Machine Learning on Trusted ProcessorsOlga Ohrimenko, Felix Schuster, Cédric Fournet, Aastha Mehta et al.USENIX Security 2016 · 594 citations
- Inferring Fine-grained Control Flow Inside SGX Enclaves with Branch ShadowingSangho Lee, Ming-Wei Shih, Prasun Gera, Taesoo Kim et al.USENIX Security 2017 · 536 citations
- T-SGX: Eradicating Controlled-Channel Attacks Against Enclave ProgramsMing-Wei Shih, Sangho Lee, Taesoo Kim, Marcus PeinadoNDSS 2017 · 431 citations
- Telling Your Secrets without Page Faults: Stealthy Page Table-Based Attacks on Enclaved ExecutionJo Van Bulck, Nico Weichbrodt, Rüdiger Kapitza, Frank Piessens et al.USENIX Security 2017 · 316 citations
- Panoply: Low-TCB Linux Applications With SGX EnclavesShweta Shinde, Dat Le Tien, Shruti Tople, Prateek SaxenaNDSS 2017 · 274 citations
Related papers
- TRUSTORE: Side-Channel Resistant Storage for SGX using Intel Hybrid CPU-FPGAHyunyoung Oh, Adil Ahmad, Seonghyun Park, Byoungyoung Lee et al.CCS 2020 · 28 citations
- ObliDB: Oblivious Query Processing for Secure DatabasesSaba Eskandarian, Matei ZahariaVLDB 2020 · 127 citations
- ZeroTrace : Oblivious Memory Primitives from Intel SGXSajin Sasy, Sergey Gorbunov, Christopher W. FletcherNDSS 2018 · 244 citations
- Klotski: Efficient Obfuscated Execution against Controlled-Channel AttacksPan Zhang, Chengyu Song, Heng Yin, Deqing Zou et al.ASPLOS 2020 · 14 citations
- Oblix: An Efficient Oblivious Search IndexPratyush Mishra, Rishabh Poddar, Jerry Chen, Alessandro Chiesa et al.S&P 2018 · 200 citations
