Security Verification of Low-Trust Architectures
Qinhan Tan, Yonathan Fisseha, Shibo Chen, Lauren Biernacki, Jean-Baptiste Jeannin, Sharad Malik, Todd M. Austin
摘要
Low-trust architectures work on, from the viewpoint of software, always-encrypted data, and significantly reduce the amount of hardware trust to a small software-free enclave component. In this paper, we perform a complete formal verification of a specific low-trust architecture, the Sequestered Encryption (SE) architecture, to show that the design is secure against direct data disclosures and digital side channels for all possible programs. We first define the security requirements of the ISA of SE low-trust architecture. Looking upwards, this ISA serves as an abstraction of the hardware for the software, and is used to show how any program comprising these instructions cannot leak information, including through digital side channels. Looking downwards this ISA is a specification for the hardware, and is used to define the proof obligations for any RTL implementation arising from the ISA-level security requirements. These cover both functional and digital side-channel leakage. Next, we show how these proof obligations can be successfully discharged using commercial formal verification tools. We demonstrate the efficacy of our RTL security verification technique for seven different correct and buggy implementations of the SE architecture. CCS CONCEPTS • Security and privacy → Formal methods and theory of security; Information flow control; Security requirements; Side-channel analysis and countermeasures.
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引用它的顶会 Paper3
- RTL Verification for Secure Speculation Using Contract Shadow LogicQinhan Tan, Yuheng Yang, Thomas Bourgeat, Sharad Malik 等ASPLOS 2025 · 被引用 12 次
- SoK: Analysis of Accelerator TEE DesignsChenxu Wang, Junjie Huang, Yujun Liang, Xuanyao Peng 等NDSS 2026 · 被引用 2 次
- Compass: Navigating the Design Space of Taint Schemes for RTL Security VerificationYuheng Yang, Qinhan Tan, Thomas Bourgeat, Sharad Malik 等ASPLOS 2026 · 被引用 1 次
它引用的顶会 Paper15
- Sanctum: Minimal Hardware Extensions for Strong Software IsolationVictor Costan, Ilia A. Lebedev, Srinivas DevadasUSENIX Security 2016 · 被引用 649 次
- Keystone: an open framework for architecting trusted execution environmentsDayeol Lee, David Kohlbrenner, Shweta Shinde, Krste Asanovic 等EuroSys 2020 · 被引用 381 次
- CIPHERLEAKS: Breaking Constant-time Cryptography on AMD SEV via the Ciphertext Side ChannelMengyuan Li, Yinqian Zhang, Huibo Wang, Kang Li 等USENIX Security 2021 · 被引用 130 次
- Hardware-Software Contracts for Secure SpeculationMarco Guarnieri, Boris Köpf, Jan Reineke, Pepe VilaS&P 2021 · 被引用 111 次
- Data Oblivious ISA Extensions for Side Channel-Resistant and High Performance ComputingJiyong Yu, Lucas Hsiung, Mohamad El Hajj, Christopher W. FletcherNDSS 2019 · 被引用 106 次
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