SECOMP: Formally Secure Compilation of Compartmentalized C Programs
Jérémy Thibault, Roberto Blanco, Dongjae Lee, Sven Argo, Arthur Azevedo de Amorim, Aïna Linn Georges, Catalin Hritcu, Andrew Tolmach
摘要
Undefined behavior in C often causes devastating security vulnerabilities. One practical mitigation is compartmentalization, which allows developers to structure large programs into mutually distrustful compartments with clearly specified privileges and interactions. In this paper we introduce SECOMP, a compiler for compartmentalized C code that comes with machine-checked proofs guaranteeing that the scope of undefined behavior is restricted to the compartments that encounter it and become dynamically compromised. These guarantees are formalized as the preservation of safety properties against adversarial contexts, a secure compilation criterion similar to full abstraction, and this is the first time such a strong criterion is proven for a mainstream programming language. To achieve this we extend the languages of the CompCert verified C compiler with isolated compartments that can only interact via procedure calls and returns, as specified by cross-compartment interfaces. We adapt the passes and optimizations of CompCert as well as their correctness proofs to this compartment-aware setting. We then use compiler correctness as an ingredient in a larger secure compilation proof that involves several proof engineering novelties, needed to scale formally secure compilation up to a C compiler. CCS Concepts • Security and privacy → Logic and verification; Formal methods and theory of security; • Software and its engineering → Compilers; Modules / packages.
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 Paper1
问问它们各自怎么用它它引用的顶会 Paper25
- ERIM: Secure, Efficient In-process Isolation with Protection Keys (MPK)Anjo Vahldiek-Oberwagner, Eslam Elnikety, Nuno O. Duarte, Michael Sammler 等USENIX Security 2019 · 被引用 247 次
- Formal verification of a constant-time preserving C compilerGilles Barthe, Sandrine Blazy, Benjamin Grégoire, Rémi Hutin 等POPL 2020 · 被引用 77 次
- The Last Mile: High-Assurance and High-Speed Cryptographic ImplementationsJosé Bacelar Almeida, Manuel Barbosa, Gilles Barthe, Benjamin Grégoire 等S&P 2020 · 被引用 67 次
- CompCertM: CompCert with C-assembly linking and lightweight modular verificationYoungju Song, Minki Cho, Dongjoo Kim, Yonghyun Kim 等POPL 2020 · 被引用 49 次
- Rigorous engineering for hardware security: Formal modelling and proof in the CHERI design and implementation processKyndylan Nienhuis, Alexandre Joannou, Thomas Bauereiss, Anthony C. J. Fox 等S&P 2020 · 被引用 43 次
相关 Paper
- When Good Components Go Bad: Formally Secure Compilation Despite Dynamic CompromiseCarmine Abate, Arthur Azevedo de Amorim, Roberto Blanco, Ana Nora Evans 等CCS 2018 · 被引用 43 次
- CompCertELF: verified separate compilation of C programs into ELF object filesYuting Wang, Xiangzhe Xu, Pierre Wilke, Zhong ShaoOOPSLA 2020 · 被引用 26 次
- Certified and efficient instruction scheduling: application to interlocked VLIW processorsCyril Six, Sylvain Boulmé, David MonniauxOOPSLA 2020 · 被引用 21 次
- Secure Caches for Compartmentalized SoftwareKerem Arikan, Huaxin Tang, Williams Zhang Cen, Yu David Liu 等USENIX Security 2025
- Low-Cost Privilege Separation with Compile Time Compartmentalization for Embedded SystemsArslan Khan, Dongyan Xu, Dave Jing TianS&P 2023
