安全完整性:在组合语言中实现无干扰

Andreas Gampe, J. Ronne
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引用次数: 5

摘要

确保软件保护用户隐私已成为一个日益紧迫的挑战。要求软件通过安全类型系统认证是一种强制机制。然而,使用类型系统保护隐私,只研究了完全用一种语言编写的程序,而软件经常使用专门用于不同任务的多种语言实现。本文提出了一种促进组合语言推理的方法。它概述了组件语言的充分需求,以将组件语言的隐私保证提升到类型良好的组合程序,从而大大降低了证明此类组合程序安全所必需的负担。该方法依赖于可计算性和安全级别的可分离性。本文定义了安全计算的完备性,并形式化地建立了安全类型语言完备的充分条件。我们通过对三种重要的安全类型语言的案例研究来证明结果的适用性。
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Security completeness: towards noninterference in composed languages
Ensuring that software protects its users' privacy has become an increasingly pressing challenge. Requiring software to be certified with a secure type system is one enforcement mechanism. Protecting privacy with type systems, however, has only been studied for programs written entirely in a single language, whereas software is frequently implemented using multiple languages specialized for different tasks. This paper presents an approach that facilitates reasoning over composed languages. It outlines sufficient requirements for the component languages to lift privacy guarantees of the component languages to well-typed composed programs, significantly lowering the burden necessary to certify that such composite programs safe. The approach relies on computability and security-level separability. This paper defines completeness with respect to secure computations and formally establishes conditions sufficient for a security-typed language to be complete. We demonstrate the applicability of the results with a case study of three seminal security-typed languages.
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