Compositional Verification and Refinement of Concurrent Value-Dependent Noninterference

Toby C. Murray, Robert Sison, Edward Pierzchalski, C. Rizkallah
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引用次数: 53

Abstract

Value-dependent noninterference allows the classification of program variables to depend on the contents of other variables, and therefore is able to express a range of data-dependent security policies. However, so far its static enforcement mechanisms for software have been limited either to progress-and termination-insensitive noninterference for sequential languages, or to concurrent message-passing programs without shared memory. Additionally, there exists no methodology for preserving value-dependent noninterference for shared memory programs under compositional refinement. This paper presents a flow-sensitive dependent type system for enforcing timing-sensitive value-dependent noninterference for shared memory concurrent programs, comprising a collection of sequential components, as well as a compositional refinement theory for preserving this property under componentwise refinement. Our results are mechanised in Isabelle/HOL.
并发值相关不干扰的组合验证与改进
依赖于值的不干扰允许程序变量的分类依赖于其他变量的内容,因此能够表达一系列依赖于数据的安全策略。然而,到目前为止,它对软件的静态强制机制被限制为对顺序语言的进程和终止不敏感的不干扰,或者限制为没有共享内存的并发消息传递程序。此外,目前还没有一种方法可以使共享内存程序在组合细化下保持与值相关的不干扰性。本文提出了一个流敏感依赖类型系统,用于实现共享内存并发程序的时间敏感值依赖不干扰,该系统由顺序组件组成,以及在组件细化下保持该特性的组合细化理论。我们的结果是机械化的伊莎贝尔/霍尔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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