Beyond Labels: Permissiveness for Dynamic Information Flow Enforcement

Elisavet Kozyri, F. Schneider, A. Bedford, Josée Desharnais, N. Tawbi
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引用次数: 1

Abstract

Flow-sensitive labels used by dynamic enforcement mechanisms might themselves encode sensitive information, which can leak. Metalabels, employed to represent the sensitivity of labels, exhibit the same problem. This paper derives a new family of enforcers—k-Enf, for 2 ≤ k ≤ ∞—that uses label chains, where each label defines the sensitivity of its predecessor. These enforcers satisfy Block-safe Noninterference (BNI), which proscribes leaks from observing variables, label chains, and blocked executions. Theorems in this paper characterize where longer label chains can improve the permissiveness of dynamic enforcement mechanisms that satisfy BNI. These theorems depend on semantic attributes—k-precise, k-varying, and k-dependent—of such mechanisms, as well as on initialization, threat model, and lattice size.
超越标签:动态信息流执行的许可性
动态执行机制使用的流敏感标签本身可能编码敏感信息,这些信息可能会泄露。元标签,用来表示标签的敏感性,表现出同样的问题。本文导出了一类新的执行者k- enf,对于2≤k≤∞,它使用标签链,其中每个标签定义其前一个标签的灵敏度。这些执行者满足块安全不干扰(BNI),它禁止从观察变量、标签链和阻塞执行中泄漏。本文中的定理描述了较长的标签链可以提高满足BNI的动态执行机制的容忍度。这些定理依赖于这些机制的语义属性——k-精确、k-变化和k-依赖——以及初始化、威胁模型和晶格大小。
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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