Aluminum: Principled scenario exploration through minimality

Tim Nelson, Salman Saghafi, Daniel J. Dougherty, Kathi Fisler, S. Krishnamurthi
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引用次数: 70

Abstract

Scenario-finding tools such as Alloy are widely used to understand the consequences of specifications, with applications to software modeling, security analysis, and verification. This paper focuses on the exploration of scenarios: which scenarios are presented first, and how to traverse them in a well-defined way. We present Aluminum, a modification of Alloy that presents only minimal scenarios: those that contain no more than is necessary. Aluminum lets users explore the scenario space by adding to scenarios and backtracking. It also provides the ability to find what can consistently be used to extend each scenario. We describe the semantic basis of Aluminum in terms of minimal models of first-order logic formulas. We show how this theory can be implemented atop existing SAT-solvers and quantify both the benefits of minimality and its small computational overhead. Finally, we offer some qualitative observations about scenario exploration in Aluminum.
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铝:通过最小化原则场景探索
像Alloy这样的场景查找工具被广泛用于理解规范的结果,以及软件建模、安全性分析和验证的应用程序。本文的重点是对场景的探索:首先呈现哪些场景,以及如何以良好定义的方式遍历它们。我们将介绍铝合金,它是Alloy的一种修改,只展示最小的场景:那些包含不超过必要的场景。Aluminum允许用户通过添加场景和回溯来探索场景空间。它还提供了查找可以一致地用于扩展每个场景的内容的能力。我们用一阶逻辑公式的最小模型描述了铝的语义基础。我们展示了如何在现有的sat求解器上实现这一理论,并量化了最小化的好处和它的小计算开销。最后,我们对铝的情景探索提出了一些定性的观察。
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