动态软件产品线的模型验证

I. Santos, L. Rocha, P. Neto, Rossana Andrade
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引用次数: 12

摘要

动态软件产品线扩展了软件产品线的概念,允许在运行时根据上下文变化进行调整。这种动态行为通常使用自适应规则、上下文触发的操作来设计,这些操作负责在运行时激活和停用功能。错误的规范和适应规则的交错(即,适应规则的并行执行)可能导致DSPL在运行时达到不希望的(不正确或有缺陷的)产品配置。因此,为了提高DSPL行为的可靠性,必须在DSPL开发的早期阶段严格识别和消除设计故障。在本文中,我们引入动态特征转换系统(DFTSs)来解决这个问题,该系统允许对DFTSs的自适应行为进行建模和形式化验证。这些过渡系统是由适应规则和语境克里普克结构(一种语境演化模型)衍生而来的。此外,我们正式定义了可用于识别DSPL设计中现有设计缺陷的五个属性。为了评估我们的方法的可行性,我们使用两个DSPLs(流动导览器和汽车)进行了可行性研究。在这两种情况下,设计错误都被自动检测到,这表明我们的形式化可以帮助检测dsl自适应行为中的设计错误。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model Verification of Dynamic Software Product Lines
Dynamic Software Product Lines (DSPLs) extend the concept of Software Product Lines enabling adaptation at runtime according to context changes. Such dynamic behavior is typically designed using adaptation rules, context-triggered actions responsible for features activation and deactivation at runtime. The erroneous specification and the interleaving of adaptation rules (i.e., the parallel execution of adaptation rules) can lead DSPL to reach an undesired (improperly or defective) product configuration at runtime. Thus, in order to improve the reliability of DSPL behavior, design faults must be rigorously identified and eliminated in the early stages of DSPL development. In this paper, we address this issue introducing Dynamic Feature Transition Systems (DFTSs) that allow the modeling and formal verification of the DSPLs adaptive behavior. These transition systems are derived from the adaptation rules and a Context Kripke Structure, which is a context evolution model. Furthermore, we formally define five properties that can be used to identify existing design faults in DSPL design. Aiming to assess the feasibility of our approach, a feasibility study was conducted using two DSPLs, Mobile Visit Guides and Car. In both cases, design faults were automatically detected indicating that our formalism can help in the detection of design faults in the DSPLs adaptive behavior.
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