基于smt的有界模型检测的大型嵌入式软件连续验证

L. Cordeiro, B. Fischer, Joao Marques-Silva
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引用次数: 13

摘要

嵌入式系统中软件的复杂性在过去几年中显著增加,因此软件验证现在在确保整体产品质量方面起着重要作用。在这种情况下,有界模型检查已经成功地应用于发现细微的错误,但对于更大的应用,它经常受到状态空间爆炸问题的困扰。本文描述了一种新的方法,称为连续验证,通过利用来自软件配置管理系统的信息,并结合动态和静态验证来减少需要探索的状态空间,从而尽可能快地检测设计错误。我们还给出了一套为程序验证提供准确支持的编码,并使用了不同的背景理论,以便在完全自动化的情况下提高可扩展性和精度。电信领域的一个案例研究表明,该方法提高了错误检测能力,并将总体验证时间缩短了50%。
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Continuous Verification of Large Embedded Software Using SMT-Based Bounded Model Checking
The complexity of software in embedded systems has increased significantly over the last years so that software verification now plays an important role in ensuring the overall product quality. In this context, bounded model checking has been successfully applied to discover subtle errors, but for larger applications, it often suffers from the state space explosion problem. This paper describes a new approach called continuous verification to detect design errors as quickly as possible by exploiting information from the software configuration management system and by combining dynamic and static verification to reduce the state space to be explored. We also give a set of encodings that provide accurate support for program verification and use different background theories in order to improve scalability and precision in a completely automatic way. A case study from the telecommunications domain shows that the proposed approach improves the error-detection capability and reduces the overall verification time by up to 50%.
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