Testing real-time embedded software using runtime enforcement

Louis-Marie Givel, Jean-Luc Béchennec, M. Brun, S. Faucou, O. Roux
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引用次数: 1

Abstract

Real-time embedded systems are complex, and as such need to be tested with regards to real-time constraints. However, because of this complexity, some states of the systems can be hard to reach through acting on the input sequence alone, because of seemingly non-deterministic behaviors. In this paper, we introduce a solution based on runtime enforcement which forces a real-time system to reach a chosen state. This can allow for testing of the consequences of reaching this state for the system. Let us consider for example a fault tolerance mechanism that activates when a state of the system is reached. Our solution makes it possible to force the system to consistently reach the state in which the fault tolerance mechanism is started. The solution is based on both an offline analysis and a runtime enforcement step which uses the result of the offline analysis. The runtime enforcement is achieved through the introduction of delays during the execution of the system.
使用运行时强制测试实时嵌入式软件
实时嵌入式系统是复杂的,因此需要根据实时约束进行测试。然而,由于这种复杂性,由于看似不确定的行为,系统的某些状态很难通过单独作用于输入序列来达到。在本文中,我们介绍了一种基于运行时强制的解决方案,它可以强制实时系统达到选定的状态。这样就可以测试系统达到这种状态后的结果。例如,让我们考虑一种容错机制,它在系统达到某种状态时激活。我们的解决方案使得强制系统一致地达到启动容错机制的状态成为可能。该解决方案基于脱机分析和使用脱机分析结果的运行时执行步骤。运行时强制是通过在系统执行期间引入延迟来实现的。
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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