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Fault-driven stress testing of distributed real-time software based on UML models

机译:基于UML模型的分布式实时软件的故障驱动压力测试

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摘要

In a previous article, a stress testing methodology was reported to detect network traffic-related Real-Time (RT) faults in distributed RT systems based on the design UML model of a System Under Test (SUT). The stress methodology, referred to as Test LOcation-driven Stress Testing (TLOST), aimed at increasing the chances of RT failures (violations in RT constraints) associated with a given stress test location (an network or a node under test). As demonstrated and experimented in this article, although TLOST is useful in stress testing different test locations (nodes and network, it does not guarantee to target (test) all RT constraints in an SUT. This is because the durations of message sequences bounded by some RT constraints might never be exercised (covered) by TLOST. A complementary stress test methodology is proposed in this article, which guarantees to target (cover) all RT constraints in an SUT and detect their potential RT faults (if any). Using a case study, this article shows that the new complementary methodology is capable of targeting the RT faults not detected by the previous test methodology. Copyright © 2009 John Wiley & Sons, Ltd.
机译:在上一篇文章中,报道了一种压力测试方法,该方法基于被测系统(SUT)的设计UML模型来检测分布式RT系统中与网络流量相关的实时(RT)故障。压力方法,称为测试位置驱动的压力测试(TLOST),旨在增加与给定压力测试位置(网络或被测节点)相关的RT故障的可能性(违反RT约束)。正如本文所演示和实验的那样,尽管TLOST可用于对不同的测试位置(节点和网络)进行压力测试,但它不能保证以SUT中的所有RT约束为目标(测试),这是因为消息序列的持续时间受某些限制TLOST可能永远不会行使(覆盖)RT约束,本文提出了一种补充性的压力测试方法,该方法可确保定位(覆盖)SUT中的所有RT约束并检测其潜在的RT故障(如果有)。本文的研究表明,新的互补方法能够针对以前的测试方法未检测到的RT故障。版权所有©2009 John Wiley&Sons,Ltd.。

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