用组合测试执行并发测试代数

W. Tsai, Jie Luo, Guanqiu Qi, Wenjun Wu
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引用次数: 17

摘要

软件即服务(SaaS)是一种新的软件交付模式,在日常生活中扮演着重要的角色。在SaaS中,关键任务应用程序是在云平台上组合、部署和执行的。SaaS应用程序在发布之前需要具有高可靠性和可用性。测试SaaS应用程序变得非常重要,因为在部署之前需要进行大量的测试。Test Algebra (TA)是一个代数系统,它使用现有的测试结果识别SaaS应用程序组合测试中的错误,并消除这些相关的错误。尽管TA从考虑因素中消除了大量配置,但在合理的时间内完成大量服务组合的测试仍然很困难。为了改进技术分析,本文提出了一种并行技术分析方法。它将工作负载分配到不同的计算机集群中,并从2路配置到6路配置执行TA分析。不同的数据库设计用于存储不同配置的测试结果。提出了故障表搜索算法和操作表搜索算法来检索现有的测试结果。利用所提出的解决方案模拟了一个25组分的实验。同样的实验也在多处理器上进行了模拟,以进行并发分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concurrent Test Algebra Execution with Combinatorial Testing
Software-as-a-Service (SaaS), a new software delivery model, plays an important role in daily life. In SaaS, mission-critical applications are composed, deployed, and executed on cloud platforms. SaaS applications needed to have high reliability and availability before publishing. Testing SaaS applications becomes important, as the large number of testing prior to their deployment. Test Algebra (TA), a algebraic system, identifies faults in combinatorial testing for SaaS applications using existing test results and eliminates those related faults. Although TA eliminates a large number of configurations from considerations, it is still difficult to finish testing enormous combinations of services in a reasonable time. To improve TA analysis, this paper proposes a concurrent TA analysis. It allocates workloads into different clusters of computers and performs TA analysis from 2-way to 6-way configurations. Different database designs are used to store the test results of various configurations. Faulty and operational table search algorithms are proposed to retrieve existing test results. One 25-component experiment is simulated using the proposed solutions. The same experiment is also simulated on multiple processors for concurrent TA analysis.
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