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Late Acceptance Hill Climbing Based Strategy for Test Redundancy Reduction and Prioritization

机译:基于后期验收爬坡的测试冗余减少和优先级策略

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摘要

Software testing relates to the process of accessing theudfunctionality of a program. To ensure conformance, testudengineers often generate a set of test cases to validate against the user requirements. When dealing with large line of codes (LOCs), there are potentially issues of redundancy as new test cases may be added and old test cases may be deleted during the whole testing process. To address redundancy issues, many useful strategies (e.g. HGS, GE, and GRE) have been developed in the literature. These strategies often put focus on getting the most minimum test suite size but give poor emphasis on test prioritization (i.e. ordering of tests). Here, as most testing activities happen toward the end of software development, testersudare often forced to consider partial test suite, that is, to be in line with the project deadline. In this manner, some impactful defects may be missed owing to the need to accommodate deadline shift from earlier development activities. In order to address these issues, this paper highlights our on-going work on the development of a novel test redundancy reduction strategy based Late Acceptance Hill Climbing, called (LAHCS). LAHCS is the first known strategy that adopts Late Acceptance Hill ClimbingudAlgorithm for test redundancy reduction and prioritization.
机译:软件测试与访问程序的 udfunction的过程有关。为了确保一致性,测试工程师通常会生成一组测试用例,以根据用户要求进行验证。在处理大型代码(LOC)时,可能存在冗余问题,因为在整个测试过程中可能会添加新的测试用例,而旧的测试用例可能会删除。为了解决冗余问题,文献中已经开发了许多有用的策略(例如,HGS,GE和GRE)。这些策略通常将重点放在获得最小的测试套件大小上,而很少强调测试优先级(即测试的顺序)。在这里,由于大多数测试活动都发生在软件开发的最后阶段,因此测试人员经常敢于考虑部分测试套件,也就是说,要与项目截止日期保持一致。以这种方式,由于需要适应早期开发活动的截止日期变更,可能会遗漏一些有影响力的缺陷。为了解决这些问题,本文重点介绍了我们正在进行的工作,该工作是基于延迟接纳爬山(LAHCS)的新型测试冗余减少策略的开发。 LAHCS是采用延迟验收爬山 udAlgorithm进行测试冗余减少和优先级划分的第一个已知策略。

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