A Test Suite Minimization Technique for Testing Numerical Programs

Prashanta Saha, C. Izurieta, Upulee Kanewala
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Abstract

Metamorphic testing is a technique that uses metamorphic relations (i.e., necessary properties of the software under test), to construct new test cases (i.e., follow-up test cases), from existing test cases (i.e., source test cases). Metamorphic testing allows for the verification of testing results without the need of test oracles (a mechanism to detect the correctness of the outcomes of a program), and it has been widely used in many application domains to detect real-world faults. Numerous investigations have been conducted to further improve the effectiveness of metamorphic testing. Recent studies have emerged suggesting a new research direction on the generation and selection of source test cases that are effective in fault detection. Herein, we present two important findings: i) a mutant reduction strategy that is applied to increase the testing efficiency of source test cases, and ii) a test suite minimization technique to help reduce the testing costs without trading off fault-finding effectiveness. To validate our results, an empirical study was conducted to demonstrate the increase in efficiency and fault-finding effectiveness of source test cases. The results from the experiment provide evidence to support our claims.
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一种用于数值程序测试的测试套件最小化技术
变形测试是一种使用变形关系(例如,被测软件的必要属性)从现有的测试用例(例如,源测试用例)构建新的测试用例(例如,后续测试用例)的技术。变形测试允许在不需要测试oracle(一种检测程序结果正确性的机制)的情况下验证测试结果,并且在许多应用程序领域中被广泛用于检测实际故障。为了进一步提高变质试验的有效性,进行了大量的研究。近年来的研究为有效的故障检测源测试用例的生成和选择提供了新的研究方向。在这里,我们提出了两个重要的发现:i)用于提高源测试用例测试效率的突变减少策略,以及ii)用于帮助降低测试成本而不牺牲故障查找效率的测试套件最小化技术。为了验证我们的结果,进行了一项实证研究,以证明源测试用例在效率和故障查找有效性方面的提高。实验结果为支持我们的主张提供了证据。
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