Fault Detection Probability Analysis for Coverage-Based Test Suite Reduction

S. McMaster, A. Memon
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引用次数: 31

Abstract

Test suite reduction seeks to reduce the number of test cases in a test suite while retaining a high percentage of the original suite's fault detection effectiveness. Most approaches to this problem are based on eliminating test cases that are redundant relative to some coverage criterion. The effectiveness of applying various coverage criteria in test suite reduction is traditionally based on empirical comparison of two metrics derived from the full and reduced test suites and information about a set of known faults: (1) percentage size reduction and (2) percentage fault detection reduction, neither of which quantitatively takes test coverage data into account. Consequently, no existing measure expresses the likelihood of various coverage criteria to force coverage-based reduction to retain test cases that expose specific faults. In this paper, we develop and empirically evaluate, using a number of different coverage criteria, a new metric based on the "average expected probability of finding a fault" in a reduced test suite. Our results indicate that the average probability of detecting each fault shows promise for identifying coverage criteria that work well for test suite reduction.
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基于覆盖率的测试集缩减的故障检测概率分析
测试套件减少旨在减少测试套件中测试用例的数量,同时保留原始套件的故障检测效率的高比例。大多数解决这个问题的方法都是基于消除相对于某些覆盖标准来说是冗余的测试用例。在测试套件缩减中应用各种覆盖标准的有效性传统上是基于两个度量的经验比较,这些度量来自完整的和缩减的测试套件,以及关于一组已知故障的信息:(1)百分比大小缩减和(2)百分比故障检测缩减,这两者都没有定量地考虑测试覆盖数据。因此,没有任何现有的度量来表达各种覆盖标准的可能性,以强制基于覆盖的减少来保留暴露特定错误的测试用例。在本文中,我们使用许多不同的覆盖率标准,开发并经验性地评估了一个基于在缩减的测试套件中“发现错误的平均预期概率”的新度量。我们的结果表明,检测每个错误的平均概率显示了识别覆盖标准的希望,这些标准很好地用于减少测试套件。
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