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Minimum Number of Test Paths for Prime Path and Other Structural Coverage Criteria

机译:主要路径和其他结构覆盖标准的最小测试路径数

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The software system under test can be modeled as a graph comprising of a set of vertices, V and a set of edges, E. Test Cases are Test Paths over the graph meeting a particular test criterion. In this paper, we present a method to achieve the minimum number of Test Paths needed to cover different structural coverage criteria. Our method can accommodate Prime Path, Edge-Pair, Simple & Complete Round Trip, Edge and Node coverage criteria. Our method obtains the optimal solution by transforming the graph into a flow graph and solving the minimum flow problem. We present an algorithm for the minimum flow problem that matches the best known solution complexity of O (|V||E|). Our method is evaluated through two sets of tests. In the first, we test against graphs representing actual software. In the second test, we create random graphs of varying complexity. In each test we measure the number of Test Paths, the length of Test Paths, the lower bound on minimum number of Test Paths and the execution time.
机译:被测软件系统可以被建模为包括一组顶点,V和一组边缘的图形,E。测试用例是符合特定测试标准的图表上的测试路径。在本文中,我们提出了一种实现涵盖不同结构覆盖标准所需的最小测试路径数量的方法。我们的方法可以容纳主要路径,边缘对,简单且完整的往返,边缘和节点覆盖标准。我们的方法通过将图形转换为流程图并解决最小流量问题来获得最佳解决方案。我们提出了一种算法,用于最小的流量问题,该算法与O(| v || e |)的最佳已知的解决方案复杂性匹配。我们的方法通过两组测试进行评估。首先,我们针对代表实际软件的图表测试。在第二个测试中,我们创建了不同复杂性的随机图。在每个测试中,我们测量测试路径的数量,测试路径的长度,最小次数的测试路径和执行时间的下限。

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