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An enhanced marking target statement strategy of E-PIE for testability estimation

机译:E-PIE的可测性评估的增强标记目标陈述策略

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To enhance the testing, testability has been introduced. Testability refers the ease of testing with which faults in software are revealed. PIE (Propagation, Infection, Execution) is the strategy to estimate the software testability. To reduce the computational overhead of PIE, E-PIE (Extended Propagation, Infection, Execution) has been introduced. E-PIE technique consists of three stages. During the initial stages program is broken into blocks and then groups are generated. During the final stage target statements are being marked that is an essential part of E-PIE as testability computed for the marked target statement becomes the testability of whole group. In conventional E-PIE first statement of a group is being chosen as the target statement. This paper proposes another marking target statement strategy in which last statement is being chosen from every group to compute testability. Experimental results show that the proposed strategy provides better group testability as compared to the existing marking statement strategy.
机译:为了增强测试,引入了可测试性。可测试性是指易于发现软件故障的测试。 PIE(传播,感染,执行)是评估软件可测试性的策略。为了减少PIE的计算开销,已经引入了E-PIE(扩展传播,感染,执行)。 E-PIE技术包括三个阶段。在初始阶段,程序被分解为多个块,然后生成组。在最后阶段,标记目标语句是E-PIE的重要组成部分,因为为标记的目标语句计算的可测试性成为整个组的可测试性。在常规的E-PIE中,将组的第一条语句选择为目标语句。本文提出了另一种标记目标陈述策略,其中从每个组中选择最后一条陈述以计算可测试性。实验结果表明,与现有的标记说明策略相比,该策略提供了更好的组可测试性。

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