Design and Analysis of Novel Kernel Measure for Software Fault Localization

V. Radhakrishna
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引用次数: 21

Abstract

The problem of software fault localization may be viewed as an approach for finding hidden faults or bugs in the existing program codes which are syntactically correct and give fault free output for some input instances but fail for all other input instances. Some of the reasons include logical errors, wrong interpretation of specification, coding errors. Finding such faults is not possible sometimes with the help of compilers. This is where the necessity and significance of software fault localization stems out. The main contribution for this work is to first introduce the block hit-miss function which relates block vectors of execution sequences of software code over sample runs performed and the decision vector which denotes fault or error free output. The similarity measure is applied to the block vector and decision vectors as input and the pair with maximum similarity is considered as faulty block.
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新型软件故障定位核测度的设计与分析
软件故障定位问题可以看作是一种寻找现有程序代码中隐藏的错误或错误的方法,这些错误或错误在语法上是正确的,并且对某些输入实例给出了无故障输出,但对所有其他输入实例都失败了。其中一些原因包括逻辑错误、规范解释错误、编码错误。有时在编译器的帮助下是不可能发现这些错误的。这就是软件故障定位的必要性和意义所在。这项工作的主要贡献是首先引入块命中缺失函数,该函数将软件代码执行序列的块向量与表示故障或无错误输出的决策向量联系起来。对块向量和决策向量进行相似度度量,将相似度最大的对作为故障块。
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