通过动态分析程序理解的可伸缩性解决方案

A. Zaidman
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引用次数: 40

摘要

动态分析长期以来一直是(编译器)优化、程序理解、测试覆盖率等方面的研究课题。从那以后,事件跟踪的规模一直是一个重要的问题。这种可扩展性问题在计算方面存在局限性,即算法的时间和/或空间复杂性变得太大而无法由计算机处理,但在认知方面也存在局限性,即呈现给用户的结果变得太大而难以理解。这项研究的重点是提供一些程序理解解决方案,帮助软件工程师在他们最初的程序探索和理解阶段关注软件系统。我们在技术中使用的关键概念是“执行频率”和运行时“耦合”。为了验证我们的技术,我们使用了许多开源软件系统,以及一个工业遗留应用程序
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalability solutions for program comprehension through dynamic analysis
Dynamic analysis has long been a subject of study in the context of (compiler) optimization, program comprehension, test coverage, etc. Ever-since, the scale of the event trace has been an important issue. This scalability issue finds its limits on the computational front, where time and/or space complexity of algorithms become too large to be handled by a computer, but also on the cognitive front, where the results presented to the user become too large to be easily understood. This research focuses on delivering a number of program comprehension solutions that help software engineers to focus on the software system during their initial program exploration and comprehension phases. The key concepts we use in our techniques are "frequency of execution" and runtime "coupling". To validate our techniques we used a number of open-source software systems, as well as an industrial legacy application
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