In-depth measurement and analysis on densification power law of software execution

YunHuan Qu, Q. Zheng, Ting Liu, Jian Li, X. Guan
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引用次数: 6

Abstract

Measuring software execution is important for many software engineering tasks. In this paper, Densification Power Law (DPL) of software execution is measured and studied as a feature of growing software complexity. Densification means that during a networked system's evolution, it usually becomes denser and the number of edges and nodes grows with a consistent super linear relation. This feature was discovered and reported in 2005. In this paper, based on a measurement of 15 open-source Java programs, we show that when software systems are modeled as a series of dynamic Call Graphs during their executions, they always obey DPL with very close correlation. Then a comparison between static Call Graph and DPL is presented, showing that DPL's properties cannot be derived statically. An explanation for DPL of software execution is given and verified. We believe the universality of DPL makes it an appropriate metric for software execution process.
软件执行密度幂律的深入测量与分析
对许多软件工程任务来说,测量软件执行是很重要的。本文将软件执行的致密化幂律(DPL)作为软件复杂性增长的特征进行测量和研究。致密化是指在网络系统的演化过程中,网络系统通常变得更加密集,边缘和节点的数量以一致的超线性关系增长。这个特性是在2005年发现并报告的。在本文中,基于对15个开源Java程序的测量,我们表明,当软件系统在执行过程中被建模为一系列动态调用图时,它们总是以非常密切的相关性服从DPL。然后将静态调用图与DPL进行了比较,表明DPL的属性不能静态地派生。给出了软件执行DPL的解释并进行了验证。我们相信DPL的通用性使其成为软件执行过程的合适度量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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