Evo-Clocks:软件进化概览

Carol V. Alexandru, Sebastian Proksch, Pooyan Behnamghader, H. Gall
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引用次数: 8

摘要

在逆向工程、审计和其他理解现有软件的过程中,理解项目的演进是至关重要的。可视化软件的发展是具有挑战性的,因为它通常抽象出一个多维图结构,其中单个组件经历频繁但局部的变化。现有的方法通常要么只考虑少量的修订,要么专注于一个特定的方面,比如代码度量或体系结构的演变。使用带有时间轴的静态视图(例如折线图)的方法在结构的表达性方面受到限制,并且可视化结构的方法很快就会因为越来越多的修订和组件而变得混乱。我们提出了一种新的权衡方法,即在较长时间内以较低的精度显示全局结构,并以绝对精度显示单个组件的细粒度变化。我们演示了我们的方法如何通过混合冗余的视觉特征(如尺度或重复的数据点)来显示变化,而这些特征并不具有表现力。我们展示了在熟悉一个新项目时,如何使用这种方法来探索软件进化可以揭示短暂的信息。我们提供了一个工作实现,作为对我们的细粒度演化分析开源库LISA的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evo-Clocks: Software Evolution at a Glance
Understanding the evolution of a project is crucial in reverse-engineering, auditing and otherwise understanding existing software. Visualizing how software evolves can be challenging, as it typically abstracts a multi-dimensional graph structure where individual components undergo frequent but localized changes. Existing approaches typically consider either only a small number of revisions or they focus on one particular aspect, such as the evolution of code metrics or architecture. Approaches using a static view with a time axis (such as line charts) are limited in their expressiveness regarding structure, and approaches visualizing structure quickly become cluttered with an increasing number of revisions and components. We propose a novel trade-off between displaying global structure over a large time period with reduced accuracy and visualizing fine-grained changes of individual components with absolute accuracy. We demonstrate how our approach displays changes by blending redundant visual features (such as scales or repeating data points) where they are not expressive. We show how using this approach to explore software evolution can reveal ephemeral information when familiarizing oneself with a new project. We provide a working implementation as an extension to our open-source library for fine-grained evolution analysis, LISA.
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