Aspect-based dynamic software updating: a model and its empirical evaluation

S. Previtali, T. Gross
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引用次数: 14

Abstract

This paper presents an approach to update object-oriented applications at run time. We introduce an update model that leverages aspect technology to express a software update as a modular unit. Although many updates remain encapsulated within a single method body, the nature of software updates is clearly crosscutting: Classes depend on each other, and if the interface of one class changes, all clients of the class are affected. We have designed and implemented an update analyzer that automatically compares two versions of a Java program and extracts the necessary updates expressed as aspects. As execution platform, we rely on an aspect-enabled virtual machine to weave the generated updating aspects at run time. The update analyzer uses only a small subset of the user-level services provided by the VM: around advice for method redefinitions as well as field and method pointcuts for single join-point selection. To validate our approach, we have conducted an empirical study on eight real-world Java applications whose versions encompass several years of development. The study shows that most updates (i.e., 98%) can be handled by the dynamic updating system and that most updates (i.e., 92%) can be extracted fully automatically or with only modest programmer intervention.
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基于方面的动态软件更新:一个模型及其实证评价
本文提出了一种在运行时更新面向对象应用程序的方法。我们引入了一个更新模型,该模型利用方面技术将软件更新表示为一个模块化单元。尽管许多更新仍然封装在单个方法体中,但软件更新的本质显然是横切的:类相互依赖,如果一个类的接口更改,则该类的所有客户端都会受到影响。我们已经设计并实现了一个更新分析器,它可以自动比较Java程序的两个版本,并提取以方面形式表示的必要更新。作为执行平台,我们依靠支持方面的虚拟机在运行时编织生成的更新方面。更新分析器只使用VM提供的用户级服务的一小部分:围绕方法重新定义的建议,以及用于单个连接点选择的字段和方法切入点。为了验证我们的方法,我们对八个真实的Java应用程序进行了实证研究,这些应用程序的版本包含了几年的开发。研究表明,大多数更新(即98%)可以由动态更新系统处理,大多数更新(即92%)可以完全自动提取或只需要适度的程序员干预。
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