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Optimizing Aspect-Oriented Mechanisms for Embedded Applications

机译:优化面向嵌入式应用的方面的机制

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As applications for small embedded mobile devices are getting larger and more complex, it becomes inevitable to adopt more advanced software engineering methods from the field of desktop application development. Aspect-oriented programming (AOP) is a promising approach due to its advanced modularization capabilities. However, existing AOP languages tend to add a substantial overhead in both execution time and code size which restricts their practicality for small devices with limited resources. In this paper, we present optimizations for aspect-oriented mechanisms at the level of the virtual machine. Our experiments show that these optimizations yield a considerable performance gain along with a reduction of the code size. Thus, our optimizations establish the base for using advanced aspect-oriented modularization techniques for developing Java applications on small embedded devices.
机译:由于小型嵌入式移动设备的应用越来越复杂,因此可以从桌面应用程序开发领域采用更先进的软件工程方法变得不可避免。面向方面的编程(AOP)由于其先进的模块化功能,这是一种有希望的方法。然而,现有的AOP语言倾向于在执行时间和代码大小中添加大量开销,该代码大小限制了其具有有限资源的小型设备的实用性。在本文中,我们在虚拟机的级别提供了方面取向机制的优化。我们的实验表明,这些优化会产生相当大的性能增益以及代码大小的减少。因此,我们的优化建立了使用高级方面导向的模块化技术的基础,用于在小型嵌入式设备上开发Java应用程序。

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