库组件的快速性能预测

S. Schupp, Marcin Zalewski, Kyle Ross
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引用次数: 1

摘要

基于组件的编程是一种将软件系统设计为具有低一致性和高度正交性的组件组合的方法。然而,解耦和正交性需要在组件的客户端进行耦合和组装。本文解决了在库组件组合中出现的性能问题。我们将讨论编写器的设计和实现,该编写器根据声明性性能描述的分类组装库组件。采用现成的决策树过程进行选择,并使用c++特性技术在整个库中传播期望的行为,我们的系统允许快速的性能预测。它应用于FFTL,一个“类似stl”的快速傅里叶变换c++库。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid performance prediction for library components
Component-based programming is a methodology for designing software systems as assemblages of components with a low degree of coherence and a high degree of orthogonality. Decoupling and orthogonality, however, require coupling and assembling on the side of the component's client. This paper addresses performance problems that occur in the composition specifically of library components. We discuss the design and implementation of a composer, which assembles library components based on a classification of their declarative performance descriptions. Employing an off-the-shelf decision-tree procedure for selecting, and the C++ technique of traits for propagating the desired behavior throughout the whole library, our system allows for rapid performance predictions. It is applied to FFTL, an "STL-like" C++ library for the Fast Fourier Transform.
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