基于组件的多模系统模式切换时序分析

Y. Hang, H. Hansson
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引用次数: 14

摘要

基于组件的开发(CBD)允许从预先开发的可重用组件构建系统,从而减少了开发时间和工作量。将行为划分为一组主要的操作模式是降低嵌入式系统设计和执行复杂性的经典方法。在CBD的系统模式支持中,一个关键问题是将预先开发的多模式组件无缝地组合到系统中。我们之前已经开发了一种模式切换逻辑(MSL),用于实现这种无缝组合的基于组件的多模式系统。在本文中,我们扩展了MSL来处理原子事务,即处理在数据处理过程中不能被终止的组件集。这与我们最初的MSL形成对比,在MSL中,组件立即中止以执行模式切换。基于我们的扩展MSL,我们提供了模式切换时间的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Timing Analysis for Mode Switch in Component-Based Multi-mode Systems
Component-Based Development (CBD) reduces development time and effort by allowing systems to be built from pre-developed reusable components. Partitioning the behavior into a set of major operational modes is a classical approach to reduce complexity of embedded systems design and execution. In supporting system modes in CBD, a key issue is seamless composition of pre-developed multi-mode components into systems. We have previously developed a Mode Switch Logic (MSL) for component-based multi-mode systems implementing such seamless composition. In this paper we extend our MSL to cope with atomic transactions, i.e., to handle sets of components that must not be aborted in the middle of the processing of data. This is in contrast with our original MSL, in which components are immediately aborted to perform a mode switch. Based on our extended MSL, we provide analysis of the mode switch timing.
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