A recursive approach to end-to-end path latency computation in heterogeneous multiprocessor systems

S. Schliecker, R. Ernst
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引用次数: 45

Abstract

This paper proposes a method for the derivation of end-to-end delays of applications that involve processing on multiple components in a heterogeneous multiprocessor system. The rocedure precisely captures the pipelined and parallel processing of multiple events along an application path by accurately capturing the resource timing and avoiding the pay-bursts-only-once problem. Both time-triggered and event-triggered task activation schemes with arbitrary event patterns are supported. In contrast to previous work, complex application topologies are allowed: The approach considers path forking and merging, as well as functional cycles and non-functional cyclic dependencies. The basis for the proposed method is an iterative compositional performance analysis, that allows computing event models in such systems. Based on the event models and local performance abstractions we propose a recursive approach to the derivation of the worst-case latency.
异构多处理器系统中端到端路径延迟计算的递归方法
本文提出了一种推导异构多处理器系统中涉及多个组件处理的应用程序端到端延迟的方法。该过程通过精确地捕获资源定时和避免只支付一次的问题,精确地捕获沿着应用程序路径的多个事件的流水线和并行处理。支持具有任意事件模式的时间触发和事件触发任务激活方案。与以前的工作相反,允许使用复杂的应用程序拓扑:该方法考虑路径分叉和合并,以及功能循环和非功能循环依赖。提出的方法的基础是一个迭代组合性能分析,它允许在这样的系统中计算事件模型。基于事件模型和局部性能抽象,我们提出了一种递归方法来推导最坏情况延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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