动态前瞻可重构SoC系统程序中的优化通信控制

E. Laskowski, M. Tudruj
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摘要

本文提出了一种基于片上系统(SoC)技术的新型并行嵌入式系统,该系统的处理器间通信基础设施可根据应用程序的需要动态运行调整。新的系统架构假设处理器具有大量自主通信链路,这使得与当前程序执行(包括数据通信)重叠的前瞻性处理器间连接重新配置成为可能。动态连接重新配置模式是在编译时根据应用程序图分析确定的。提出了任务调度算法和程序分段分解算法,这些分段是由处理器链路的动态预先创建的连接执行的。本文给出了快速傅里叶变换(FFT)并行数值程序结构的实验结果。实验比较了采用多链路子集可间隔重构的单交叉开关预估连接重构的程序结构质量与基于经典按需重构方法的单交叉开关重构的程序结构质量。
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Optimized Communication Control in Programs for Dynamic Look-Ahead Reconfigurable SoC Systems
The paper presents a new kind of parallel embedded systems implemented in system on chip (SoC) technology, in which inter-processor communication infrastructure is dynamically run-time adjustable to application program requirements. The new system architecture assumes processors with a large number of autonomous communication links, which enables the look-ahead inter-processor connection reconfiguration that overlaps with current program execution including data communication. Dynamic connection reconfiguration pattern is determined at compile-time, as a result of application program graphs analysis. Algorithms for task scheduling and program decomposition into sections executed with the dynamic look-ahead created connections of processor links are presented. Experimental results with structuring of parallel numerical programs of fast Fourier transformation (FFT) are presented. The experiments compare program structuring quality of the look ahead connection reconfiguration in a single crossbar switch but with the use of multiple link subsets intergeably reconfigured in advance with the quality of reconfiguration in a single crossbar switch based on classical on-request approach.
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