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Design Space Exploration of Multiprocessor Systems with MultiContext Reconfigurable Co-Processors

机译:多上下文可重构县级处理器的多处理器系统设计空间探索

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Future high performance computing systems may consist of multiple processors and reconfigurable logic coprocessors. As indicated by industry trends, such co-processors will be integrated on existing motherboards without any glue logic. It is likely that such hybrid computing machines will be a breakthrough for various high performance applications. As a result, it has become essential to investigate the system architectures of such machines. This paper describes a full-system simulation approach to model and evaluate hybrid computing systems made up of multiple processors and coarsegrained reconfigurable logic co-processors. We develop a full-system simulator for such hybrid machines by extending an existing full-system simulator to have device models for multicontext coarse-grained reconfigurable logic co-processors. The proposed full-system simulator is able to execute an unmodified multiprocessor operating system and a multi-band filtering application. Using this full-system simulation approach, we have investigated the tradeoffs among various system architectures.
机译:未来的高性能计算系统可以包括多个处理器和可重新配置的逻辑协处理器。正如行业趋势所示,此类协处理器将集成在现有的主板上,没有任何胶水逻辑。这种混合计算机可能是各种高性能应用的突破。结果,研究这些机器的系统架构是必要的。本文介绍了一种用于模型的全系统仿真方法,并评估由多个处理器和COARSORGRINATE可重新配置逻辑协处理器组成的混合计算系统。我们通过扩展现有的全系统模拟器来开发一种全系统模拟器,用于使现有的全系统模拟器具有用于多附录粗粒可重新配置的逻辑协处理器的设备型号。所提出的全系统模拟器能够执行未修改的多处理器操作系统和多频段过滤应用程序。使用此全系统仿真方法,我们研究了各种系统架构中的权衡。

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