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Reducing Reconfiguration Overheads Using Configuration Prefetch, Optimal Reuse, and Optimal Memory Mapping

机译:使用配置预取,最佳重用和最佳内存映射来减少重新配置开销

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Modern embedded systems are packed with dedicated field-programmable gate arrays (FPGAs) to accelerate the overall system performance. But the main drawback in using FPGA as a reconfigurable system is that a lot of reconfiguration overheads are generated in the reconfiguration process. The reconfiguration overheads are mainly because of the configuration data being fetched from the off-chip memory and also due to the improper management of tasks during execution. This work focusses mainly on the prefetch heuristics, reuse technique, and the available memory hierarchy to provide an efficient management of tasks over the available resources. This short communication proposes a new optimal replacement policy which reduces the overall time and energy reconfiguration overheads for static systems in their subsequent iterations. It is evident from the results that most of the time and energy reconfiguration overheads are eliminated.
机译:现代嵌入式系统用专用的现场可编程门阵列(FPGA)包装,以加速整体系统性能。 但是,使用FPGA作为可重新配置系统的主要缺点是在重新配置过程中生成大量重新配置开销。 重新配置开销主要是因为由于在执行期间的任务的管理不当而被取得了配置数据。 这项工作主要关注预取启发式,重用技术和可用的内存层次结构,以提供可用资源的有效管理任务。 此短期通信提出了一种新的最佳替代策略,可降低其随后的迭代中静态系统的整体时间和能量重新配置开销。 从结果中显而易见的是,大多数时间和能量重新配置开销都被淘汰。

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