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Active pages

机译:活动页面

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摘要

Microprocessors and memory systems suffer from a growing gap in performance. We introduce Active Pages, a computation model which addresses this gap by shifting data-intensive computations to the memory system. An Active Page consists of a page of data and a set of associated functions which can operate upon that data. We describe an implementation of Active Pages on RADram (Reconfigurable Architecture DRAM), a memory system based upon the integration of DRAM and reconfigurable logic. Results from the SimpleScalar simulator [BA97] demonstrate up to 1000X speedups on several applications using the RADram system versus conventional memory systems. We also explore the sensitivity of our results to implementations in other memory technologies.
机译:微处理器和存储系统的性能差距越来越大。我们介绍了 Active Pages ,它是一种计算模型,它通过将数据密集型计算转移到内存系统来解决这一空白。活动页面由数据页面和一组可以对该数据进行操作的关联功能组成。我们描述了RADram(可重配置架构DRAM)上的Active Pages的实现,这是一种基于DRAM和可重配置逻辑的集成的存储系统。来自SimpleScalar仿真器[BA97]的结果证明,使用RADram系统的应用程序与传统存储系统相比,在多个应用程序中的速度提高了1000倍。我们还探讨了我们的结果对其他内存技术实现的敏感性。

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