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An area-efficient partially reconfigurable crossbar switch with low reconfiguration delay

机译:具有低重新配置延迟的区域有效的部分可重新配置的横杆开关

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With the increasing number of processors in Multiprocessor System-on-Chips (MPSoCs), Network-on-Chips (NoCs) are replacing conventional buses as the interprocessor communication architecture. Since different use cases might be running on MPSoCs, there is a need for dynamically reconfigurable NoC. However, most dynamically reconfigurable NoCs have a large area overhead due to the additional reconfiguration logic. While recently some dynamically reconfigurable NoCs have been proposed based on partial reconfiguration (PR), they have high reconfiguration delay and require off-line bitstream generation for all possible scenarios. The problem lies with the design of the crossbar switch, which is the fundamental component of a NoC. In this paper, a novel partially reconfigurable crossbar switch design with low area requirement, low reconfiguration delay and runtime bitstream generation is presented. The crossbar switch is built from lookup tables (LUTs), and reconfiguration is done by modifying the LUTs' content through PR. Reconfiguration delay is minimized by constraining the placement of the LUTs into the least number of configurable logic block columns and identifying the configuration frames that are responsible for LUTs' content. The novel crossbar switch design achieves an area saving of up to 84% and reconfiguration delay minimization of up to 78%. It can be used to realize any network topology, and Clos, Benes and single stage crossbar topologies are evaluated in the paper.
机译:随着多处理器系统上的越来越多的处理器,网络上芯片(NOC)正在替换传统总线作为中的地区通信架构。由于不同用例可能在MPsoc上运行,因此需要动态可重新配置的NOC。然而,由于附加重新配置逻辑,大多数动态可重新配置的NOC具有大面积开销。虽然最近已经基于部分重新配置(PR)提出了一些动态可重新配置的NOC,但它们具有高重新配置延迟,并且需要对所有可能的场景进行离线比特流生成。问题在于横杆开关的设计,这是NOC的基本组件。本文介绍了具有低面积要求,低重新配置延迟和运行比特流生成的新型可重新配置的横杆开关设计。横杆交换机由查找表(LUTS)构建,通过PR修改LUT的内容来完成重新配置。通过将LUT放置到最小数量的可配置逻辑块列的位置并识别负责LUTS内容的配置帧来最小化重新配置延迟。新颖的横杆开关设计实现了高达84%的区域,可重新配置延迟最小化高达78%。它可用于实现任何网络拓扑,并在纸上评估CLU,BENES和单级横梁拓扑。

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