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Design of configurable, network based interconnection modules for communication centric System-on-Chip applications

机译:用于以通信为中心的片上系统应用的可配置,基于网络的互连模块的设计

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In recent years, System-on-Chip design architectures have increasingly become communication centric. To support such designs, a configurable and scalable interconnect backbone is required. Intellectual Property cores for on chip communication, provided by major field programmable gate array vendors are limited to shared bus or point to point interconnect protocols. To provide network oriented interconnect fabric, we propose a configurable and scalable, network based interconnect module. The interconnections can be configured to four popular on-chip network topologies: mesh, torus, ring and fat-tree. A parameterized and customizable wormhole router is designed, with variable number of ports and link width to support the four networks. A hardware simulator has been designed for in-situ testing of the interconnect module. Two state of art implementation platforms viz Virtex-6 Field programmable gate array and a full custom implementation using 32nm CMOS process has been used to characterize the module. We report area and power dissipation of the module configured to the four topologies, in the two platforms.
机译:近年来,片上系统设计架构已越来越成为以通信为中心的设计。为了支持这种设计,需要可配置和可扩展的互连主干。主要现场可编程门阵列供应商提供的片上通信知识产权内核仅限于共享总线或点对点互连协议。为了提供面向网络的互连结构,我们提出了一种可配置且可扩展的基于网络的互连模块。可以将互连配置为四种流行的片上网络拓扑:网格,环形,环形和胖树形。设计了一个参数化且可自定义的蠕虫路由器,具有可变数量的端口和链路宽度以支持四个网络。已设计了一个硬件模拟器来对互连模块进行原位测试。两个最先进的实现平台,即Virtex-6现场可编程门阵列和使用32nm CMOS工艺的完全定制实现已用于表征模块。我们报告在两个平台中配置为四种拓扑的模块的面积和功耗。

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