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Configurable network-on-chip router macrocells

机译:可配置的片上网络路由器宏单元

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摘要

This paper presents a configurable architecture for Network-on-Chip (NoC) router macrocells, and a methodology to streamline their design and configuration. The methodology addresses the typical problems experienced by design and verification engineers when coding highly configurable intellectual property macrocells at Register Transfer Level (RTL) with hundreds of parameters and thousands of resulting configurations. A NoC infrastructure for a Multi Processor System-on-Chip (MPSoC) may require tens or hundreds of router macrocells. Therefore, managing the configuration design space is becoming a bottleneck for the design and verification of many-core processing systems. The proposed generation flow is illustrated on a real-world NoC router core. Its configurable architecture is compliant with several NoC topologies such as Ring, Octagon, Spidergon and 2D mesh typically used in many-core processing platforms. The generation flow allows for a reduction in the database code size, up to 70% in our experiments, and a contraction of three orders of magnitudes of the verification space vs. conventional design flows of RTL macrocells. The validity of the approach is also confirmed by synthesizing the generated router macrocells in nanoscale CMOS technology. The achieved performance compare well to the state-of-the-art in terms of low latency and low circuit complexity. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了片上网络(NoC)路由器宏单元的可配置体系结构,以及简化其设计和配置的方法。该方法论解决了设计和验证工程师在以数百个参数和成千上万个配置在寄存器传输级(RTL)上对高度可配置的知识产权宏单元进行编码时遇到的典型问题。用于多处理器片上系统(MPSoC)的NoC基础架构可能需要数十或数百个路由器宏单元。因此,管理配置设计空间已成为设计和验证多核处理系统的瓶颈。在实际的NoC路由器核心上说明了建议的生成流程。它的可配置体系结构符合多种NoC拓扑,例如通常在多核处理平台中使用的Ring,Octagon,Spidergon和2D网格。与RTL宏单元的传统设计流程相比,生成流程可减少数据库代码大小(在我们的实验中最多可减少70%),并使验证空间缩小三个数量级。通过在纳米级CMOS技术中合成生成的路由器宏单元,也证实了该方法的有效性。就低延迟和低电路复杂度而言,所获得的性能与最新技术相当。 (C)2016 Elsevier B.V.保留所有权利。

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