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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >NoC synthesis flow for customized domain specific multiprocessor systems-on-chip
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NoC synthesis flow for customized domain specific multiprocessor systems-on-chip

机译:定制领域特定的多处理器片上系统的NoC合成流程

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摘要

The growing complexity of customizable single-chip multiprocessors is requiring communication resources that can only be provided by a highly-scalable communication infrastructure. This trend is exemplified by the growing number of network-on-chip (NoC) architectures that have been proposed recently for system-on-chip (SoC) integration. Developing NoC-based systems tailored to a particular application domain is crucial for achieving high-performance, energy-efficient customized solutions. The effectiveness of this approach largely depends on the availability of an ad hoc design methodology that, starting from a high-level application specification, derives an optimized NoC configuration with respect to different design objectives and instantiates the selected application specific on-chip micronetwork. Automatic execution of these design steps is highly desirable to increase SoC design productivity. This work illustrates a complete synthesis flow, called Netchip, for customized NoC architectures, that partitions the development work into major steps (topology mapping, selection, and generation) and provides proper tools for their automatic execution (SUNMAP, xpipescompiler). The entire flow leverages the flexibility of a fully reusable and scalable network components library called xpipes, consisting of highly-parameterizable network building blocks (network interface, switches, switch-to-switch links) that are design-time tunable and composable to achieve arbitrary topologies and customized domain-specific NoC architectures. Several experimental case studies are presented In the work, showing the powerful design space exploration capabilities of the proposed methodology and tools.
机译:可定制的单芯片多处理器的复杂性日益增长,要求通信资源只能由高度可扩展的通信基础架构提供。最近为片上系统(SoC)集成提出的越来越多的片上网络(NoC)架构就是这种趋势的例证。开发针对特定应用领域量身定制的基于NoC的系统对于实现高性能,高能效的定制解决方案至关重要。这种方法的有效性在很大程度上取决于特定设计方法的可用性,该特定设计方法从高级应用规范开始,针对不同的设计目标得出优化的NoC配置,并实例化选定的特定于应用的片上微网络。为了提高SoC设计的生产率,非常需要自动执行这些设计步骤。这项工作说明了用于定制的NoC架构的完整综合流程(称为Netchip),该流程将开发工作划分为主要步骤(拓扑映射,选择和生成),并为其自动执行提供了适当的工具(SUNMAP,xpipescompiler)。整个流程利用了称为xpipes的完全可重用和可扩展的网络组件库的灵活性,该组件由高度可参数化的网络构建块(网络接口,交换机,交换机到交换机链路)组成,这些模块在设计时就可以进行调整,并且可以实现任意组合拓扑和定制的特定于域的NoC架构。在工作中提出了几个实验案例研究,显示了所提出的方法和工具的强大的设计空间探索能力。

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