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Separation of Data flow and Control flow in Reconfigurable Multi-core SoCs using the Gannet Service-based Architecture

机译:基于Gannet Service的体系结构分离可重构的多核SoC中的数据流量和控制流程

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This paper presents a mechanism for the separation of control and data flow in NoC-based SoCs consisting of multiple heterogeneous reconfigurable IP cores. This mechanism enables full data path control by an embedded microcontroller whilst avoiding the potential communication bottleneck and without requiring centralised control over the NoC. In this work, we assume a generic SoC where data processing is performed by reconfigurable IP cores interacting through a NoC and control structures are implemented on a microcontroller. The proposed mechanism employs a service-based SoC architecture (the Gannet architecture) where the control services are implemented on a Virtual Machine and IP cores acquire service behaviour through the use of a generic data marshalling and interfacing circuit. The paper aims at demonstrating how concepts from functional programming language and dataflow machine research can be applied to address the challenges faced in the design of reconfigurable heterogeneous multi-core SoCs. The presented work is theoretical in nature but is explained by example without formal analysis and notations.
机译:本文介绍了由多种异构可重新配置IP核的基于NOC的SOC中的控制和数据流分离的机制。该机制使得通过嵌入式微控制器的完整数据路径控制,同时避免潜在的通信瓶颈和不需要集中控制NOC。在这项工作中,我们假设通过通过NoC交互的可重新配置的IP核来执行数据处理,并且在微控制器上实现了数据处理。所提出的机制采用基于服务的SOC架构(GANET架构),其中控制服务在虚拟机上实现,并且IP核心通过使用通用数据编组和接口电路来获取服务行为。本文旨在展示功能规划语言和数据流机床研究的概念如何应用于解决可重新配置的异构多核SoC设计中面临的挑战。所呈现的工作是本质上的理论,但通过例子解释而不进行正式分析和符号。

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