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首页> 外文期刊>IEE proceedings. Part E, Computers and digital techniques >Implementation of guaranteed services in the MANGO clockless network-on-chip
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Implementation of guaranteed services in the MANGO clockless network-on-chip

机译:在MANGO无时钟片上网络中实现保证服务

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摘要

Shared, segmented, on-chip interconnection networks, known as networks-on-chip (NoC), may become the preferred way of interconnecting intellectual property (IP) cores in future giga-scale system-on-chip (SoC) designs. A NoC can provide the required communication bandwidth while accommodating the effects of scaling microchip technologies. Equally important, a NoC facilitates a truly modular and scalable design flow. The MANGO (message-passing asynchronous network-on-chip providing guaranteed services over open core protocol (OCP) interfaces) NoC is presented, and how its key characteristics (clockless implementation, standard socket access points, and guaranteed communication services) make MANGO suitable for a modular SoC design flow is explained. Among the advantages of using clockless circuit techniques are inherent global timing closure, low forward latency in pipelines, and zero dynamic idle power consumption. Time division multiplexing, generally used to provide bandwidth guarantees in clocked NoCs, however, is not possible in a clockless environment. MANGO provides an alternative, high-performance solution to providing hard, connection-oriented service guarantees, using clockless circuit techniques. In-depth circuit details are presented, and the 0.13 (mu)m standard cell implementation of a 5 X 5 routing node, for use in a mesh type NoC, is described.
机译:共享的,分段的片上互连网络(称为片上网络(NoC))可能会成为未来千兆规模的片上系统(SoC)设计中互连知识产权(IP)内核的首选方式。 NoC可以提供所需的通信带宽,同时适应扩展微芯片技术的影响。同样重要的是,NoC促进了真正的模块化和可扩展的设计流程。介绍了MANGO(通过开放式核心协议(OCP)接口提供有保证的服务的消息传递异步片上网络)NoC,以及其主要特性(无时钟实现,标准套接字访问点和有保证的通信服务)如何使MANGO变得合适解释了模块化SoC设计流程。使用无时钟电路技术的优势包括固有的全局时序收敛,流水线中的低前向等待时间以及零动态空闲功耗。时分复用通常用于在时钟NoC中提供带宽保证,但是在无时钟环境中是不可能的。 MANGO使用无时钟电路技术提供了一种替代的高性能解决方案,以提供硬性的,面向连接的服务保证。呈现了详细的电路细节,并描述了用于网状NoC的5 X 5路由节点的0.13μm标准单元实现。

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