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Argo: A Real-Time Network-on-Chip Architecture With an Efficient GALS Implementation

机译:Argo:具有高效GALS实现的实时片上网络架构

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In this paper, we present an area-efficient, globally asynchronous, locally synchronous network-on-chip (NoC) architecture for a hard real-time multiprocessor platform. The NoC implements message-passing communication between processor cores. It uses statically scheduled time-division multiplexing (TDM) to control the communication over a structure of routers, links, and network interfaces (NIs) to offer real-time guarantees. The area-efficient design is a result of two contributions: 1) asynchronous routers combined with TDM scheduling and 2) a novel NI microarchitecture. Together they result in a design in which data are transferred in a pipelined fashion, from the local memory of the sending core to the local memory of the receiving core, without any dynamic arbitration, buffering, and clock synchronization. The routers use two-phase bundled-data handshake latches based on the Mousetrap latch controller and are extended with a clock gating mechanism to reduce the energy consumption. The NIs integrate the direct memory access functionality and the TDM schedule, and use dual-ported local memories to avoid buffering, flow-control, and synchronization. To verify the design, we have implemented a 4 4 bitorus NoC in 65-nm CMOS technology and we present results on area, speed, and energy consumption for the router, NI, NoC, and postlayout.
机译:在本文中,我们提出了一种用于硬实时多处理器平台的区域高效,全局异步,本地同步片上网络(NoC)架构。 NoC实现了处理器内核之间的消息传递通信。它使用静态调度的时分多路复用(TDM)来控制路由器,链路和网络接口(NI)的结构上的通信,以提供实时保证。高效的区域设计是两个方面的成果:1)结合TDM调度的异步路由器,以及2)一种新颖的NI微体系结构。它们共同导致了一种设计,在这种设计中,数据以流水线方式从发送内核的本地存储器传输到接收内核的本地存储器,而无需任何动态仲裁,缓冲和时钟同步。路由器使用基于Mousetrap锁存器控制器的两相捆绑数据握手锁存器,并通过时钟门控机制进行扩展以降低能耗。 NI集成了直接内存访问功能和TDM时间表,并使用双端口本地内存来避免缓冲,流控制和同步。为了验证设计,我们在65 nm CMOS技术中实现了4 4 bitorus NoC,并给出了路由器,NI,NoC和后布局的面积,速度和能耗方面的结果。

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