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Design space exploration of a mesochronous link for cost-effective and flexible GALS NOCs

机译:同步链路的设计空间探索,可实现经济高效且灵活的GALS NOC

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There is today little doubt on the fact that a high-performance and cost-effective Network-on-Chip can only be designed in 45nm and beyond under a relaxed synchronization assumption. In this direction, this paper focuses on a GALS system where the NoC and its end-nodes have independent clocks (unrelated in frequency and phase) and are synchronized via dual-clock FIFOs at network interfaces. Within the network, we assume mesochronous synchronization implemented with hierarchical clock tree distribution. This paper contributes two essential components of any practical design automation support for network instantiation in the target system. On one hand, it introduces a switch design which greatly reduces the overhead for mesochronous synchronization and can be adapted to meet different layout constraints. On the other hand, the paper illustrates a design space exploration framework of mesochronous links that can direct the selection of synchronization options on a port-by-port basis for all the switches in the NoC, based on timing and layout constraints. A final case study illustrates how a cost-effective GALS NoC can be assembled, placed and routed by exploiting the flexibility of the architecture and the outcomes of the exploration framework, thus proving the viability and effectiveness of the design platform.
机译:如今,毫无疑问,在轻松的同步假设下,高性能,高性价比的片上网络只能设计在45纳米及以上的设计中。在这个方向上,本文重点介绍一种GALS系统,其中NoC及其末端节点具有独立的时钟(频率和相位无关),并通过网络接口上的双时钟FIFO进行同步。在网络内部,我们假设使用分层时钟树分布实现了同步同步。本文为目标系统中的网络实例化提供了任何实用的设计自动化支持的两个基本组件。一方面,它引入了一种开关设计,该设计大大减少了同步同步的开销,并且可以适应各种布局约束。另一方面,本文说明了同步链路的设计空间探索框架,该框架可以基于时序和布局约束,为NoC中的所有交换机逐个端口指导直接选择同步选项。最后的案例研究说明了如何利用架构的灵活性和探索框架的结果来组装,放置和布线具有成本效益的GALS NoC,从而证明设计平台的可行性和有效性。

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