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Efficient Embedding of Partitioned Circuits onto Multi-FPGA Boards

机译:高效地将分区电路嵌入到多FPGA板上

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摘要

Multi-FPGA boards(MFBs) are extensively used by the designers for logic emulation, rapid prototyping, custom computing and low volume sub-system implementation. Efficient use of an MFB does not only require a good routing topology, but also a good set of CAD tools to partition the given circuits and embed them on the MFB. Khalid et al[l] have shown that among the MFB topologies, hybrid series of architectures containing fixed FPGA-FPGA connections and programmable connections through Field Programmable Interconnect Devices(FPIDs) are better than other architectures. Programmable connections can connect different pairs of FPGAs under program control, but require additional wires, extra delays etc. compared to fixed connection. An MFB, to be used in rapid prototyping, is expected to emulate a large number of digital circuits. To accommodate the routing requirement generated by partitioning them, MFB is required to have significantly large number of programmable connections. In this paper, we have shown that an efficient embedding tool can substantially reduce the requirement of programmable connections. The paper presents an optimal as well as a fast heuristic for embedding. Our methods can work with a large class of hybrid routing topologies.
机译:设计人员广泛使用Multi-FPGA板(MFB)进行逻辑仿真,快速原型设计,自定义计算和小批量子系统实现。有效使用MFB不仅需要良好的路由拓扑,而且需要一组良好的CAD工具来划分给定电路并将它们嵌入到MFB中。 Khalid等人[1]已经表明,在MFB拓扑中,包含固定FPGA-FPGA连接和通过现场可编程互连设备(FPID)进行可编程连接的混合系列体系结构要好于其他体系结构。可编程连接可以在程序控制下连接不同的FPGA对,但与固定连接相比,需要更多的导线,额外的延迟等。用于快速原型制作的MFB有望模拟大量数字电路。为了适应对它们进行分区而产生的路由需求,MFB需要具有大量的可编程连接。在本文中,我们证明了有效的嵌入工具可以大大减少对可编程连接的需求。本文提出了一种最佳以及快速的启发式嵌入方法。我们的方法可以与多种混合路由拓扑一起使用。

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