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A Novel Virtual Channel Implementation Technique for Multi-core On-chip Communication

机译:多核交换机通信的新型虚拟通道实现技术

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In this paper, a new approach for implementing virtual channels (VC) for multi-core interconnection networks is presented. In this approach, the flits of different packets interleave in a channel with a single buffer of nominal depth by using a rotating flit-by-flit arbitration. The routing path of each flit is guaranteed because the flits belonging to the same packet are attached with an ID tag at each router so that they are differentiable at downstream routers. We present this on-chip communication of packets through sharing of channel and buffer, which is a novel method of virtual channel implementation. Furthermore, we demonstrate it by adding arbitrary virtual channels depending on the number of packet requests for a physical channel. In this way, NoC (Network-on-Chip) contention can be removed cheaply. Moreover, we discuss contention free communication where the depth of shared buffer does not affect the performance. A contention-free communication with small (one) buffer depth can create an efficient on-chip communication with high performance, small chip area and low power consumption.
机译:本文介绍了一种用于实现多核互连网络的虚拟信道(VC)的新方法。在这种方法中,通过使用旋转逐掠仲裁,不同分组的不同分组在具有单个缓冲器的通道中交织的闪动。保证每个粉碎的路由路径是因为属于相同分组的浪费在每个路由器处附加id标签,以便在下游路由器处可分辨。我们通过共享信道和缓冲区来介绍数据包的片断通信,这是一种虚拟信道实现的新方法。此外,我们通过根据物理信道的分组请求的数量添加任意虚拟信道来展示它。以这种方式,可以便宜地去除NOC(片上网)争用。此外,我们讨论共享缓冲区深度不会影响性能的争用通信。与小(一)缓冲深度的无争用通信可以创建具有高性能,小芯片面积和低功耗的高效片上通信。

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