...
首页> 外文期刊>Journal of Computers >TPSS: A Flexible Hardware Support for Unicast and Multicast on Networks-on-Chip
【24h】

TPSS: A Flexible Hardware Support for Unicast and Multicast on Networks-on-Chip

机译:TPSS:用于片上网络的单播和多播的灵活硬件支持

获取原文
           

摘要

—Multicast is an important traffic mode that runs on multi-core systems, and an efficient hardware support for multicast can greatly improve the performance of the whole system. Most multicast solutions use the dimension-order routing to generate the mutlicast trees, which are neither bandwidth nor power efficient. This article presents a synthesizable router for network-on-chip (NoC) which supports arbitrarily shaped multicast path based on a mesh topology. In our scheme, incremental setup is adopted to simplify the process of multicast tree construction. For each sub-path setup, we present a novel scheme called two period sub-path setup (TPSS). TPSS is divided into two periods: routing to a predeterminate intermediate router, and updating lookup tables from the intermediate router to destination. This novel setup makes it feasible to support arbitrarily shaped path setup. In our case study, Optimized tree algorithm (OPT) and Left-XY-Right-Optimized tree algorithm (LXYROPT) are proposed for power-efficient path searching, but they need to be pre-configured for the reason of high computation cost. Moreover, Virtual Circuit Tree Multicasting (VCTM) is also supported in our scheme for dynamic construction of multicast path, which needs no computation in path searching. The performance is evaluated by using a cycle accurate simulator developed in SystemC, and the hardware overhead is estimated by using a synthesizable HDL model. Compared to VCTM (without FIFO, multicast table and network adapter), the area overhead of implementing our router is negligible (less than 0.5%).
机译:-Multicast是在多核系统上运行的重要流量模式,并且可以大大提高整个系统的性能的高效硬件支持。大多数多播解决方案使用维度订购路由来生成笨拙的树,既不是带宽也不高效。本文介绍了一种可合成的路由器,用于网络上的网络(NOC),它基于网格拓扑支持任意形状的多播路径。在我们的方案中,采用增量设置来简化组播树构建的过程。对于每个子路径设置,我们呈现了一种名为两个时段子路径设置(TPS)的新颖方案。 TPSS分为两个时段:路由到缩放的中间路由器,并将从中间路由器更新查找表到目的地。这部小说设置使得支持任意形状的路径设置可行。在我们的案例研究中,提出了优化的树算法(OPT)和左XY右优化的树算法(LXYROPT),以便为高功率的路径搜索,但是由于高计算成本的原因,他们需要预先配置。此外,我们还支持虚拟电路树多播(VCTM),以便在多播路径的动态构造方案中支持,这在路径搜索中不需要计算。通过使用SystemC中开发的循环精确模拟器来评估性能,并且通过使用可合成的HDL模型来估计硬件开销。与VCTM(没有FIFO,组播表和网络适配器)相比,实现路由器的区域开销可忽略不计(小于0.5%)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号