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Optimal distribution of privileged nodes in networks-on-chip

机译:网络上特权节点的最佳分布

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With ongoing technology scaling, networks-on-chip will have to be organized hierarchically in order to cope with their growing size. Privileged nodes carry out dedicated tasks essential to establish and coordinate proper functionality within and among hierarchical units. In order to mitigate the impact of a privileged node's failure, redundancy has to be established by a suitable distribution of privileged nodes. This contribution presents an integer linear programming (ILP) formulation for finding distributions that minimize hardware cost under redundancy constraints or maximize redundancy for given cost for arbitrary NoC topologies. For mesh and mesh torus, optimal solutions are obtained with up to 289 nodes. For larger regular networks, a technique based on the generation and assembly of regular tiles is proposed. A characterization of the conditions for optimality of tile-based networks is provided.
机译:通过持续的技术缩放,芯片上的网络将必须分层组织,以便应对其越来越大的尺寸。特权节点执行专用任务,可以在分层单元内建立和协调适当的功能。为了减轻特权节点的失败的影响,必须通过合适的特权节点分发建立冗余。该贡献提供了一个整数线性编程(ILP)配方,用于查找可在冗余约束下最小化硬件成本的分布,或者最大化任意NoC拓扑成本的冗余。对于网状和网状花纹,最多可获得最多289个节点的最佳解决方案。对于较大的常规网络,提出了一种基于常规瓦片的生成和组装的技术。提供了基于图块的网络的最优性条件的表征。

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