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Design and Management of 3D Chip Multiprocessors Using Network-in-Memory

机译:使用内存中网络的3D芯片多处理器设计和管理

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摘要

Long interconnects are becoming an increasingly important problem from both power and performance perspectives. This motivates designers to adopt on-chip network-based communication infrastructures and three-dimensional (3D) designs where multiple device layers are stacked together. Considering the current trends towards increasing use of chip multiprocessing, it is timely to consider 3D chip multiprocessor design and memory networking issues, especially in the context of data management in large L2 caches. The overall goal of this paper is to study the challenges for L2 design and management in 3D chip multiprocessors. Our first contribution is to propose a router architecture and a topology design that makes use of a network architecture embedded into the L2 cache memory. Our second contribution is to demonstrate, through extensive experiments, that a 3D L2 memory architecture generates much better results than the conventional two-dimensional (2D) designs under different number of layers and vertical (inter-wafer) connections. In particular, our experiments show that a 3D architecture with no dynamic data migration generates better performance than a 2D architecture that employs data migration. This also helps reduce power consumption in L2 due to a reduced number of data movements.
机译:从功率和性能的角度来看,长互连已成为越来越重要的问题。这促使设计人员采用基于片上网络的通信基础架构和将多个设备层堆叠在一起的三维(3D)设计。考虑到当前越来越多地使用芯片多处理的趋势,现在应该考虑3D芯片多处理器设计和内存网络问题,尤其是在大型L2高速缓存中的数据管理的情况下。本文的总体目标是研究3D芯片多处理器中L2设计和管理的挑战。我们的首要贡献是提出一种路由器架构和拓扑设计,该架构利用嵌入到L2高速缓存中的网络架构。我们的第二个贡献是通过大量实验证明,在不同数量的层和垂直(晶片间)连接下,3D L2存储器体系结构比传统的二维(2D)设计产生更好的结果。特别是,我们的实验表明,没有动态数据迁移的3D架构比采用数据迁移的2D架构产生更好的性能。由于减少的数据移动次数,这也有助于减少L2中的功耗。

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