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Investigating Frequency Scaling, Nonvolatile, and Hybrid Memory Technologies for On-Chip Routers to Support the Era of Dark Silicon

机译:调查片上路由器的频率缩放,非易失性和混合记忆技术,以支持黑暗硅的时代

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In the era of dark silicon, several components on the chip [i.e., cores, memory, and network on chip (NoC)] need to be powered-off or run in low-power mode. This is mainly due to the increased leakage power consumption at smaller technology nodes. Other than the power consumed by cores and caches, power and performance of the interconnects is a significant factor as the communication network consumes a considerable share of the power budget. In particular, the buffers used at every port of the NoC router consume considerable dynamic as well as static power. To support dark silicon and save energy, a popular approach is to power off the routers and wake them up when needed. However, this affects the packet latency, and we need to observe the traffic through the nodes to decide turning the routers ON-OFF. In this article, we propose to keep the routers always powered ON to maintain constant connectivity and investigate various approaches. One proposal is to frequency scale the routers connected to powered OFF nodes, and the other proposals are to use a combination of SRAM and nonvolatile spin-transfer torque random access memory-based VCs in the routers. By managing which VCs to be active at a given time, we achieve energy savings. The proposals are evaluated by varying the percentage of dark nodes on the chip. The experimental results show that all proposals yield significant energy savings while maintaining connectivity.
机译:在黑暗硅的时代,芯片上的若干组件[即芯片,内存和网络(NOC)]需要在低功率模式下打开或运行。这主要是由于较小的技术节点处增加了漏电功耗。除了核心和高速缓存的功率之外,互连的功率和性能是一个重要因素,因为通信网络消耗了电力预算的相当大的份额。特别是,NOC路由器的每个端口使用的缓冲区都消耗了相当大的动态以及静态电源。为了支持暗芯片并节省能源,流行的方法是关闭路由器,并在需要时唤醒它们。但是,这会影响数据包延迟,并且我们需要观察通过节点的流量来决定关闭路由器。在本文中,我们建议保持路由器始终通电以​​维持恒定的连接并调查各种方法。一个提议是频率刻度连接到电源关闭节点的路由器,其他提案是在路由器中使用SRAM和非易失性自旋转印扭矩随机访问存储器的VCS的组合。通过管理在给定时间的VCS处于活动状态,我们实现了节能。通过改变芯片上的暗节点的百分比来评估提案。实验结果表明,所有提案都在保持连接的同时产生显着的节能。

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