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QORE: A fault tolerant network-on-chip architecture with power-efficient quad-function channel (QFC) buffers

机译:QORE:具有高能效四功能通道(QFC)缓冲器的容错片上网络架构

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Network-on-Chips (NoCs) are quickly becoming the standard communication paradigm for the growing number of cores on the chip. While NoCs can deliver sufficient bandwidth and enhance scalability, NoCs suffer from high power consumption due to the router microarchitecture and communication channels that facilitate inter-core communication. As technology keeps scaling down in the nanometer regime, unpredictable device behavior due to aging, infant mortality, design defects, soft errors, aggressive design, and process-voltage-temperature variations, will increase and will result in a significant increase in faults (both permanent and transient) and hardware failures. In this paper, we propose QORE - a fault tolerant NoC architecture with Quad-Function Channel (QFC) buffers. The use of QFC buffers and their associated control (link and fault controllers) enhance fault-tolerance by allowing the NoC to dynamically adapt to faults at the link level and reverse propagation direction to avoid faulty links. Additionally, QFC buffers reduce router power and improve performance by eliminating in-router buffering. Our simulation results using real benchmarks and synthetic traffic mixes show that QORE improves speedup by 1.3× and throughput by 2.3× when compared to state-of-the art fault tolerant NoCs designs such as Ariadne and Vicis. Moreover, using Synopsys Design Compiler, we also show that network power in QORE is reduced by 21% with minimal control overhead.
机译:片上网络(NoC)迅速成为芯片上不断增加的内核数量的标准通信范例。尽管NoC可以提供足够的带宽并增强可伸缩性,但由于路由器微体系结构和便于内核间通信的通信通道,NoC遭受了高功耗的困扰。随着技术不断缩小规模,由于老化,婴儿死亡率,设计缺陷,软错误,激进的设计以及过程电压-温度变化而导致的不可预测的设备行为将增加,并且将导致故障的显着增加(两者均如此)。永久性和暂时性)以及硬件故障。在本文中,我们提出了QORE-具有四功能通道(QFC)缓冲区的容错NoC架构。 QFC缓冲区及其相关控制(链接和故障控制器)的使用通过允许NoC在链接级别和反向传播方向上动态适应故障来避免错误链接,从而提高了容错能力。此外,QFC缓冲器通过消除路由器内缓冲来降低路由器功耗并提高性能。我们使用真实基准测试和综合流量混合的仿真结果表明,与最新的容错NoC设计(例如Ariadne和Vicis)相比,QORE将速度提高了1.3倍,将吞吐量提高了2.3倍。此外,使用Synopsys Design编译器,我们还表明QORE中的网络功率减少了21%,而控制开销却最小。

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