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Bank stealing for conflict mitigation in GPGPU Register File

机译:银行窃取GPGPU注册文件中的冲突缓解

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Modern General Purpose Graphic Processing Unit (GPGPU) demands a large Register File (RF), which is typically organized into multiple banks to support the massive parallelism. Although heavy banking benefits RF throughput, its associated area and energy costs with diminishing performance gains greatly limit future RF s-caling. In this paper, we propose an improved RF design with a bank stealing technique, which enables a high RF throughput with compact area. By deeply investigating the GPGPU microarchitecture, we identify the deficiency in the state-of-the-art RF designs as the bank conflict problem, while the majority of conflicts can be eliminated leveraging the fact that the highly-banked RF oftentimes experiences under-utilization. This is especially true in GPGPU where multiple ready warps are available at the scheduling stage with their operands to be wisely coordinated. Our lightweight bank stealing technique can opportunistically fill the idle banks for better operand service, and the average GPGPU performance can be improved under smaller energy budget with significant area saving, which makes it promising for sustainable RF scaling.
机译:现代通用图形处理单元(GPGPU)要求大型寄存器文件(RF),通常组织成多个银行以支持巨大的并行性。虽然重量级的银行业益处RF吞吐量,其相关区域和能源成本随着效率越来越少,但大幅限制未来的RF S-CALING。在本文中,我们提出了一种利用银行窃取技术的改进的RF设计,这使得具有紧凑区域的高RF吞吐量。通过深入调查GPGPU微体建筑,我们将最先进的RF设计的缺陷作为银行冲突问题,而大多数冲突可以消除利用高度银行的射频频繁的经历的事实。这在GPGPU中尤其如此,其中多个Ready Warps在调度阶段可用,操作数量明智地协调。我们的轻质银行窃取技术可以机会填补空闲银行,以获得更好的操作数服务,可以在较小的能量预算下提高平均GPGPU性能,具有重要的区域节约,这使得可持续的RF缩放使其有希望。

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