A software-hardware hybrid steering mechanism for clustered microarchitectures

Qiong Cai, J. M. Codina, José González, Antonio González
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引用次数: 4

Abstract

Clustered microarchitectures provide a promising paradigm to solve or alleviate the problems of increasing microprocessor complexity and wire delays. High- performance out-of-order processors rely on hardware-only steering mechanisms to achieve balanced workload distribution among clusters. However, the additional steering logic results in a significant increase on complexity, which actually decreases the benefits of the clustered design. In this paper, we address this complexity issue and present a novel software-hardware hybrid steering mechanism for out-of-order processors. The proposed software- hardware cooperative scheme makes use of the concept of virtual clusters. Instructions are distributed to virtual clusters at compile time using static properties of the program such as data dependences. Then, at runtime, virtual clusters are mapped into physical clusters by considering workload information. Experiments using SPEC CPU2000 benchmarks show that our hybrid approach can achieve almost the same performance as a state-of-the-art hardware-only steering scheme, while requiring low hardware complexity. In addition, the proposed mechanism outperforms state-of-the-art software-only steering mechanisms by 5% and 10% on average for 2-cluster and 4-cluster machines, respectively.
一种用于集群微架构的软硬件混合转向机制
集群微架构提供了一个很有前途的范例来解决或减轻日益增加的微处理器复杂性和线延迟问题。高性能乱序处理器依靠纯硬件控制机制来实现集群间工作负载的均衡分配。然而,额外的转向逻辑会导致复杂性的显著增加,这实际上降低了集群设计的好处。在本文中,我们解决了这一复杂性问题,并提出了一种新的用于乱序处理器的软硬件混合转向机制。提出的软硬件协同方案利用了虚拟集群的概念。指令在编译时使用程序的静态属性(如数据依赖性)分发到虚拟集群。然后,在运行时,通过考虑工作负载信息,将虚拟集群映射到物理集群。使用SPEC CPU2000基准测试的实验表明,我们的混合方法可以实现与最先进的纯硬件转向方案几乎相同的性能,同时需要较低的硬件复杂性。此外,对于2集群和4集群机器,所提议的机制比最先进的纯软件转向机制的性能平均分别高出5%和10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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