The design and implementation of heterogeneous multicore systems for energy-efficient speculative thread execution

Author:

Luo Yangchun1,Hsu Wei-Chung2,Zhai Antonia3

Affiliation:

1. Advanced Micro Devices Inc., Sunnyvale, CA

2. National Chiao Tung University, Taiwan

3. University of Minnesota, Twin Cities

Abstract

With the emergence of multicore processors, various aggressive execution models have been proposed to exploit fine-grained thread-level parallelism, taking advantage of the fast on-chip interconnection communication. However, the aggressive nature of these execution models often leads to excessive energy consumption incommensurate to execution time reduction. In the context of Thread-Level Speculation, we demonstrated that on a same-ISA heterogeneous multicore system, by dynamically deciding how on-chip resources are utilized, speculative threads can achieve performance gain in an energy-efficient way. Through a systematic design space exploration, we built a multicore architecture that integrates heterogeneous components of processing cores and first-level caches. To cope with processor reconfiguration overheads, we introduced runtime mechanisms to mitigate their impacts. To match program execution with the most energy-efficient processor configuration, the system was equipped with a dynamic resource allocation scheme that characterizes program behaviors using novel processor counters. We evaluated the proposed heterogeneous system with a diverse set of benchmark programs from SPEC CPU2000 and CPU20006 suites. Compared to the most efficient homogeneous TLS implementation, we achieved similar performance but consumed 18% less energy. Compared to the most efficient homogeneous uniprocessor running sequential programs, we improved performance by 29% and reduced energy consumption by 3.6%, which is a 42% improvement in energy-delay-squared product.

Funder

Division of Computer and Network Systems

National Science Foundation

International Business Machines Corporation

Semiconductor Research Corporation

Division of Computing and Communication Foundations

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture,Information Systems,Software

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Survey on Thread-Level Speculation Techniques;ACM Computing Surveys;2016-11-11

2. Position-aware thread-level speculative parallelization for large-scale chip-multiprocessor;Proceedings of the 12th ACM International Conference on Computing Frontiers;2015-05-06

3. Speculative High Performance Computation on Heterogeneous Multi-Core;Advanced Materials Research;2014-10

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