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Fault Tolerance Mechanism in Chip Many-Core Processors

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【作者】 张磊韩银和李华伟李晓维

【Author】 ZHANG Lei1,2, HAN Yinhe 1, LI Huawei1, LI Xiaowei1 1. Key Laboratory of Computer System and Architecture, Institute of Computing Technology, Chinese Academy of Sciences, Beijing 100080, China; 2. Graduate University of Chinese Academy of Sciences, Beijing 100080, China

【机构】 Key Laboratory of Computer System and Architecture Institute of Computing TechnologyChinese Academy of SciencesGraduate University of Chinese Academy of SciencesBeijing 100080ChinaKey Laboratory of Computer System and ArchitectureInstitute of Computing Technology

【摘要】 As semiconductor technology advances, there will be billions of transistors on a single chip. Chip many-core processors are emerging to take advantage of these greater transistor densities to deliver greater performance. Effective fault tolerance techniques are essential to improve the yield of such complex chips. In this paper, a core-level redundancy scheme called N+M is proposed to improve N-core processors’ yield by providing M spare cores. In such architecture, topology is an important factor because it greatly affects the processors’ performance. The concept of logical topology and a topology reconfiguration problem are introduced, which is able to transparently provide target topology with lowest performance degradation as the presence of faulty cores on-chip. A row rippling and column stealing (RRCS) algorithm is also proposed. Results show that PRCS can give solutions with average 13.8% degradation with negligible computing time.

【Abstract】 As semiconductor technology advances, there will be billions of transistors on a single chip. Chip many-core processors are emerging to take advantage of these greater transistor densities to deliver greater performance. Effective fault tolerance techniques are essential to improve the yield of such complex chips. In this paper, a core-level redundancy scheme called N+M is proposed to improve N-core processors’ yield by providing M spare cores. In such architecture, topology is an important factor because it greatly affects the processors’ performance. The concept of logical topology and a topology reconfiguration problem are introduced, which is able to transparently provide target topology with lowest performance degradation as the presence of faulty cores on-chip. A row rippling and column stealing (RRCS) algorithm is also proposed. Results show that PRCS can give solutions with average 13.8% degradation with negligible computing time.

【基金】 the National Natural Science Foundation of China (Nos. 60633060, 60606008, and 60576031);the National Key Basic Research and Development (973) Program of China (973)(Nos. 2005CB321604 and 2005CB321605);the fund of Chinese Academy of Sciences (No. 20074010) due to the President Scholarship
  • 【文献出处】 Tsinghua Science and Technology ,清华大学学报(自然科学版)(英文版) , 编辑部邮箱 ,2007年S1期
  • 【分类号】TP332.3
  • 【被引频次】15
  • 【下载频次】73
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