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ABSTRACT
Minimizing power dissipation is an important design requirement for both portable and non-portable systems. In this work, we propose an architectural solution to the power problem that retains performance while reducing power. The technique, known as Pipeline Balancing (PLB), dynamically tunes the resources of a general purpose processor to the needs of the program by monitoring performance within each program. We analyze metrics for triggering PLB, and detail instruction queue design and energy savings based on an extension of the Alpha 21264 processor. Using a detailed simulator, we present component and full chip power and energy savings for single and multi-threaded execution. Results show an issue queue and execution unit power reduction of up to 23% and 13%, respectively, with an average performance loss of 1% to 2%.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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[doi> 10.1145/277044.277226]
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CITED BY 38
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Daniel Chaver , Luis Piñuel , Manuel Prieto , Francisco Tirado , Michael C. Huang, Branch prediction on demand: an energy-efficient solution, Proceedings of the 2003 international symposium on Low power electronics and design, August 25-27, 2003, Seoul, Korea
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Saurabh Chheda , Osman Unsal , Israel Koren , C. Mani Krishna , Csaba Andras Moritz, Combining compiler and runtime IPC predictions to reduce energy in next generation architectures, Proceedings of the 1st conference on Computing frontiers, April 14-16, 2004, Ischia, Italy
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Xiaodong Li , Zhenmin Li , Francis David , Pin Zhou , Yuanyuan Zhou , Sarita Adve , Sanjeev Kumar, Performance directed energy management for main memory and disks, ACM SIGARCH Computer Architecture News, v.32 n.5, December 2004
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Ismail Kadayif , Mahmut Kandemir , Guilin Chen , Ozcan Ozturk , Mustafa Karakoy , Ugur Sezer, Optimizing Array-Intensive Applications for On-Chip Multiprocessors, IEEE Transactions on Parallel and Distributed Systems, v.16 n.5, p.396-411, May 2005
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