DocumentCode :
2857621
Title :
A Super Instruction-Flow Architecture for High Performance and Low Power Processors
Author :
Kise, Kenji ; Katagiri, Takahiro ; Honda, Hiroki ; Yuba, Toshitsugu
Author_Institution :
Graduate Sch. of Inf. Syst., Electro-Commun. Univ.
fYear :
2004
fDate :
12-14 Jan. 2004
Firstpage :
10
Lastpage :
19
Abstract :
Microprocessor performance has improved at about 55% per year for the past three decades. To maintain this performance growth rate, next generation processors must achieve higher levels of instruction level parallelism. However, it is known that a conditional branch poses serious performance problems in modern processors. In addition, as an instruction pipeline becomes deep and the issue width becomes wide, this problem becomes worse. The goal of this study is to develop a novel processor architecture which mitigates the performance degradation caused by branch instructions. In order to solve this problem, we propose a super instruction-flow architecture. The concept of the architecture is described. This architecture has a mechanism which processes multiple instruction-flows efficiently and tries to mitigate the performance degradation. Preliminary evaluation results with small benchmark programs show that the first generation super instruction-flow processor efficiently mitigates branch overhead
Keywords :
instruction sets; low-power electronics; microprocessor chips; multiprocessing systems; parallel architectures; parallel programming; branch instructions; instruction level parallelism; instruction pipeline; low power processors; microprocessor performance; processor architecture; super instruction flow processor; Accuracy; Costs; Data mining; Degradation; Distributed processing; Hardware; Information systems; Microprocessors; Pipelines; Proposals;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Architecture for Future Generation High-Performance Processors and Systems, 2004. Proceedings
Conference_Location :
Maui, HI
ISSN :
1537-3223
Print_ISBN :
0-7695-2205-X
Type :
conf
DOI :
10.1109/IWIA.2004.10001
Filename :
1410676
Link To Document :
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