DocumentCode :
465381
Title :
Implicitly Parallel Programming Models for Thousand-Core Microprocessors
Author :
Hwu, Wen-Mei ; Ryoo, Shane ; Ueng, Sain-Zee ; Kelm, John H. ; Gelado, Isaac ; Stone, Sam S. ; Kidd, Robert E. ; Baghsorkhi, Sara S. ; Mahesri, Aqeel A. ; Tsao, Stephanie C. ; Navarro, Nacho ; Lumetta, Steve S. ; Frank, Matthew I. ; Patel, Sanjay J.
Author_Institution :
Univ. of Illinois at Urbana-Champaign, Urbana
fYear :
2007
fDate :
4-8 June 2007
Firstpage :
754
Lastpage :
759
Abstract :
This paper argues for an implicitly parallel programming model for many-core microprocessors, and provides initial technical approaches towards this goal. In an implicitly parallel programming model, programmers maximize algorithm- level parallelism, express their parallel algorithms by asserting high-level properties on top of a traditional sequential programming language, and rely on parallelizing compilers and hardware support to perform parallel execution under the hood. In such a model, compilers and related tools require much more advanced program analysis capabilities and programmer assertions than what are currently available so that a comprehensive understanding of the input program´s concurrency can be derived. Such an understanding is then used to drive automatic or interactive parallel code generation tools for a diverse set of parallel hardware organizations. The chip-level architecture and hardware should maintain parallel execution state in such a way that a strictly sequential execution state can always be derived for the purpose of verifying and debugging the program. We argue that implicitly parallel programming models are critical for addressing the software development crises and software scalability challenges for many-core microprocessors.
Keywords :
concurrency control; microprocessor chips; parallel algorithms; parallel programming; parallelising compilers; program debugging; program diagnostics; program verification; chip-level architecture; many-core microprocessors; parallel algorithms; parallel code generation; parallel execution; parallel programming; parallelizing compilers; program analysis; program concurrency; program debugging; program verification; programmer assertion; sequential programming language; software development; software scalability; thousand-core microprocessors; Computer architecture; Computer languages; Concurrent computing; Debugging; Hardware; Microprocessors; Parallel algorithms; Parallel programming; Program processors; Programming profession; Design; Human Factors; Languages; Parallel Programming;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation Conference, 2007. DAC '07. 44th ACM/IEEE
Conference_Location :
San Diego, CA
ISSN :
0738-100X
Print_ISBN :
978-1-59593-627-1
Type :
conf
Filename :
4261284
Link To Document :
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