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An Evaluation of the New Framework for Loop Nest Optimization in GCC  (Make Corrections)  
Sebastian Pop, Albert Cohen, Georges-Andre Silber



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Abstract: This paper presents an evaluation of the new framework for loop nest optimization of the GNU Compiler Collection (GCC). Multiple structural and experimental aspects of this infrastructure are considered: performance of the generated code, effectiveness of the analyzers and optimizers, compilation overhead, together with possible improvements. The evaluation is based on the SPEC CPU2000 and JavaGrande benchmarks. (Update)

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BibTeX entry:   (Update)

@misc{ pop-evaluation,
  author = "Sebastian Pop and Albert Cohen and Georges-Andre Silber",
  title = "An Evaluation of the New Framework for Loop Nest Optimization in GCC",
  url = "citeseer.ist.psu.edu/733439.html" }
Citations (may not include all citations):
866   Techniques and Tools (context) - Aho, Sethi et al. - 1986
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