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A Bottleneck-Centric Tuning Policy for Optimizing Energy in Parallel Programs.

, , , , , , and . PARCO, volume 32 of Advances in Parallel Computing, page 265-276. IOS Press, (2017)

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A Bottleneck-Centric Tuning Policy for Optimizing Energy in Parallel Programs., , , , , , and . PARCO, volume 32 of Advances in Parallel Computing, page 265-276. IOS Press, (2017)Integrating Scientific Workflows and Large Tiled Display Walls: Bridging the Visualization Divide., , , , , , , , , and 2 other author(s). ICPP Workshops, page 308-316. IEEE Computer Society, (2011)Virtual Microscopy and Analysis Using Scientific Workflows., , , , , , , , , and 3 other author(s). eScience, page 239-246. IEEE Computer Society, (2009)Assertion Based Parallel Debugging., , , , , and . CCGRID, page 63-72. IEEE Computer Society, (2011)Supporting Relative Debugging for Large-scale UPC Programs., , , , , and . ICCS, volume 29 of Procedia Computer Science, page 1491-1503. Elsevier, (2014)Scalable Relative Debugging., , and . IEEE Trans. Parallel Distrib. Syst., 25 (3): 740-749 (2014)A data-centric framework for debugging highly parallel applications., , , , , and . Softw., Pract. Exper., 45 (4): 501-526 (2015)Energy efficiency modeling of parallel applications., , , , , , and . SC, page 17:1-17:13. IEEE / ACM, (2018)Statistical assertion: A more powerful method for debugging scientific applications., , and . J. Comput. Science, 5 (2): 126-134 (2014)Runtime Verification of Scientific Computing: Towards an Extreme Scale., , , and . ESPT@SC, page 26-33. IEEE, (2016)