Publication | Open Access
Autotuning algorithmic choice for input sensitivity
91
Citations
43
References
2015
Year
Unknown Venue
Artificial IntelligenceEngineeringMachine LearningModel TuningMachine Learning ToolFeature ExtractionInput SensitivityData SciencePattern RecognitionSensitivity AnalysisProgram Performance AutotuningComputer EngineeringComputer ScienceDeep LearningAuto-tuningProgram AnalysisParameter TuningAutomationAutomated Machine Learning
A daunting challenge faced by program performance autotuning is input sensitivity, where the best autotuned configuration may vary with different input sets. This paper presents a novel two-level input learning algorithm to tackle the challenge for an important class of autotuning problems, algorithmic autotuning. The new approach uses a two-level input clustering method to automatically refine input grouping, feature selection, and classifier construction. Its design solves a series of open issues that are particularly essential to algorithmic autotuning, including the enormous optimization space, complex influence by deep input features, high cost in feature extraction, and variable accuracy of algorithmic choices. Experimental results show that the new solution yields up to a 3x speedup over using a single configuration for all inputs, and a 34x speedup over a traditional one-level method for addressing input sensitivity in program optimizations.
| Year | Citations | |
|---|---|---|
Page 1
Page 1