Partial online cycle elimination in inclusion constraint graphs

Manuel Fähndrich, J. Foster, Z. Su, A. Aiken
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引用次数: 241

Abstract

Many program analyses are naturally formulated and implemented using inclusion constraints. We present new results on the scalable implementation of such analyses based on two insights: first, that online elimination of cyclic constraints yields orders-of-magnitude improvements in analysis time for large problems; second, that the choice of constraint representation affects the quality and efficiency of online cycle elimination. We present an analytical model that explains our design choices and show that the model's predictions match well with results from a substantial experiment.
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包含约束图中的部分在线循环消去
许多程序分析自然是使用包含约束来制定和实现的。我们基于两个见解提出了这种分析的可扩展实现的新结果:首先,在线消除循环约束可以在大型问题的分析时间上产生数量级的改进;其次,约束表示的选择影响在线循环消除的质量和效率。我们提出了一个分析模型来解释我们的设计选择,并表明该模型的预测与大量实验的结果很好地匹配。
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