Homomorphic tree embeddings and their applications to recursive program optimization

L. Lakshmanan, K. Ashraf, Jiawei Han
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引用次数: 2

Abstract

The problems of stage-preserving linearization and one-boundedness are studied for a class of nonlinear single rule recursive programs, and syntactic characterizations are developed for both. The characterizations lead to a polynomial-time algorithm for the former and a linear-time algorithm for the latter. Stage-preserving linearization results in a significant improvement in evaluation efficiency, compared to a linearization that does not preserve stages. The class of nonlinear strips that are stage-preserving linearizable includes several classes of programs that can be linearized only using a mix of left and right linear rules, as well as programs that cannot be linearized using previously known techniques. The study makes use of a technique based on the notion of homomorphic tree embeddings.<>
同态树嵌入及其递归程序优化应用
研究了一类非线性单规则递归规划的保阶线性化和有界性问题,并给出了两者的句法刻画。这些特征导致前者的多项式时间算法和后者的线性时间算法。与不保留阶段的线性化相比,保持阶段的线性化在评估效率方面有显著提高。保持阶段线性化的非线性条带类包括几类只能使用左右线性规则混合线性化的程序,以及不能使用先前已知技术线性化的程序。该研究利用了一种基于同态树嵌入概念的技术。
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