确定可见下推自动机的一个更紧界

Infinity Pub Date : 2009-11-17 DOI:10.4204/EPTCS.10.5
Nguyen Van Tang
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引用次数: 14

摘要

可见下推自动机(visible pushdown automata, VPA)由Alur和Madhusuan于2004年提出,它是下推自动机的一个子类,其堆栈行为完全由输入符号根据输入字母表的固定划分来决定。自引入以来,vpa已被证明在各种上下文中都很有用,例如,作为验证的规范形式和处理XML流的自动模型。然而,由于VPA框架的高复杂性,实现形式化验证是一个挑战。本文研究了基于vpa的模型检验算法的实现问题。为此,我们首先提出了确定VPA的上界的改进。接下来,我们提出了简单的实时算法来检验这类自动机的通用性和包容性问题。然后,我们在原型工具中实现了所提出的算法。最后,我们对随机生成的vpa进行了实验。实验结果表明,所提算法的速度明显快于标准算法。
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A Tighter Bound for the Determinization of Visibly Pushdown Automata
Visibly pushdown automata (VPA), introduced by Alur and Madhusuan in 2004, is a subclass of pushdown automata whose stack behavior is completely determined by the input symbol according to a fixed partition of the input alphabet. Since its introduce, VPAs have been shown to be useful in various context, e.g., as specification formalism for verification and as automaton model for processing XML streams. Due to high complexity, however, implementation of formal verification based on VPA framework is a challenge. In this paper we consider the problem of implementing VPA-based model checking algorithms. For doing so, we first present an improvement on upper bound for determinization of VPA. Next, we propose simple on-the-fly algorithms to check universality and inclusion problems of this automata class. Then, we implement the proposed algorithms in a prototype tool. Finally, we conduct experiments on randomly generated VPAs. The experimental results show that the proposed algorithms are considerably faster than the standard ones.
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来源期刊
CiteScore
2.30
自引率
0.00%
发文量
26
审稿时长
10 weeks
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