Reduced reachability graphs with parallel actions and dynamic replacement

H. Mountassir
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Abstract

Analysis of communication protocols by the conventional state exploration is a well known technique. It is actually implemented in several tools of validation. The major problem of this technique is its restricted applicability and depends on the available memory. The number of reachable states is often large and sometimes infinite. In this paper we discuss a reduction technique to build small graphs as possible which preserve same properties. At this end vectors of executable actions are proposed to eliminate redundancy of sequences and intermediate states. The depth-first and the breadth-first algorithms based on the concept of dynamic replacement are used in the order to reduce the final graphs. Two major questions are discussed: the finiteness of the graphs and the verification of the communication properties.<>
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通过并行操作和动态替换减少了可达性图
通过常规状态探测来分析通信协议是一种众所周知的技术。它实际上是在几个验证工具中实现的。该技术的主要问题是适用性有限,并且依赖于可用内存。可达状态的数量通常很大,有时是无限的。在本文中,我们讨论了一种简化技术,以建立尽可能小的图,并保持相同的性质。为此,提出了可执行动作向量来消除序列和中间状态的冗余。采用基于动态替换概念的深度优先和宽度优先算法来减少最终图。讨论了两个主要问题:图的有限性和通信性质的验证。
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