Order-Independence of Vector-Based Transition Systems

M. Raffelsieper, M. Mousavi, H. Zantema
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引用次数: 2

Abstract

Semantics of many specification languages, particularly those used in the domain of hardware, is described in terms of vector-based transition systems. In such a transition system, each macro-step transition is labeled by a vector of inputs. When performing a macro-step, several inputs may potentially change. Each macro-step can thus be decomposed in a number of micro-steps, taking one input change at a time into account. This is akin to an interleaving semantics, where a concurrent step is represented by an interleaving of its constituting components. We present criteria on vector-based transition systems, which guarantee that the next state computation is independent of the order in which these micro-steps are executed. If our criteria are satisfied by the semantic definition of a certain specification, then its state-space generation or exploration algorithm needs to only consider one representative among all possible permutations of such micro-steps. We demonstrate the applicability of our criteria to the specification of transistor netlists.
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基于矢量的转换系统的序无关性
许多规范语言的语义,特别是那些在硬件领域使用的语言,是根据基于向量的转换系统来描述的。在这样的转换系统中,每个宏步骤转换由输入向量标记。在执行宏步骤时,几个输入可能会发生变化。因此,每个宏步骤可以分解为许多微步骤,每次考虑一个输入变化。这类似于交错语义,其中并发步骤由其组成组件的交错表示。我们提出了基于向量的转移系统的准则,保证了下一个状态计算与这些微步骤的执行顺序无关。如果我们的标准满足某个规范的语义定义,那么它的状态空间生成或探索算法只需要在这些微步骤的所有可能排列中考虑一个代表。我们证明了我们的标准对晶体管网表规格的适用性。
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