English

Bisimulations Respecting Duration and Causality for the Non-interleaving Applied $\pi$-Calculus

Logic in Computer Science 2022-09-13 v1 Cryptography and Security Distributed, Parallel, and Cluster Computing Programming Languages

Abstract

This paper shows how we can make use of an asynchronous transition system, whose transitions are labelled with events and which is equipped with a notion of independence of events, to define non-interleaving semantics for the applied π\pi-calculus. The most important notions we define are: Start-Termination or ST-bisimilarity, preserving duration of events; and History-Preserving or HP- bisimilarity, preserving causality. We point out that corresponding similarity preorders expose clearly distinctions between these semantics. We draw particular attention to the distinguishing power of HP failure similarity, and discuss how it affects the attacker threat model against which we verify security and privacy properties. We also compare existing notions of located bisimilarity to the definitions we introduce.

Keywords

Cite

@article{arxiv.2209.05231,
  title  = {Bisimulations Respecting Duration and Causality for the Non-interleaving Applied $\pi$-Calculus},
  author = {Clément Aubert and Ross Horne and Christian Johansen},
  journal= {arXiv preprint arXiv:2209.05231},
  year   = {2022}
}

Comments

In Proceedings EXPRESS/SOS 2022, arXiv:2208.14777

R2 v1 2026-06-28T01:07:41.376Z