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Titlebook: Coordination Models and Languages; 16th IFIP WG 6.1 Int Eva Kühn,Rosario Pugliese Conference proceedings 2014 IFIP International Federation

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Acquiring and organizing materialomposed one another to achieve complex spatial structures. We present a tiny, expressive, and type-sound calculus of computational fields, enjoying self-stabilisation, i.e., the ability of computational fields to react to changes in the environment finding a new stable state in finite time.
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Encoding Synchronous Interactions Using Labelled Petri Nets, of Petri nets models the standard operational semantics of CSP processes, which is both preserved and reflected. This correspondence allows for describing by net semantics the standard CSP observational equivalences. Since the encoding is modular with respect to process syntax, the paper puts on a
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Verifiable Decisions in Autonomous Concurrent Systems,ents. This autonomy necessitates to formally check system properties at design time to ensure avoidance of problems or even harm caused by the system at runtime. This paper is about the formal specification of concurrent systems that are capable of reasoning about the consequences of their actions,
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Progress as Compositional Lock-Freedom, to define progress by introducing the notion of catalysers, execution contexts generated from the type of a process. In this paper, we refine such definition to capture a more intuitive notion of context adequacy for checking progress. Interestingly, our new catalysers lead to a novel characterisat
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LINC: A Compact Yet Powerful Coordination Environment,and Stitch). The aim is to provide a more flexible and expressive language correcting several of their limitations and an improved run-time environment. LINC provides a compact yet powerful coordination language and an optimised run-time which executes rules. This paper describes the intrinsic prope
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