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タイトルPriority in Process Algebras
本文(外部サイト)http://hdl.handle.net/2060/19990021253
著者(英)Luettgen, Gerald; Natarajan, V.; Cleaveland, Rance
著者所属(英)Institute for Computer Applications in Science and Engineering
発行日1999-01-01
言語eng
内容記述This paper surveys the semantic ramifications of extending traditional process algebras with notions of priority that allow for some transitions to be given precedence over others. These enriched formalisms allow one to model system features such as interrupts, prioritized choice, or real-time behavior. Approaches to priority in process algebras can be classified according to whether the induced notion of preemption on transitions is global or local and whether priorities are static or dynamic. Early work in the area concentrated on global pre-emption and static priorities and led to formalisms for modeling interrupts and aspects of real-time, such as maximal progress, in centralized computing environments. More recent research has investigated localized notions of pre-emption in which the distribution of systems is taken into account, as well as dynamic priority approaches, i.e., those where priority values may change as systems evolve. The latter allows one to model behavioral phenomena such as scheduling algorithms and also enables the efficient encoding of real-time semantics. Technically, this paper studies the different models of priorities by presenting extensions of Milner's Calculus of Communicating Systems (CCS) with static and dynamic priority as well as with notions of global and local pre- emption. In each case the operational semantics of CCS is modified appropriately, behavioral theories based on strong and weak bisimulation are given, and related approaches for different process-algebraic settings are discussed.
NASA分類Computer Programming and Software
レポートNONASA/CR-1999-208979
ICASE-99-3
NAS 1.26:208979
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/96817


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