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    Associate Professor

    University of Lisbon

    Higher-Order Architectural Connectors

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    We develop a notion of higher-order connector towards supporting the systematic construction of architectural connectors for software design. A higher-order connector takes connectors as parameters and allows for services such as security protocols and fault-tolerance mechanisms to be superposed over the interactions that are handled by the connectors passed as actual arguments. The notion is first illustrated over CommUnity, a parallel program design language that we have been using for formalizing aspects of architectural design. A formal, algebraic semantics is then presented which is independent of any Architectural Description Language. Finally, we discuss how our results can impact software design methods and tools.

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    Description

    Title : Higher-Order Architectural Connectors
    Author(s) : Antónia Lopes, Michel Wermelinger, José Luiz Fiadeiro
    Abstract : We develop a notion of higher-order connector towards supporting the systematic construction of architectural connectors for software design. A higher-order connector takes connectors as parameters and allows for services such as security protocols and fault-tolerance mechanisms to be superposed over the interactions that are handled by the connectors passed as actual arguments. The notion is first illustrated over CommUnity, a parallel program design language that we have been using for formalizing aspects of architectural design. A formal, algebraic semantics is then presented which is independent of any Architectural Description Language. Finally, we discuss how our results can impact software design methods and tools.
    Subject : unspecified
    Area : Other
    Language : English
    Year : 2003

    Affiliations University of Lisbon
    Journal : ACM Transactions on Software Engineering and Methodology TOSEM
    Volume : 12
    Issue : 1
    Publisher : ACM
    Pages : 64-104
    Url : http://portal.acm.org/citation.cfm?coll=GUIDE&dl=GUIDE&id=839272

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