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A fully abstract may testing semantics for concurrent objects

A fully abstract may testing semantics for concurrent objects
A fully abstract may testing semantics for concurrent objects
This paper provides a fully abstract semantics for a variant of the concurrent object calculus. We define may testing for concurrent object components and then characterise it using a trace semantics inspired by UML interaction diagrams. The main result of this paper is to show that the trace semantics is fully abstract for may testing. This is the first such result for a concurrent object language.
0304-3975
17-63
Jeffrey, Alan
d79c647d-86f4-43f2-94d0-78be65748331
Rathke, Julian
dba0b571-545c-4c31-9aec-5f70c231774b
Pierce, B
31040f4e-7317-488f-8fe9-58dca27cb0f3
Jeffrey, Alan
d79c647d-86f4-43f2-94d0-78be65748331
Rathke, Julian
dba0b571-545c-4c31-9aec-5f70c231774b
Pierce, B
31040f4e-7317-488f-8fe9-58dca27cb0f3

Jeffrey, Alan and Rathke, Julian , Pierce, B (ed.) (2005) A fully abstract may testing semantics for concurrent objects. Theoretical Computer Science, 338 (1-3), 17-63.

Record type: Article

Abstract

This paper provides a fully abstract semantics for a variant of the concurrent object calculus. We define may testing for concurrent object components and then characterise it using a trace semantics inspired by UML interaction diagrams. The main result of this paper is to show that the trace semantics is fully abstract for may testing. This is the first such result for a concurrent object language.

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More information

Published date: 2005
Additional Information: Commentary On: http://authors.elsevier.com/sd/article/S0304397504006991
Organisations: Electronic & Software Systems

Identifiers

Local EPrints ID: 263596
URI: http://eprints.soton.ac.uk/id/eprint/263596
ISSN: 0304-3975
PURE UUID: 95d9448a-adb5-49f3-8758-04b81461f2fe

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Date deposited: 23 Feb 2007
Last modified: 14 Mar 2024 07:35

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Contributors

Author: Alan Jeffrey
Author: Julian Rathke
Editor: B Pierce

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