Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/3388
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dc.contributor.authorHarman, M-
dc.contributor.authorHierons, RM-
dc.contributor.authorDanicic, S-
dc.contributor.authorHowroyd, J-
dc.contributor.authorLaurence, MR-
dc.contributor.authorFox, C-
dc.coverage.spatial10en
dc.date.accessioned2009-06-08T12:03:29Z-
dc.date.available2009-06-08T12:03:29Z-
dc.date.issued2001-
dc.identifier.citationIEEE Working Conference on Reverse Engineering (WCRE'2001), Stuttgart, 25-34, Oct 2001en
dc.identifier.urihttp://bura.brunel.ac.uk/handle/2438/3388-
dc.description.abstractSeveral approaches to reverse and re-engineering are based upon program slicing. Unfortunately, for large systems, such as those which typically form the subject of reverse engineering activities, the space and time requirements of slicing can be a barrier to successful application. Faced with this problem, several authors have found it helpful to merge control flow graph (CFG) nodes, thereby improving the space and time requirements of standard slicing algorithms. The node-merging process essentially creates a 'coarser' version of the original CFG. The paper introduces a theory for defining control flow graph node coarsening calculi. The theory formalizes properties of interest, when coarsening is used as a precursor to program slicing. The theory is illustrated with a case study of a coarsening calculus, which is proved to have the desired properties of sharpness and consistency.en
dc.format.extent846479 bytes-
dc.format.mimetypeapplication/pdf-
dc.language.isoen-
dc.publisherIEEEen
dc.subjectSlicingen
dc.subjectSlice precision-
dc.subjectNode merging-
dc.titleNode coarsening calculi for program slicingen
dc.typeConference Paperen
dc.identifier.doihttp://dx.doi.org/10.1109/WCRE.2001.957807-
Appears in Collections:Computer Science
Dept of Computer Science Research Papers
Software Engineering (B-SERC)

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