Once and for all: how to compose modules -- The composition calculus
August 27, 2024 Β· Declared Dead Β· π Leveraging Applications of Formal Methods
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Authors
Peter Fettke, Wolfgang Reisig
arXiv ID
2408.15031
Category
cs.SE: Software Engineering
Cross-listed
cs.FL
Citations
1
Venue
Leveraging Applications of Formal Methods
Last Checked
5 months ago
Abstract
Computability theory is traditionally conceived as the theoretical basis of informatics. Nevertheless, numerous proposals transcend computability theory, in particular by emphasizing interaction of modules, or components, parts, constituents, as a fundamental computing feature. In a technical framework, interaction requires composition of modules. Hence, a most abstract, comprehensive theory of modules and their composition is required. To this end, we suggest a minimal set of postulates to characterize systems in the digital world that consist of interacting modules. For such systems, we suggest a calculus with a simple, yet most general composition operator which exhibits important properties, in particular associativity. We claim that this composition calculus provides not just another conceptual, formal framework, but that essentially all settings of modules and their composition can be based on this calculus. This claim is supported by a rich body of theorems, properties, special classes of modules, and case studies.
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