Algebraic model of programming languages
Cristina I. Brumar, Emil M. Popa, Florentina Laura Cacovean, Bogdan A. Brumar
Abstract
Cristina I. Brumar, Emil M. Popa, Florentina Laura Cacovean, Bogdan A. Brumar
Abstract
Abstract:- This paper is an approach methodology of programming language, considerate like a tuple L = 〈Sem, Syn, l: Sem → Syn〉. The definition of a programming language provides a working mechanism for the development of language processing tools. A language processing environment is a set of integrated tools that support the three tasks of computer language processing: specification, implementation and usage. The development the tools that belong to a language processing environment requires language specification mechanisms that define formally all components of a programming language, the syntax, the semantics, and their association, by the same specification rules. The results presented here have as initial point [7], [8], [9].
OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract:- This paper is an approach methodology of programming language, considerate like a tuple L = 〈Sem, Syn, l: Sem → Syn〉. The definition of a programming language provides a working mechanism for the development of language processing tools. A language processing environment is a set of integrated tools that support the three tasks of computer language processing: specification, implementation and usage. The development the tools that belong to a language processing environment requires language specification mechanisms that define formally all components of a programming language, the syntax, the semantics, and their association, by the same specification rules. The results presented here have as initial point [7], [8], [9].
Key concepts: Programming language, Computer science, Programming language specification, First-generation programming language, Language primitive, Specification language, Very high-level programming language, Fifth-generation programming language