ON INTERPRETATION OF TYPED AND UNTYPED FUNCTIONAL PROGRAMS

S. A. Nigiyan
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Abstract

In this paper the interpretation algorithms for typed and untyped functional programs are considered. Typed functional programs use variables of any order and constants of order $ \leq 1 $, where constants of order 1 are strongly computable, monotonic functions with indeterminate values of arguments. The basic semantics of the typed functional program is a function with indeterminate values of arguments, which is the main component of its least solution. The interpretation algorithms of typed functional programs are based on substitutions, $ \beta $-reduction and canonical $ \delta $-reduction. The basic semantics of the untyped functional program is the untyped $ \lambda $-term, which is defined by means of the fixed point combinator. The interpretation algorithms of untyped functional programs are based on substitutions and $ \beta $-reduction. Interpretation algorithms are examined for completeness and comparability. It is investigated how the “behavior” of the interpretation algorithm changes after translation of typed functional program into untyped functional program.
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关于类型化和非类型化函数程序的解释
本文研究了类型化和非类型化函数程序的解释算法。类型化函数式程序使用任意阶的变量和阶为$ \leq 1 $的常量,其中阶为1的常量是强可计算的、参数值不确定的单调函数。类型化函数式程序的基本语义是具有不确定参数值的函数,这是其最小解的主要组成部分。类型化函数程序的解释算法基于替换、$ \beta $ -约简和规范$ \delta $ -约简。无类型函数式程序的基本语义是untyped $ \lambda $ -term,它通过不动点组合子定义。无类型函数程序的解释算法基于替换和$ \beta $ -约简。解释算法检查的完整性和可比性。研究了将类型化函数程序翻译成非类型化函数程序后,解释算法的“行为”发生了怎样的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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