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I&C 2016

Higher-order interpretations and program complexity

Journal Article journal-article Computer Science ยท Theoretical Computer Science

Abstract

Polynomial interpretations and their generalizations like quasi-interpretations have been used in the setting of first-order functional languages to design criteria ensuring statically some complexity bounds on programs [10]. This fits in the area of implicit computational complexity, which aims at giving machine-free characterizations of complexity classes. In this paper, we extend this approach to the higher-order setting. For that we consider simply-typed term rewriting systems [35], we define higher-order polynomial interpretations for them, and we give a criterion ensuring that a program can be executed in polynomial time. In order to obtain a criterion flexible enough to validate interesting programs using higher-order primitives, we introduce a notion of polynomial quasi-interpretations, coupled with a simple termination criterion based on linear types and path-like orders.

Authors

Keywords

  • Implicit computational complexity
  • Term rewriting systems
  • Type systems
  • Lambda-calculus

Context

Venue
Information and Computation
Archive span
1987-2026
Indexed papers
3021
Paper id
385250282760065651
v2026.09.13