On the Expressive Power of KLAIM-based Calculi


Rocco De Nicola, Daniele Gorla, Rosario Pugliese

Theoretical Computer Science 24(5), pages 315-330
May 1998

We investigate the issue of designing a kernel programming language for mobile computing and describe KLAIM, a language that supports a programming paradigm where processes, like data, can be moved from one computing environment to another. The language consists of a core Linda with multiple tuple spaces and of a set of operators for building processes. KLAIM naturally supports programming with explicit localities. Localities are first-class data (they can be manipulated like any other data), but the language provides coordination mechanisms to control the interaction protocols among located processes. The formal operational semantics is useful for discussing the design of the language and provides guidelines for implementations. KLAIM is equipped with a type system that statically checks access right violations of mobile agents. Types are used to describe the intentions (read, write, execute, etc.) of processes in relation to the various localities. The type system is used to determine the operations that processes want to perform at each locality, and to check whether they comply with the declared intentions and whether they have the necessary rights to perform the intended operations at the specific localities. Via a series of examples, we show that many mobile code programming paradigms can be naturally implemented in our kernel language. We also present a prototype implementation of KLAIM in Java.

Tags:

Publication

— authors

Rocco De Nicola, Daniele Gorla, Rosario Pugliese

— status

published

— sort

article in journal

— publication date

May 1998

— journal

Theoretical Computer Science

— volume

24

— issue

5

— pages

315-330

identifiers

— DOI

10.1109/32.685256

— print ISSN

0304-3975

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