面向对象并发编程中同步约束的明确分离和组合

Y. Yasutake, Yusuke Masuyama, K. Oda, Takaichi Yoshida
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引用次数: 3

摘要

本文提出了分布式面向对象计算中并发描述和同步机制实现的语言框架。一些并发的面向对象语言被认为是由用户定义的函数和同步约束构造的。我们提出了用于同步约束的语言,该语言允许使用声明性符号定义互斥和条件同步。同步约束与用户定义函数分离,它们之间的关系在绑定代码中描述。绑定机制减少了它们之间的依赖关系,并有助于代码重用。该框架使程序员能够轻松地独立理解和描述使用定义的函数和同步约束。同步机制的实现基于我们正在开发的可重构对象模型。用户定义的函数和同步机制作为独立的模块在单个对象中实现。这种同步机制既具有灵活性,又保持了面向对象的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clear separation and combination of synchronization constraint for concurrent object oriented programming
This paper presents a language framework for a concurrent description and an implementation of a synchronization mechanism in distributed object-oriented computation. Some concurrent object-oriented languages are considered to be constructed from a user-defined function and a synchronization constraint. We propose the language for the synchronization constraint, which allows to define mutual exclusion and conditional synchronization by using declarative notations. The synchronization constraint is separated from user-defined functions, and the relation between them is described in the binding code. The binding mechanism reduces the dependency between them and contributes to code reuse. This framework makes it is easy for programmers to understand and describe the use-defined functions and synchronization constraints independently. The implementation of the synchronization mechanism is based on a reconfigurable object model that we are developing. The user-defined function and synchronization mechanism are implemented as its own separated module in the single object. Then the synchronization mechanism has flexibility and preserves the concept of object-orientation.
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