基于连续的函数式编程语言并行实现

J. Giorgi, D. Métayer
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引用次数: 6

摘要

很长一段时间以来,函数式语言一直被认为是在并行架构上执行的有吸引力的候选者。这种信念是基于这样一个事实:函数式程序没有副作用,而且经常包含大量的隐式并行性。然而,第一批函数式语言的并行实现[Vegdahl 841]并没有真正支持这种说法,因为它们基于一种有点教条式的并行性观点:正常的执行模式应该是并行模式,极端的结果是每个表达式都可能被视为一个进程。这种方法的一致性使它在理论上很有吸引力,但实际上并不有效(至少在目前的硬件技术中是这样),因为它需要大量的开销,可能超过利用并行性所获得的任何好处。现在人们认识到,函数式语言的并行实现必须满足两个标准才能具有竞争力:
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Continuation-based parallel implementation of functional programming languages
It has been claimed for a long time that functional languages are attractive candidates for execution on parallel architectures. This belief is based on the fact that functional programs are free of side effects and often contain a great deal of implicit parallelism. However the first parallel implementations of functional languages [Vegdahl 841 didn’t really support this claim because they were based on a somewhat dogmatic view of parallelism : the normal execution mode was supposed to be the parallel mode, the extreme consequence being that each expression might be considered as a process. The uniformity of this approach makes it attractive in theory but it is not really effective (at least in the present state of the art in hardware technology) because it entails significant overhead costs that may outweigh any benefit gained from exploiting parallelism. It is now recognized that a parallel implementation of a functional language must satisfy two criteria in order to be competitive :
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