ReWire中语义导向的机器架构

A. Procter, W. Harrison, I. Graves, M. Becchi, G. Allwein
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引用次数: 4

摘要

函数式编程社区已经开发了许多强大的抽象,以模块化的方式处理各种编程模型。从一个纯粹的、无副作用的计算核心开始,模块化一元语义(MMS)允许设计人员通过添加语义特性层,如可变状态和I/O,以一种“点单”的方式构建特定于领域的语言。在解释器和编译器构造领域,这种方法的好处是多方面的,并且得到了很好的探索。本文主张将MMS工具引入到硬件设计和验证中。特别地,我们将讨论一个称为ReWire的原型编译器,它将高级MMS硬件规范转换为fpga上的工作电路。这使设计人员能够以模块化的方式解决硬件设计的复杂性,而不会影响效率。
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Semantics-directed machine architecture in ReWire
The functional programming community has developed a number of powerful abstractions for dealing with diverse programming models in a modular way. Beginning with a core of pure, side effect free computation, modular monadic semantics (MMS) allows designers to construct domain-specific languages by adding layers of semantic features, such as mutable state and I/O, in an a' la carte fashion. In the realm of interpreter and compiler construction, the benefits of this approach are manifold and well explored. This paper advocates bringing the tools of MMS to bear on hardware design and verification. In particular, we shall discuss a prototype compiler called ReWire which translates high-level MMS hardware specifications into working circuits on FPGAs. This enables designers to tackle the complexity of hardware design in a modular way, without compromising efficiency.
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