2008Microelectronics & ComputerRequires access

Fine-grained Parallel Computing Programming Model Research

Zhiguang Wang

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Abstract

As a bridge between natural model of an application and hardware model of computer, programming model is important in computer industry. Nevertheless, evolution of programming model could not suit already boosted multi-core microprocessors which have fine-grained parallel computing ability. This paper focus on fine-grained parallel computing programming model. Above all, we introduce 3 typical multi-core microprocessor architectures; secondly, we introduce 3 already exist fine-grained parallel computing programming models; finally, we research the future of fine-grained parallel computing programming model.

About this research paper

What this paper is about

As a bridge between natural model of an application and hardware model of computer, programming model is important in computer industry. Nevertheless, evolution of programming model could not suit already boosted multi-core microprocessors which have fine-grained parallel computing ability. This paper focus on fine-grained parallel computing programming model. Above all, we introduce 3 typical multi-core microprocessor architectures; secondly, we introduce 3 already exist fine-grained parallel computing programming models; finally, we research the future of fine-grained parallel computing programming model.

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Available abstract

As a bridge between natural model of an application and hardware model of computer, programming model is important in computer industry. Nevertheless, evolution of programming model could not suit already boosted multi-core microprocessors which have fine-grained parallel computing ability. This paper focus on fine-grained parallel computing programming model. Above all, we introduce 3 typical multi-core microprocessor architectures; secondly, we introduce 3 already exist fine-grained parallel computing programming models; finally, we research the future of fine-grained parallel computing programming model.

Key concepts: Computer science, Programming paradigm, Parallel computing, Parallel programming model, Reactive programming, Data-intensive computing, Focus (optics), Distributed computing

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