用OpenCL加速气候物理模型

F. Zafar, D. Ghosh, Lawrence Sebald, Shujia Zhou
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引用次数: 5

摘要

开放计算语言(OpenCL)正迅速成为异构并行计算的标准。它被设计用于在cpu、gpu和其他加速器架构上运行。通过实现一个真实世界的应用程序,一个广泛用于气候和天气模型的太阳辐射模型组件,我们展示了OpenCL多线程编程和执行模型即使在CPU架构上也可以显着提高性能。我们的初步调查表明,与在多个平台上使用自动向量化标志跨各种编译器编译的串行代码的执行相比,OpenCL中的低级向量指令和代码表示对串行版本的性能有显著的提高。然而,OpenCL实现的可移植性需要改进,即使对于CPU架构也是如此。
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Accelerating a Climate Physics Model with OpenCL
Open Computing Language (OpenCL) is fast becoming the standard for heterogeneous parallel computing. It is designed to run on CPUs, GPUs, and other accelerator architectures. By implementing a real world application, a solar radiation model component widely used in climate and weather models, we show that OpenCL multi-threaded programming and execution model can dramatically increase performance even on CPU architectures. Our preliminary investigation indicates that low-level vector instructions and code representations in OpenCL contribute to dramatic performance improvement over the serial version when compared with the execution of the serial code compiled across various compilers on multiple platforms with auto vectorization flags. However, the portability of OpenCL implementations needs to improve, even for CPU architectures.
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