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异构并行编程模型研究与进展 被引量:13
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作者 刘颖 吕方 +3 位作者 王蕾 陈莉 崔慧敏 冯晓兵 《软件学报》 EI CSCD 北大核心 2014年第7期1459-1475,共17页
近年来,异构系统硬件飞速发展.为了解决相应的编程和执行效率问题,异构并行编程模型已被广泛使用和研究.从异构并行编程接口与编译/运行时支持系统两个角度总结了异构并行编程模型最新的研究成果,它们为异构架构和上层应用带来的技术挑... 近年来,异构系统硬件飞速发展.为了解决相应的编程和执行效率问题,异构并行编程模型已被广泛使用和研究.从异构并行编程接口与编译/运行时支持系统两个角度总结了异构并行编程模型最新的研究成果,它们为异构架构和上层应用带来的技术挑战提供了相应的解决方案.最后,结合目前的研究现状以及异构系统的发展,提出了异构并行编程模型的未来方向. 展开更多
关键词 异构并行编程模型 异构系统 GPU 编程接口 编译 运行时系统
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Programming for scientific computing on peta-scale heterogeneous parallel systems 被引量:1
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作者 杨灿群 吴强 +2 位作者 唐滔 王锋 薛京灵 《Journal of Central South University》 SCIE EI CAS 2013年第5期1189-1203,共15页
Peta-scale high-perfomlance computing systems are increasingly built with heterogeneous CPU and GPU nodes to achieve higher power efficiency and computation throughput. While providing unprecedented capabilities to co... Peta-scale high-perfomlance computing systems are increasingly built with heterogeneous CPU and GPU nodes to achieve higher power efficiency and computation throughput. While providing unprecedented capabilities to conduct computational experiments of historic significance, these systems are presently difficult to program. The users, who are domain experts rather than computer experts, prefer to use programming models closer to their domains (e.g., physics and biology) rather than MPI and OpenME This has led the development of domain-specific programming that provides domain-specific programming interfaces but abstracts away some performance-critical architecture details. Based on experience in designing large-scale computing systems, a hybrid programming framework for scientific computing on heterogeneous architectures is proposed in this work. Its design philosophy is to provide a collaborative mechanism for domain experts and computer experts so that both domain-specific knowledge and performance-critical architecture details can be adequately exploited. Two real-world scientific applications have been evaluated on TH-IA, a peta-scale CPU-GPU heterogeneous system that is currently the 5th fastest supercomputer in the world. The experimental results show that the proposed framework is well suited for developing large-scale scientific computing applications on peta-scale heterogeneous CPU/GPU systems. 展开更多
关键词 heterogeneous parallel system programming framework scientific computing GPU computing molecular dynamic
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