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Memory Performance and Scalability of Intel''s and AMD''s Dual-Core Processors: A Case Study

机译:英特尔和AMD双核处理器的内存性能和可伸缩性:一个案例研究

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As chip multiprocessor (CMP) has become the mainstream in processor architectures, Intel and AMD have introduced their dual-core processors to the PC market. In this paper, performance studies on an Intel Core 2 Duo, an Intel Pentium D and an AMD Athlon 64times2 processor are reported. According to the design specifications, key derivations exist in the critical memory hierarchy architecture among these dual-core processors. In addition to the overall execution time and throughput measurement using both multiprogrammed and multi-threaded workloads, this paper provides detailed analysis on the memory hierarchy performance and on the performance scalability between single and dual cores. Our results indicate that for the best performance and scalability, it is important to have (1) fast cache-to-cache communication, (2) large L2 or shared capacity, (3) fast L2 to core latency, and (4) fair cache resource sharing. Three dual-core processors that we studied have shown benefits of some of these factors, but not all of them. Core 2 Duo has the best performance for most of the workloads because of its microarchitecture features such as shared L2 cache. Pentium D shows the worst performance in many aspects due to its technology-remap of Pentium 4.
机译:随着芯片多处理器(CMP)已成为处理器架构中的主流,英特尔和AMD将其双核处理器推出到PC市场。在本文中,报告了对英特尔核心2 Duo,英特尔奔腾D和AMD Athlon 64Times2处理器的性能研究。根据设计规范,这些双核处理器之间的临界存储层次结构中存在关键推导。除了使用多分册和多线程工作负载的整体执行时间和吞吐量测量外,本文还提供了关于内存层次性能的详细分析以及单个和双核之间的性能可扩展性。我们的结果表明,为最佳性能和可扩展性,重要的是(1)快速缓存到高速缓存通信,(2)大L2或共享容量,(3)快速L2到核心延迟,(4)展会缓存资源共享。我们研究的三个双核处理器已经表现出一些这些因素的好处,但并非所有这些因素。核心2 Duo由于其微架构特征,例如共享L2缓存等微型架构功能,对大多数工作负载具有最佳性能。 Pentium D由于其技术refap 4,在许多方面显示了最糟糕的性能。

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