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Is SIMD enough for scientific and engineering applications on massively parallel computers?

机译:SIMD足以用于大型平行计算机上的科学和工程应用吗?

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Some basic issues involved in matching an application to a distributed memory parallel machine are addressed. In particular, data communication and processor synchronization as they relate to MIMD (multiple instruction-multiple data) and SIMD (single-instruction-multiple data) architectures are discussed. To illustrate the differences, the authors describe the implementation and performance of several engineering and scientific applications that have been coded for both kinds of machines. They find that many problems are well suited to both architectures. However, when the natural parallelism in a simulation requires a loose synchronization between processors, the MIMD paradigm offers a greater programming flexibility than SIMD.
机译:解决了将应用程序匹配到分布式内存并行计算机的一些基本问题。特别地,讨论了与MIMD(多指令多数据)和SIMD(单指令多数据)架构相关的数据通信和处理器同步。为了说明差异,作者描述了对两种机器编码的若干工程和科学应用的实施和性能。他们发现许多问题非常适合两个建筑。然而,当模拟中的自然并行性需要处理器之间的松散同步时,MIMD PARADIGM提供比SIMD更大的编程灵活性。

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