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Custom virtual memory policies for an image reconstruction application

机译:用于图像重建应用程序的自定义虚拟内存策略

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Some scientific applications have very large memory requirements, and are required to move data between primary and secondary storage during execution. The I/O between processor and disk can be done using standard file interfaces or virtual memory. The use of virtual memory, though simple and straight-forward, has been criticized because of poor performance. However some modern operating systems provide techniques to "customize" virtual memory to obtain better performance. The authors present results from an image reconstruction application where 3D structures of viruses are reconstructed from 2D electron microscope images. The platform is the NEC Cenju-3 parallel computer running the Cenju-3/DE, a Mach-based operating system. The virtual memory interface allows the user to specify custom page replacement and prefetching policies. For the largest data set, using custom virtual memory reduced the the data access time by a factor of 25 compared to unformatted Fortran I/O.
机译:一些科学应用程序具有非常大的内存要求,并且需要在执行期间在主存储和次级存储之间移动数据。处理器和磁盘之间的I / O可以使用标准文件接口或虚拟内存完成。使用虚拟内存,虽然简单直截了当,由于性能差而受到批评。然而,一些现代操作系统提供了“自定义”虚拟内存以获得更好性能的技术。作者呈现来自图像重建应用的结果,其中从2D电子显微镜图像重建病毒的3D结构。该平台是NEC CENJU-3并行计算机运行CENJU-3 / DE,是一款基于马赫的操作系统。虚拟内存接口允许用户指定自定义页面替换和预取策略。对于最大的数据集,与未格式化的Fortran I / O相比,使用自定义虚拟内存将数据访问时间减少25倍。

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