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Memory-Mapped File Approach for On-Demand Data Co-allocation on Grids

机译:用于网格上按需数据共分配的内存映射文件方法

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Grid data sharing systems usually provide a data-intensive application with either a prestaging mechanism or an on-demand access mechanism to access shared data. Prestaging systems simultaneously download an entire shared file from multiple data sources even when only a tiny file fragment is required. Such systems consume unnecessary data transmission time and storage space. On demand access systems, on the other hand, download only the required fragments from a single data source. Such systems unfortunately do not fully exploit available network bandwidth. This paper presents a data sharing system, designated as the on demand data coallocation (ODCA). ODCA facilitates an unmodified legacy applications to transparently access shared data by using native I/O system calls. ODCA transfers only the necessary fragments on user demand, thereby reducing data transmission time, avoiding wasted network bandwidth and wasted storage space. Moreover, ODCA reduces data waiting time by downloading the file fragments from multiple data sources. Experimental results show ODCA successfully reduces turnaround time in data-intensive applications.
机译:网格数据共享系统通常为数据密集型应用程序提供预分级机制或按需访问机制来访问共享数据。即使仅需要很小的文件片段,预取系统也可以同时从多个数据源下载整个共享文件。这样的系统消耗了不必要的数据传输时间和存储空间。另一方面,按需访问系统仅从单个数据源下载所需的片段。不幸的是,这样的系统没有充分利用可用的网络带宽。本文提出了一种数据共享系统,称为按需数据合并(ODCA)。 ODCA通过使用本机I / O系统调用,使未经修改的旧版应用程序可以透明地访问共享数据。 ODCA仅根据用户需求传输必要的片段,从而减少了数据传输时间,避免了浪费的网络带宽和浪费的存储空间。此外,ODCA通过从多个数据源下载文件片段来减少数据等待时间。实验结果表明,ODCA成功减少了数据密集型应用程序的周转时间。

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