基于增量检查点的桌面网格容错性改进

A.E. El-Desoky, H. A. Ali, A. Azab
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引用次数: 13

摘要

在计算桌面网格环境中,为了保证任务的可靠执行,容错是一个重要的问题。运行任务的定期检查点是实现可接受容错的常用策略之一。通常会出现一个问题,即为一些长时间运行的任务临时存储在检查点文件中的数据可能太大,无法在不消耗网络带宽的情况下在节点之间可靠地传输。在不可靠的通信环境(如桌面网格)中传输如此大量的数据时,也可能发生数据丢失。本文提出了一种改进的应用层增量检查点方法,该方法可以将传输检查点数据的大小减少到原始大小的3%左右,并且计算时间开销很小。该方法还研究了一种仅依赖于提交节点的可用性来安全存储检查点文件的新机制。使用。net框架1.1构建了一个模拟器,使用基于变维矩阵乘法的应用程序代码来测试所提出方法的有效性。实验结果表明,该方法在最小化计算开销的同时提高了容错性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving Fault Tolerance in Desktop Grids Based On Incremental Checkpointing
Fault tolerance is an important issue to guarantee reliable execution of tasks in computational desktop grid environment where execution failures are frequently expected. Periodic checkpointing of running tasks is one of the common strategies for achieving acceptable fault tolerance. A problem usually arises, that is, temporary stored data in a checkpoint file for some long running tasks might be too large in size to be reliably transmitted between nodes without consuming network bandwidth. Data loss may also occur when transmitting such large amount of data in a non-reliable communication environment (e.g. desktop grid). In this paper, a modified application level incremental checkpointing approach is proposed in which the size of transmitted checkpoint data can be reduced to about 3% of its original size with little overhead on computation time. The proposed approach also investigates a new mechanism for safely storing a checkpoint file with reliance on the availability of the submitting node only. A simulator have been built using the .Net framework 1.1 to test the validity of the proposed approach using an application code built on variable dimensions' matrix multiplication. Experimental results show that the proposed approach improved fault tolerance with minimizing computational overhead
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