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Towards High-Performance SAN with Fast Storage Devices

机译:通过快速存储设备实现高性能SAN

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Storage area network (SAN) is one of the most popular solutions for constructing server environments these days. In these kinds of server environments, HDD-based storage usually becomes the bottleneck of the overall system, but it is not enough to merely replace the devices with faster ones in order to exploit their high performance. In other words, proper optimizations are needed to fully utilize their performance gains. In this work, we first adopted a DRAM-based SSD as a fast backend-storage in the existing SAN environment, and found significant performance degradation compared to its own capabilities, especially in the case of small-sized random I/O pattern, even though a high- speed network was used. We have proposed three optimizations to solve this problem: (1) removing software overhead in the SAN I/O path; (2) increasing parallelism in the procedures for handling I/ O requests; and (3) adopting the temporal merge mechanism to reduce network overheads. We have implemented them as a prototype and found that our approaches make substantial performance improvements by up to 39% and 280% in terms of both the latency and bandwidth, respectively.
机译:如今,存储区域网络(SAN)是用于构建服务器环境的最受欢迎的解决方案之一。在这类服务器环境中,基于HDD的存储通常成为整个系统的瓶颈,但仅用更快的设备替换设备以发挥其高性能是不够的。换句话说,需要适当的优化以充分利用其性能提升。在这项工作中,我们首先采用了基于DRAM的SSD作为现有SAN环境中的快速后端存储,并且发现与其自身功能相比,性能显着下降,尤其是在小型随机I / O模式的情况下,甚至尽管使用了高速网络。我们提出了三种优化方案来解决此问题:(1)消除SAN I / O路径中的软件开销; (2)在处理I / O请求的过程中增加并行性; (3)采用时间合并机​​制减少网络开销。我们将它们作为原型实施,发现我们的方法在延迟和带宽方面分别实现了高达39%和280%的显着性能改进。

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