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Virtualization Technology for TCP/IP Offload Engine

机译:TCP / IP卸载引擎的虚拟化技术

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Network I/O virtualization plays an important role in cloud computing. This paper addresses the system-wide virtualization issues of TCP/IP Offload Engine (TOE) and presents the architectural designs. We identify three critical factors that affect the performance of a TOE: I/O virtualization architectures, quality of service (QoS), and virtual machine monitor (VMM) scheduler. In our device emulation based TOE, the VMM manages the socket connections in the TOE directly and thus can eliminate packet copy and demultiplexing overheads as appeared in the virtualization of a layer 2 network card. To further reduce hypervisor intervention, the direct I/O access architecture provides the per VM-based physical control interface that helps removing most of the VMM interventions. The direct I/O access architecture out-performs the device emulation architecture as large as 30 percent, or achieves 80 percent of the native 10 Gbit/s TOE system. To continue serving the TOE commands for a VM, no matter the VM is idle or switched out by the VMM, we decouple the TOE I/O command dispatcher from the VMM scheduler. We found that a VMM scheduler with preemptive I/O scheduling and a programmable I/O command dispatcher with deficit weighted round robin (DWRR) policy are able to ensure service fairness and at the same time maximize the TOE utilization.
机译:网络I / O虚拟化在云计算中起着重要作用。本文解决了TCP / IP卸载引擎(TOE)的系统范围的虚拟化问题,并提出了体系结构设计。我们确定了影响TOE性能的三个关键因素:I / O虚拟化体系结构,服务质量(QoS)和虚拟机监视器(VMM)调度程序。在我们基于设备仿真的TOE中,VMM直接管理TOE中的套接字连接,因此可以消除数据包复制和多路分解开销,这在第2层网卡的虚拟化中很明显。为了进一步减少虚拟机监控程序干预,直接I / O访问体系结构提供了基于VM的物理控制接口,该接口有助于消除大多数VMM干预。直接I / O访问架构的性能要比设备仿真架构高30%,或达到本机10 Gbit / s TOE系统的80%。为了继续为VM提供TOE命令,无论VM处于空闲状态还是被VMM关闭,我们都将TOE I / O命令分配程序与VMM调度程序分离。我们发现具有抢占式I / O调度的VMM调度器和具有缺陷加权轮循(DWRR)策略的可编程I / O命令调度器能够确保服务公平性,并同时最大程度地提高TOE利用率。

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