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    • 1. 发明授权
    • High-performance virtual machine networking
    • 高性能虚拟机网络
    • US08959529B2
    • 2015-02-17
    • US13588861
    • 2012-08-17
    • Michael Nelson
    • Michael Nelson
    • G06F3/00G06F9/455G06F9/54G06F9/48
    • G06F9/544G06F9/455G06F9/45504G06F9/45533G06F9/45558G06F9/4812G06F9/542G06F9/546G06F13/24G06F2009/45595
    • A method for conveying a data packet received from a network to a virtual machine instantiated on a computer system coupled to the network, and a medium and system for carrying out the method, is described. In the method, a guest receive pointer queue of a component executing in the virtual machine is inspected in order to identify a location in a guest receive packet data buffer that is available to receive packet data. Data from the data packet received from the network is copied into the guest receive packet data buffer at the identified location. A standard receive interrupt is raised in the virtual machine. Thus, the kernel places the data packet received from the network into a memory space accessible to the virtual machine without any intervention by a virtual machine monitor component of the virtualization software.
    • 一种用于将从网络接收的数据分组传送到耦合到网络的计算机系统上实例化的虚拟机的方法,以及用于执行该方法的介质和系统。 在该方法中,检查在虚拟机中执行的组件的客户端接收指针队列,以便识别可访问分组数据的来宾接收分组数据缓冲器中的位置。 从网络接收到的数据包中的数据被复制到所识别的位置的客户接收分组数据缓冲器中。 在虚拟机中引发标准接收中断。 因此,内核将从网络接收的数据包放置到虚拟机可访问的存储器空间中,而无需虚拟化软件的虚拟机监视器组件的干预。
    • 8. 发明授权
    • Virtual machine migration
    • 虚拟机迁移
    • US08260904B2
    • 2012-09-04
    • US12721899
    • 2010-03-11
    • Michael Nelson
    • Michael Nelson
    • G06F15/173
    • G06F9/45558G06F3/0604G06F3/0647G06F3/0683G06F9/4856G06F2009/4557G06F2009/45583G06F2009/45595H04L47/783H04L67/148
    • A source virtual machine (VM) hosted on a source server is migrated to a destination VM on a destination server without first powering down the source VM. After optional pre-copying of the source VM's memory to the destination VM, the source VM is suspended and its non-memory state is transferred to the destination VM; the destination VM is then resumed from the transferred state. The source VM memory is either paged in to the destination VM on demand, or is transferred asynchronously by pre-copying and write-protecting the source VM memory, and then later transferring only the modified pages after the destination VM is resumed. The source and destination servers preferably share common storage, in which the source VM's virtual disk is stored; this avoids the need to transfer the virtual disk contents. Network connectivity is preferably also made transparent to the user by arranging the servers on a common subnet, with virtual network connection addresses generated from a common name space of physical addresses.
    • 托管在源服务器上的源虚拟机(VM)将迁移到目标服务器上的目标VM,而无需首先关闭源虚拟机。 在将源虚拟机的内存可选地预先复制到目标虚拟机之后,源虚拟机被暂停,其非内存状态被传送到目标虚拟机; 目的地VM然后从转移状态恢复。 根据需要将源VM内存分页到目标虚拟机,或通过预源复制和写保护源虚拟机内存异步传输,然后在目标虚拟机恢复之后稍后传输修改的页面。 源服务器和目标服务器优选地共享存储源虚拟机的虚拟盘的公共存储器; 这避免了传输虚拟磁盘内容的需要。 优选地,通过将​​服务器布置在公共子网上,通过从物理地址的公共名称空间生成的虚拟网络连接地址,网络连接性也对用户透明。