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    • 3. 发明授权
    • Page signature disambiguation for increasing the efficiency of virtual machine migration in shared-page virtualized computer systems
    • 页签名消歧以提高共享页面虚拟化计算机系统中虚拟机迁移的效率
    • US07925850B1
    • 2011-04-12
    • US11676224
    • 2007-02-16
    • Carl WaldspurgerOsten Kit ColbertXiaoxin ChenRajesh Venkatasubramanian
    • Carl WaldspurgerOsten Kit ColbertXiaoxin ChenRajesh Venkatasubramanian
    • G06F12/00G06F13/00G06F13/28
    • G06F9/4856
    • A system for increasing the efficiency of migrating, at least in part, a virtual machine from a source host to a destination host is described wherein the content of one or more portions of the address space of the virtual machine are each uniquely associated at the source host with a signature that may collide, absent disambiguation, with different content at the destination host. Code in both the source and destination hosts disambiguates the signature(s) so that each disambiguated signature may be uniquely associated with content at the destination host, and so that collisions with different content are avoided at the destination host. Logic is configured to determine whether the content uniquely associated with a disambiguated signature at the destination host is already present in the destination host memory, and, if so, to back one or more portions of the address space of the virtual machine having this content with one or more portions of the destination host memory already holding this content.
    • 描述了一种用于提高至少部分地将虚拟机从源主机迁移到目的地主机的效率的系统,其中虚拟机的地址空间的一个或多个部分的内容每个在源处唯一地相关联 主机具有可能与目标主机不同的内容相冲突的缺席消息。 源主机和目标主机中的代码消除签名,使得每个消歧签名可以与目的主机的内容唯一相关联,并且使得在目的主机处避免与不同内容的冲突。 逻辑被配置为确定目的地主机上与消歧签名唯一相关联的内容是否已经存在于目的主机存储器中,并且如果是,则将具有该内容的虚拟机的地址空间的一个或多个部分返回到 目的地主机存储器的一个或多个部分已经保存该内容。
    • 6. 发明申请
    • Operating-System Exchanges Using Memory-Pointer Transfers
    • 使用内存指针传输的操作系统交换
    • US20160306649A1
    • 2016-10-20
    • US15189130
    • 2016-06-22
    • Mukund GuntiVishnu SekharRajesh Venkatasubramanian
    • Mukund GuntiVishnu SekharRajesh Venkatasubramanian
    • G06F9/455G06F9/50G06F12/02
    • G06F9/45558G06F8/656G06F9/4406G06F2009/4557G06F2009/45575G06F2009/45583
    • An “old” hypervisor is upgraded to or otherwise replaced by a “new” hypervisor without migrating virtual machines to a standby computer. The old hypervisor partitions the computer that it controls between a source partition and a target partition. The hypervisor and its virtual machines initially run on the source partition, while a new hypervisor is installed on the target partition. The virtual machines are migrated to the new hypervisor without physically moving the in-memory virtual-machine data. Instead, the old hypervisor sends memory pointers, and the new hypervisor claims the respective memory locations storing the virtual-machine data. After all virtual machines are migrated, the old hypervisor bequeaths the hypervisor memory and a last processor that the old hypervisor requires to run. The new hypervisor claims the bequeathed processor and hypervisor memory after the old hypervisor terminates to complete the upgrade/exchange.
    • “旧”虚拟机管理程序升级或替换为“新的”管理程序,而不会将虚拟机迁移到备用计算机。 旧的虚拟机管理程序将分区它在源分区和目标分区之间控制的计算机。 管理程序及其虚拟机最初在源分区上运行,而目标分区上安装了一个新的虚拟机管理程序。 虚拟机将迁移到新的管理程序,而不会物理移动内存中的虚拟机数据。 相反,旧的管理程序发送存储器指针,并且新的管理程序声明存储虚拟机数据的相应存储器位置。 在迁移所有虚拟机之后,旧的虚拟机管理程序将驻留管理程序内存和旧管理程序运行所需的最后一个处理器。 新的虚拟机管理程序在旧虚拟机管理程序终止后,要求遗留处理器和管理程序内存,以完成升级/更换。