摘要:
Migration of a user state from a source computing device to a destination computing device using a state migration point (SMP) is disclosed. The destination computing device may be the same as the source computing device but with a different operating system. The user state is securely stored by the SMP until the user state is restored on the destination computing device or a predetermined period of time has elapsed. Additional SMPs can be added without an architectural change. SMPs can be used to simultaneously migrate the states of multiple users of the source computing device to multiple destination computing devices. The SMPs can be restricted to migrate only the user states of computing devices with particular IP subnets. The SMPs can retain user states for a period of time after restoration in order to provide a backup, if necessary.
摘要:
Migration of a user state from a source computing device to a destination computing device using a state migration point (SMP) is disclosed. The destination computing device may be the same as the source computing device but with a different operating system. The user state is securely stored by the SMP until the user state is restored on the destination computing device or a predetermined period of time has elapsed. Additional SMPs can be added without an architectural change. SMPs can be used to simultaneously migrate the states of multiple users of the source computing device to multiple destination computing devices. The SMPs can be restricted to migrate only the user states of computing devices with particular IP subnets. The SMPs can retain user states for a period of time after restoration in order to provide a backup, if necessary.
摘要:
Migration of a user state from a source computing device to a destination computing device using a state migration point (SMP) is disclosed. The destination computing device may be the same as the source computing device but with a different operating system. The user state is securely stored by the SMP until the user state is restored on the destination computing device or a predetermined period of time has elapsed. Additional SMPs can be added without an architectural change. SMPs can be used to simultaneously migrate the states of multiple users of the source computing device to multiple destination computing devices. The SMPs can be restricted to migrate only the user states of computing devices with particular IP subnets. The SMPs can retain user states for a period of time after restoration in order to provide a backup, if necessary.
摘要:
Techniques for preserving state information across multiple operating environments on a machine are provided. A task engine creates and utilizes a task environment to preserve state information through multiple operating environments while sequencing the actions in a task sequence. During task sequence execution, the task environment is maintained in the machine's memory. If an action that is being executed involves initiating a reboot operation, the task environment in memory is saved to disk (i.e., non-volatile memory). When the machine completes the reboot operation, either into the same operating environment or a new operating environment, the task engine creates a new task environment in the machine's memory, and the new task environment is restored from the previously saved task environment on disk. The task engine then continues to sequence the actions in the task sequence utilizing the new task environment in memory.
摘要:
Migration of a user state from a source computing device to a destination computing device using a state migration point (SMP) is disclosed. The destination computing device may be the same as the source computing device but with a different operating system. The user state is securely stored by the SMP until the user state is restored on the destination computing device or a predetermined period of time has elapsed. Additional SMPs can be added without an architectural change. SMPs can be used to simultaneously migrate the states of multiple users of the source computing device to multiple destination computing devices. The SMPs can be restricted to migrate only the user states of computing devices with particular IP subnets. The SMPs can retain user states for a period of time after restoration in order to provide a backup, if necessary.
摘要:
A method of provisioning an unknown computer system is disclosed. The method includes detecting a computer system to be provisioned, determining that the computer system is unknown to a configuration management system, and identifying a global identifier and a digital certificate to be used to provision the computer system. The method further includes communicating the global identifier and the digital certificate from a network based boot strap server or from boot strap media to the computer system prior to loading an operating system onto the computer system.
摘要:
In one embodiment, a server/client system, configured to update client software, generates audit data by analyzing a client's file configuration with respect to rules within an update catalog. The audit data is then moved to the server, where updates indicated by the audit data may be approved. The approved updates are then distributed from the server to the client for installation.
摘要:
A method of provisioning an unknown computer system is disclosed. The method includes detecting a computer system to be provisioned, determining that the computer system is unknown to a configuration management system, and identifying a global identifier and a digital certificate to be used to provision the computer system. The method further includes communicating the global identifier and the digital certificate from a network based boot strap server or from boot strap media to the computer system prior to loading an operating system onto the computer system.
摘要:
In one embodiment, software updates are applied to one or more client computers. The one or more client computers are assigned a level of service governing aspects of the application of the updates. The scheduling of the application of the software updates is done according to the level of service. The application of the software update is then performed according to the schedule.