Abstract:
Methods and apparatus to cross configure network resources of software defined data centers are disclosed. An example method includes detecting a first configuration change for a first component of a first one of a virtual network or a physical network, the virtual network to provide networking for a virtual computing system, and the physical network to implement the virtual network, identifying, by executing an instruction with a processor, a second component of a second different one of the virtual network or the physical network corresponding to the first component, and making a second configuration change to the second component corresponding to the first configuration change.
Abstract:
Methods and apparatus to transfer physical hardware resources between virtual rack domains in a virtualized server rack are disclosed. An example method includes determining, using a processor, a subset of candidate hosts that includes a host capacity that meets a first threshold, the candidate hosts belonging to a first virtual rack domain; determining, using the processor, whether the first virtual rack domain will meet an operating requirement of the first virtual rack domain if the subset of the candidate hosts is removed from the first virtual rack domain; and when the first virtual rack domain will meet the operating requirement if the subset of the candidate hosts is removed from the first virtual rack domain, transferring the subset of the candidate hosts from the first virtual rack domain to a second virtual rack domain.
Abstract:
Methods, apparatus and articles of manufacture are disclosed to retire hosts in virtual server rack deployments for virtual computing environments. An example method includes determining, via a processor, a workload associated with a physical host in a virtualized rack in response to a request to retire the physical host, the workload implemented by a virtual computing environment including the virtualized rack. The example method also includes determining, via the processor, a projected impact of retiring the physical host on the workload. The example method also includes presenting information representative of the projected impact.
Abstract:
Methods and apparatus for rack deployments for virtual computing environments are disclosed. An example method includes retrieving, from a repository remote from a system integrator, a software image to be deployed on a processing unit installed in a server rack, in response to receiving a dynamic host configuration protocol request from a processing unit at a virtual imaging appliance, detecting the processing unit and transmitting a network address to the processing unit to be utilized by the processing unit, transmitting the software image from the virtual imaging appliance to the network address assigned to the processing unit, and transmitting a hardware management system software image from the virtual imaging appliance to a network switch installed in the server rack to cause a hardware management system to be installed in the server rack.
Abstract:
An example method includes configuring a network to facilitate communications between a first virtual resource manager (VRM) in a first physical rack and a second VRM in a second physical rack. The first VRM manages first physical resources in the first physical rack. The second VRM manages second physical resources in the second physical rack. A primary election process determines one of the first or second VRMs to operate as a primary VRM for a virtual server rack. The virtual server rack is based on the first physical resources and the second physical resources. When the first VRM is the elected primary VRM, the first VRM is registered as the primary VRM. When the first VRM is not the elected primary VRM, the first VRM is registered as a secondary VRM, and a watch object is created to monitor for a failure or unavailability of the primary VRM.
Abstract:
Methods and apparatus to cross configure network resources of software defined data centers are disclosed. Example instructions cause one or more processors to monitor a component of a network for a probe packet sent to the component. The example instructions cause the one or more processors to, in response to detecting the probe packet, determine whether the probe packet includes a unique source media access control (MAC) address that is included in a probe access control list (ACL), the unique source MAC address included in the probe ACL set by a decision engine. The example instructions cause the one or more processors to, in response to determining that the probe packet does not include the unique source MAC address, record probe packet receipt information indicating that the probe packet did not pass through a network port of the component and transmit the probe packet receipt information to the decision engine.
Abstract:
Methods and apparatus to cross configure network resources of software defined data centers are disclosed. An example method includes detecting a first configuration change for a first component of a first one of a virtual network or a physical network, the virtual network to provide networking for a virtual computing system, and the physical network to implement the virtual network, identifying, by executing an instruction with a processor, a second component of a second different one of the virtual network or the physical network corresponding to the first component, and making a second configuration change to the second component corresponding to the first configuration change.
Abstract:
Methods, apparatus, systems, and articles of manufacture to improve packet flow among virtualized servers are disclosed. An example apparatus includes memory, and hardware to execute instructions to generate a load balance list identifying first ones of virtualized network resources having respective values of a utilization status parameter that satisfy a first threshold, in response to at least a number of the first virtualized network resources not satisfying a load balance list threshold, update the load balance list to additionally identify second ones of the virtualized network resources, the second ones of the virtualized network resources having respective values of the utilization status parameter that satisfy a second threshold, the first threshold different from the second threshold, and adjust a policy of a physical hardware resource corresponding to one or more of the virtualized network resources based on the load balance list.
Abstract:
Methods and apparatus to manage workload domains in virtual server racks are disclosed. An example apparatus includes a policy enforcer to evaluate whether capacities of the plurality of workload domains comply with policy capacity levels of respective user-defined policies for the plurality of workload domains, and a resource manager to, when a first workload domain has a first quantity of resources that exceeds a first policy capacity level of a first user-defined policy, identify a second workload domain requesting a second quantity of resources, when the second quantity of resources is equal to the first quantity of resources, allocate the first quantity of resources from the first workload domain to the second workload domain to satisfy the first policy capacity level, when the second quantity of resources is less than the first quantity of resources, allocate the second quantity of resources from the first workload domain to the second workload domain, and de-allocate remaining resources from the first workload domain to a shared resource pool to satisfy the first policy capacity level.
Abstract:
Methods, apparatus, systems, and articles of manufacture to optimize or otherwise improve packet flow among virtualized servers are disclosed and described. An example apparatus includes a load balance list generator to identify abstracted network resources in a virtualized network based on a utilization status parameter of the abstracted network resources, generate a load balance list including the identified abstracted network resources, the load balance list including a number of the abstracted network resources satisfying a threshold, and generate a network routing configuration for data packets in the virtualized network based on the generated load balance list. The example apparatus further includes a policy adjustor to adjust a policy of a physical hardware resource corresponding to one of the one or more abstracted network resources based on the network routing configuration to distribute a packet flow among the abstracted network resources.