摘要:
Frame wrapping such as Q-in-Q frame wrapping is used to enforce QoS prioritization with a converged or multi-function self-virtualizing IO resource such as a converged SRIOV network adapter. Frame wrapping may be used to avoid conflicting priorities from frames associated with virtual functions for which ACLs are not enforced, and thereby preserve QoS prioritization for lossless traffic classes.
摘要:
Frame wrapping such as Q-in-Q frame wrapping is used to enforce QoS prioritization with a converged or multi-function self-virtualizing IO resource such as a converged SRIOV network adapter. Frame wrapping may be used to avoid conflicting priorities from frames associated with virtual functions for which ACLs are not enforced, and thereby preserve QoS prioritization for lossless traffic classes.
摘要:
In various embodiments a traffic class manager is a resource within a virtualized computer systems trusted entity (e.g. a hypervisor, trusted partition, etc.) that maps requirements from a platform management and associated network capabilities onto an adapter (e.g. SR-IOV adapter, etc.) in order to appropriately allocate adapter and network resources to virtualized computer partitions. In various embodiments the traffic class manager defines network traffic classes that meet the objectives of a platform administrator based on the capabilities of the adapter and the network attached to the adapter ports. Once the traffic classes are defined, in various embodiments, the traffic class manager enforces the assignment of a traffic class to a virtual interface queue pair within a partition.
摘要:
In various embodiments a traffic class manager is a resource within a virtualized computer systems trusted entity (i.e. a hypervisor, trusted partition, etc.) which maps requirements from a platform management and associated network capabilities onto an SR-IOV adapter in order to appropriately allocate SR-IOV adapter and network resources to the virtualized computer partitions. In various embodiments the traffic class manager defines network traffic classes that meet the objectives of a platform administrator based on the capabilities of the SR-IOV adapter and the network attached to the adapter ports. Once the traffic classes are defined, in various embodiments, the traffic class manager enforces the assignment of a traffic class to a virtual interface queue pair within a partition.
摘要:
In various embodiments a traffic class manager is a resource within a virtualized computer systems trusted entity (e.g. a hypervisor, trusted partition, etc.) that maps requirements from a platform management and associated network capabilities onto an adapter (e.g. SR-IOV adapter, etc.) in order to appropriately allocate adapter and network resources to virtualized computer partitions. In various embodiments the traffic class manager defines network traffic classes that meet the objectives of a platform administrator based on the capabilities of the adapter and the network attached to the adapter ports. Once the traffic classes are defined, in various embodiments, the traffic class manager enforces the assignment of a traffic class to a virtual interface queue pair within a partition.
摘要:
In various embodiments a traffic class manager is a resource within a virtualized computer systems trusted entity (i.e. a hypervisor, trusted partition, etc.) which maps requirements from a platform management and associated network capabilities onto an SR-IOV adapter in order to appropriately allocate SR-IOV adapter and network resources to the virtualized computer partitions. In various embodiments the traffic class manager defines network traffic classes that meet the objectives of a platform administrator based on the capabilities of the SR-IOV adapter and the network attached to the adapter ports. Once the traffic classes are defined, in various embodiments, the traffic class manager enforces the assignment of a traffic class to a virtual interface queue pair within a partition.
摘要:
Provided are a computer program product, system, and method for supporting non-delivery notification between a switch and device in a network. A login with a switch is initiated including a test service parameter requesting a non-delivery notification service to cause the switch to return a non-delivery notification in response to a test path request indicating a destination node that is unavailable. Indication is made that the test service is available for the login in response to receiving a reply from the switch that the switch accepts the login with the non-delivery notification service. The test path request is sent to the switch to determine whether the destination node is available. The non-delivery notification is received from the switch in response to the switch determining that the destination node to which the test path request is directed is unavailable.
摘要:
Differential dynamic content delivery including providing a session document for a presentation, where the session document includes a session grammar and a session structured document; selecting from the session structured document a classified structural element in dependence upon user classifications of a user participant in the presentation; presenting the selected structural element to the user; streaming speech to the user from one or more users participating in the presentation; converting the speech to text; detecting a total sound level for the user; and determining whether to display the text in dependence upon the total sound level for the user.
摘要:
Systems and methods to forward data frames are described. A particular method may include associating a fiber channel forwarder with a bridge element. The fiber channel forwarder may be one of a plurality of fiber channel forwarders coupled to the bridge element. A data frame received at the bridge element may be forwarded to the fiber channel forwarder.
摘要:
Systems and methods to forward data frames are described. A particular method may include evaluating header data of a data frame at a bridge element, where the header data includes address data that corresponds to a Fiber Channel Forwarder in communication with the bridge element. Based upon the evaluation, the header data of the data frame may be modified at the bridge element in such a manner that the data frame is not routed through the Fiber Channel Forwarder.