Abstract:
A data flow is received at a network processor that includes a plurality of frames. A first set of frames in the plurality of frames are passed from the network processor to a general processor for processing by the general processor. A flow acceleration request is received at the network processor from the general processor based at least in part on inspection of a first frame in the first set of frames. The flow acceleration request is received subsequent to passing at least two of the first set of frames to the general processor. A particular frame in the plurality of frames received subsequent to the first set of frames is processed by the network processor such that it is accelerated relative to processing of the first set of frames by the general processor and bypasses the general processor.
Abstract:
Generating and analyzing call detail records for various uses of mobile network resources includes, at a mobile network service bus configured to communicate with one or more service entities in a mobile core network, generating a first set of call detail records (CDRs) for messages received from the service entities in the mobile core network and a second set of CDRs for messages received from a tenant server that is providing an applications or a service on the mobile core network. Each of the CDRs included in the first set of CDRs and the second set of CDRs is tagged based on the processes involved in generating the particular CDR. Relationships are determined between the CDRs included in the first set of CDRs and the second set of CDRs based on the tagging and one or more of usage operations and network diagnostic operations are performed based on the relationships.
Abstract:
A data flow is received at a network processor that includes a plurality of frames. A first set of frames in the plurality of frames are passed from the network processor to a general processor for processing by the general processor. A flow acceleration request is received at the network processor from the general processor based at least in part on inspection of a first frame in the first set of frames. The flow acceleration request is received subsequent to passing at least two of the first set of frames to the general processor. A particular frame in the plurality of frames received subsequent to the first set of frames is processed by the network processor such that it is accelerated relative to processing of the first set of frames by the general processor and bypasses the general processor.
Abstract:
At least one first frame of a first data flow is inspected by a general processing unit to associate the first data flow with an aggregate session, the aggregate session corresponding to a first set of aggregate data flows including the first data flow and at least one other data flow. Acceleration of the first data flow, by a network processing unit, can be authorized based on the inspection of the at least one first frame. Acceleration of the first data flow can be subject to at least a set of conditions including an aggregate trigger, the aggregate trigger defining that the acceleration of at least the first data flow be halted in response to an aggregate threshold amount of traffic being detected among the first set of aggregate data flows.
Abstract:
At least one first frame of a first data flow is inspected by a general processing unit to associate the first data flow with an aggregate session, the aggregate session corresponding to a first set of aggregate data flows including the first data flow and at least one other data flow. Acceleration of the first data flow, by a network processing unit, can be authorized based on the inspection of the at least one first frame. Acceleration of the first data flow can be subject to at least a set of conditions including an aggregate trigger, the aggregate trigger defining that the acceleration of at least the first data flow be halted in response to an aggregate threshold amount of traffic being detected among the first set of aggregate data flows.