Abstract:
Various systems and methods for providing opportunistic placement of compute in an edge network are described herein. A node in an edge network may be configured to access a service level agreement related to a workload, the workload to be orchestrated for a user equipment by the node; modify a machine learning model based on the service level agreement; implement the machine learning model to identify resource requirements to execute the workload in a manner to satisfy the service level agreement; initiate resource assignments from a resource provider, the resource assignments to satisfy the resource requirements; construct a resource hierarchy from the resource assignments; initiate execution of the workload using resources from the resource hierarchy; and monitor and adapt execution of the workload based on the resource hierarchy in response to the execution of the workload.
Abstract:
System and techniques for information centric network unstructured data carrier are described herein. A user plane function (UPF) node receives an initiation for a packet data unit (PDU) session of user equipment (UE). Here, the initiation includes an indication for an ICN session and a PDU session identification (ID). The PDU session may then map the PDU session to the PDU session ID in an ICN routing data structure. Here, the ICN routing data structure is one or both of the pending interest table (PIT) or the forwarding interest base (FIB) of the UPF node. An ICN packet (interest or data packet) may be from the UE contained within a PDU on from the PDU session that conforms to an unstructured-data classification as defined by a 3GPP 5G family of standards. The ICN packet is extracted from the PDU and routed in accordance with the ICN routing data structure.
Abstract:
Methods and systems may provide for determining a next active window for a platform and notifying one or more of a plurality of devices of the platform of the next active window being determined. Additionally, one or more of the plurality of devices may be notified of an onset of the next active window. In one example, a pre-warm message is issued to notify one or more of the plurality of devices of the next active window being determined.
Abstract:
Technologies for supporting concurrency of a flow lookup table at a network device. The flow lookup table includes a plurality of candidate buckets that each includes one or more entries. The network device includes a flow lookup table write module configured to perform a displacement operation of a key/value pair to move the key/value pair from one bucket to another bucket via an atomic instruction and increment a version counter associated with the buckets affected by the displacement operation. The network device additionally includes a flow lookup table read module to check the version counters during a lookup operation on the flow lookup table to determine whether a displacement operation is affecting the presently read value of the buckets. Other embodiments are described herein and claimed.
Abstract:
Technologies for modular forwarding table scalability of a software cluster switch includes a plurality of computing nodes. Each of the plurality of computing nodes includes a global partition table (GPT) to determine an egress computing node for a network packet received at an ingress computing node of the software cluster switch based on a flow identifier of the network packet. The GPT includes a set mapping index that corresponds to a result of a hash function applied to the flow identifier and a hash function index that identifies a hash function of a hash function family whose output results in a node identifier that corresponds to the egress computing node to which the ingress computing node forwards the network packet. Other embodiments are described herein and claimed.
Abstract:
A network adapter comprises a controller to change to a first mode from a second mode based on a number of transmit packets, sizes of received packets, and intervals between arrivals of the received packets. In one embodiment, the network controller further comprises a memory to buffer received packets, where the received packets are buffered for a longer period in the first mode than in the second mode.
Abstract:
A wavelength-division-multiplexed based photonic burst switched (PBS) network, which includes edge and switching nodes, optically communicated information formatted into PBS control and data burst frames. Each PBS data burst frame is associated with a PBS control burst frame. A PBS burst frame includes a PBS burst header and burst payload having fields to indicate whether: (a) the burst frame is a PBS control burst; (b) the control burst is transmitted on a wavelength different from that of the associated PBS data burst; and (c) the PBS burst frame has a label for use in a generalized multiprotocol label swapping (GMPLS)-based control system. The PBS burst payload frame includes fields to indicate (a) specific PBS payload infomation; (b) PBS data payload; and (c) an optional PBS payload frame check sequence (FCS) for error detection.