Patent classifications
H04L2012/568
Distributed processing of process data
A method for the distributed processing of process data in a local bus, wherein the local bus has a local bus master and at least two data bus participants, and the method comprises: sending a data packet with process data from the local bus master via the local bus; receiving the data packet at a first data bus participant; pre-processing at least one item of process data using the first data bus participant; sending the data packet with the at least one item of pre-processed process data via the local bus to the second data bus participant using the first data bus participant; receiving the data packet with the at least one item of pre processed process data at the second data bus participant; and further processing the at least one item of pre-processed process data using the second data bus participant.
MULTIPATH TRAFFIC MANAGEMENT
One embodiment provides an apparatus. The apparatus includes client traffic management (CTM) logic. The CTM logic is to trigger implementation of a selected network traffic flow related to the client device, the triggering based, at least in part, on a network traffic flow related to the client device. The network traffic flow is associated with a connection and includes at least one subflow. Each subflow is carried by a respective path associated with the connection. The triggering includes at least one of constraining and/or adjusting an allowable throughput at a service provider for one or more of the at least one subflow. The selected traffic policy is to be implemented in a transport layer.
Multipath traffic management
One embodiment provides an apparatus. The apparatus includes client traffic management (CTM) logic. The CTM logic is to trigger implementation of a selected network traffic flow related to the client device, the triggering based, at least in part, on a network traffic flow related to the client device. The network traffic flow is associated with a connection and includes at least one subflow. Each subflow is carried by a respective path associated with the connection. The triggering includes at least one of constraining and/or adjusting an allowable throughput at a service provider for one or more of the at least one subflow. The selected traffic policy is to be implemented in a transport layer.
Multipath traffic management
One embodiment provides an apparatus. The apparatus includes client traffic management (CTM) logic. The CTM logic is to trigger implementation of a selected network traffic flow related to the client device, the triggering based, at least in part, on a network traffic flow related to the client device. The network traffic flow is associated with a connection and includes at least one subflow. Each subflow is carried by a respective path associated with the connection. The triggering includes at least one of constraining and/or adjusting an allowable throughput at a service provider for one or more of the at least one subflow. The selected traffic policy is to be implemented in a transport layer.
Technologies for balancing throughput across input ports of a multi-stage network switch
Technologies for balancing throughput across input ports include a network switch. The network switch is to generate, for an arbiter unit in a first stage of a hierarchy of stages of arbiter units, turn data indicative of a set of turns in which to transfer packet data from devices connected to input ports of the arbiter unit. The network switch is also to transfer, with the arbiter unit, the packet data from the devices in the set of turns. Additionally, the network switch is to determine weight data indicative of the number of turns represented in the set and provide the weight data from the arbiter unit in the first stage to another arbiter unit in a subsequent stage to cause the arbiter unit in the subsequent stage to allocate a number of turns for the transfer of the packet data from the arbiter unit in the first stage.
Shaping traffic on PLCA-enabled 10SPE networks
A 10SPE network node includes a processor, a memory, instructions in the memory configured to cause the processor to generate data to be sent to other nodes, and a network stack. The network stack includes circuitry configured to delay transmission of data in a sending slot in a transmission cycle on a 10SPE network based upon a bandwidth sharing scheme.
System, apparatus and method for traffic shaping of data communication via an interconnect
In one embodiment, an apparatus includes: a transmitter to send first data to a device coupled to the apparatus via a physical link; a receiver to receive second data from the device via the physical link; and a control circuit to control the transmitter to send the first data at a first effective rate during a link activation interval of a data transfer interval and to control the receiver to receive the second data at a second effective rate during the link activation interval, the second effective rate different than the first effective rate. Other embodiments are described and claimed.
DISTRIBUTED PROCESSING OF PROCESS DATA
A method for the distributed processing of process data in a local bus, wherein the local bus has a local bus master and at least two data bus participants, and the method comprises: sending a data packet with process data from the local bus master via the local bus; receiving the data packet at a first data bus participant; pre-processing at least one item of process data using the first data bus participant; sending the data packet with the at least one item of pre-processed process data via the local bus to the second data bus participant using the first data bus participant; receiving the data packet with the at least one item of pre processed process data at the second data bus participant; and further processing the at least one item of pre-processed process data using the second data bus participant.
Activating and deactivation functional units of a line card
In some implementations, a method includes analyzing an amount of data communicated by a set of network interfaces. The data communicated by the set of network interfaces is processed by a set of functional units and a set of queues includes the data communicated by the set of network interfaces. The method also includes activating a first functional unit of the set of functional units when a first size of a first queue of the set of queues is above a first threshold. The method further includes deactivating the first functional unit of the set of functional units when the first size of the first queue of the set of queues is below a second threshold. The method further includes causing the data to be forward to one or more active functional units via a data interconnect coupled to the set of network interfaces and the set of functional units.
Shaping Traffic on PLCA-Enabled 10SPE Networks
A 10SPE network node includes a processor, a memory, instructions in the memory configured to cause the processor to generate data to be sent to other nodes, and a network stack. The network stack includes circuitry configured to delay transmission of data in a sending slot in a transmission cycle on a 10SPE network based upon a bandwidth sharing scheme.