Abstract:
Routing packets of information without proxies over a network having both private and public networks includes reviewing the destination address of a packet received a private network interface and rerouting the packet to a private client connected to the private network interface when the destination address of the packet is the public address of the private network.
Abstract:
Techniques are described for determining a temporary latency tolerance report (tLTR) value. A processing unit has to respond to a device interrupt within a duration specified by tLTR to ensure no incoming data is lost due to device buffer overflow. The tLTR value can be used to prevent the processing unit from entering too deep a sleep state when a device driver anticipates multiple sequential interrupts for a transaction.
Abstract:
Routing packets of information without proxies over a network having both private and public networks includes reviewing the destination address of a packet received at a private network interface and rerouting the packet to a private client connected to the private network interface when the destination address of the packet is the public address of the private network.
Abstract:
Routing packets of information without proxies over a network having both private and public networks includes reviewing the destination address of a packet received a private network interface and rerouting the packet to a private client connected to the private network interface when the destination address of the packet is the public address of the private network.
Abstract:
Verfahren zum Ausgeben von einem oder mehreren Unterbrechungsereignissen in einer Plattform, das Folgendes umfasst: Ermitteln eines ersten Unterbrechungsereignisses von einem ersten an die Plattform gekoppelten Gerät; Ermitteln eines zweiten Unterbrechungsereignisses von einem zweiten an die Plattform gekoppelten Gerät, wobei mindestens eines von dem ersten und dem zweiten Unterbrechungsereignis ein Eingabe/Ausgabeereignis umfasst; Erhalten, durch die Plattform, von Laufzeitinformationen für das Eingabe/Ausgabeereignis von mindestens einem von dem ersten und dem zweiten Gerät; Bestimmen einer Haltezeit auf Grundlage der Laufzeitinformationen; und Verzögern der Ausgabe von mindestens einem des ersten und des zweiten Unterbrechungsereignisses an die Plattform zumindest teilweise auf der Grundlage von der Haltezeit.
Abstract:
Methods and devices are disclosed for communicating in a wireless network using multi-protocol label switching (MPLS). A network service node is configured to send identical packets substantially simultaneously to each of a serving network access station and one or more target network access stations via two or more respective MPLS tunnels in response to a handoff trigger message. Additional embodiments and variations are also disclosed.
Abstract:
Routing packets of information without proxies over a network having both private and public networks includes reviewing the destination address of a packet received a private network interface and rerouting the packet to a private client connected to the private network interface when the destination address of the packet is the public address of the private network.
Abstract:
Systems and methods may provide for identifying runtime information associated with an active workload of a platform, and making an active idle state determination for the platform based on at least in part the runtime information. In addition, a low power state of a shared resource on the platform may be controlled concurrently with an execution of the active workload based on at least in part the active idle state determination.
Abstract:
Systems and methods of managing break events may provide for detecting a first break event from a first event source and detecting a second break event from a second event source. In one example, the event sources can include devices coupled to a platform as well as active applications on the platform. Issuance of the first and second break events to the platform can be coordinated based on at least in part runtime information associated with the platform.
Abstract:
Systems and methods provide a secure network path through an inner and outer firewall pair between a mobile node on a foreign network and a corresponding node on a home network. One aspect of the systems and methods includes providing a mobile IP proxy between the mobile node and a VPN gateway inside the firewalls. The mobile IP proxy acts as a surrogate home agent to the mobile node, and acts as a surrogate mobile node to a home agent residing on the home network.