Abstract:
A method of providing display articulation support to a main processor of a computing device is disclosed. The method may include receiving display articulation data from a sensor at a sensor controller. The method may also include formatting, via the sensor controller, the display articulation data. The method may also include providing, via a single channel interface between the sensor controller and the main processor, the display articulation data to an operating system executed by the main processor. The method may also include communicating, via a driver executed by the operating system, the display articulation data to an application executed by the operating system.
Abstract:
A method and system for cascading power consumption is described herein. The method may include providing power to a first sensor and a second sensor, wherein the first sensor consumes more power than the second sensor. The method may also include detecting the first sensor does not capture a sample of data. In addition, the method may include stopping the flow of power to the first sensor. Furthermore, the method may include monitoring an operating environment with the second sensor. The method may also include providing power to the first sensor in response to the second sensor detecting a sample of data.
Abstract:
A method of providing display articulation support to a main processor of a computing device is disclosed. The method may include receiving display articulation data from a sensor at a sensor controller. The method may also include formatting, via the sensor controller, the display articulation data. The method may also include providing, via a single channel interface between the sensor controller and the main processor, the display articulation data to an operating system executed by the main processor. The method may also include communicating, via a driver executed by the operating system, the display articulation data to an application executed by the operating system.
Abstract:
An apparatus and method for secure, automated response to distributed denial of service (DDoS) attacks are described. The method includes notification of a DDoS attack received by an Internet host. Once received by an Internet host, the Internet host establishes security authentication from an upstream router from which the attack traffic, transmitted by one or more host computers, is received. The Internet host then transmits filter(s) to the upstream router generated based upon characteristics of the attack traffic. Once installed by the upstream router, the attack traffic is dropped to terminate a DDoS attack. In addition, the router may determine upstream router(s) coupled to ports from which attack traffic is received, and securely forward the filter(s) to the upstream routers as a routing protocol updated in order to drop the attack traffic at a point closer to a source of the DDoS attack.
Abstract:
In one embodiment, a method is provided. The method of this embodiment includes generating, by a processor that includes a plurality of processing engines capable of executing program instructions, a packet. The method of this embodiment also includes transmitting the packet to at least one of the processing engines. Additionally, the method of this embodiment also includes, in response, at least in part to receipt of the packet by the at least one of the processing engines, modifying at least in part, by the at least one of the processing engines, a set of program instructions that the at least one processing engine is capable of executing. Of course, many modifications, variations, and alternatives are possible without departing from this embodiment.
Abstract:
According to one embodiment, a device includes control logic, at least a portion of which is implemented in hardware, to process motion data, the motion data collected from a first accelerometer in a base unit and from a second accelerometer in a display panel attached to a base unit of a mobile device, to determine whether the display panel moves relative to the base unit and to temporarily ignore or disable one or more input devices of the mobile device for a predetermined period of time to avoid unintentional user interaction with the mobile device during the movement of the display panel.
Abstract:
A method and system are disclosed for providing functionality on a network. A mobile agent moves from a first node to a target node and, at the target node, performs as an application layer gateway.
Abstract:
A distributed device has external ports and a configurable internal communications network interconnecting the external ports. The network is configured to transmit a data packet received from one of the ports to a second of the ports according to a communications protocol of the internal network. The second of the ports connects to a destination of the data packet.
Abstract:
A method and system are disclosed for providing an environment allowing agents to function on a set of devices having resources, the environment providing services allowing agents access to resources. Each agent has an associated permission list indicating which services the agent may access. Each agent may move from an environment on one device on a network to an environment on another device.