Abstract:
A method and system to adapt communication links statically and/or dynamically to their individual link conditions on a platform. The communicatively coupled devices have logic to adapt one or more settings of a respective one or more communication links with another device based at least in part on a respective metric of received data patterns from the respective one or more communication links. The communicatively coupled devices in the platform have a back channel to allow feedback or information to be sent from one receiving device to a transmitting device in one embodiment of the invention.
Abstract:
A method and an apparatus for managing power consumption of a server have been disclosed. In one embodiment, the method includes allowing a user to set a power management policy on a server, monitoring power consumption of a plurality of blades in the server, and automatically managing power consumption of the server in response to the power consumption of the plurality of blades based on the power management policy set by the user. Other embodiments have been claimed and described.
Abstract:
In one embodiment, a processor includes a microcode storage including processor instructions to create and execute a hidden resource manager (HRM) to execute in a hidden environment that is not visible to system software. The processor may further include an extend register to store security information including a measurement of at least one kernel code module of the hidden environment and a status of a verification of the at least one kernel code module. Other embodiments are described and claimed.
Abstract:
Methods and apparatus relating to processor extensions for execution of secure embedded containers are described. In an embodiment, a scalable solution for manageability function is provided, e.g., for UMPC environments or otherwise where utilizing a dedicated processor or microcontroller for manageability is inappropriate or impractical. For example, in an embodiment, an OS (Operating System) or VMM (Virtual Machine Manager) Independent (generally referred to herein as "OI") architecture involves creating one or more containers on a processor by dynamically partitioning resources (such as processor cycles, memory, devices) between the HOST OS/VMM and the OI container. Other embodiments are also described and claimed.
Abstract:
An integrated circuit comprises a node (112) to couple one or more components (130) to the integrated circuit (110) to carry current through a package (120) for the integrated circuit. The integrated circuit also comprises a monitor (140) to measure a resistance of the package based at least in part on a reference resistance of the package and a resistance of one or more components that are to carry current through the package. For another disclosed embodiment, current through one or more components that are to carry current through a package for an integrated circuit is controlled. A resistance of the package is measured based at least in part on a reference resistance of the package and a resistance of one or more components that are to carry current through the package .
Title translation:VERFAHREN,VORRICHUNG UND系统ZURDURCHFÜHRUNGZURDURCHFÜHRUNGDERÜBERTRAGUNGDES管理组件 - 传输协议(MCTP)MIT EINER VORRICHTUNG MIT UNIVERSELLEM SERIELLEM总线(USB)
Abstract:
Eine Vorrichtung zum schnellen Einfärben einer Berührungsanzeige wird hier beschrieben. Das System zum schnellen Einfärben einer Berührungsanzeige kann das Empfangen einer Berührungseingabe und das Generieren von Berührungssensordaten umfassen. Das System kann eine Grafikverarbeitungseinheit (Graphics Processing Unit, GPU) mit einem Schnelleinfärber und einer Anzeigepipeline aufweisen. Die GPU kann anhand der Berührungssensordaten generierte Daten einer Benutzerschnittstellenvorrichtung (Human Interface Device, HID) an einen Schreibanwendungsspeicher und den Schnelleinfärber übertragen. Der Schnelleinfärber kann die HID-Daten in Einfärbungsdaten umwandeln, die über einen direkten Hardwarepfad an die Anzeigepipeline gesendet werden sollen. Der Schreibanwendungsspeicher kann die HID-Daten in Einfärbungsdaten umwandeln, die an die Anzeigepipeline gesendet werden sollen. Das System kann außerdem eine Berührungsanzeige aufweisen, um Pixel anzuzeigen, die gemäß den von der Anzeigepipeline empfangenen Einfärbungsdaten markiert wurden.