Abstract:
In one embodiment, an apparatus for solution provisioning includes a task manager configured to, establish a provisioning task and obtain a provisioning image for the provisioning task in response to a request, and a provisioning implementer configured to execute and monitor the provisioning task established by the task manager. The task manager configures and launches the provisioning implementer based on the provisioning image obtained, and the provisioning image includes configuration information and scripts used for executing installation, and information for mapping the configuration information to the scripts. In another embodiment, a method includes establishing a provisioning task in response to a received solution provisioning request, obtaining a provisioning image for the provisioning task, configuring and launching a provisioning implementer based on the obtained provisioning image, and executing and monitoring the provisioning task using the provisioning implementer. Other systems, methods, and computer program products are described according to other embodiments.
Abstract:
A mechanism is provided for searching a virtual resource in a large scale computing system environment. The virtual resource is deployed on at least one server. Each server is coupled to a sensor and communicates with the sensor. The sensors communicate with each other and consist of a communication network. Each sensor stores an identifier of a virtual resource deployed in a server connected with the sensor and the location information of the sensor itself. The mechanism receives a searching request for a virtual resource by the at least one sensor, the searching request containing an identifier of the virtual resource being searched; forwards the searching request in the communication network of the sensors; and returns a location information of a sensor storing the identifier of the virtual resource by the sensor itself.
Abstract:
A mechanism is provided for searching a virtual resource in a large scale computing system environment. The virtual resource is deployed on at least one server. Each server is coupled to a sensor and communicates with the sensor. The sensors communicate with each other and consist of a communication network. Each sensor stores an identifier of a virtual resource deployed in a server connected with the sensor and the location information of the sensor itself. The mechanism receives a searching request for a virtual resource by the at least one sensor, the searching request containing an identifier of the virtual resource being searched; forwards the searching request in the communication network of the sensors; and returns a location information of a senor storing the identifier of the virtual resource by the sensor itself.
Abstract:
A method for activating a virtual machine, an apparatus for simulating a computing device and a device for supervising activation of the apparatus. The method includes: activating a network interface of the virtual machine, and activating other components of the virtual machine, where the network interface of the virtual machine is capable of communicating with the outside world so activation of the other components of the virtual machine can be supervised. The simulation apparatus includes a network interface and an operating system having a security sub-system, where the network interface is configured to be first activated during activation of the simulation apparatus so the network interface can communicate with the outside world, and activation of the other components of the apparatus can be supervised during the activation of the other components of the apparatus.
Abstract:
A technique for updating configurations of a target system in a computer. The method comprises booting, based on Preboot Execution Environment technology, a micro-system for updating configurations of a target system before booting the target system, the micro-system performing the steps of: (a) acquiring target configuration packages via a network from a server; (b) extracting target configuration data from said target configuration packages; and (c) updating the configurations of said target system by using said target configuration data, wherein said micro-system is independent of said target system.
Abstract:
Apparatuses, methods, and systems associated with and/or having capacitors are disclosed herein. In various embodiments, a capacitor may be formed within a substrate having an interwoven-fiber material. In various ones of these embodiments, a capacitor may have a first electrode including an activation material disposed on a surface of an interwoven-fiber material, a second electrode including an electrolytic solution, and an insulating material disposed between the first electrode and the second electrode.
Abstract:
A mechanism is provided for searching a virtual resource in a large scale computing system environment. The virtual resource is deployed on at least one server. Each server is coupled to a sensor and communicates with the sensor. The sensors communicate with each other and consist of a communication network. Each sensor stores an identifier of a virtual resource deployed in a server connected with the sensor and the location information of the sensor itself. The mechanism receives a searching request for a virtual resource by the at least one sensor, the searching request containing an identifier of the virtual resource being searched; forwards the searching request in the communication network of the sensors; and returns a location information of a senor storing the identifier of the virtual resource by the sensor itself.
Abstract:
The present invention provides methods of promoting the revascularization and/or reenervation of central nervous system lesions using an in-situ crosslinkable hydrogel. The present invention also provides methods of treating a spinal cord injury by topically delivering to the spinal cord injury site a vehicle comprising a neurotrophic factor and/or anti-inflammatory agent. Also provided are methods of treating a spinal cord injury by topically administering or delivering a hydrogel to the injury site.
Abstract:
A mechanism is provided for searching a virtual resource in a large scale computing system environment. The virtual resource is deployed on at least one server. Each server is coupled to a sensor and communicates with the sensor. The sensors communicate with each other and consist of a communication network. Each sensor stores an identifier of a virtual resource deployed in a server connected with the sensor and the location information of the sensor itself. The mechanism receives a searching request for a virtual resource by the at least one sensor, the searching request containing an identifier of the virtual resource being searched; forwards the searching request in the communication network of the sensors; and returns a location information of a sensor storing the identifier of the virtual resource by the sensor itself.
Abstract:
A system and method for processing local files using remote applications. The system includes an apparatus for processing local files using remote applications, including: an operation capturing unit configured to capture user operations on local files, and send operation requests to a server; a file sharing unit configured to share said local files in a network and send a sharing path to the server; and a remote desktop unit configured to connect to the target processing appliance using remote desktop. The system also includes a remote application management server, including: file type matching unit configured to match the local file to a particular remote application; a processing appliance choosing unit configured to determine a target processing appliance; and an instruction file generating unit configured to generate an instruction file for the above processing appliances. The methods correspond to the above apparatus and server.