Abstract:
A mechanism for deploying software over clouds is provided. The mechanism comprises the following steps. A source cloud platform stores a software project and builds up an environmental transfer configuration. The source cloud platform collects the settings of the software project and related resources to obtain a list file, and a target cloud platform receives the list file and assigns a corresponding data transmission status as un-transmitted. When the data transmission status is un-transmitted, the target cloud platform requests the source cloud platform for the software project. The source cloud platform transmits the software project to the target cloud platform. When the target cloud platform confirms that the software project has been received completely according to the list file, the target cloud platform accordingly installs the software project and builds up related resources.
Abstract:
A platform and a method for dynamic software license are disclosed. The dynamic software license platform comprises a license pool, a register manager, a user configure unit and a license manager. The register manager receives a software application from a user end. The user configure unit grants a setting permission to the user end in response to the software application, and allows the user end to submit a license setting according to the setting permission. The license manager adds the software license provided by the software supplier to the license pool, and dynamically provides the software license from the license pool unit according to the license setting.
Abstract:
The present invention provides a method for manufacturing a carbon nanotube field emission display. The method comprises the steps of providing a substrate, screen printing a first conducting layer on the substrate, sintering the first conducting layer, screen printing an isolation layer on the first conducting layer and a second conducting layer on the isolation layer, etching the second conducting layer and the isolation layer, whereby a cavity exposing the first conducting layer is formed, sintering the second conducting layer and the isolation layer, and forming a carbon nanotube layer on the first conducting layer in the cavity.
Abstract:
A management method for multiple virtual machines (VMs) in a virtualized server is provided. The management method includes steps of: generating a command; determining an extended cluster including N serving VMs and M redundant VMs in response to the command, wherein the N serving VMs are for providing computing services, N is a natural number, and M is an integer greater than or equal to zero; determining an expanding event in response to the command; periodically detecting workload information of the N serving VMs; periodically determining whether the workload information of the N serving VMs satisfies the expanding event; if yes, determining whether M equals zero; if M does not equal zero, activating one of the M redundant VMs to remove one redundant VM and to accordingly add a new serving VM.
Abstract:
A platform and a method for dynamic software license are disclosed. The dynamic software license platform comprises a license pool, a register manager, a user configure unit and a license manager. The register manager receives a software application from a user end. The user configure unit grants a setting permission to the user end in response to the software application, and allows the user end to submit a license setting according to the setting permission. The license manager adds the software license provided by the software supplier to the license pool, and dynamically provides the software license from the license pool unit according to the license setting.