Abstract:
The subject application is directed to a system and method for generating location based content via a document processing device. Location data representing the location of the document processing device is first stored in an associated storage, along with data representing services associated with the document processing device. A user is first prompted, via an associated user-interface, to select a desired service, which is associated with a specific network service provider. The network address of each service provider is stored in the data storage in correlation with the service to which the provider is associated. The user then selects a desired service, whereupon the device generates a query including the device location data and submits the query to the service provider corresponding to the selected service. The device then receives a response from the service provider and outputs the response to the user.
Abstract:
A scalable, two-stage round-robin arbiter with re-circulation and bounded latency for use in multi-threaded, multi-processing devices. An apparatus implementing the two-stage arbiter includes a plurality of masters configured in a plurality of clusters, a plurality of targets, and an chassis interconnect that may be controlled to selectively connects a given master to a given target. The chassis interconnect includes multiple sets of bus lines connected between the plurality of clusters and the plurality of targets forming a cross-bar interconnect, including sets of bus lines corresponding to a command bus. A two-stage arbitration scheme is employed to arbitrate access to the command bus. The first arbitration stage is used to arbitrate between command requests issued by masters in a given cluster. The second arbitration stage is used to arbitrate between winning first stage command requests. One embodiment of the arbitration scheme employs re-circulation of second stage losers. Another embodiment employs re-prioritization of second stage losers.
Abstract:
The subject application is directed to a system and method for controlling a document processing device via a remote device interface. Display data is generated corresponding to the control of the document processing device, following which instructions are received from a user corresponding to one or more document processing operations. An image is then generated on a display integrated in the document processing device based on the display data and the received instructions. The display data is then communicated, via an established data connection, to an associated data processing device having both a user data input and a user display. Control instructions for the document processing device are then received from the associated data processing device so as to allow for user control of a document processing operation and a document processing operation is commenced based on instructions received from the data processing device.
Abstract:
A system and method for managing healthcare information is disclosed. The data servers each include a data manager that comprises a controller, a scrubber module and a user interface engine. The controller manages the core functions and the transmission of data between data manager components. The scrubber module manages the pseudoanonymization of data and the collection of data for clinical trials. The user interface engine generates user interfaces for displaying the applications and collecting clinical trial data.
Abstract:
The subject application is directed to a system and method for thin client graphical user interface development. Primitive data is stored in associated memory corresponding to graphical user interface primitives. Each primitive corresponds to a display or a control of an associated document processing device. Selection data is received via a thin client, representing primitive data corresponding to at least one graphical user interface primitive. The primitive data is selectively communicated to a display associated with the thin client according to the received selection data resulting in the generation of visual indicia on the display. A data set is generated representing a graphical user interface display according to a selected set of indicia that is displayed on the thin client. Map data is generated representing the mapping of a generated data set to user interface data, corresponding to the display and the control of one or more document processing devices.
Abstract:
Systems and methods for reconciling healthcare data between multiple distributed computing nodes that enable an individual node, a topic object, or an intelligent agent to determine synchronization with other nodes, comprising sending source node data to a payload generator, the source node data including difference data, an encapsulated topic object, or intelligent agent communications, generating a payload including the source node data and destination attributes, and sending the payload to a destination node, topic object, or destination intelligent agent, and using the source node data to update destination node data according to destination node, topic object, or destination intelligent agent requirements.
Abstract:
The subject application is directed to a document processing device and a system and method for generation of user-adaptable interface presentations on the document processing device. A visual output associated with the operation and the status of the document processing device is generated on a display of the device that is operated in conjunction with an integrated controller that includes a processor and associated data storage. User-specified instructions, corresponding to a display for operation of the document processing device, are then received and one or more visual indicators corresponding to a user-selectable display attribute are generated on the display. Any user-specified display modification instructions are then received. The modification instructions correspond to a desired modification to the visual output based upon the displayed visual indicator. The visual output is then altered using the received user-specified display modification instructions.
Abstract:
The subject application is directed to a system and method for controlling a document processing device via a remote device interface. Display data is generated corresponding to the control of the document processing device, following which instructions are received from a user corresponding to one or more document processing operations. An image is then generated on a display integrated in the document processing device based on the display data and the received instructions. The display data is then communicated, via an established data connection, to an associated data processing device having both a user data input and a user display. Control instructions for the document processing device are then received from the associated data processing device so as to allow for user control of a document processing operation and a document processing operation is commenced based on instructions received from the data processing device.
Abstract:
A computer system may comprise a graphics controller, which may support a display handler. In one embodiment, the display handler may receive configuration values comprising a quantity value and a blending order. In one embodiment, the display handler may determine the number of universal pixel planes using the quantity value. The display handler may provide a number of universal pixel planes equal to the quantity value and the universal pixel planes may be provided using a reference universal pixel plane. The display handler may render each of the universal pixel planes into a type of pixel plane indicated by the corresponding elements of the blending order.
Abstract:
The subject application is directed to a system and method for a system and method for providing remote service to functionally constrained data processing devices. A server first receives feature identification data representing available services requested from each of a plurality of data processing devices. Instructions corresponding to each of the available services is then stored in association with the server. The feature identification data is then tested so as to determine whether the feature is available locally or requires access to an associated data repository, such as the Internet. The instructions associated with each received feature identification data are then processed so as to complete a corresponding service. The associated repository is then accessed when the result of the testing indicates that the feature is not available locally. Thereafter, result data associated with each requested service is then communicated to the data processing device associated with the service request.