Abstract:
Methods, systems, computer-readable media, and apparatuses for providing a native desktop using cloud-synchronized data are presented. In some embodiments, a desktop management service provided by at least one computing device may selectively store data from a remote desktop. Subsequently, the desktop management service may synchronize the stored data with a cloud-based data storage platform. Thereafter, the desktop management service may cause a native desktop to be presented on a client device using the synchronized data. In some arrangements, the extracted, analyzed, and/or selectively stored data may include one or more application shortcuts, one or more documents, one or more registry keys, one or more personalization settings, or one or more layout settings. Additionally or alternatively, the remote desktop may be associated with a first operating system, and the native desktop may be associated with a second operating system different from the first operating system.
Abstract:
Methods, systems, computer-readable media, and apparatuses for providing a native desktop using cloud-synchronized data are presented. In some embodiments, a desktop management service provided by at least one computing device may selectively store data from a remote desktop. Subsequently, the desktop management service may synchronize the stored data with a cloud-based data storage platform. Thereafter, the desktop management service may cause a native desktop to be presented on a client device using the synchronized data. In some arrangements, the extracted, analyzed, and/or selectively stored data may include one or more application shortcuts, one or more documents, one or more registry keys, one or more personalization settings, or one or more layout settings. Additionally or alternatively, the remote desktop may be associated with a first operating system, and the native desktop may be associated with a second operating system different from the first operating system.
Abstract:
Methods and systems for virtual printing are described herein. A user may print to a virtual printer via a user device, and the user device may send print creation data to a server. The server may generate a print job based on the print creation data and store the print job in a print queue associated with the user. When the user approaches the location of one or more physical printers, a device handled by the user may detect a location sensor at the location and send a corresponding identifier to the server. The server may identify the one or more physical printers based on the identifier and send the print job stored in the print queue to one of the physical printers.
Abstract:
Methods, systems, computer-readable media, and apparatuses for providing a native desktop using cloud-synchronized data are presented. In some embodiments, a desktop management service provided by at least one computing device may selectively store data from a remote desktop. Subsequently, the desktop management service may synchronize the stored data with a cloud-based data storage platform. Thereafter, the desktop management service may cause a native desktop to be presented on a client device using the synchronized data. In some arrangements, the extracted, analyzed, and/or selectively stored data may include one or more application shortcuts, one or more documents, one or more registry keys, one or more personalization settings, or one or more layout settings. Additionally or alternatively, the remote desktop may be associated with a first operating system, and the native desktop may be associated with a second operating system different from the first operating system.
Abstract:
Aspects of the present disclosure are directed towards responding to a touch gesture at a touch-enabled computing device. An interface control element may be presented at a first computing environment provided by a computing device. A touch gesture may be received at a touchscreen of the computing device, and it may be determined whether at least a portion of the touch gesture occurred at the interface control element. Based, at least in part, on whether at least a portion of the touch gesture occurred at the interface control element, a display of the first computing environment may be adjusted or information corresponding to the touch gesture may be transmitted to a second computing environment.
Abstract:
Aspects of the present disclosure are directed towards responding to a touch gesture at a touch-enabled computing device. An interface control element may be presented at a first computing environment provided by a computing device. A touch gesture may be received at a touchscreen of the computing device, and it may be determined whether at least a portion of the touch gesture occurred at the interface control element. Based, at least in part, on whether at least a portion of the touch gesture occurred at the interface control element, a display of the first computing environment may be adjusted or information corresponding to the touch gesture may be transmitted to a second computing environment. The interface control element may be a preview pane.
Abstract:
Aspects of the present disclosure are directed towards responding to a touch gesture at a touch-enabled computing device. An interface control element may be presented at a first computing environment provided by a computing device. A touch gesture may be received at a touchscreen of the computing device, and it may be determined whether at least a portion of the touch gesture occurred at the interface control element. Based, at least in part, on whether at least a portion of the touch gesture occurred at the interface control element, a display of the first computing environment may be adjusted or information corresponding to the touch gesture may be transmitted to a second computing environment.
Abstract:
Aspects of the present disclosure are directed towards responding to a touch gesture at a touch-enabled computing device. An interface control element may be presented at a first computing environment provided by a computing device. A touch gesture may be received at a touchscreen of the computing device, and it may be determined whether at least a portion of the touch gesture occurred at the interface control element. Based, at least in part, on whether at least a portion of the touch gesture occurred at the interface control element, a display of the first computing environment may be adjusted or information corresponding to the touch gesture may be transmitted to a second computing environment.
Abstract:
Methods and systems for virtual printing are described herein. A user may print to a virtual printer via a user device, and the user device may send print creation data to a server. The server may generate a print job based on the print creation data and store the print job in a print queue associated with the user. When the user approaches the location of one or more physical printers, a device handled by the user may detect a location sensor at the location and send a corresponding identifier to the server. The server may identify the one or more physical printers based on the identifier and send the print job stored in the print queue to one of the physical printers.
Abstract:
Aspects of the present disclosure are directed towards responding to a touch gesture at a touch-enabled computing device. An interface control element may be presented at a first computing environment provided by a computing device. A touch gesture may be received at a touchscreen of the computing device, and it may be determined whether at least a portion of the touch gesture occurred at the interface control element. Based, at least in part, on whether at least a portion of the touch gesture occurred at the interface control element, a display of the first computing environment may be adjusted or information corresponding to the touch gesture may be transmitted to a second computing environment. The interface control element may be a preview pane.