Abstract:
A device may include a dynamic function row (DFR) comprising a touchscreen. A device processor may operate a DFR agent controlling the DFR. The DFR agent may generate and/or select images to display on the DFR based on rules and/or contexts, and the DFR may display the images.
Abstract:
A user-activatable dashboard (also referred to as a unified interest layer) contains any number of user interface elements, referred to herein as “widgets,” for quick access by a user. In response to a command from a user, the dashboard is invoked and the widgets are shown on the screen. The user can activate the dashboard at any time, causing the dashboard to temporarily replace the existing user interface display on the user's screen. Once the dashboard has been activated, the user can interact with any or all of the widgets, and can configure the dashboard by adding, deleting, moving, or configuring individual widgets as desired. When the user wishes to return to the normal user interface he or she was working with, the user issues a command causing the dashboard to be dismissed. Once the dashboard has been dismissed, the previous user interface state is restored, allowing the user to resume normal interactions with the operating system.
Abstract:
As a user's needs change over time, the widgets displayed in a widget display area are altered by the user to better suit the desires of the user. Further, the widgets selected for display can be configured as desired by the user to display information in different ways. In order to reduce clutter within the widget display area itself, electronic devices can include a user interface that facilitates ease of accessing, adding, removing, and configuring the widget display area and the widgets therein as desired by the user.
Abstract:
Systems, methods, computer-readable mediums, user interfaces and other implementations are disclosed for workflow widgets. In some implementations, a widget workflow method includes: launching a widget at a first device; and updating the widget with content created at a second device.
Abstract:
Many electronic devices have graphical user interfaces that use applications windows. Because a user may use one or more instances of a particular application or multiple applications at once, application windows are useful tools for organizing items stored in electronic devices and using features provided by various applications. A user may need to manipulate, organize, configure and/or resize application windows. Some methods for manipulating, organizing, configuring and/or resizing application windows require a sequence of user inputs that navigate in a menu system. For example, with these methods, a user may need to select a user interface object in display a menu and/or perform one or more actions on the selected user interface object associated with one or more application windows. The various methods disclosed herein streamline manipulating, organizing, configuring and/or resizing application windows.
Abstract:
A first window generated by a first application is displayed concurrently with a second window generated by a second application. A first window-movement request associated with the second window is received. In response, the second window is displayed adjacent to and touching the first window and a spatial relationship is established between the first window and the second window. While the first window is linked to the second window, a second window-movement request associated with the first window is received. The first window and second window are moved in accordance with the second window-movement request such that the spatial relationship is maintained. A third window-movement request is received. In accordance with a determination that the third window-movement request is associated with the second window, the first window and second window are unlinked and the second window is moved away from the first window such that the spatial relationship changes.
Abstract:
A speakerphone system integrated in a mobile device is automatically controlled based on the current state of the mobile device. In one implementation, the mobile device is controlled based on an orientation or position of the mobile device. In another implementation, the control of the speakerphone includes automatically controlling one or more graphical user interfaces associated with the speakerphone system.
Abstract:
A user interface can have one or more spaces presented therein. A space is a grouping of one or more program windows in relation to windows of other application programs, such that the program(s) of only a single space is visible when the space is active. A view can be generated of all spaces and their contents.
Abstract:
A shape may be virtually generated from a formula specifying a scalable property of the shape that determines the appearance of the shape as the size of the shape is changed. Once the shape is generated, a reflection and/or shadow may be generated according to one or more customizable parameters specifying different properties of the reflection and/or shadow. Reflections and shadows may be regenerated with shapes each time the shapes are resized. Each generated shape, reflection, and/or shadow may then be outputted to a display. Systems, methods, and computer readable media are provided.
Abstract:
User interfaces for multiple display regions are described. One embodiment provides an array of non-overlapping windows that are created from a set of overlapping windows, and a user can select one of the non-overlapping windows to obtain an enlarged view of that selected window while keeping the other windows in their non-overlapping state. In one embodiment, the array of non-overlapping windows can include minimized windows or windows in other virtual desktops (e.g. windows in other “Spaces”) or both. In one embodiment, only windows of a selected application are shown in non-overlapping mode while opened windows of other applications are not shown.