Abstract:
Techniques and systems for centralized access to multimedia content stored on or available to a computing device are disclosed. The centralized access can be provided by a media control interface that receives user inputs and interacts with media programs resident on the computing device to produce graphical user interfaces that can be presented on a display device.
Abstract:
A method includes: displaying a first view of a first application; detecting a first portion of a first input; if the first portion of the first input meets application-switching criteria, concurrently displaying portions of the first application view and a second application view; while concurrently displaying the portions of the application views, detecting a second portion of the first input; if the second portion of the first input meets first-view display criteria (liftoff of contact detected in a first region), ceasing to display the portion of the second application view and displaying the first application view; and if the second portion of the first input meets multi-view display criteria (liftoff of contact detected in a second region), maintaining concurrent display of a portion of the first application view and a portion of the second application view on the display after detecting the liftoff of the contact.
Abstract:
An electronic device: while displaying a first user interface, detects a first input that is consistent with a request to display a second user interface and a request to display a third user interface. In response, the device starts to display a first animated transition from the first to the second user interface. While the first animated transition is being displayed, the device detects a second input. In response, the device determines that the second input is consistent with the request to display the third user interface and whether the second input is received at a first or at a later, second time. If at the first time, the device: interrupts the first animated transition at a first point and displays a second animated transition from the first point to the third user interface. If at the second, later time, the device interrupts the first animated transition at a second point (after the first point), and displays a third animated transition from the second point to the third user interface.
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:
The method for manipulating a cursor is performed at a portable multifunction device with one or more processors, memory, and a touch screen display. Initially, content of an electronic document is displayed on the display, where a cursor is displayed within the electronic document. Two substantially simultaneous touch inputs are then detected on the touch screen display, and preferably anywhere on the touch screen display. In response to detecting the two substantially simultaneous touch inputs, a portion of the content in the document closest to the cursor is selected, and the portion of the content is displayed as selected content.
Abstract:
An electronic device with a touch-sensitive surface, a display, and one or more sensors to detect intensity of contacts: displays a plurality of user interface objects in a first user interface; detects a contact while a focus selector is at a location of a first user interface object; and, while the focus selector is at the location of the first user interface object: detects an increase in a characteristic intensity of the contact to a first intensity threshold; in response, visually obscures the plurality of user interface objects, other than the first user interface object, while maintaining display of the first user interface object; detects that the characteristic intensity of the contact continues to increase above the first intensity threshold; and, in response, dynamically increases the amount of visual obscuring of the plurality of user interface objects, other than the first user interface object.
Abstract:
One or more location-based clients can be activated on a mobile device for providing location-based services. The location-based clients can be provided with information (e.g., presets, defaults) related to the current location and/or mode of the mobile device. The information can be obtained from one or more network resources. In some implementations, a number of location-based clients can run concurrently on the mobile device and share information.
Abstract:
Techniques and systems for centralized access to multimedia content stored on or available to a computing device are disclosed. The centralized access can be provided by a media control interface that receives user inputs and interacts with media programs resident on the computing device to produce graphical user interfaces that can be presented on a display device.
Abstract:
User interfaces for a streaming media system can replicate aspects of broadcast media systems. Icons representing streaming media stations region can be arranged in a scrollable array, and a visual indicator presented to identify the current station's icon. Some or all of the station icons can be “dynamic” icons that virtually play tracks by updating artwork and/or progress indicators even when a different station is current. Information about previously played tracks can be presented in a history region adjacent to a region presenting information about a current track, and an animated transition can move the current track's information to the history region when the current track finishes playing.
Abstract:
An electronic device displays a representative image. The representative image is one image in a sequence of images that includes images acquired after the representative image. While displaying the representative image, the device detects a contact with a first intensity. In response to detecting the contact, the device advances through the images acquired after the representative image at a rate based on the first intensity. When the device detects a decrease in intensity of the contact to a second intensity that is less than the first intensity, the device either continues to advance through the one or more images at a slower rate or reverses direction, depending at least in part on the second intensity relative to a threshold intensity.