Abstract:
Implementations described and claimed herein provide systems and methods for interaction between a user and a machine. In one implementation, machine status information for the machine is received at a dedicated machine component. The machine status information is published onto a distributed node system network of the machine. The machine status information is ingested at a primary interface controller, and an interactive user interface is generated using the primary interface controller. The interactive user interface is generated based on the machine status information. In some implementations, input is received from the user at the primary interface controller through the interactive user interface, and a corresponding action is delegated to one or more subsystems of the machine using the distributed node system network.
Abstract:
A portable electronic device for instant messaging is disclosed. One aspect of the invention involves a graphical user interface (GUI) on a portable electronic device with a touch screen display. The GUI has a set of messages exchanged between a user of the device and another person. The set of messages are displayed in a chronological order. In response to detecting a scrolling gesture comprising a substantially vertical movement of a user contact with the touch screen display, the display of messages are scrolled in accordance with a direction of the scrolling gesture. The detecting of the scrolling gesture is substantially independent of a horizontal position of the user contact with the touch screen display.
Abstract:
Implementations described and claimed herein provide systems and methods for interaction between a user and a machine. In one implementation, machine status information for the machine is received at a dedicated machine component. The machine status information is published onto a distributed node system network of the machine. The machine status information is ingested at a primary interface controller, and an interactive user interface is generated using the primary interface controller. The interactive user interface is generated based on the machine status information. In some implementations, input is received from the user at the primary interface controller through the interactive user interface, and a corresponding action is delegated to one or more subsystems of the machine using the distributed node system network.
Abstract:
An electronic device with a display, a touch-sensitive surface, and software code configured to interact with applications and provide the applications with an application programming interface (API) for performing gesture operations in response to a user input detected on the touch-sensitive surface, detects, via the software code, a drag input that includes movement of a contact on the touch-sensitive surface that corresponds to movement over a displayed scrollable region in an application. While detecting the drag input, the device scrolls on the display, via the software code, the scrollable region of the application in accordance with the drag input. After detecting an end of the drag input, the device continues to scroll on the display, via the software code, the scrollable region in accordance with the drag input including slowing the scroll to a stop over time in accordance with a deceleration factor set using the API.
Abstract:
Some embodiments provide a method for a mobile device connected to a vehicle's interactive communication system that includes a display screen. The method identifies at least one search term from audio data received through the vehicle's interactive communication system. At the mobile device, the method performs a search to identify at least one location related to the identified search term. The method generates a map, that displays the identified location, for output on the display screen of the interactive communication system of the vehicle.
Abstract:
Geographic location data is sent from a first device to a second device with a modified message to signal the presence of geographic location data associated with the message. The message can include (or attach) the geographic location data or file, or the message can include a link to a network-based resource which the second device can use to obtain the geographic location data. In some implementations, when a user of the first device views a location on a map display of the first device, a graphical user interface is presented to allow the user to select an option to share the geographic location with the second device. The second device receives geographic location data or a link from the first device which can trigger a map display on the second device showing the location of the first device and, optionally, the location of the second device.
Abstract:
At least certain embodiments of the present disclosure include an environment with user interface software interacting with a software application. A method for operating through an application programming interface (API) in this environment includes transferring a set bounce call. The method further includes setting at least one of maximum and minimum bounce values. The set bounce call causes a bounce of a scrolled region in an opposite direction of a scroll based on a region past an edge of the scrolled region being visible in a display region at the end of the scroll.
Abstract:
A portable device with a touch screen display detects a finger-in-contact event at a first position on the touch screen display and identifies a user interface object associated with the first position. The portable device determines whether the identified user interface object is moveable across the touch screen display. For an identified object that is determined to be moveable across the touch screen display, the portable device detects a sequence of one or more first finger-dragging, a first finger-out-of-contact, one or more second finger-dragging, and a first finger-out-of-range events and performs a first operation associated with the identified moveable user interface object at least in part in accordance with the first and second finger-dragging events. For an identified not moveable object, the portable device detects a second finger-out-of-contact event and performs a second operation, different from the first operation in response to a second finger-out-of-contact event.
Abstract:
Implementations described and claimed herein provide systems and methods for interaction between a user and a machine. In one implementation, machine status information for the machine is received at a dedicated machine component. The machine status information is published onto a distributed node system network of the machine. The machine status information is ingested at a primary interface controller, and an interactive user interface is generated using the primary interface controller. The interactive user interface is generated based on the machine status information. In some implementations, input is received from the user at the primary interface controller through the interactive user interface, and a corresponding action is delegated to one or more subsystems of the machine using the distributed node system network.
Abstract:
Implementations described and claimed herein provide systems and methods for interaction between a user and a machine. In one implementation, machine status information for the machine is received at a dedicated machine component. The machine status information is published onto a distributed node system network of the machine. The machine status information is ingested at a primary interface controller, and an interactive user interface is generated using the primary interface controller. The interactive user interface is generated based on the machine status information. In some implementations, input is received from the user at the primary interface controller through the interactive user interface, and a corresponding action is delegated to one or more subsystems of the machine using the distributed node system network.