Abstract:
An electronic device with a touch-sensitive surface, a display, and one or more sensors to detect intensity of contacts displaying a lower-level user interface that is part of a user interface hierarchy, where the hierarchy includes at least three levels, including the lower-level user interface, an intermediate-level user interface and a higher-level user interface. The device also, while displaying the lower-level user interface, detects an input on a portion of the device that is associated with user interface hierarchy navigation and, in response to detecting the input, in accordance with a determination that the input meets first transition criteria, the device replaces display of the lower-level user interface with display of the intermediate-level user interface and in accordance with a determination that the input meets second transition criteria, the device replaces display of the lower-level user interface with display of the higher-level user interface.
Abstract:
An electronic device with a display, a touch-sensitive surface and one or more sensors to detect intensity of contacts with the touch-sensitive surface displays a respective control icon with simulated three-dimensional characteristics and a cursor over the respective control icon. The device detects, on the touch-sensitive surface, a stationary press input that includes an increase in intensity of a contact that corresponds to the cursor. In response to detecting the stationary press input, the device changes an appearance of the respective control icon in accordance with the simulated three-dimensional characteristics of the control icon and moves the cursor laterally on the display in accordance with the change in appearance of the respective control icon.
Abstract:
An electronic device with a touch-sensitive surface, a display, and one or more sensors to detect intensity of contacts with the touch-sensitive surface displays a user interface object having a plurality of activation states; detects a contact on the touch-sensitive surface; and detects an increase of intensity of the contact from a first intensity to a second intensity. In response to detecting the increase in intensity, the device: changes activation states M times, and generates a tactile output on the touch-sensitive surface corresponding to each change in activation state. The device detects a decrease of intensity of the contact from the second intensity to the first intensity; and in response to detecting the decrease in intensity, the device: changes activation states N times, and generates a tactile output on the touch-sensitive surface corresponding to each change in activation state, where N is different from M.
Abstract:
An electronic device with a touch-sensitive surface and a display displays a user interface object on the display, detects a contact on the touch-sensitive surface, and detects a first movement of the contact across the touch-sensitive surface, the first movement corresponding to performing an operation on the user interface object, and, in response to detecting the first movement, the device performs the operation and generates a first tactile output on the touch-sensitive surface. The device also detects a second movement of the contact across the touch-sensitive surface, the second movement corresponding to reversing the operation on the user interface object, and in response to detecting the second movement, the device reverses the operation and generates a second tactile output on the touch-sensitive surface, where the second tactile output is different from the first tactile output.
Abstract:
An electronic device with a touch-sensitive surface and a display displays a control for controlling a parameter associated with respective content. The device detects a gesture on the touch-sensitive surface for adjusting the parameter, and in response to detecting the gesture, the device determines an adjustment of the parameter that corresponds to an extent of the gesture. When the adjustment of the parameter would cause one or more predefined adjustment limits to be exceeded, the device generates a respective tactile output on the touch-sensitive surface, and when the adjustment of the parameter would not cause the one or more predefined adjustment limits to be exceeded, the device adjusts the parameter without generating the respective tactile output on the touch-sensitive surface.
Abstract:
An electronic device with a display, a touch-sensitive surface and one or more sensors to detect intensity of contacts with the touch-sensitive surface displays a respective control icon with simulated three-dimensional characteristics and a cursor over the respective control icon. The device detects, on the touch-sensitive surface, a stationary press input that includes an increase in intensity of a contact that corresponds to the cursor. In response to detecting the stationary press input, the device changes an appearance of the respective control icon in accordance with the simulated three-dimensional characteristics of the control icon and moves the cursor laterally on the display in accordance with the change in appearance of the respective control icon.
Abstract:
An electronic device displays a user interface of a first software application that includes one or more draggable objects and one or more control objects; and, detects a contact on a touch-sensitive surface at a first location while a focus selector is displayed over a first draggable object and a movement of the contact across the touch-sensitive surface to a second location that corresponds to a first control object. In accordance with a determination that the contact at the first location satisfies object selection criteria, the device moves the first draggable object to the first control object in accordance with the movement of the contact across the touch-sensitive surface to the first control object. In accordance with a determination that the contact at the second location satisfies first intensity criteria, the device performs a first predetermined operation that corresponds to activation of the first control object.
Abstract:
A method, comprising: at a computing system comprising one or more processors, memory, a first housing that includes a primary display, and a second housing at least partially containing (i) a physical keyboard and a touch-sensitive secondary display that is distinct from the primary display: displaying, on the primary display, a first user interface for an application executed by the computing system; displaying a second user interface on the touch-sensitive secondary display, the second user interface comprising a first set of one or more affordances corresponding to the application, wherein the first set of one or more affordances corresponds to a first portion of the application; detecting a swipe gesture on the touch-sensitive secondary display; in accordance with a determination that the swipe gesture was performed in a first direction, displaying a second set of one or more affordances corresponding to the application on the touch-sensitive secondary display, wherein at least one affordance in the second set of one or more affordances is distinct from the first set of one or more affordances, and wherein the second set of one or more affordances also corresponds to the first portion of the application; and, in accordance with a determination that the swipe gesture was performed in a second direction substantially perpendicular to the first direction, displaying a third set of one or more affordances corresponding to the application on the touch-sensitive secondary display, wherein the third set of one or more affordances is distinct from the second set of one or more affordances, and wherein the third set of one or more affordances corresponds to a second portion of the application that is distinct from the first portion of the application.