Abstract:
An electronic device includes a camera. While in a first media acquisition mode for the camera the device displays a live preview on the display. While displaying the live preview, the device detects activation of a shutter button. In response to detecting activation of the shutter button, the device groups a plurality of images acquired by the camera in temporal proximity to the activation of the shutter button into a sequence of images. The sequence of images includes: a plurality of images acquired by the camera prior to detecting activation of the shutter button; a representative image that represents the first sequence of images and was acquired by the camera after one or more of the other images in the first sequence of images; and a plurality of images acquired by the camera after acquiring the representative image.
Abstract:
Methods and apparatus organize a plurality of haptic output variations into a cohesive semantic framework that uses various information about the alert condition and trigger, application context, and other conditions to provide a system of haptic outputs that share characteristics between related events. In some embodiments, an event class or application class provides the basis for a corresponding haptic output. In some embodiments, whether an alert-salience setting is on provides the basis for adding an increased salience haptic output to the standard haptic output for the alert. In some embodiments, consistent haptics provide for branding of the associated application class, application, and/or context.
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 on the display; detects an input by a contact on the touch-sensitive surface while a focus selector is over a first user interface object, in the plurality of user interface objects, on the display; in accordance with a determination that the input meets selection criteria, displays a second user interface that is distinct from the first user interface in response to detecting the input; in accordance with a determination that a first portion of the input meets preview criteria, displays a preview area overlaid on at least some of the plurality of user interface objects in the first user interface in response to detecting the first portion of the input, wherein the preview area includes a reduced scale representation of the second user interface; in accordance with a determination that a second portion of the input by the contact meets user-interface-replacement criteria, replaces display of the first user interface and the overlaid preview area with display of the second user interface; and, in accordance with a determination that the second portion of the input by the contact meets preview-area-disappearance criteria, ceases to display the preview area and displays the first user interface after the input ends.
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:
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.