Abstract:
An electronic device displays a user interface in a first display state. The device detects a first portion of a gesture on a touch-sensitive surface, including detecting intensity of a respective contact of the gesture. In response to detecting the first portion of the gesture, the device displays an intermediate display state between the first display state and a second display state. In response to detecting the end of the gesture: if intensity of the respective contact had reached a predefined intensity threshold prior to the end of the gesture, the device displays the second display state; otherwise, the device redisplays the first display state. After displaying an animated transition between a first display state and a second state, the device, optionally, detects an increase of the contact intensity. In response, the device displays a continuation of the animation in accordance with the increasing intensity of the respective contact.
Abstract:
Electronic devices may use touch pads that have touch sensor arrays, force sensors, and actuators for providing tactile feedback. A touch pad may be mounted in a computer housing. The touch pad may have a rectangular planar touch pad member that has a glass layer covered with ink and contains a capacitive touch sensor array. Force sensors may be mounted under each of the four corners of the rectangular planar touch pad member. The force sensors may be used to measure how much force is applied to the surface of the planar touch pad member by a user. Processed force sensor signals may indicate the presence of button activity such as press and release events. In response to detected button activity or other activity in the device, actuator drive signals may be generated for controlling the actuator. The user may supply settings to adjust signal processing and tactile feedback parameters.
Abstract:
An electronic device displays a first user interface that corresponds to a first application, and detects on a touch-sensitive surface a first gesture that includes movement of a contact in a respective direction on the touch-sensitive surface. In response to detecting the first gesture, the device, in accordance with a determination that the movement of the contact is in a first direction, replaces display of the first user interface with display of a second user interface that corresponds to a second application; and in accordance with a determination that the movement of the contact is in a second direction, distinct from the first direction, displays a first system user interface for interacting with a system-level function.
Abstract:
An electronic device with a touch-sensitive display displays an electronic calendar and detects a hand-drawn input on the touch-sensitive display. The hand-drawn input extends over a vertical portion, less than all, of an area corresponding to a first day in the calendar. In response to detecting the hand-drawn input, the device displays, over the vertical portion of the first day, one or more graphics that correspond to the hand-drawn input. While displaying the graphics, the device detects an input that corresponds to a request to create an event in the electronic calendar. In response, the device creates, in the first day in the electronic calendar, an event with a start time and an end time, wherein the start time and the end time of the event are in accordance with the first day that the hand drawn input extends over.
Abstract:
In some embodiments, an electronic device receives handwritten inputs in text entry fields and converts the handwritten inputs into font-based text. In some embodiments, an electronic device selects and deletes text based on inputs from a stylus. In some embodiments, an electronic device inserts text into pre-existing text based on inputs from a stylus. In some embodiments, an electronic device manages the timing of converting handwritten inputs into font-based text. In some embodiments, an electronic device presents a handwritten entry menu. In some embodiments, an electronic device controls the characteristic of handwritten inputs based on selections on the handwritten entry menu. In some embodiments, an electronic device presents autocomplete suggestions. In some embodiments, an electronic device converts handwritten input to font-based text. In some embodiments, an electronic device displays options in a content entry palette.
Abstract:
An electronic device detects a contact on a touch-sensitive surface of the electronic device, including a first portion of a gesture made with the contact, a second portion of the gesture that follows the first portion, and lift-off of the contact from the touch-sensitive surface during or after the second portion of the gesture. In response to detecting the second portion of the gesture, if a modifier input was detected while detecting the first portion of the gesture made with the contact, the electronic device performs a first operation and generates a first tactile output on the touch-sensitive surface. If the modifier input was not detected while detecting the first portion of the gesture, the electronic device performs a second operation different from the first operation and generates a second tactile output on the touch-sensitive surface, wherein the second tactile output is different from the first tactile output.
Abstract:
The present disclosure generally relates to displaying and editing image with depth information. Image data associated with an image includes depth information associated with a subject. In response to a request to display the image, a first modified image is displayed. Displaying the first modified image includes displaying, based on the depth information, a first level of simulated lighting on a first portion of the subject and a second level of simulated lighting on a second portion of the subject. After displaying the first modified image, a second modified image is displayed. Displaying the second modified image includes displaying, based on the depth information, a third level of simulated lighting on the first portion of the subject and a fourth level of simulated lighting on the second portion of the subject.
Abstract:
An example method of indicating to a user that a biometric input was authenticated. The method is performed at a computing system comprising a processor, memory, a first housing that includes a primary display, and a second housing containing a physical keyboard, a touch-sensitive secondary display, and a biometric input device. The method includes displaying, at the primary display, a web page that identifies items for purchasing, and detecting a selection of an affordance displayed on the web page. In response, displaying, on touch-sensitive secondary display, an alert prompting a user to provide a biometric input to the biometric input device, and detecting a biometric input on the biometric input device that is in second housing. In response to detecting the biometric input, and in accordance with a determination that the biometric input has been authenticated, displaying on the display an indication that purchase of the items has been validated.
Abstract:
An electronic device with a touch-sensitive surface and a display displays a representation of a clock on the display, detects an input directed to the representation of the clock, while detecting the input directed to the representation of the clock, and provides tactile feedback that corresponds to the clock, wherein the tactile feedback includes a regular pattern of tactile outputs on the touch-sensitive surface. While providing the tactile feedback, the device detects that the input is no longer directed to the representation of the clock, and in response to detecting that the input is no longer directed to the representation of the clock, ceases to provide the tactile feedback corresponding to the clock.
Abstract:
An electronic device, while displaying a user interface of a first software application, detects a first input, including a contact that does not satisfy a first threshold and is detected at a location associated with region of the user interface associated with at least a first operation. In response to the first input, if a first tactile output setting is active for the first input, the device performs the first operation without generating a tactile output, and if a second tactile output setting is active for the first input, the device forgoes performing the first operation. In response to a second input that includes a contact that satisfies the first intensity threshold and is detected at a location associated with the region of the user interface, if the second tactile output setting is active for the second input, the device performs the first operation and generates a tactile output.