Abstract:
The present disclosure relates generally to implementing biometric authentication, including providing user interfaces for: a biometric enrollment process tutorial, aligning a biometric feature for enrollment, enrolling a biometric feature, providing hints during a biometric enrollment process, application-based biometric authentication, autofilling biometrically secured fields, unlocking a device using biometric authentication, retrying biometric authentication, managing transfers using biometric authentication, interstitial user interfaces during biometric authentication, preventing retrying biometric authentication, cached biometric authentication, autofilling fillable fields based on visibility criteria, automatic log-in using biometric authentication, retrying biometric authentication at a credential entry user interface, providing indications of error conditions during biometric authentication, providing indications about the biometric sensor during biometric authentication, and orienting the device to enroll a biometric feature.
Abstract:
The present disclosure relates generally to implementing biometric authentication. In some examples, a device provides user interfaces for a biometric enrollment process tutorial. In some examples, a device provides user interfaces for aligning a biometric feature for enrollment. In some examples, a device provides user interfaces for enrolling a biometric feature. In some examples, a device provides user interfaces for providing hints during a biometric enrollment process. In some examples, a device provides user interfaces for application-based biometric authentication. In some examples, a device provides user interfaces for autofilling biometrically secured fields. In some examples, a device provides user interfaces for unlocking a device using biometric authentication. In some examples, a device provides user interfaces for retrying biometric authentication. In some examples, a device provides user interfaces for managing transfers using biometric authentication. In some examples, a device provides interstitial user interfaces during biometric authentication. In some examples, a device provides user interfaces for preventing retrying biometric authentication. In some examples, a device provides user interfaces for cached biometric authentication. In some examples, a device provides user interfaces for autofilling fillable fields based on visibility criteria. In some examples, a device provides user interfaces for automatic log-in using biometric authentication.
Abstract:
The present disclosure generally relates to user interfaces for charging electronic devices. At a first device with a display, detect that at least one of the first device or a second device has entered a wireless charging state. In response to detecting that at least one of the first device or the second device has entered a wireless charging state, and in accordance with a determination that the first device and the second device are being wirelessly charged by the same wireless charging device, display, on the display, an indication of charge status for the second device.
Abstract:
An electronic device, detects a first input while in a display-off state, and in response, the device activates the display of the device. The device further displays, a first user interface that corresponds to a display-on state of the device. While displaying the first user interface that corresponds to the display-on state of the device, the device detects a swipe gesture, in accordance with a determination that the device is in a locked mode of the display-on state and the swipe gesture is in a first direction, the device replaces display of the first user interface with display of a second user interface displaying a first content; and in accordance with a determination that the device is in an unlocked mode of the display-on state and the swipe gesture is in the first direction, the device replaces display of the first user interface with display of the second user interface.
Abstract:
An electronic device, detects a first input while in a display-off state, and in response, the device activates the display of the device. The device further displays, a first user interface that corresponds to a display-on state of the device. While displaying the first user interface that corresponds to the display-on state of the device, the device detects a swipe gesture, in accordance with a determination that the device is in a locked mode of the display-on state and the swipe gesture is in a first direction, the device replaces display of the first user interface with display of a second user interface displaying a first content; and in accordance with a determination that the device is in an unlocked mode of the display-on state and the swipe gesture is in the first direction, the device replaces display of the first user interface with display of the second user interface.
Abstract:
The present disclosure generally relates to user interfaces. In some examples, the electronic device provides for transitioning between simulated lighting effects. In some examples, the electronic device applies a simulated lighting effect to an image. In some examples, the electronic device provides user interfaces for applying a filter to an image. In some examples, the electronic device provides for a reduced filter interface. In some examples, the electronic device provides a visual aid displayed in a viewfinder.
Abstract:
In accordance with some embodiments, a method is performed at an electronic device with a display, a touch-sensitive surface, and one or more sensors for detecting intensities of contacts on the touch-sensitive surface. The method comprises displaying a user interface that includes an editable content area that has a plurality of characters, and a content deletion control; detecting a deletion input that includes detecting a contact at a location on the touch-sensitive surface that corresponds to the content deletion control on the display; and in response to detecting the deletion input, deleting content in the editable content area based on a duration and a characteristic intensity of the contact. The method includes in accordance with a determination that the contact was maintained for a first time period without the characteristic intensity of the contact increasing above a first intensity threshold, deleting the content in the editable content area by sequentially deleting a plurality of sub-units of the content of a first type of sub-unit of the content at a rate that does not vary based on the characteristic intensity of the contact; in accordance with a determination that the contact was maintained for a second time period that is longer than the first time period without the characteristic intensity of the contact increasing above the first intensity threshold, switching to deleting the content in the editable content area by sequentially deleting a plurality of sub-units of the content of a second type of sub-unit of the content at a rate that does not vary based on the characteristic intensity of the contact, wherein the second type of sub-unit is different from the first type of sub-unit; and in accordance with a determination that the characteristic intensity of the contact increased above the first intensity threshold, deleting the content in the editable content area by sequentially deleting a plurality of sub-units of the content at a rate that varies based on the characteristic intensity of the contact.
Abstract:
The present disclosure generally relates to user interfaces. In some examples, the electronic device provides for transitioning between simulated lighting effects. In some examples, the electronic device applies a simulated lighting effect to an image. In some examples, the electronic device provides user interfaces for applying a filter to an image. In some examples, the electronic device provides for a reduced filter interface. In some examples, the electronic device provides a visual aid displayed in a viewfinder.