Abstract:
A device displays a first user interface on a first display, including a plurality of objects and corresponding to a second user interface on a second display. While a first object is displayed as a selected object in the second user interface, the device: detects a first input requesting information about a second object; and in response to detecting the first input, displays information about the second object in the first user interface and maintains display of the first object as the selected object in the second user interface. After displaying the information, the device detects a second input selecting the second object. In response to detecting selection of the second input, the device: displays the second object as the selected object in the first user interface; and provides, to the second display, information that enables the second user interface to display the second object as the selected object.
Abstract:
An approach is provided for providing adaptable schema based payloads for state advertisement messages. In some implementations, multiple schemas (e.g., payload data and structure definition) can be used to flexibly and dynamically define advertisement message payloads. For example, the computing device can use advertising message to share and broadcast information between devices by using adaptable schema based payloads. The computing device can store schemas, receive service advertising data, and determine a schema for encoding service advertising data into an advertising message. The computing device can generate the advertising message, encode a schema identifier into the advertising message header, and encode device state data into the advertising message payload according to the determined schema. In some implementations, the computing device can receive advertising message, determine a schema based on a schema identifier in the message, and extract device state data from the advertising message according to the determined schema.
Abstract:
A device may broadcast an indication of an activity level of the device. The device may also receive a notification of an incoming message and receive at least one broadcast from at least one additional device also receiving the notification of the incoming message including an indication of at least one activity level of the at least one additional device. The device may compare its own activity level with the received at least one activity level. In response to determining that the activity level of the device is equal to or greater than a highest received at least one activity level, the device may display the notification of the incoming message.
Abstract:
Systems and methods for transitioning between networks are disclosed. A multifunction device detects a vehicle network advertisement beacon over a first communication channel. The vehicle network advertisement beacon indicates wireless network capabilities of a wireless networking device hosting a wireless network in a vehicle. Responsive to detecting the vehicle network beacon over the first communication channel, a handoff process for migrating the multifunction device from a first wireless network to the wireless network in the vehicle is performed.
Abstract:
A first electronic device is associated with a biometric sensor. Biometric data received by the biometric sensor is used to permit the first electronic device to pair with, unlock, and/or access a second electronic device.
Abstract:
Some embodiments provide a method for an electronic device. The method stores user data associated with a web-based third party service based on user interaction with a web domain for the third party service through a web browser. The method receives a request from a service-specific application to utilize the user data stored for the third party service. The method provides the user data to the application only when the application is verified by the web domain for receiving user data associated with the third party service.
Abstract:
This document describes, inter alia, techniques for configuring or setting up a wireless device. As an example of the features described herein, a first wireless device may be used to configure a second wireless device as follows: the first wireless device may detect that the second wireless device is available and is configurable; the first wireless device may connect to the second wireless device and transmit configuration information to the second wireless device, where the configuration information includes credentials that may be used to access a wireless network (e.g., a password to access a Wi-Fi network); the first wireless device and the second wireless device may then both connect to the wireless network, using the credentials; once both devices are connected to the wireless network, the first wireless device may verify that the second wireless device has been correctly configured.
Abstract:
A secure wireless communication link (pairing) between two devices can be established using cleartext wireless transmissions between devices not joined to a network (“probes”). One device can broadcast a first probe indicating that it is seeking to establish a pairing. The other device can respond with a second probe, and the two devices can establish a shared secret, e.g., by exchanging further information using additional probes. Thereafter, either device can send a message to the other by encrypting the message using a cryptographic key derived from the shared secret; encrypted messages can also be sent within probes. The receiving device can extract an encrypted message from a probe and decrypt it using the cryptographic key. The encrypted message can include credentials usable by the receiving device to join a wireless network.
Abstract:
A device implementing dynamic controller selection may include a processor configured to generate a connectivity graph based on a scan for accessory devices, the connectivity graph including a connectivity metric value for a discovered accessory device. The processor may be configured to broadcast the connectivity graph and receive another connectivity graph broadcasted by another electronic device that includes another connectivity metric value for the accessory device. The processor may be configured to receive a request to provide an instruction to the accessory device and determine which of the electronic devices will provide the instruction based on the connectivity metric values. The processor may be further configured to, when the electronic device is determined, provide the instruction for transmission to the accessory device, and when the other electronic device is determined, provide, for transmission to the other electronic device, the instruction to be provided to the accessory device.
Abstract:
A uniform protocol can facilitate secure, authenticated communication between a controller device and an accessory device that is controlled by the controller. An accessory and a controller can establish a pairing, the existence of which can be verified at a later time and used to create a secure communication session. The accessory can provide an accessory definition record that defines the accessory as a collection of services, each service having one or more characteristics. Within a secure communication session, the controller can interrogate the characteristics to determine accessory state and/or modify the characteristics to instruct the accessory to change its state.