Abstract:
The disclosed embodiments provide a system that processes data from a user. During operation, the system obtains, at a cloud computing system, a set of data-sharing preferences for the user. Next, the system creates a set of virtual storage partitions for the user with the cloud computing system based on the data-sharing preferences. Upon receiving data from the user to the cloud computing system, the system associates the data with a virtual storage partition from the set of virtual storage partitions based on the data-sharing preferences and a set of data attributes for the data. Finally, the system manages access to the virtual storage partition by one or more other users based on the data-sharing preferences.
Abstract:
A device includes a touch sensitive surface for receiving touch input or gestures associated with two or more markers representing two or more locations defining a route on a map display. Based on the touch input or gesture, information associated with the route is provided to the user including, for example, the travel distance between the two or more locations and an estimated travel time. In some implementations, a gesture associated with two or more markers representing locations on a map display opens a user interface for providing travel directions for a route associated with the two or more locations.
Abstract:
Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for retrieving local information on a user device include detecting itinerary information stored by a first application on a user device, and identifying a travel destination based on the detected itinerary information. The travel destination is communicated to a second application executable on a user device, and the travel destination is stored in association with the second application. The second application is adapted to retrieve local information based on an identified geographic location, and local information for the travel destination is provided through the second application in response to a user interaction with the second application and based on a triggering threshold associated with the itinerary information.
Abstract:
A processor-based personal electronic device (such as a smartphone) uses combinatorial logic to automatically adjust alarms, notifications, reminders, and the like based on data from device event histories, on-board sensors, user-entered data, and similar information. One particular representative embodiment comprises a process for automatically deleting an unneeded reminder. For example, a user may have a personal electronic device that is set to issue a reminder for a meeting in a certain place, on a certain date at a certain time. If location sensors detect that the user is already at the certain place on the certain date at (or reasonably before) the certain time, the now superfluous reminder is automatically cancelled.
Abstract:
This specification discloses methods and systems for setting automatic reminders in a primary device when the services/capabilities offered by the primary device or one of the connected/nearby devices change. In a first embodiment, the method can include sending a reminder according to a service becoming available on a mobile device. For example, a user can request a mobile device to send a reminder when a reliable voice call service becomes available on the mobile device. In a second embodiment, the method can include sending a notification according to a service or capability becoming available on a nearby device. In a third embodiment, the method can include sending a notification according to a service or capability becoming available on a connected/newly used device.
Abstract:
A processor-based personal electronic device (such as a smartphone) uses combinatorial logic to automatically adjust alarms, notifications reminders, and the like based on data from device event histories, on-board sensors, user-entered data, and similar information. One particular representative embodiment comprises a process for automatically deleting an unneeded reminder. For example, a user may have a personal electronic device that is set to issue a reminder for a meeting in a certain place, on a certain date at a certain time. If location sensors detect that the user is already at the certain place on the certain date at (or reasonably before) the certain time the now superfluous reminder is automatically cancelled.
Abstract:
A suppression override engine on a user device may be configured to detect communication alert suppressions. An incoming communication from a third party may be detected. Upon detecting the communication, the suppression override engine can override the communication alert suppression if it determines that the incoming communication is responsive to a prior communication from the user device. By overriding the alert suppression the user is then alerted to the incoming communication.
Abstract:
A mobile device can obtain wireless network signal strength map data that indicates, for various nearby geographical regions, the wireless network signal strength in each such region. A mobile device can transmit that data to a vehicular navigation system responsible for automatically selecting a high-quality route of vehicular travel between a specified source and destination. The system can take the wireless network signal map data into account when selecting that route. When selecting from among multiple different routes of vehicular travel between a specified source and destination, the system may employ an algorithm that considers wireless network signal strengths along those routes, in addition to the other factors. Consequently, the system can select a longer route having better signal strength over a shorter route having worse signal strength. The system can present the selected route within a set of suggested routes, potentially along with reasons for each route's suggestion.
Abstract:
A method and system are described for displaying a synchronized instance of content on a portable electronic device. In the described embodiments, a selection of streaming content that is being displayed on a fixed display system is received by the portable electronic device. The portable electronic device then determines if the portable electronic device is compatible with the streaming content being received by the fixed display system. If the portable electronic device is compatible with the streaming content being received by the fixed display system, then the portable electronic device requests the synchronized instance of the streaming content and displays it.
Abstract:
Sensor-assisted location technology is disclosed. Primary location technologies, such as GPS, can be used to determine the current location (e.g., a location fix) of a location-enabled device. In some instances, the primary location technology may be unreliable and/or consume more power than an alternative location technology. Sensors, such as accelerometers, compasses, gyrometers, and the like, can be used to supplement and/or increase the accuracy of location data. For example, a location-enabled device can identify an area with unreliable GPS location data and use sensors to calculate a more accurate location. Areas identified may be crowd-sourced. Sensors can be used to identify errors in the location data provided by primary location technology. Sensors can be used to modify a sampling interval of the primary location technology. Sensor can be used to smooth motion on a user interface between sampling intervals of the primary location technology.