Abstract:
Some embodiments provide location-based, application-feature notifications for a multi-feature application that executes on a device. For instance, when a feature (e.g., a functionality, or service) of an application becomes available in a particular region, some embodiments provide a notification of the availability of the new feature in the particular region. In some embodiments, the notification is a location-based notification that is provided to only devices that execute in or near the particular region in which the location-based feature has recently become available. In other embodiments, the notification is also provided to devices that are not near the particular region (e.g., are provided to all devices in the United States, when the feature becomes available in California).
Abstract:
Some embodiments of the invention provide a novel prediction engine that (1) can formulate predictions about current or future destinations and/or routes to such destinations for a user, and (2) can relay information to the user about these predictions. In some embodiments, this engine includes a machine-learning engine that facilitates the formulation of predicted future destinations and/or future routes to destinations based on stored, user-specific data. The user-specific data is different in different embodiments. In some embodiments, the stored, user-specific data includes data about any combination of the following: (1) previous destinations traveled to by the user, (2) previous routes taken by the user, (3) locations of calendared events in the user's calendar, (4) locations of events for which the user has electronic tickets, and (5) addresses parsed from recent e-mails and/or messages sent to the user. In some embodiments, the prediction engine only relies on user-specific data stored on the device on which this engine executes. Alternatively, in other embodiments, it relies only on user-specific data stored outside of the device by external devices/servers. In still other embodiments, the prediction engine relies on user-specific data stored both by the device and by other devices/servers.
Abstract:
An improve navigation application can generate and display a composite representation of multiple POIs when POI icons representing the POIs appear to be overlapping. Some embodiments display the composite representation when a certain zoom level is reached for a map including the multiple POI icons. In some embodiments, the navigation application can determine POIs that may be of interest to the user based on the user's attributes and activity history and generate the composite representation based on those attributes. The composite representation can include multiple POI icons that are displayed adjacent to each other such that a user of the navigation application can readily identify POIs that are likely to be of interest to the user within a region.
Abstract:
At least certain embodiments of the present disclosure include an environment with user interface software interacting with a software application to provide gesture operations for a display of a device. A method for operating through an application programming interface (API) in this environment includes transferring a scaling transform call. The gesture operations include performing a scaling transform such as a zoom in or zoom out in response to a user input having two or more input points. The gesture operations also include performing a rotation transform to rotate an image or view in response to a user input having two or more input points.
Abstract:
Systems and methods are provided for displaying a portion of a map on a mobile device of a user while the user is traveling along a route. The mobile device can use a selected route and a current location of the device to load map tiles for parts of the map that are upcoming along the route. In this manner, the user can have quick access to the portions of the map that the user likely will want to view. For example, the map tiles can be loaded for the next 50 Km, and then when the stored tiles reaches only 25 Km ahead, another 25 Km of tiles can be retrieved. The amount of tiles loaded (e.g., minimum and maximum amounts) can vary based on a variety of factors, such as network state, distance traveled along the route, and whether the mobile device is charging.
Abstract:
An interactive capability enables a user to dynamically adjust the content of an electronic map. Different modes can be chosen to emphasize features relevant to a particular interest, e.g. commuting, tourism, weather, etc. Combinations of modes can be selected to create a customized map. When a search is conducted, the chosen mode functions as a filter for the retrieved results. The map responds to user input directed to a given feature, to display information relevant to that feature. Tapping or clicking on a highway displays the locations of services along the highway. Touching two points on the map causes available routes between them to be computed and displayed to the user, along with relevant data for each route. Geospatial applications can be integrated with the map to provide information pertaining to the area displayed on the map, and to refine search results to those that are relevant to the area.
Abstract:
An improve navigation application can generate and display a composite representation of multiple POIs when POI icons representing the POIs appear to be overlapping. Some embodiments display the composite representation when a certain zoom level is reached for a map including the multiple POI icons. In some embodiments, the navigation application can determine POIs that may be of interest to the user based on the user's attributes and activity history and generate the composite representation based on those attributes. The composite representation can include multiple POI icons that are displayed adjacent to each other such that a user of the navigation application can readily identify POIs that are likely to be of interest to the user within a region.
Abstract:
For a device running a mapping application that includes a display area for displaying a map and a set of graphical user interface (GUI) items, a method for providing routes is described. The method computes a route between a starting location and a destination location. The route includes a sequence of maneuvering instructions for guiding a user through the route. The method provides a movable GUI item for showing each maneuvering instruction in the sequence in order to allow a user to navigate the route by moving the GUI items in and out of the display area.
Abstract:
Methods, systems, and computer-readable media for a location information server to gather location updates by sending location-update-requests through a push notification service to a mobile device are disclosed. The mobile device provides location updates in response to the push-based location-update-requests received through the push notification service. The mobile device can switch from a self-initiated location update mode to a push-based location update mode depending on the current state of the mobile device. The mobile device can also choose an appropriate positioning system for self-locating based on the information embedded in the location-update-request received through the push notification service. The information embedded in the pushed location-update-request can be a precision requirement or context information that can be used to determine a precision requirement for the location update.
Abstract:
For a device that runs a mapping application, a method of displaying search completions in a display area of the mapping application that includes a search field for receiving inputs is described. The method identifies a set of search completions that include any recent search completions used to search locations on a map. Upon receiving a non-text input through the search field when the search field is empty, the method displays the set of search completions in the display area.