Abstract:
A mapping program for execution by at least one processing unit of a device is described. The device includes a touch-sensitive screen and a touch input interface. The program renders and displays a presentation of a map from a particular view of the map. The program generates an instruction to rotate the displayed map in response to a multi-touch input from the multi-touch input interface. In order to generate a rotating presentation of the map, the program changes the particular view while receiving the multi-touch input and for a duration of time after the multi-touch input has terminated in order to provide a degree of inertia motion for the rotating presentation of the map.
Abstract:
A method of providing navigation instructions in a locked mode of a device is disclosed. The method, while the display screen of the device is turned off, determines that the device is near a navigation point. The method turns on the display screen and provides navigation instructions. In some embodiments, the method identifies the ambient light level around the device and turns on the display at brightness level determined by the identified ambient light level. The method turns off the display after the navigation point is passed.
Abstract:
Some embodiments provide a method, for a mobile device, for controlling an interactive communication system of a vehicle that includes a display screen. If the display screen is touch-sensitive, the method provides a first user interface display that includes a first map the presentation of which is modifiable with touch input received through the touch-sensitive screen. If the display screen is not touch-sensitive, the method provides a second user interface display that includes a second map the presentation of which is modifiable through physical controls mounted in the vehicle. In some embodiments, if the touchscreen meets a particular set of characteristics, the first map presentation is directly modifiable with gestural input received through the display screen. If the display screen does not meet the particular set of characteristics, the first map presentation is modifiable with different, non-gestural touchscreen input received through the display screen.
Abstract:
Some embodiments provide a navigation application that presents a novel navigation presentation on a device. The application identifies a location of the device, and identifies a style of road signs associated with the identified location of the device. The application then generates navigation instructions in form of road signs that match the identified style. To generate the road sign, the application in some embodiments identifies a road sign template image for the identified style, and generates the road sign by compositing the identified road sign template with at least one of text instruction and graphical instruction. In some embodiments, the road sign is generated as a composite textured image that has a texture and a look associated with the road signs at the identified location.
Abstract:
A mapping application that provides a graphical user interface (GUI) for displaying information about a location is described. The GUI includes a first display area for displaying different types of media for a selected location on a map. The GUI includes a second display area for displaying different types of information of the selected location. The GUI includes a set of selectable user interface (UI) items, each of which for causing the second display area to display a particular type of information when selected.
Abstract:
Some embodiments of the invention provide a mapping application with novel tools for examining potential destinations and routes to the potential destinations. In some embodiments, the mapping application includes a route preview page that provides a novel combination of user element tools that allow a user (1) to explore alternative routes to a selected destination, (2) to explore routes to other destinations in a list of destinations. In some embodiments, the route overview page also provides a modal zoom tool that allows the map on this page to zoom to the destination/search result or zoom out to an overview of the entire route to the destination/search result. These three tools (i.e., the tool for exploring alternative routes to one location, the tool for exploring routes to other locations, and the tool for providing modal zoom operations) are highly beneficial in allowing a user to navigate to a location because they allow the user to quickly explore the two-dimensional solution space of possible locations and possible routes to the locations.
Abstract:
Techniques for performing context-sensitive actions in response to touch input are provided. A user interface of an application can be displayed. Touch input can be received in a region of the displayed user interface, and a context can be determined. A first action may be performed if the context is a first context and a second action may instead be performed if the context is a second context different from the first context. In some embodiments, an action may be performed if the context is a first context and the touch input is a first touch input, and may also be performed if the context is a second context and the touch input is a second touch input.
Abstract:
Some embodiments provide a mapping application that includes a novel dynamic scale that can be used to perform different zoom operations. In some embodiments, the scale also serves as a distance measurement indicator for a corresponding zoom level. The application continuously adjusts several different attributes of the scale, including the scale size, the number of segments on the scale and the representative distance of a segment on the scale. In some embodiments, the mapping application provides a smart zoom feature that guides a user during a zoom to a location. In particular, the smart zoom detects that a location of a zoom is near a pin on the map, and if so, zooms to the pin on the map. Otherwise, if the location is near a cloud of pins, the application zooms to the cloud of pins. Otherwise the zoom is directed towards the user's selected location.
Abstract:
Some embodiments provide a method, for a mobile device, for controlling an interactive communication system of a vehicle that includes a display screen. If the display screen is touch-sensitive, the method provides a first user interface display that includes a first map the presentation of which is modifiable with touch input received through the touch-sensitive screen. If the display screen is not touch-sensitive, the method provides a second user interface display that includes a second map the presentation of which is modifiable through physical controls mounted in the vehicle. In some embodiments, if the touchscreen meets a particular set of characteristics, the first map presentation is directly modifiable with gestural input received through the display screen. If the display screen does not meet the particular set of characteristics, the first map presentation is modifiable with different, non-gestural touchscreen input received through the display screen.
Abstract:
This is directed to systems, methods, and computer-readable media for printing maps and directions. In response to receiving an instruction to print directions, a device can define a layout optimized to show the route to travel, along with distinct steps that correspond to the route. The layout can include a map overview showing the entire route, with callouts identifying each step on the route. The layout can also include listings of individual steps, where each listing includes a reference number referring back to a callout and a description of the step. Each listings can also include a map tile showing a detailed view of the step corresponding to the listing. The map overview and the listings can be disposed, for example, in different columns of a landscape view.