Abstract:
A source device includes a wireless communication module, a memory, and a processor. The processor is configured to transmit screen image data, generated by the source device to be displayed on a sink device, to the sink device through the wireless communication module. The processor is also configured to determine whether a target application configured to change a transmission amount of user input data generated in a screen image that is based on the screen image data, by an input device connected to the sink device is being executed while the screen image is being displayed on the sink device. The processor is further configured to adjust a transmission bit rate of the screen image data by changing a transfer profile for transmitting the screen image data, based on a determination that the target application is being executed.
Abstract:
An electronic device includes a communication circuit, a processor, and a memory which stores instructions. The instructions, when executed by the processor, causes the electronic device to identify a first number, which is a number of available wireless connections of the electronic device, to receive a second number, which is a number of available wireless connections of a first external electronic device of a plurality of external electronic devices by using the communication circuit, to identify a third number, which is a number of wireless connections to be used for data transmission and reception with the first external electronic device, based on the first number and the second number, to establish the third number of wireless connections with the first external electronic device, and to transmit/receive data with the first external electronic device by using the third number of the wireless connections.
Abstract:
A method and an apparatus for supporting internal and external outputs by synchronizing a user interface such as caption with a protected image in a portable terminal supporting a secure execution environment are provided. The method includes detecting the output of the content, managing the output of the content in a secure area according to a type of the content, providing a user interface with respect to the content in a general area, synchronizing the user interface with the content, and composing and outputting the content and the user interface.
Abstract:
A processor of an electronic device displays, by controlling a wearable device, a portion of a first screen in an FoV of the wearable device and displays a second screen within a displaying area of the display of the electronic device. In a first state identifying a reference position to be displayed within the FoV based on first information received from the wearable device and for identifying the reference position of the pointer in the FoV, the processor obtains the position of the pointer in the FoV, based on the reference position and a position of a contact point of a touch input on the second screen. The processor obtains a position of the pointer in the FoV based on the position of the contact point within a second state and transmits second information for displaying the pointer in the first screen to wearable device based on the obtained position.
Abstract:
Various embodiments of the present disclosure provide an electronic device comprising: a communication module comprising communication circuitry, a memory, and a processor operatively connected to the communication module and the memory, wherein the processor is configured to: control the electronic device to establish a connection to a wearable display device through the communication module, receive gaze information from the wearable display device, determine a first application and a second application corresponding to the gaze information to be displayed on a screen, identify profiles of the determined first application and second application, and combine graphic data corresponding to the first application and graphic data corresponding to the second application and transmit the combined graphic data to the wearable display device, or transmit each of graphic data corresponding to the first application and graphic data corresponding to the second application to the wearable display device, based on the identified profiles.
Abstract:
An apparatus and method are provided for displaying an image. A method includes acquiring at least one image and at least one tag corresponding to the image; classifying the image into at least one group, based on the tag; and displaying the image corresponding to the group.
Abstract:
An electronic device is provided. The electronic device includes a display, a communication circuitry, memory storing one or more computer programs, and one or more processors communicatively coupled to the display, the communication circuitry, and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors, cause the electronic device to connect to an external display device, display a first screen on the display, transmit, to the external display device, first data related to a second screen differing from the first screen, display a third screen corresponding to the second screen, on at least a portion of the first screen, and, in response to a touch input on the third screen, transmit updated second screen-related second data to the external display device via the communication circuitry.
Abstract:
An electronic device according to various embodiments of the disclosure includes: a communication module comprising communication circuitry and a processor operatively connected to the communication module. The processor may be communicatively connected to an augmented reality (AR) device through the communication module, and be configured to receive image information obtained by a camera of the AR device from the AR device, to detect an object based on the received image information, to acquire virtual information corresponding to the object, to control the communication module to transmit the virtual information to the AR device, to determine, based on the received image information, whether the object is out of a viewing range of the AR device, and to change a transfer interval of the virtual information for the AR device based on the determination.
Abstract:
An example source device includes a wireless communication module, a memory, and a processor. The processor may transmit an expanded screen, generated by the source device to be displayed on a sink device connected to the source device, to the sink device through the wireless communication module. The expanded screen may be a screen displayed on a display of the sink device in association with a first screen displayed on a display of the source device to expand a task space of the source device. The source device may identify a screen focused by an input device connected to the source device among the first screen displayed on the display of the source device and a second screen displayed on the display of the sink device. The source device may switch a processing scheme to process an input event generated by the input device, based on at least one of a display mode of the sink device or whether the focused screen is the first screen or the second screen.
Abstract:
According to an embodiment, an electronic device comprises: a communication circuit; a memory; and a processor operatively connected with the communication circuit and the memory, and wherein the memory stores one or more instructions that, when executed, cause the processor to perform a plurality of operations, the plurality of operations comprising: transmitting color information indicating colors of a plurality of pixels forming a first frame and depth information indicating depths of the plurality of pixels to a first external electronic device connected through the communication circuit; obtaining color information and depth information of a second frame following the first frame; calculating an amount of change of depth information of at least one object included in the first frame and the second frame based on the depth information of the first frame and the depth information of the second frame; determining whether the amount of change of the depth information is greater than or equal to a specified depth threshold; and transmitting the depth information of the second frame together with the color information of the second frame to the first external electronic device based on that being determined that the amount of change of the depth information is greater than or equal to the specified depth threshold.