Abstract:
A dual-camera devices operates with two cameras turned on in response to an indication detected from a user interface that a change to a zoom factor is to occur and before the change is stabilized. The device selects one of the two cameras according to a stable point of the zoom factor. The device displays images sensed by the selected one of the two cameras when the zoom factor reaches the stable point.
Abstract:
An image processing method comprising: (a) acquiring a first depth value for a first object in a first image; and (b) altering image effect for the first object according the first depth value when the first object is pasted onto a second image.
Abstract:
An electronic device includes a processor arranged to execute an application, a platform and a middleware. The application is configured to execute operations of: providing at least one acceptable quality and at least one priority of the at least one profile parameter. The platform is configured to execute an operation of: providing platform information in response to a demand request. The middleware is configured to execute operations of: receiving the at least one acceptable quality and the at least one priority from the application; receiving the platform information from the platform; performing a self-adaptive algorithm according to the platform information to generate a result; adjusting the at least one profile parameter according to the result, the at least one acceptable quality and the at least one priority; and transmitting an adjustment notification to the platform, after adjusting the at least one profile parameter.
Abstract:
Examples pertaining to improvement on user equipment (UE) uplink latency in wireless communications are described. When an apparatus is in a special mode, a processor of the apparatus transmits to a network a request for permission to perform an uplink (UL) transmission for a plurality of times. The processor then receives from the network a grant. In response to receiving the grant, the processor performs the UL transmission to the network. In transmitting the request for the plurality of times, the processor transmits the request for the plurality of times at a frequency higher than a frequency at which the request to perform UL transmissions is transmitted to the network when the apparatus is in a normal operational mode.
Abstract:
Examples pertaining to improvement on user equipment (UE) uplink latency in wireless communications are described. When an apparatus is in a special mode, a processor of the apparatus transmits to a network a request for permission to perform an uplink (UL) transmission for a plurality of times. The processor then receives from the network a grant. In response to receiving the grant, the processor performs the UL transmission to the network. In transmitting the request for the plurality of times, the processor transmits the request for the plurality of times at a frequency higher than a frequency at which the request to perform UL transmissions is transmitted to the network when the apparatus is in a normal operational mode.
Abstract:
An image processing method is provided. The image processing method includes the following steps: blending a plurality of exposure frames captured by one or more image capturing devices using a plurality of exposure times to generate a real-time image; analyzing one or more regions of interest (ROIs) of the real-time image according to ROI information about the one or more ROIs of the real-time image, and accordingly generating an analysis result; and utilizing an image processor for referring to the analysis result to locally adjust image data within the one or more ROIs of the real-time image to generate an adjusted real-time image in real time.
Abstract:
A method and apparatus for generating a series of frames with aid of a synthesizer to offload graphics processing unit (GPU) rendering within an electronic device are provided. The method may include: utilizing a GPU to perform full-rendering to generate a first frame in a color buffer, for being output to a display panel and displayed on the display panel; utilizing the GPU to generate a set of metadata of at least one subsequent frame in a metadata buffer; and utilizing the synthesizer to synthesize said at least one subsequent frame according to previous frame information and the set of metadata of said at least one subsequent frame, to generate said at least one subsequent frame in the color buffer, for being output to the display panel and displayed on the display panel.
Abstract:
A stable frame rate is maintained by a system that includes a graphics processing unit (GPU). The system also includes memory to store frames rendered by the GPU, and a display to display the frames rendered by the GPU. In response to a negative indication with respect to the GPU maintaining a frame rate at an operating frequency, the GPU is operative to reduce frame quality of subsequent frames while maintaining the operating frequency.
Abstract:
A stable frame rate is maintained by a system that includes a graphics processing unit (GPU). The system also includes memory to store frames rendered by the GPU, and a display to display the frames rendered by the GPU. In response to a negative indication with respect to the GPU maintaining a frame rate at an operating frequency, the GPU is operative to reduce frame quality of subsequent frames while maintaining the operating frequency.
Abstract:
An image processing method is provided. The image processing method includes the following steps: blending a plurality of exposure frames captured by one or more image capturing devices using a plurality of exposure times to generate a real-time image; analyzing one or more regions of interest (ROIs) of the real-time image according to ROI information about the one or more ROIs of the real-time image, and accordingly generating an analysis result; and utilizing an image processor for referring to the analysis result to locally adjust image data within the one or more ROIs of the real-time image to generate an adjusted real-time image in real time.