Patent classifications
H04N19/547
Method and apparatus for improved zero out transform
A method of video decoding includes receiving a coded video bitstream including a current picture. The method further includes performing, to generate a prediction block, an optimized inverse transform process on a transform block that corresponds to a current block included in the current picture based on one of (i) a transform property of the inverse transform process and (ii) a block size of the transform block. The method further includes reconstructing the current block using the predicted block.
Method and apparatus for improved zero out transform
A method of video decoding includes receiving a coded video bitstream including a current picture. The method further includes performing, to generate a prediction block, an optimized inverse transform process on a transform block that corresponds to a current block included in the current picture based on one of (i) a transform property of the inverse transform process and (ii) a block size of the transform block. The method further includes reconstructing the current block using the predicted block.
ENCODING METHOD THAT ENCODES A FIRST DENOMINATOR FOR A LUMA WEIGHTING FACTOR, TRANSFER DEVICE, AND DECODING METHOD
According to an embodiment, an encoding device includes a deriving unit and an encoding unit. The deriving unit is configured to derive a first reference value based on fixed point precision representing roughness of a weighting factor that is used for multiplying a reference image. The encoding unit is configured to encode a first difference value that is a difference value between the weighting factor and the first reference value and the fixed point precision. The weighting factor is included in a first range of predetermined bit precision having the first reference value at approximate center. The first difference value is in the predetermined range.
ENCODING METHOD THAT ENCODES A FIRST DENOMINATOR FOR A LUMA WEIGHTING FACTOR, TRANSFER DEVICE, AND DECODING METHOD
According to an embodiment, an encoding device includes a deriving unit and an encoding unit. The deriving unit is configured to derive a first reference value based on fixed point precision representing roughness of a weighting factor that is used for multiplying a reference image. The encoding unit is configured to encode a first difference value that is a difference value between the weighting factor and the first reference value and the fixed point precision. The weighting factor is included in a first range of predetermined bit precision having the first reference value at approximate center. The first difference value is in the predetermined range.
SYSTEM, METHOD AND COMPUTER PROGRAM PRODUCT FOR GENERATING REMOTE VIEWS IN A VIRTUAL MOBILE DEVICE PLATFORM USING EFFICIENT COLOR SPACE CONVERSION AND FRAME ENCODING
Embodiments disclosed herein provide systems, methods and computer readable media for generating remote views in a virtual mobile device platform. A virtual mobile device platform may be coupled to a physical mobile device over a network and generate frames of data for generating views on the physical device. These frames can be generated using an efficient display encoding pipeline on the virtual mobile device platform. Such efficiencies may include, for example, the synchronization of various processes or operations, the governing of various processing rates, the elimination of duplicative or redundant processing, the application of different encoding schemes, the efficient detection of duplicative or redundant data or the combination of certain operations.
SYSTEM, METHOD AND COMPUTER PROGRAM PRODUCT FOR GENERATING REMOTE VIEWS IN A VIRTUAL MOBILE DEVICE PLATFORM USING EFFICIENT COLOR SPACE CONVERSION AND FRAME ENCODING
Embodiments disclosed herein provide systems, methods and computer readable media for generating remote views in a virtual mobile device platform. A virtual mobile device platform may be coupled to a physical mobile device over a network and generate frames of data for generating views on the physical device. These frames can be generated using an efficient display encoding pipeline on the virtual mobile device platform. Such efficiencies may include, for example, the synchronization of various processes or operations, the governing of various processing rates, the elimination of duplicative or redundant processing, the application of different encoding schemes, the efficient detection of duplicative or redundant data or the combination of certain operations.
Method and device for processing video signal by means of affine prediction
A method of processing a video signal including a current block using an affine prediction mode includes generating a candidate list of motion vector pairs using the motion vector of a pixel or block neighboring at least two control points of the current block, determining a final candidate list of a predetermined number of motion vector pairs based on a divergence value of the motion vector pair, where the final candidate list is determined in order of smaller divergence value, and the divergence value is a value indicating similarity in the direction of motion vectors, determining the control point motion vector of the current block based on a rate-distortion cost from the final candidate list, and generating the motion vector predictor of the current block based on the control point motion vector.
Reference picture resampling activation in video coding
Methods, apparatus, systems for video processing, including video encoding or video decoding are described. One example method includes performing a conversion between a video comprising a video picture that includes a video slice and a bitstream of the video. The bitstream conforms to a format rule specifying that, in case a slice type of the video slice is type P and temporal motion vector prediction is enabled, usage of reference picture resampling (RPR) for a reference picture in a collocated reference picture list is disabled. The reference picture is indicated by a reference index of a collocated picture of the video slice used for the temporal motion vector prediction.
Reference picture resampling activation in video coding
Methods, apparatus, systems for video processing, including video encoding or video decoding are described. One example method includes performing a conversion between a video comprising a video picture that includes a video slice and a bitstream of the video. The bitstream conforms to a format rule specifying that, in case a slice type of the video slice is type P and temporal motion vector prediction is enabled, usage of reference picture resampling (RPR) for a reference picture in a collocated reference picture list is disabled. The reference picture is indicated by a reference index of a collocated picture of the video slice used for the temporal motion vector prediction.
IMAGE CODING METHOD, IMAGE DECODING METHOD, IMAGE CODING APPARATUS, AND IMAGE DECODING APPARATUS
An image coding method includes selecting two or more transform components from among a plurality of transform components that include a translation component and non-translation components, the two or more transform components serving as reference information that represents a reference destination of a current block; coding selection information that identifies the two or more transform components that have been selected from among the plurality of transform components; and coding the reference information of the current block by using reference information of a coded block different from the current block.