Luma and chroma decoding using a common predictor
Abstract
There are provided video encoders, video decoders, and corresponding methods. A video encoder for encoding video signal data for an image block includes an encoder (100) for encoding all color components of the video signal data using a common predictor (315). A video decoder for decoding video signal data for an image block includes a decoder (200) for decoding all color components of the video signal data using a common predictor (430). Additionally, an apparatus and method for encoding and decoding signal data for an image block includes an encoder and decoder for encoding/decoding color components of the video signal data without applying a residual color transform thereto. Furthermore, a video encoder and decoder for encoding/decoding video signal data for an image block includes an encoder and decoder for encoding/decoding the video signal data using unique predictors for each of color components of the video signal data.
Claims
exact text as granted — not AI-modified1 . A video decoder for decoding video signal data for an image block, the video decoder comprising a decoder ( 200 ) for decoding all color components of the video signal data using a common predictor, wherein said decoder ( 200 ) uses common interpolation filters for B and P frames for all of the color components of the video signal data, characterized by the image block is decoded without a residual color transform applied thereto and wherein an inverse color transform on the video signal data in a post-processing step subsequent to said decoding step is performed.
2 . The video decoder as claimed in claim 1 , wherein the common predictor is a luma predictor used for both luma and chroma components of the video signal data.
3 . The video decoder as claimed in claim 1 , wherein said decoder ( 200 ) uses a common spatial prediction mode for all of the color components of the video signal data.
4 . The video decoder as claimed in claim 3 , wherein the common spatial prediction mode is set by prev_intra8×8_pred_mode_flag, rem_intra8×8_pred_mode, prev-intra4×4_pred_mode_flag, and rem_intra4×4_pred_mode parameters of the International Telecommunication Union, Telecommunication Sector H.264 standard.
5 . The video decoder as claimed in claim 1 , wherein sampling of the video signal data corresponds to any of the 4:4:4, 4:2:2 and 4:2:0 formats of the International Telecommunication Union, Telecommunication Sector H.264 standard.
6 . A method for decoding video signal data for an image block, the method comprising decoding all color components of the video signal data using a common predictor, wherein common interpolation filters are used for B and P frames for all of the color components of the video signal data, characterized by said decoding step decodes all of the color components of the video signal data without applying a residual color transform thereto and wherein an inverse color transform on the video signal data in a post-processing step subsequent to said decoding step is performed.
7 . The method as claimed in claim 6 , wherein the common predictor is a luma predictor used for both luma and chroma components of the video signal data.
8 . The method as claimed in claim 6 , wherein a common spatial prediction mode is used for all of the color components of the video signal data.
9 . The method as claimed in claim 8 , wherein the common spatial prediction mode is set by prev_intra8×8_pred_mode_flag, rem_intra8×8_pred_mode, prev_intra4×4_pred_mode_flag, and rem_intra4×4_pred_mode parameters of the International Telecommunication Union, Telecommunication Sector H.264 standard.
10 . The method as claimed in claim 6 , wherein sampling of the video signal data corresponds to any of the 4:4:4, 4:2:2 and 4:2:0 formats of the International Telecommunication Union, Telecommunication Sector H.264 standard.
11 . A non-transitory computer readable storage medium with stored data, comprising instructions for decoding all color components of the video signal data using a common predictor, wherein common interpolation filters are used for B and P frames for all of the color components of the video signal data, characterized by said decoding step decodes all of the color components of the video signal data without applying a residual color transform thereto and wherein an inverse color transform on the video signal data in a post-processing step subsequent to said decoding step is performed.
12 . The computer readable storage medium as claimed in claim 11 , wherein the common predictor is a luma predictor used for both luma and chroma components of the video signal data.
13 . The computer readable storage medium as claimed in claim 11 , wherein a common spatial prediction mode is used for all of the color components of the video signal data.
14 . The computer readable storage medium as claimed in claim 13 , wherein the common spatial prediction mode is set by prev_intra8×8_pred_mode_flag, rem_intra8×8_pred_mode, prev_intra4×4_pred_mode_flag, and rem_intra4×4_pred_mode parameters of the International Telecommunication Union, Telecommunication Sector H.264 standard.
15 . The computer readable storage medium as claimed in claim 11 , wherein sampling of the video signal data corresponds to any of the 4:4:4, 4:2:2 and 4:2:0 formats of the International Telecommunication Union, Telecommunication Sector H.264 standard.Join the waitlist — get patent alerts
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