IP Library Granted Patent US 12,495,141
Granted Patent B2
US 12,495,141 · App. 18/173,306 · Granted Dec 9, 2025

Transform block size restriction in video coding

Inventors: Li Zhang (San Diego, CA); Kai Zhang (San Diego, CA); Hongbin Liu (Beijing, CN); Yue Wang (Beijing, CN)
Assignees: BEIJING BYTEDANCE NETWORK TECHNOLOGY CO., LTD.; BYTEDANCE INC.
H04N19/117H04N19/132H04N19/174H04N19/176H04N19/1883H04N19/70H04N19/82H04N19/96
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Quick Facts
Patent No.
US 12,495,141
App. No.
18/173,306
Granted
Dec 9, 2025
Kind
B2
Abstract

A visual media processing method includes performing a conversion between a current video block of a visual media data and a bitstream representation of the current video block. The bitstream representation is configured according to a format rule that specifies that a syntax element is selectively included or excluded in the bitstream representation indicative of a maximum number of merge candidates for a coding tool, thereby indicating whether the coding tool is enabled or disabled for the conversion. The maximum number of merge candidates for the coding tool is zero or a positive number.

Claims (52)

1 . A method of processing video data, comprising:

determining, during a conversion between a video comprising one or more coding tree units and a bitstream of the video, that an adaptive loop filter (ALF) process is applied for a current coding tree block of one or more coding tree blocks in a video region, wherein the bitstream is configured in accordance with a format rule; and

performing the conversion based on the determining,

wherein the format rule specifies that only when a size of a coding tree unit of the video is greater than 32×32, a first syntax element indicative of a maximum transform block size is included in the bitstream,

wherein the bitstream is configured according to the format rule specifying that a single second syntax element which indicates whether an ALF filter applied to the current coding tree block is based on an adaptation parameter set (APS) or based on one or more fixed filter sets is conditionally included in the bitstream,

wherein in a case that a number of available ALF APSs of the video region is greater than zero, the format rule further specifies that the single second syntax element is included in the bitstream, and

wherein the format rule further specifies that the single second syntax element having a value indicating that the ALF filter applied to the current coding tree block is based on the APS is associated with a third syntax element being included in the bitstream, wherein the third syntax element is used to derive an index of the APS that includes the ALF filter applied to the current coding tree block.

2 . The method of claim 1 , wherein the format rule further specifies that a maximum transform block size is equal to or less than the size of the coding tree unit.

3 . The method of claim 1 , wherein the third syntax element is coded with a truncated binary coding technique.

4 . The method of claim 1 , wherein the third syntax element is indicative of a sequence which the APS that includes the ALF filter applied to the current coding tree block belongs in available ALF APSs of the video region.

5 . The method of claim 1 , wherein in response to one of the one or more fixed filter sets being applied to the current coding tree block, the format rule further specifies that a fourth syntax element is included in the bitstream, and a value of the fourth syntax element specifies an index of the one of the one or more fixed filter sets that is applied to the current coding tree block.

6 . The method of claim 4 , wherein the video region is a slice.

7 . The method of claim 1 , wherein the conversion includes encoding the video into the bitstream.

8 . The method of claim 1 , wherein the conversion includes decoding the video from the bitstream.

9 . An apparatus for processing video data comprising a processor and a non-transitory memory with instructions thereon, wherein the instructions upon execution by the processor, cause the processor to:

determine, during a conversion between a video comprising one or more coding tree units and a bitstream of the video, that an adaptive loop filter (ALF) process is applied for a current coding tree block of one or more coding tree blocks in a video region, wherein the bitstream is configured in accordance with a format rule; and

perform the conversion based on the determination,

wherein the format rule specifies that only when a size of a coding tree unit of the video is greater than 32×32, a first syntax element indicative of a maximum transform block size is included in the bitstream,

wherein the bitstream is configured according to the format rule specifying that a single second syntax element which indicates whether an ALF filter applied to the current coding tree block is based on an adaptation parameter set (APS) or based on one or more fixed filter sets is conditionally included in the bitstream,

wherein in a case that a number of available ALF APSs of the video region is greater than zero, the format rule further specifies that the single second syntax element is included in the bitstream, and

wherein the format rule further specifies that the single second syntax element having a value indicating that the ALF filter applied to the current coding tree block is based on the APS is associated with a third syntax element being included in the bitstream, wherein the third syntax element is used to derive an index of the APS that includes the ALF filter applied to the current coding tree block.

10 . The apparatus of claim 9 , wherein the format rule further specifies that a maximum transform block size is equal to or less than the size of the coding tree unit.

11 . The apparatus of claim 9 , wherein the third syntax element is coded with a truncated binary coding technique,

wherein the third syntax element is indicative of a sequence which the APS that includes the ALF filter applied to the current coding tree block belongs in available ALF APSs of the video region,

wherein in response to one of the one or more fixed filter sets being applied to the current coding tree block, the format rule further specifies that a fourth syntax element is included in the bitstream, and a value of the fourth syntax element specifies an index of the one of the one or more fixed filter sets that is applied to the current coding tree block, and

wherein the video region is a slice.

12 . A non-transitory computer-readable storage medium storing instructions that cause a processor to:

determine, during a conversion between a video comprising one or more coding tree units and a bitstream of the video, that an adaptive loop filter (ALF) process is applied for a current coding tree block of one or more coding tree blocks in a video region, wherein the bitstream is configured in accordance with a format rule; and

perform the conversion based on the determination,

wherein the format rule specifies that only when a size of a coding tree unit of the video is greater than 32×32, a first syntax element indicative of a maximum transform block size is included in the bitstream,

wherein the bitstream is configured according to the format rule specifying that a single second syntax element which indicates whether an ALF filter applied to the current coding tree block is based on an adaptation parameter set (APS) or based on one or more fixed filter sets is conditionally included in the bitstream,

wherein in a case that a number of available ALF APSs of the video region is greater than zero, the format rule further specifies that the single second syntax element is included in the bitstream, and

wherein the format rule further specifies that the single second syntax element having a value indicating that the ALF filter applied to the current coding tree block is based on the APS is associated with a third syntax element being included in the bitstream, wherein the third syntax element is used to derive an index of the APS that includes the ALF filter applied to the current coding tree block.

13 . The non-transitory computer-readable storage medium of claim 12 , wherein the format rule further specifies that a maximum transform block size is equal to or less than the size of the coding tree unit.

14 . The non-transitory computer-readable storage medium of claim 12 ,

wherein the third syntax element is coded with a truncated binary coding technique,

wherein the third syntax element is indicative of a sequence which the APS that includes the ALF filter applied to the current coding tree block belongs in available ALF APSs of the video region,

wherein in response to one of the one or more fixed filter sets being applied to the current coding tree block, the format rule further specifies that a fourth syntax element is included in the bitstream, and a value of the fourth syntax element specifies an index of the one of the one or more fixed filter sets that is applied to the current coding tree block, and

wherein the video region is a slice.

15 . A method for storing a bitstream of a video, comprising:

determining, for the video comprising one or more coding tree units, that an adaptive loop filter (ALF) process is applied for a current coding tree block of one or more coding tree blocks in a video region, wherein the bitstream is configured in accordance with a format rule;

generating the bitstream based on the determining, and

storing the bitstream in a non-transitory computer-readable recording medium,

wherein the format rule specifies that only when a size of a coding tree unit of the video is greater than 32×32, a first syntax element indicative of a maximum transform block size is included in the bitstream,

wherein the bitstream is configured according to the format rule specifying that a single second syntax element which indicates whether an ALF filter applied to the current coding tree block is based on an adaptation parameter set (APS) or based on one or more fixed filter sets is conditionally included in the bitstream,

wherein in a case that a number of available ALF APSs of the video region is greater than zero, the format rule further specifies that the single second syntax element is included in the bitstream, and

wherein the format rule further specifies that the single second syntax element having a value indicating that the ALF filter applied to the current coding tree block is based on the APS is associated with a third syntax element being included in the bitstream, wherein the third syntax element is used to derive an index of the APS that includes the ALF filter applied to the current coding tree block.

16 . The method of claim 15 , wherein the format rule further specifies that the maximum transform block size is equal to or less than the size of the coding tree unit,

wherein the third syntax element is coded with a truncated binary coding technique,

wherein the third syntax element is indicative of a sequence which the APS that includes the ALF filter applied to the current coding tree block belongs in available ALF APSs of the video region,

wherein in response to one of the one or more fixed filter sets being applied to the current coding tree block, the format rule further specifies that a fourth syntax element is included in the bitstream, and a value of the fourth syntax element specifies an index of the one of the one or more fixed filter sets that is applied to the current coding tree block, and

wherein the video region is a slice.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2023
From: ZHANG, LI; ZHANG, KAI
To: BYTEDANCE INC.
Reel/Frame 063842/0660 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2023
From: LIU, HONGBIN; WANG, YUE
To: BEIJING BYTEDANCE NETWORK TECHNOLOGY CO., LTD.
Reel/Frame 063842/0699 →
Priority Claims (1)
WO PCT/CN2019/095921 · Jul 14, 2019 · international
Continuity (3)
Continuation 17572833 · Jan 11, 2022
Continuation PCTCN2020101819 · Jul 14, 2020
Related Publication 20230231997A1 · Jul 20, 2023
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JVET-N0843—Xu et al. “CE8-Related: Combination Test of JVET-N0176/JVET-N0317/JVET-N0382 on Simplification of IBC Vector Prediction,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th… [cited by applicant]
Wang et al. “CE4-Related: An Improved Method for Triangle Merge List Construction,” Joint Video Experts Team JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 1114th Meeting: Geneva, CH, Mar. 19-27, 2019, document JV… [cited by applicant]
Jeong et al. “CE4 Ultimate Motion Vector Expression (Test 4.5.4),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 12th Meeting: Macao, CN, Oct. 3-12, 2018, document JVET-L0054, 2018. [cited by applicant]
Chiang et al. “CE10.1.1: Multi-Hypothesis Prediction for Improving AMVP Mode, Skip or Merge Mode, and Intra Mode,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 12th Meeting: Macao, C… [cited by applicant]
Bross et al. “Versatile Video Coding (Draft 5),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 2019, document JVET-N1001-v2, 2019. [cited by applicant]
Sethuraman et al. “CE9: Results of DMVR Related Tests CE9.2.1 and CE9.2.2,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 1113th Meeting: Marrakech, MA, Jan. 9-18, 2019, document JVET-M0… [cited by applicant]
“Information Technology—High Efficiency Coding and Media Delivery in Heterogeneous Environments—Part 2: High Efficiency Video Coding” Apr. 20, 2018, ISO/DIS 23008, 4th Edition. [cited by applicant]
Rosewarne et al. “High Efficiency Video Coding {HEVC) Test Model 16 (HM 16) Improved Encoder Description Update 7,” Joint Collaborative Team on Video Coding (JCT-VC)of ITU-T SG16 WP3 and ISO/IEC JTC1/SC29/ WG11 25th Mee… [cited by applicant]
Chen et al. “Algorithm Description of Joint Exploration Test Model 7 (JEM 7),” Joint Video Exploration Team (JVET) of ITU-T SG 16 WP 3 and 1SO/IEC JTC 1/SC 29/WG 11, 7th Meeting: Torino, IT, Jul. 13-21, 2017, document J… [cited by applicant]
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Zhao et al. “Non-CE6: Configurable Max Transform Size in WC,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O0545, 2019. [cited by applicant]
Gao et al. “CE4: CE4-1.1, CE4-1.2 and CE4-1.14: Geometric Merge Mode {GEO),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 16th Meeting: Geneva, CH, Oct. 1-11, 2019, document JVET-P00… [cited by applicant]
Kiu et al. “CE9-Related: Complexity Reduction and Bit-Width Control for Bi-Directional Optical Flow {BIO),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 12th Meeting: Macao, CN, Oct.… [cited by applicant]
Chujoh et al. “Non-CE9: An Improvement of BDOF,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 1113th Meeting: Marrakech, MA, Jan. 9-18, 2019, document JVET-M0063, 2019. [cited by applicant]
Kiu et al. “CE9.1: Simplifications on Bi-Directional Optical Flow (BDOF),” Joint Video Experts Team {JVET) of ITU-T S, SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 13th Meeting: Marrakech, MA, Jan. 9-18, 2019, document JVET… [cited by applicant]
Bross et al. “Versatile Video Coding (Draft 6),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O2001, 2019. [cited by applicant]
Zhang et al. “Non-CE8: Fixes of IBC BV Candidate List,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O0574, 2019. [cited by applicant]
Zhang et al. “Non-CE8: Simplified IBC BV Candidate List Construction Process,” Joint Video Experts Team {JVET) of TU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVE… [cited by applicant]
Nam et al. “CE8-related: Default Candidates for IBC Merge Mode,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 2019, document JVET-N0460, 2019. [cited by applicant]
Nam et a. “CE8-1.1: Block Vector Prediction for IBC,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and S0/IEC JTC 1/SC 29/WG 1114th Meeting: Geneva, CH, Mar. 19-27, 2019, document JVET-N0457, 2019. [cited by applicant]
Zhao et al. “CE2: History Based Affine Motion Candidate {Test 2.2.3),” Joint Video Experts Team {JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 13th Meeting: Marrakech, MA, Jan. 9-18, 2019, document JVET-M0125,… [cited by applicant]
Wu et al. “CE4-Related: On MVP Candidate List Generation for AMVP,” Joint Video Experts Team {JVET) of ITU-T SG 6 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 13th Meeting: Marrakech, MA, Jan. 9-18, 2019, document JVET-M0117, 201… [cited by applicant]
Gao et al. “Non-CE8: IBC Merge List Simplification,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO, IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 2019, document JVET-N0176, 2019. [cited by applicant]
Zhang et al. “Non-CE4: Cleanups on Syntax Design for Sub-Block Coding Tools,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29NVG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVE… [cited by applicant]
Chen et al. “Non-CE4/8: On Disabling Blending Process in TPM,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-17, 2019, document JVET-O1172, 2019. [cited by applicant]
Chubach et al. “CE5-Related: On the Syntax Constraints of ALF APS,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O0288, 2… [cited by applicant]
Paluri et al. “AH17 Simplification of ALF Coefficients in the APS,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O0302, 2… [cited by applicant]
Huang et al. “Non-CE4: Merge Modes Signaling,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 1115th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O0249, 2019. [cited by applicant]
Esenlik et al. “BoG Report on CE9 Decoder Motion Vector Derivation Related Contributions,” Joint Video Experts Tream (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019… [cited by applicant]
Blasi et al. “Non-CE4: CIIP Using Triangular Partitions,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and SO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O0522, 2019. [cited by applicant]
Chen et al. “BoG Report on CE4 Inter Prediction with Merge Modifications,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 1115th Meeting: Gothenburg, SE, Jul. 3-17, 2019, document JVET-O1… [cited by applicant]
Esenlik et al. “BoG Report on CE9 Decoder Motion Vector Derivation Related Contributions,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 2019, Do… [cited by applicant]
Chen et al. “Crosscheck of JVET-N0150 (AHG12: One CTU Delay Wavefront Parallel Processing),” Joint Video t:: Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 20… [cited by applicant]
Chien et al. “Methodology and Reporting Template for Tool Testing,” Joint Video Experts Team (JVET) of ITU-T SG 6 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019, document JVET-O2005, 20… [cited by applicant]
Sarwer et al. “AHG9: Transform and Transform-Skip Related HLS Clean-Up,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 18th Meeting, by teleconference, Apr. 15-24, 2020, document JVE… [cited by applicant]
Document: JVET-M0332, Nam, J., et al., “CE8: Block vector prediction for CPR (test 8.1.1a and test 8.1.1b),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 13th Meeting: Marrakech, MA,… [cited by applicant]
Chen et al. “Algorithm Description for Versatile Video Coding and Test Model 5 (VTM 5),” Joint Video Experts Team JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting, Geneva, CH Mar. 19-27, 2019, docume… [cited by applicant]
Zhao et al. “Non-CE6: Configurable Max Transform Size in WC,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and 1SO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 2019, document JVET-N0362, 2019. [cited by applicant]
Deng et al. “Non-CE6: Cleanups of Maximum Transform Size Related Syntax Elements,” Joint Video Experts Team JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 16th Meeting: Geneva, CH, Oct. 1-11, 2019, document JVE… [cited by applicant]
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Document: JVET-P0325-v1, Wang, Z., et al., “Non-CE4: Construction of spatial merge candidates,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 16th Meeting: Geneva, CH, Oct. 1-11, 2019… [cited by applicant]
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Document: JVET-N0024-v2, Yang, H., et al., “CE4: Summary report on inter prediction and motion vector coding,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, … [cited by applicant]
Document: JVET-N0024-v1, Yang, H., et al., “CE4: Summary report on inter prediction and motion vector coding,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, … [cited by applicant]
Document: JVET-O2002-v1, Chen, J., et al., “Algorithm description for Versatile Video Coding and Test Model 6 (VTM 6),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Got… [cited by applicant]
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Document: JVET-N1001-v8, Bross, B., et al., “Versatile Video Coding (Draft 5),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, Mar. 19-27, 2019, 400 pages. [cited by applicant]
Document: JVET-O0309, Ko, G., et al., “Non-CE4: Merge mode signalling overhead reduction,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothenburg, SE, Jul. 3-12, 2019,… [cited by applicant]
Document: JVET-O0660-r1, Panusopone, K., et al., “Simplification of MV storage for blending blocks in triangle mode,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 15th Meeting: Gothe… [cited by applicant]
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Notice of Reasons for Refusal for Japanese Application No. 2023-182535, mailed Oct. 1, 2024, 16 pages. [cited by applicant]
Document: JVET-N1001-v10, Benjamin Bross, et al., “Versatile Video Coding (Draft 5),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 14th Meeting: Geneva, CH, Mar. 19-27, 2019, 13 pag… [cited by applicant]
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Document: JVET-N0213-v5, Wang, S., et al., “CE4-related: Remove TMVP candidate for the specified blocksizes,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, M… [cited by applicant]
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Bross B., et al., “Versatile Video Coding (Draft 5),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 14th Meeting: Geneva, CH, Mar. 19-27, 2019, Document: JVET-N1001 v7 and v2, 745 Pa… [cited by applicant]
Bross B., et al., “Versatile Video Coding (Draft 5),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 14th Meeting: Geneva, CH, Mar. 19-27, 2019, Document: JVET-N1001-v5, 374 Pages. [cited by applicant]
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Chiang M-S., et al., “CE10.1.1: Multi-Hypothesis Prediction for Improving AMVP Mode, Skip or Merge Mode, and Intra Mode,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 12th Meeting: … [cited by applicant]
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De-Luxan-Hernandez S., et al., “CE3: Intra Sub-Partitions Coding Mode (Tests 1.1.1 and 1.1.2),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 13th Meeting: Marrakech, MA, Jan. 9-18, … [cited by applicant]
Document: JVET-N0123-v2, Tsukuba, T., et al., “AHG13/Non-CE6/CE8: Chroma Transform Skip,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 14th Meeting: Geneva, CH, 1927 Mar. 2019, 6 pag… [cited by applicant]
Document: JVET-P0495-v2, Wang, Y., et al., “Non-CE6: On implicit MTS,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 16th Meeting: Geneva, CH, 111 Oct. 2019, 6 pages. [cited by applicant]
Document: JVET-P0569-v2, Egilmez, H., et al., “AHG17/Non-CE6: High-level syntax for MTS and Implicit Transform Derivations,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 16th Meeting… [cited by applicant]
Document: JVET-Q0183-v2, Hsiang, S., et al., “AHG9: High-level syntax related to transform skip mode,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 17th Meeting: Brussels, BE, 717 Ja… [cited by applicant]
Document: JVET-Q0448-v1, De-Luxan-Hernandez, S., et al., “MTS dependent coefficient subblock scanning for zero-out,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 17th Meeting: Brusse… [cited by applicant]
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JVET-Q0136-v1, Koo, M., et al., “Alignment of MTS index signalling condition with MTS zero-out,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 17th Meeting: Brussels, BE, 717 Jan. 202… [cited by applicant]
Koo M., et al., “CE 6-2.1: Reduced Secondary Transform (RST),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 12th Meeting: Macao, CN, Oct. 3-12, 2018, Document: JVET-L0133, 37 Pages. [cited by applicant]
Koo M., et al., “CE6: Reduced Secondary Transform (RST) (CE6-3.1),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11, 14th Meeting: Geneva, CH, Mar. 19-27, 2019, Document: JVET-N0193, 20… [cited by applicant]
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