IP Library › Granted Patent US 12,395,682
Granted Patent B2
US 12,395,682 · App. 18/523,427 · Granted Aug 19, 2025

Palette mode with local dual tree modetype definition

Inventors: Zhipin Deng (Beijing, CN); Ye-kui Wang (San Diego, CA); Li Zhang (San Diego, CA); Kai Zhang (San Diego, CA)
Assignees: BEIJING BYTEDANCE NETWORK TECHNOLOGY CO., LTD.; BYTEDANCE INC.
H04N19/70H04N19/176H04N19/186H04N19/1883
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Quick Facts
Patent No.
US 12,395,682
App. No.
18/523,427
Granted
Aug 19, 2025
Kind
B2
Abstract

Methods, systems and apparatus for video processing are described. One example video processing method includes performing a conversion between a video comprising a video block and a bitstream of the video according to a rule, wherein the video block is a coding tree node that includes one or more coding units, and wherein the rule specifies that a coded information of the video block is indicative of whether a coding mode is enabled for the one or more coding units of the video block.

Claims (61)

1. A method of processing video data, comprising:

performing a conversion between a video comprising a video block and a bitstream of the video according to a rule,

wherein the video block is a coding tree node that includes one or more coding blocks, and

wherein the rule specifies that one or more of the following coding modes are allowed to be used by one or more luma blocks of the one or more coding blocks: an intra prediction coding mode, an intra block copy (IBC) mode and a palette coding mode, and wherein the intra prediction coding mode is applied to one or more chroma blocks of the one or more coding blocks when a local dual tree is applied to the one or more coding blocks inside the coding tree node;

wherein the rule specifies that multiple luma blocks inside the coding tree node are allowed to be coded, in a mixed manner, with more than one coding modes of the intra prediction coding mode, the IBC mode, and the palette coding mode, and wherein the more than one coding modes comprise any two or more of the intra prediction coding mode, the IBC mode, and the palette coding mode.

2. The method of claim 1 , wherein the rule specifies that an inter prediction coding mode is not allowed for the one or more coding blocks in the coding tree node to which the local dual tree is applied.

3. The method of claim 1 , wherein the rule specifies that a presence of a first syntax element indicating whether the palette coding mode is enabled for a coding block is at least based on that a value of a variable named mode type of the coding block is a certain mode type, and wherein the certain mode type is MODE_TYPE_INTRA or MODE_TYPE_ALL and is not MODE_TYPE_INTER.

4. The method of claim 3 , wherein MODE_TYPE_INTER specifies that only an inter prediction coding mode is allowed to be used for the coding block;

wherein MODE_TYPE_INTRA specifies that only the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block; and

wherein MODE_TYPE_ALL specifies that the inter prediction coding mode, the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block.

5. The method of claim 3 , wherein the variable named mode type is based on a variable named modeTypeCondition and a second syntax element non_inter_flag indicating whether only an inter prediction coding mode is allowed.

6. The method of claim 3 , wherein MODE_TYPE_INTER, MODE_TYPE_INTRA, and MODE_TYPE_ALL are also used in a partition process, and wherein the partition process includes at least one of a quad split process, a binary split process, or a ternary split process.

7. The method of claim 1 , wherein the rule specifies that a third syntax element in a general constraint information syntax structure controls a value of a fourth syntax element in a sequence parameter set, and wherein the fourth syntax element indicates whether subpicture information is present in a coded layer video sequence and whether more than one subpictures are included in each picture of the coded layer video sequence.

8. The method of claim 1 , wherein the rule specifies that a fifth syntax element in a general constraint information syntax structure controls a value of a sixth syntax element in a sequence parameter set, and wherein the sixth syntax element indicates whether a maximum transform size in luma samples is equal to 64.

9. The method of claim 1 , wherein the performing the conversion comprises encoding the video into the bitstream.

10. The method of claim 1 , wherein the performing the conversion comprises decoding the video from the bitstream.

11. 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:

perform a conversion between a video comprising a video block and a bitstream of the video according to a rule,

wherein the video block is a coding tree node that includes one or more coding blocks, and

wherein the rule specifies that one or more of the following coding modes are allowed to be used by one or more luma blocks of the one or more coding blocks: an intra prediction coding mode, an intra block copy (IBC) mode and a palette coding mode, and wherein the intra prediction coding mode is applied to one or more chroma blocks of the one or more coding blocks when a local dual tree is applied to the one or more coding blocks inside the coding tree node;

wherein the rule specifies that multiple luma blocks inside the coding tree node are allowed to be coded, in a mixed manner, with more than one coding modes of the intra prediction coding mode, the IBC mode, and the palette coding mode, and wherein the more than one coding modes comprise any two or more of the intra prediction coding mode, the IBC mode, and the palette coding mode.

12. The apparatus of claim 11 ,

wherein the rule specifies that an inter prediction coding mode is not allowed for the one or more coding blocks in the coding tree node to which the local dual tree is applied.

13. The apparatus of claim 11 , wherein the rule specifies that a presence of a first syntax element indicating whether the palette coding mode is enabled for a coding block is at least based on that a value of a variable named mode type of the coding block is a certain mode type, wherein the certain mode type is MODE_TYPE_INTRA or MODE_TYPE_ALL and is not MODE_TYPE_INTER,

wherein MODE_TYPE_INTER specifies that only an inter prediction coding mode is allowed to be used for the coding block,

wherein MODE_TYPE_INTRA specifies that only the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block,

wherein MODE_TYPE_ALL specifies that the inter prediction coding mode, the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block,

wherein the variable named mode type is based on a variable named modeTypeCondition and a second syntax element non_inter_flag indicating whether only an inter prediction coding mode is allowed, and

wherein MODE_TYPE_INTER, MODE_TYPE_INTRA, and MODE_TYPE_ALL are also used in a partition process, and wherein the partition process includes at least one of a quad split process, a binary split process, or a ternary split process.

14. The apparatus of claim 11 , wherein the rule specifies that a third syntax element in a general constraint information syntax structure controls a value of a fourth syntax element in a sequence parameter set, wherein the fourth syntax element indicates whether subpicture information is present in a coded layer video sequence and whether more than one subpictures are included in each picture of the coded layer video sequence, and

wherein the rule specifies that a fifth syntax element in the general constraint information syntax structure controls a value of a sixth syntax element in a sequence parameter set, wherein the sixth syntax element indicates whether a maximum transform size in luma samples is equal to 64.

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

perform a conversion between a video comprising a video block and a bitstream of the video according to a rule,

wherein the video block is a coding tree node that includes one or more coding blocks,

wherein the rule specifies that one or more of the following coding modes are allowed to be used by one or more luma blocks of the one or more coding blocks: an intra prediction coding mode, an intra block copy (IBC) mode and a palette coding mode, and wherein the intra prediction coding mode is applied to one or more chroma blocks of the one or more coding blocks when a local dual tree is applied to the one or more coding blocks inside the coding tree node;

wherein the rule specifies that multiple luma blocks inside the coding tree node are allowed to be coded, in a mixed manner, with more than one coding modes of the intra prediction coding mode, the IBC mode, and the palette coding mode, and wherein the more than one coding modes comprise any two or more of the intra prediction coding mode, the IBC mode, and the palette coding mode.

16. The non-transitory computer-readable storage medium of claim 15 ,

wherein the rule specifies that an inter prediction coding mode is not allowed for the one or more coding blocks in the coding tree node to which the local dual tree is applied,

wherein the rule specifies that a presence of a first syntax element indicating whether the palette coding mode is enabled for a coding block is at least based on that a value of a variable named mode type of the coding block is a certain mode type, wherein the certain mode type is MODE_TYPE_INTRA or MODE_TYPE_ALL and is not MODE_TYPE_INTER,

wherein MODE_TYPE_INTER specifies that only an inter prediction coding mode is allowed to be used for the coding block,

wherein MODE_TYPE_INTRA specifies that only the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block,

wherein MODE_TYPE_ALL specifies that the inter prediction coding mode, the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block,

wherein the variable named mode type is based on a variable named modeTypeCondition and a second syntax element non_inter_flag indicating whether only an inter prediction coding mode is allowed,

wherein MODE_TYPE_INTER, MODE_TYPE_INTRA, and MODE_TYPE_ALL are also used in a partition process, and wherein the partition process includes at least one of a quad split process, a binary split process, or a ternary split process,

wherein the rule specifies that a third syntax element in a general constraint information syntax structure controls a value of a fourth syntax element in a sequence parameter set, wherein the fourth syntax element indicates whether subpicture information is present in a coded layer video sequence and whether more than one subpictures are included in each picture of the coded layer video sequence, and

wherein the rule specifies that a fifth syntax element in the general constraint information syntax structure controls a value of a sixth syntax element in a sequence parameter set, wherein the sixth syntax element indicates whether a maximum transform size in luma samples is equal to 64.

17. A non-transitory computer-readable recording medium storing a bitstream of a video which is generated by a method performed by a video processing apparatus, wherein the method comprises:

generating the bitstream of the video comprising a video block according to a rule,

wherein the video block is a coding tree node that includes one or more coding blocks,

wherein the rule specifies that one or more of the following coding modes are allowed to be used by one or more luma blocks of the one or more coding blocks: an intra prediction coding mode, an intra block copy (IBC) mode and a palette coding mode, and wherein the intra prediction coding mode is applied to one or more chroma blocks of the one or more coding blocks when a local dual tree is applied to the one or more coding blocks inside the coding tree node;

wherein the rule specifies that multiple luma blocks inside the coding tree node are allowed to be coded, in a mixed manner, with more than one coding modes of the intra prediction coding mode, the IBC mode, and the palette coding mode, and wherein the more than one coding modes comprise any two or more of the intra prediction coding mode, the IBC mode, and the palette coding mode.

18. The non-transitory computer-readable recording medium of claim 17 ,

wherein the rule specifies that an inter prediction coding mode is not allowed for the one or more coding blocks in the coding tree node to which the local dual tree is applied,

wherein the rule specifies that a presence of a first syntax element indicating whether the palette coding mode is enabled for a coding block is at least based on that a value of a variable named mode type of the coding block is a certain mode type, wherein the certain mode type is MODE_TYPE_INTRA or MODE_TYPE_ALL and is not MODE_TYPE_INTER,

wherein MODE_TYPE_INTER specifies that only an inter prediction coding mode is allowed to be used for the coding block,

wherein MODE_TYPE_INTRA specifies that only the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block,

wherein MODE_TYPE_ALL specifies that the inter prediction coding mode, the intra prediction coding mode, the IBC mode, and the palette coding mode are allowed to be used for the coding block,

wherein the variable named mode type is based on a variable named modeTypeCondition and a second syntax element non_inter_flag indicating whether only an inter prediction coding mode is allowed, and

wherein MODE_TYPE_INTER, MODE_TYPE_INTRA, and MODE_TYPE_ALL are also used in a partition process, and wherein the partition process includes at least one of a quad split process, a binary split process, or a ternary split process.

19. The non-transitory computer-readable recording medium of claim 17 , wherein the rule specifies that a third syntax element in a general constraint information syntax structure controls a value of a fourth syntax element in a sequence parameter set, wherein the fourth syntax element indicates whether subpicture information is present in a coded layer video sequence and whether more than one subpictures are included in each picture of the coded layer video sequence, and

wherein the rule specifies that a fifth syntax element in the general constraint information syntax structure controls a value of a sixth syntax element in a sequence parameter set, wherein the sixth syntax element indicates whether a maximum transform size in luma samples is equal to 64.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2024
From: WANG, YE-KUI; ZHANG, LI; ZHANG, KAI
To: BYTEDANCE INC.
Reel/Frame 066232/0653 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2024
From: DENG, ZHIPIN
To: BEIJING ZITIAO NETWORK TECHNOLOGY CO., LTD.
Reel/Frame 066232/0774 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2024
From: BEIJING ZITIAO NETWORK TECHNOLOGY CO., LTD.
To: BEIJING BYTEDANCE NETWORK TECHNOLOGY CO., LTD.
Reel/Frame 066232/0908 →
Priority Claims (1)
WO PCT/CN2020/093641 · May 31, 2020 · international
Continuity (3)
Continuation 18071335 · Nov 29, 2022
Continuation PCTCN2021096707 · May 28, 2021
Related Publication 20240137572A1 · Apr 25, 2024
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Document: JVET-P0476, Chao, Y., et al., “Non-CE8: Palette mode and prediction mode signaling,” 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]
Document: JVET-P0063-v2, Zhao, Y., et al., “AHG16: Fix on local dual tree,” 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, 6 pages. [cited by applicant]
JVET-Q0358, Ma, X., et al., “AHG9: Constraints on ALF APS,” 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, Jan. 7-17, 2020, 17th Meeting: Brussels, BE, Jan.… [cited by applicant]
JVET-Q0438, Browne, A., et al., “Monochrome processing,” 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, Jan. 7-17, 2020, 3 pages. [cited by applicant]
JVET-Q0248, Hu, N., et al., “AHG9: On constraints for ALF APS,” 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, Jan. 7-17, 2020, 2 pages. [cited by applicant]
JVET-Q0250, Hu, N., et al., “CE5-related: Removing number oflters for CC-ALF in slice and picture header,” 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, Ja… [cited by applicant]
JVET-Q0253-v1, Kotra, A., et al., “CE5-related: High level syntax modifications for CCALF,” 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, Jan. 7-17, 2020, … [cited by applicant]
JVET-Q0782-v3, Kotra, A., et al., “CE5-related: High level syntax modifications for CCALF (combination of NET-00253 and NET-00520),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 17th… [cited by applicant]
JVET-Q0520-v1, Wang, Y., et al., “AHG9: Cleanups on signaling for CC-ALF, BDPCM, ACT and Palette,” 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, Jan. 7-17,… [cited by applicant]
JVET-Q0265, Auyeung, C., et al., “Modifications to VVC Draft 7 to support monochrome and independently coded color planes,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 17th Meeting:… [cited by applicant]
Document: JVET-Q2001-Vd/v14, Bross, B et al., “Versatile Video Coding (Draft 8 ),” 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, Jan. 7-17, 2020, 511 pages. [cited by applicant]
Document: JVET-R0073-v1, Deng, Z., et al., “AHG9: Some cleanups on QP delta signalling,” 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, 202… [cited by applicant]
JVET-Q2001-v13/Vc, Bross, B., et al., “Versatile Video Coding (Draft 8),” 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, Jan. 7-17, 2020, 508 pages. [cited by applicant]
Document: JVET-Q0817-v1, Hendry, et al., “AHG12: On single slice per subpic flag constraint,” 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, Jan. 7-17, 2020… [cited by applicant]
Document: JVET-Q0382-v1, Chen, F., et al., “CE5-related: On high level syntax of CC-ALF,” 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, Jan. 7-17, 2020, 5 … [cited by applicant]
Document: JVET-P2001-v9, Bross, B., et al., “Versatile Video Coding (Draft 7),” 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, 491 pages. [cited by applicant]
Document: JVET-S0138-v3, He, Y., et al., “AHG9: A summary of proposals on general constraints information (GCI),” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 19th Meeting: by teleco… [cited by applicant]
Document: JVET-P0537-v2, Deng, Z., et al., “Non-CE3: Cleanups on local dual tree for non-4:2:0 chroma formats,” 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,… [cited by applicant]
Document: JVET-O2001-vE, Bross, B., 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, 22 pages. [cited by applicant]
Document: JVET-S0058-v1, Naser, K., et al., “AHG9: Additional General Consatraint Flags,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 19th Meeting: by teleconference, Jun. 22-Jul. 1… [cited by applicant]
Foreign Communication From a Related Counterpart Application, International Application No. PCT/CN2021/080175, English Translation of International Search Report dated Jun. 9, 2021, 11 pages. [cited by applicant]
Foreign Communication From a Related Counterpart Application, International Application No. PCT/CN2021/080180, English Translation of International Search Report dated Jun. 9, 2021, 11 pages. [cited by applicant]
Foreign Communication From a Related Counterpart Application, International Application No. PCT/CN2021/080183, English Translation of International Search Report dated Jun. 17, 2021, 10 pages. [cited by applicant]
Foreign Communication From A Related Counterpart Application, International Application No. PCT/CN2021/080187, English Translation of International Search Report dated Jun. 10, 2021, 13 pages. [cited by applicant]
Document: JVET-S0105, McCarthy, S., et al., “AHG9: Modification of general constraint information,” Joint Video Experts Team (JVET) of ITU-T SG 16 WP 3 and ISO/IEC JTC 1/SC 29/WG 11 19th Meeting: by teleconference, Jun.… [cited by applicant]
Japanese Notice of Allowance from Japanese Patent Application No. 2022-573429 dated Jun. 4, 2024, 4 pages. [cited by applicant]
Chinese Notice of Allowance from Chinese Patent Application No. 202180020899.1 dated Jan. 14, 2025, 4 pages. [cited by applicant]
Chinese Notice of Allowance from Chinese Patent Application No. 202180020877.5 dated Jan. 14, 2025, 4 pages. [cited by applicant]
Korean Office Action from Korean Patent Application No. 10-2022-7045226 dated Feb. 7, 2025, 10 pages. [cited by applicant]