IP Library Patent Application 18039677
Patent Application
App. No. 18/039,677

INTRA PREDICTION FOR ASYMMETRIC PARTITION

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Patent No.
US None
App. No.
18/039,677
Abstract

At least a method and an apparatus are presented for efficiently encoding or decoding video. For example, the encoding or decoding comprises determining an intra prediction mode from a set of regular angular intra prediction modes and wide angular intra prediction modes wherein at least one of an angle or a reference array used by the angular intra prediction mode in the set are adapted to the width or the height of the image block which is not power of two. For example, the encoding or decoding comprises determining an intra sub-partition mode for an image block wherein at least one of a size or a number of intra sub-partitions in an intra sub-partition mode are adapted to the width or the height of the image block which is not power of two. Various embodiments are described for a ratio r used in an asymmetric split and p intra sub-partitions.

Claims (38)

1 - 58 . (canceled)

59 . A method comprising decoding an image block, the decoding further comprising:

determining that a width of the image block is W=w and a height of the image block is H=3w/4 or that a width of the image block is W=3h/4 and a height of the image block is H=h where h and w are power of two;

determining a wide angular intra prediction mode for the image block among two allowed wide angular intra prediction modes;

determining a reference array used in intra prediction of size equal to 2H+p or 2W+p where p=1, 2 or 4 depending on the width and the height of the image block; and

decoding the image block using the determined wide angular intra prediction mode and the determined reference array.

60 . The method of claim 59 , wherein the wide angular intra prediction mode allows an intra prediction angle value beyond a range of 180 degree from 45 degree to −135 degree.

61 . The method of claim 59 further comprising:

decoding at least one syntax data element related to enabling the wide angular intra prediction mode from one of a slice header, a picture parameter set, and a sequence parameter set.

62 . A non-transitory program storage device, readable by a computer, tangibly embodying a program of instructions executable by the computer for performing the method according to claim 59 .

63 . An apparatus comprising a memory and one or more processors, wherein the one or more processors are configured to:

access an image block;

determine that a width of the image block is W=w and a height of the image block is H=3w/4 or that a width of the image block is W=3h/4 and a height of the image block is H=h where h and w are power of two;

determine a wide angular intra prediction mode for the image block among two allowed wide angular intra prediction modes;

determine a reference array used in intra prediction of size equal to 2H+p or 2W+p where p=1, 2 or 4 depending on the width and the height of the image block; and

decode the image block using the determined wide angular intra prediction mode and the determined reference array.

64 . The apparatus of claim 63 , wherein the wide angular intra prediction mode allows an intra prediction angle value beyond a range of 180 degree from 45 degree to −135 degree.

65 . The apparatus of claim 63 , wherein the one or more processors are configured to:

decode at least one syntax data element related to enabling the wide angular intra prediction mode from one of a slice header, a picture parameter set, and a sequence parameter set.

66 . A method comprising encoding an image block, the encoding further comprising:

determining that a width of the image block is W=w and a height of the image block is H=3w/4 or that a width of the image block is W=3h/4 and a height of the image block is H=h where h and w are power of two;

determining a wide angular intra prediction mode for the image block among two allowed wide angular intra prediction modes;

determining a reference array used in intra prediction of size equal to 2H+p or 2W+p where p=1, 2 or 4 depending on the width and the height of the image block; and

decoding the image block using the determined wide angular intra prediction mode and the determined reference array.

67 . The method of claim 66 , wherein the wide angular intra prediction mode allows an intra prediction angle value beyond a range of 180 degree from 45 degree to −135 degree.

68 . The method of claim 66 further comprising:

encoding at least one syntax data element related to enabling the wide angular intra prediction mode in one of a slice header, a picture parameter set, and a sequence parameter set.

69 . A non-transitory program storage device, readable by a computer, tangibly embodying a program of instructions executable by the computer for performing the method according to claim 66 .

70 . A non-transitory program storage device having encoded data representative of an image block generated according to a method 68 .

71 . An apparatus comprising a memory and one or more processors, wherein the one or more processors are configured to:

access an image block;

determine that a width of the image block is W=w and a height of the image block is H=3w/4 or that a width of the image block is W=3h/4 and a height of the image block is H=h where h and w are power of two;

determine a wide angular intra prediction mode for the image block among two allowed wide angular intra prediction modes;

determine a reference array used in intra prediction of size equal to 2H+p or 2W+p where p=1, 2 or 4 depending on the width and the height of the image block; and

encode the image block using the determined wide angular intra prediction mode and the determined reference array.

72 . The apparatus of claim 71 , wherein the wide angular intra prediction mode allows an intra prediction angle value beyond a range of 180 degree from 45 degree to −135 degree.

73 . The apparatus of claim 71 , wherein the one or more processors are configured to:

encode at least one syntax data element related to enabling the wide angular intra prediction mode from one of a slice header, a picture parameter set, and a sequence parameter set.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2023
From: INTERDIGITAL VC HOLDINGS FRANCE, SAS
To: INTERDIGITAL CE PATENT HOLDINGS, SAS
Reel/Frame 064396/0118 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2023
From: RATH, GAGAN BIHARI; LE LEANNEC, FABRICE; NASER, KARAM; CHEN, YA
To: INTERDIGITAL VC HOLDINGS FRANCE, SAS
Reel/Frame 063814/0437 →