Method and device for designing low-frequency non-separable transform
US-2024373011-A1 · Nov 7, 2024 · US
US12445649B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12445649-B2 |
| Application number | US-202218715891-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 25, 2022 |
| Priority date | Dec 9, 2021 |
| Publication date | Oct 14, 2025 |
| Grant date | Oct 14, 2025 |
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The present disclosure relates to an information processing device and method capable of suppressing a drop in encoding efficiency. A valid most significant bit position of a data unit constituted by a plurality of samples is detected, a bit string below the valid most significant bit position is extracted as valid data from the samples, and a bitstream including the valid most significant bit position and the valid data of each of the samples is generated. Furthermore, the valid most significant bit position of the data unit constituted by the plurality of samples and the valid data of each of the samples are extracted from the bitstream, invalid data constituted by a bit pattern according to a binary type is generated, the valid data is aligned, the invalid data and the aligned valid data are coupled for each of the samples, and a data unit is generated. The present disclosure can be applied, for example, in an information processing device, an electronic device, an information processing method, a program, or the like.
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The invention claimed is: 1. An information processing device comprising: a valid most significant bit position detection unit that detects a valid most significant bit position in a data unit constituted by a plurality of samples, the valid most significant bit position being a position of a most significant bit among bits having a value different from a bit pattern according to a binary type; a valid data extraction unit that extracts a bit string below the valid most significant bit position as valid data from the samples; and a bitstream generation unit that generates a bitstream including information indicating the binary type, information indicating the valid most significant bit position, and the valid data of each of the samples. 2. The information processing device according to claim 1 , wherein the binary type is straight binary, the bit pattern is constituted only by values of “0”, and the valid most significant bit position is the position of the most significant bit among bits having a value of “1”. 3. The information processing device according to claim 1 , wherein the binary type is two's complement binary, the bit pattern is constituted only by values of “0” or only by values of “1”, the valid most significant bit position is the position of the most significant bit among bits having a value different from a value of the most significant bit in the samples, the information processing device further comprises a most significant bit extraction unit that extracts the most significant bit of the samples, and the bitstream generation unit generates the bitstream further including the most significant bit of each of the samples. 4. The information processing device according to claim 1 , wherein the binary type is offset binary, the bit pattern is constituted by a value of “0” for the most significant bit and a value of “1” for other bits, or is constituted by a value of “1” for the most significant bit and a value of “0” for other bits, the valid most significant bit position is the position of the most significant bit among bits having a value identical to a value of the most significant bit in the samples, the information processing device further comprises a most significant bit extraction unit that extracts the most significant bit of the samples, and the bitstream generation unit generates the bitstream further including the most significant bit of each of the samples. 5. The information processing device according to claim 1 , further comprising: an encoding unit that encodes the data unit using a second encoding method different from a first encoding method, the first encoding method using pulse code modulation; and an encoding method selection unit that selects an encoding method to be applied, wherein the bitstream generation unit: generates the bitstream including (i) information indicating the encoding method selected, (ii) the valid most significant bit position, and (iii) the valid data of each of the samples, when the first encoding method is selected; and generates the bitstream including (i) information indicating the encoding method selected and (ii) encoded data of the data unit encoded using the second encoding method, when the second encoding method is selected. 6. The information processing device according to claim 5 , wherein the second encoding method is an encoding method using differential pulse code modulation, and the encoding unit calculates a difference between a sample which is not a reference sample and another sample, and generates the encoded data including the difference from the reference sample. 7. The information processing device according to claim 5 , further comprising: an efficiency comparison unit that compares an efficiency of each of candidates for the encoding method to be applied, wherein the encoding method selection unit selects the encoding method to be applied based on a comparison result for the efficiency. 8. The information processing device according to claim 1 , wherein the most significant bit position detection unit detects the valid most significant bit position using a method according to the binary type that has been designated. 9. The information processing device according to claim 8 , wherein the information indicating the binary type indicates the binary type that has been designated. 10. The information processing device according to claim 1 , further comprising: a binary type determination unit that determines the binary type of the samples, wherein the most significant bit position detection unit detects the valid most significant bit position using a method according to the binary type that has been determined, and the information indicating the binary type indicates the binary type that has been determined. 11. An information processing method comprising: detecting a valid most significant bit position in a data unit constituted by a plurality of samples, the valid most significant bit position being a position of a most significant bit among bits having a value different from a bit pattern according to a binary type; extracting a bit string below the valid most significant bit position as valid data from the samples; and generating a bitstream including information indicating the binary type, information indicating the valid most significant bit position, and the valid data of each of the samples.
the unit being bits, e.g. of the compressed video stream · CPC title
Selection from among a plurality of transforms or standards, e.g. selection between discrete cosine transform [DCT] and sub-band transform or selection between H.263 and H.264 · CPC title
using significance based coding, e.g. Embedded Zerotrees of Wavelets [EZW] or Set Partitioning in Hierarchical Trees [SPIHT] · CPC title
the radix thereof being two · CPC title
using predictive coding (H04N19/61 takes precedence) · CPC title
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