SMPTE ST 2073-1-2017 VC-5 Video Essence - Part 1 Elementary Bitstream.pdf
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1、 Copyright 2017 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved April 5, 2017 SMPTE ST 2073-1:2017 Revision of SMPTE ST 2073-1:2014 SMPTE STANDARD VC-5 Video Essence Part 1: Elementary Bitstream Page 1 of 52 pages Table of Con
2、tents Page Page Foreword 5 Intellectual Property . 5 Introduction. 5 1 Scope 7 2 Conformance Notation 7 3 Normative References 7 4 Terms and Definitions . 7 5 Notation . 12 5.1 Codec State Parameters . 12 5.2 Number Representations 12 5.3 Arithmetic Right Shift. 12 6 Overview (Informative) 12 7 Comp
3、onent Arrays 14 7.1 Component Array Requirements 14 7.2 Component Array Representation 14 7.3 Component Array Dimensions 14 7.4 Component Value Precision . 14 8 Bitstream Syntax . 16 8.1 Syntax Elements . 16 8.2 Bitstream Segments 16 8.3 Tag-Value Pairs 16 8.3.1 Tag-Value Syntax 16 8.3.2 Required Ta
4、g-Value Pairs 16 8.3.3 Optional Tag-Value Pairs . 16 8.4 Chunk Elements 16 8.4.1 Chunk Element Syntax 16 8.4.2 Chunk Payload Size . 17 8.4.3 Small Chunk Payloads . 17 8.4.4 Large Chunk Payloads . 17 8.5 Bitstream Constraints 18 8.6 Bitstream Start Marker 18 8.7 Bitstream Header 18 8.8 Codeblock Elem
5、ents . 18 SMPTE ST 2073-1:2017 Page 2 of 52 pages 9 Codec State 19 9.1 Codec State Parameters 19 9.2 Codec State Initialization 19 9.3 External Parameter Values . 19 9.4 Explicit Parameter Changes . 19 9.5 Codec State Changes 19 9.5.1 Subband State Change . 19 9.5.2 Channel State Change 20 10 Subban
6、d Coding 20 10.1 Coefficient Order . 20 10.2 Subband Codeblocks 20 10.3 Lowpass Band Codeblocks . 20 10.4 Highpass Band Codeblocks 21 10.4.1 Highpass Band Codeblock Syntax 21 10.4.2 Run-Length Coding . 21 10.4.3 Non-Zero Coded Values 21 10.4.4 Band End Marker . 21 11 Wavelet Transforms 21 11.1 Spati
7、al Wavelet Transform (Informative) . 21 11.2 Spatial Wavelet Sequence 23 11.3 Inverse Wavelet Transforms 26 11.4 Wavelet Transform Requirements . 27 11.4.1 Wavelet Height Requirement . 27 11.4.2 Wavelet Width Requirement . 28 12 Decoding Process 28 12.1 Subband Decoding 28 12.2 Entropy Decoding 28 1
8、2.3 Inverse Companding . 28 12.4 Inverse Quantization 28 12.5 Inverse Wavelet Processing 29 12.6 Component Array Order 29 Annex A Inverse Spatial Wavelet Transform (Normative) . 30 Annex B Codec State Parameters (Normative) . 31 B.1 Parameter Descriptions . 31 B.1.1 ImageWidth . 31 B.1.2 ImageHeight
9、 31 B.1.3 BitsPerComponent 31 B.1.4 ChannelCount . 31 B.1.5 SubbandCount 31 B.1.6 ChannelNumber 31 B.1.7 SubbandNumber . 31 B.1.8 LowpassPrecision . 31 B.1.9 Quantization 31 B.1.10 PrescaleShift . 32 B.1.11 ChannelWidth 32 B.1.12 ChannelHeight 32 B.2 Tag-Value Pairs . 33 B.3 Chunk Headers 34 B.3.1 S
10、mall Chunk Headers . 34 B.3.2 Large Chunk Headers 34 B.4 Image Dimensions (Informative) 34 SMPTE ST 2073-1:2017 Page 3 of 52 pages Annex C Codebook (Normative) . 35 C.1 Coefficient Magnitudes and Zero Runs 35 C.2 Special Codewords. 40 Annex D Decoding Process (Informative) . 41 D.1 Decoding Overview
11、 41 D.2 Initial Codec State 41 D.3 Memory Allocation 41 D.4 Entropy Decoding . 42 D.5 Lower Resolution Decoding . 42 D.6 Image Repacking Process . 42 D.7 Decoding Resource Requirements 43 Annex E Encoding Process (Informative) . 44 E.1 Codec State Synchronization 44 E.2 Image Processing 44 E.3 Image
12、 Unpacking . 45 E.4 Prescale Shifts . 45 E.5 Lowpass Transform . 45 E.6 Highpass Transform 45 E.7 Quantization . 46 E.8 Companding 46 E.9 Entropy Coding 47 E.9.1 Non-Zero Coefficients 47 E.9.2 Runs of Zeros 47 E.10 Subband Encoding Order 47 Annex F Inverse Companding and Dequantization (Normative) 4
13、8 Annex G Additional Notation (Informative) 49 G.1 Arithmetic Operators . 49 G.2 Logical Operators 49 G.3 Relational Operators . 49 G.4 Bitwise Operators 49 G.5 Assignment Operator 50 G.6 Operator Precedence 50 G.7 Compound Statements . 50 G.8 Elementary Functions . 51 G.9 Bitstream Functions. 51 Bi
14、bliography (Informative) 52 SMPTE ST 2073-1:2017 Page 4 of 52 pages Figures Figure 1 Overview of the encoding and decoding processes (Informative). 13 Figure 2 Component arrays are represented as separate channels in the bitstream. . 15 Figure 3 Two-dimensional spatial wavelet transform as a horizon
15、tal wavelet transform followed by a vertical wavelet transform. 22 Figure 4 Three levels of spatial wavelet transform showing the lowpass bands used as inputs to the next wavelet level and the numbering of subbands. Each channel is encoded using this sequence of spatial wavelet transforms. 25 Figure
16、 5 Sequence of operations used to encode a component array into the bitstream. . 26 Figure E.1 Synchronizing the codec state between the encoder and decoder. . 44 Tables Table 1 Subband numbering for the sequence of wavelets in each channel. 24 Table 2 Notation used in Figure 5. . 24 Table B.1 Packe
17、d representation of the prescale shifts. 32 Table B.2 Codec state parameters. 33 Table B.3 Symbolic names and numbers for tags that identify large chunk elements. 34 Table C.1 Codebook for non-negative coefficients (codewords listed in hexadecimal). 36 Table C.2 Special codewords. 40 Table D.1 Highp
18、ass band codeblock decoding algorithm. . 42 Table E.1 Prescale shifts versus the number of bits per component value. 45 Table G.1 Elementary arithmetic operators used in this document. 49 Table G.2 Logical operators used in this document. . 49 Table G.3 Relational operators used in the document. 49
19、Table G.4 Bitwise operators used in this document. 49 Table G.5 Assignment operators used in this document 50 Table G.6 Operator precedence. . 50 Table G.7 Elementary functions operate on the argument x with unlimited precision. 51 Table G.8 Functions for sequentially reading the bitstream. 51 SMPTE
20、 ST 2073-1:2017 Page 5 of 52 pages Foreword SMPTE (the Society of Motion Picture and Television Engineers) is an internationally-recognized standards developing organization. Headquartered and incorporated in the United States of America, SMPTE has members in over 80 countries on six continents. SMP
21、TEs Engineering Documents, including Standards, Recommended Practices, and Engineering Guidelines, are prepared by SMPTEs Technology Committees. Participation in these Committees is open to all with a bona fide interest in their work. SMPTE cooperates closely with other standards-developing organiza
22、tions, including ISO, IEC and ITU. SMPTE Engineering Documents are drafted in accordance with the rules given in its Standards Operations Manual. SMPTE ST 2073-1 was prepared by Technology Committee 10E. Intellectual Property At the time of publication no notice had been received by SMPTE claiming p
23、atent rights essential to the implementation of this Engineering Document. However, attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. SMPTE shall not be held responsible for identifying any or all such patent rights. Introduction Th
24、is section is entirely informative and does not form an integral part of this Engineering Document. The VC-5 codec is a variable-bit-rate codec intended for high-quality video acquisition and post-production, capable of encoding diverse image and video formats. (1) The key design goals of the VC-5 c
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