SMPTE ST 425-3-2015 Image Format and Ancillary Data Mapping for the Dual Link 3 Gb s Serial Interface.pdf
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1、 Copyright 2015 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved March 26, 2015 Page 1 of 45 pages Table of Contents Page Foreword 3 Intellectual Property . 3 Introduction 3 1 Scope 3 2 Conformance Notation 4 3 Normative Refere
2、nces 5 4 Definition of Terms 5 5 Image Formats 7 5.1 1080-line Source Image Formats 7 5.1.1 Source Sample Number Representation . 8 5.2 2160-line Source Image Formats . 8 5.2.1 Source Sample Number Representation . 8 5.3 Image Mapping Overview . 8 5.3.1 1080-line Image System Overview 8 5.3.2 2160-l
3、ine Image System Overview 9 5.4 Number of Audio Channels 10 6 1080-line Level A Mapping . 11 6.1 Level A Mapping 1080-line Source Image . 11 6.1.1 Mapping Structure II - 4:4:4 (RGB)/ (YCBCR) and 4:4:4:4 (RGB+A)/ (YCBCR +A)/10-bit Signals 11 6.1.2 Mapping Structure III - 4:4:4 (RGB)/ (YCBCR)/12-bit S
4、ignals . 12 6.1.3 Mapping Structure IV - 4:2:2 (YCBCR) and 4:2:2:4 (YCBCR +A)/12-bit Signals 14 6.2 Ancillary Data 16 6.2.1 Audio Data 17 6.2.2 Time Code Data . 18 6.2.3 Payload Identifier 18 SMPTE ST 425-3:2015 Revision of SMPTE ST 425-3:2014 SMPTE STANDARD Image Format and Ancillary Data Mapping f
5、or the Dual Link 3 Gb/s Serial Interface SMPTE ST 425-3:2015 Page 2 of 45 pages 7 1080-line Level BDual-Link Mapping . 21 7.1 1080-line Source Image . 21 7.1.1 Mapping Structure II - 4:4:4 (RGB)/ (YCBCR) and 4:4:4:4 (RGB+A)/ (YCBCR +A)/10-bit Signals . 25 7.1.2 Mapping Structure III - 4:4:4 (RGB)/ (
6、YCBCR)/12-bit Signals. 26 7.1.3 Mapping Structure IV - 4:2:2 (YCBCR) and 4:2:2:4 (YCBCR+A)/12-bit Signals 27 7.2 Ancillary Data 29 7.2.1 Audio Data . 29 7.2.2 Time Code Data . 31 7.2.3 Payload Identifier . 31 8 2160-line Mapping 33 8.1 Mapping of 2160-line Source Image. 33 8.1.1 Multiplex Structure
7、. 34 8.2 Ancillary Data 35 8.2.1 Audio Data . 35 8.2.2 Time Code Data . 36 8.2.3 Payload Identifier . 37 9 Data Stream Assignment for 3G-SDI Link 1 and 3G-SDI Link 2 . 39 9.1 3G-SDI Link 1/ 3G-SDI Link 2 Interface Timing . 39 10 Levels of Operation (Informative) . 39 Annex A Bibliography (Informativ
8、e). 40 Annex B Square Division of 2160-image Formats (Informative) 41 B.1 Quad 1.5 Gb/s Serial Digital Interface Mapping . 41 B.2 Dual 3 Gb/s Level B Dual-Stream Mapping . 42 Annex C Ancillary Data Capacity of the Dual Link Interface (Informative) 44 Annex D Document Roadmap (Informative) 45 SMPTE S
9、T 425-3:2015 Page 3 of 45 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. SMPTEs
10、 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 organizatio
11、ns, including ISO, IEC and ITU. SMPTE Engineering Documents are drafted in accordance with the rules given in its Standards Operation Manual. SMPTE ST 425-3 was prepared by Technology Committee 32NF. Intellectual Property At the time of publication no notice had been received by SMPTE claiming paten
12、t 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 This s
13、ection is entirely informative and does not form an integral part of this Engineering Document. There is a need in the industry to have an interface for transporting images complying with 4:2:2 and 4:4:4 10 bit and 12-bit image formats defined by SMPTE ST 274, ST 2048-1, ST 2048-2 and ST 2036-1 whic
14、h can be transported by a dual SMPTE ST 424 serial interfaces. This standard also defines the payload identifier. SMPTE ST 425-3:2015 Page 4 of 45 pages 1 Scope This standard defines 1080-line and 2160-linemapping formats as described below; 1080-line mapping specifies: The mapping of the image form
15、ats of 1920 1080 and 2048 1080 pixels listed in Table 2 into four parallel 10-bit data streams (known as data stream one, data stream two, data stream three and data stream four) of a 40-bit virtual interface, followed by the mapping of these four 10-bit data streams onto the Dual Link 3 Gb/s Serial
16、 Interface (3G-SDI Link 1 and Link 2) via two 20-bit virtual interfaces. 2160-line mapping specifies: The mapping of the image formats of 3840 2160 and 4096 2160 pixels listed in Table 3 into four parallel 10-bit data streams (known as data stream one, data stream two, data stream three and data str
17、eam four) of a 40-bit virtual interface, followed by the mapping of these four 10-bit data streams on to the Dual Link 3 Gb/s Serial Interface (3G-SDI Link 1 and Link 2) via two 20-bit virtual interfaces. This standard also defines the carriage of ancillary data such as the audio data, the audio con
18、trol packets, the payload identifier and the time code. It is not necessary for implementations to include support for all formats that are included in this standard. Implementers should indicate supported formats in commercial publications. 2 Conformance Notation Normative text is text that describ
19、es elements of the design that are indispensable or contains the conformance language keywords: “shall“, “should“, or “may“. Informative text is text that is potentially helpful to the user, but not indispensable, and can be removed, changed, or added editorially without affecting interoperability.
20、Informative text does not contain any conformance keywords. All text in this document is, by default, normative, except: the Introduction, any section explicitly labeled as “Informative“ or individual paragraphs that start with “Note:” The keywords “shall“ and “shall not“ indicate requirements stric
21、tly to be followed in order to conform to the document and from which no deviation is permitted. The keywords, “should“ and “should not“ indicate that, among several possibilities, one is recommended as particularly suitable, without mentioning or excluding others; or that a certain course of action
22、 is preferred but not necessarily required; or that (in the negative form) a certain possibility or course of action is deprecated but not prohibited. The keywords “may“ and “need not“ indicate courses of action permissible within the limits of the document. The keyword “reserved” indicates a provis
23、ion that is not defined at this time, shall not be used, and may be defined in the future. The keyword “forbidden” indicates “reserved” and in addition indicates that the provision will never be defined in the future. A conformant implementation according to this document is one that includes all ma
24、ndatory provisions (“shall“) and, if implemented, all recommended provisions (“should“) as described. A conformant implementation need not implement optional provisions (“may“) and need not implement them as described. Unless otherwise specified, the order of precedence of the types of normative inf
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