SMPTE ST 374M-2003 SMPTE STANDARD for Television - Mapping of Vertical Ancillary Data Packets and Extended Video Line Data into Video DIF Blocks of DV-Based 50 Mb s DIF Stream Form.pdf
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1、 Table of contents 1 Scope 2 Normative references 3 General description 4 Division and control of the mapped space 5 Conversion and mapping process of VANC data packets 6. Extended Video Line compression and mapping coded pixels into the Compressed Macro Block data area 7 Mapping of VANC data and Ex
2、tended Video Line into the CMBs of video DIF Blocks Annex A Abbreviations Annex B Bits from SDI VANC Annex C Structure of the mapping process 1 Scope The purpose of this standard is to specify mapping of the extended video line data and the vertical ancillary data packets (VANC) present in the verti
3、cal blanking interval (VBI) space of the serial digital interface (SDI) into a 50 Mb/s digital interface format (DIF) structure defined in SMPTE 314M. Format of a VANC packet is defined in SMPTE 291M. Mapping of the extended video line data permits an increase of video aperture of 7.5 lines in the 5
4、25 system and an aperture increase of 9 lines in the 625 system. Mapping of VANC packets provides for carriage of metadata and data essence through the 50 Mb/s DV-based DIF stream structure. 2 Normative references The following standards contain provisions which, through reference in this text, cons
5、titute provisions of this standard. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this standard are encouraged to investigate the possibility of applying the most recent editions of the standards indicated bel
6、ow: ANSI/SMPTE 259M-1997, Television 10-Bit 4:2:2 Component and 4fscComposite Digital Signals Serial Digital Interface SMPTE 291M-1998, Television Ancillary Data Packet and Space Formatting Page 1 of 19 pages SMPTE 374M-2003 Copyright 2002 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 59
7、5 W. Hartsdale Ave., White Plains, NY 10607 (914) 761-1100 Approved March 17, 2003 SMPTE STANDARD for Television Mapping of Vertical Ancillary Data Packets and Extended Video Line Data into Video DIF Blocks of DV-Based 50 Mb/s DIF Stream Format SMPTE 374M-2003 Page 2 of 19 pages SMPTE 314M-1999, Tel
8、evision Data Structure for DV-Based Audio, Data and Compressed Video 25 and 50 Mb/s SMPTE RP 168-2002, Definition of Vertical Interval Switching Point for Synchronous Video Switching 3 General description Metadata and data essence can be carried in the ancillary space of the SDI stream structures. T
9、hese data are formatted according SMPTE 291M as ancillary packets and located in VBI space as VANC packets. VANC packets are transformed into digital ancillary packets (DANC) and then mapped into available data space of the 50 Mb/s DV-based DIF stream. The space that is used for mapping data contain
10、ed in VANC packets and extended video line data is located in reserved space within a compressed macro block (CMB). Compressed macro blocks are located in multiple video DIF blocks of a DIF frame. Multiple DIF blocks of 80 bytes each form a DIF frame and are defined in the SMPTE 314M. Due to limited
11、 CMB data space, and to achieve maximum benefit of the available space by the user, management of the data space should be established (see note 1). A specific data management method is beyond the scope of this standard. NOTE 1 Designers should be aware that the size of VANC data can exceed the capa
12、city of the VAUX packs. It is the responsibility of the application to manage the mapping of VANC data into VAUX packs such that only complete VANC packets are mapped into VAUX DIF blocks. Where the VAUX capacity is exceeded, it is the responsibility of the application to manage this mapping in such
13、 a way as to minimize the effect on system performance of not mapping all of the VANC data. Mapping schemes This standard specifies three similar mapping schemes. The first scheme (see 7.1) maps only a single extended video line from the end of a frame. This is either line 525 in the 525-line system
14、 or line 623 in the 625-line system. The second mapping scheme (see 7.2) maps additional information as well as the vertical ancillary data packets contained in the last video line. The third mapping scheme (see 7.3) maps an additional 7.5 lines of the 525-line system or an additional 9 lines of the
15、 625-line system. These include the last line located at the end of a frame. i) Extended video line aperture The purpose of mapping the extended video line data is to expand the video aperture of the existing 50 Mb/s DV-based compressed signal. Video aperture of this compressed signal is nominally d
16、etermined by SMPTE 314M and equals 480 lines in the 525-line system and 576 lines in the 625-line system. The extended video line data mapping technique for expansion of the video aperture uses mild compression that is suitable for video signals and similar types of digital data signals, as is, for
17、example, teletext. The method of compressing this data is defined in this standard. ii) VANC packet mapping A VANC packet is located within VBI space of a SDI stream. The SDI interface operates as a 10-bit interface. However, the VANC data packets carry only 8-bit information and it is located in bi
18、ts b0 to b7 of the VANC packet. The upper two bits of the VANC packet (b8 and b9) can be derived during the reverse conversion process, when the DANC packet is converted back into a VANC packet, and placed back onto the SDI interface. Before the VANC packets are mapped into the video DIF blocks, the
19、y are converted (transformed) into a string of DANC packets. The DANC packets contain all necessary information present in the original VANC SMPTE 374M-2003 Page 3 of 19 pages packet, including VANC header packet information. The only information not directly mapped is the ADF (ancillary data flag)
20、bytes and bit 9 of the CS byte (check sum). The ancillary packet conversion/transform to a DANC packet is a direct conversion technique, fully transparent for data content, and defined in this document. 3.1 Data capacity and structure of the available data area Figure 1 shows organization of a 50 Mb
21、/s DIF frame as defined in SMPTE 314M. Every video DIF block that carries DV-based compressed video essence contains reserved data space used for mapped data. The data payload of a video DIF block is called the compressed macro block (CMB), as shown in figure 2. A compressed macro block contains two
22、 data areas, each occupying the space of two bytes, marked X0, X1. The 12-bits of each CMB data area (X0, X1) is a reserved data space, and used by the mapped data. The remaining lower 4 bits of the X0, X1 data area is set to code 0110. Capacity (see note 2) of the CMB data area for different televi
23、sion systems is calculated below, and represents the total available mapping space in a DIF frame: 525 /60 system (12 bits x 2 areas x 135 compressed macro blocks x 20 DIF sequences) / 8 bits = 8100 bytes 625 /50 system (12 bits x 2 areas x 135 compressed macro blocks x 24 DIF sequences) / 8 bits =
24、9720 bytes NOTE 2 The total data space available for mapping is allocated into two sections, where one section is dedicated to mapping of VANC packets and the other section is dedicated to mapping of extended video line data to achieve a larger video aperture. 4 Division and control of the mapped sp
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