SMPTE RP 139-1997 Tributary Interconnection for Digital Control Interface.pdf
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1、 STD-SMPTE RP 137-ENGL 1777 8357403 0002837 708 SMPTE RECOMMENDED PRACTICE Tributary Interconnection for Digital Control Interface RP 139-1 997 Revision of RP 139-1992 Page 1 of 9 pages 1.2 Definitions 1 General For the purposes of this practice, the following defini- tions shall apply: 1.1 Scope Th
2、is practice describes the mechanism for the trans- fer of control messages between tributaries used within a general-purpose communications channel of an interface system which transports data and digital control signals between equipment utilized in the pro- duction, post-production, and/or transmi
3、ssion of visual and aural information. It is intended that the mechanism described in this practice be utilized when transferring control messages between tributaries used as a pari of an overall system. The tributaries may be located either within a local network or on separate local networks which
4、 are interconnected by means of gateways and an interconnection bus. It is further intended that this mechanism, when used as part of an overall system, shall allow the intercon- nection of programmable and nonprogrammable equipment as required to configure an operational system with defined functio
5、ns, and will allow rapid reconfiguration of a system to provide more than one defined function utilizing a given group of equipment. 1.1.1 The message transfer mechanism makes use of virtual circuits, linkage directories, and system service messages (defined below). 1.1.2 The primary intent of this
6、practice is to define the mechanism enabling the transfer of messages between tributaries for the purpose of controlling equipment by external means. 1.2.1 virtual machine: A logical device consist- ing of a single device or a combination of devices that respond in essence or effect as a generic typ
7、e of equipment; e.g., VTR, video switcher, telecine, etc. 1.2.2 virtual circuit: A transparent, unidirec- tional, logical communications connection be- tween virtual machines. The communications path, in reality, passes through other levels and is propagated over a physical medium. 2 Normative refer
8、ences The following standards contain provisions which, through reference in this text, constitute provisions of this practice. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this practice are encouraged to inv
9、estigate the possibility of applying the most recent edition of the standards indicated below. CCITT Recommendation X.21, Interface Between Data Terminal Equipment (DTE) and Data Circuit- Terminating Equipment (DCE) for Synchronous Operation on Public Data Networks CCITT Recommendation X.24, List of
10、 Definitions for Interchange Circuits Between Data Terminal Equip- ment (DTE) and Data Circuit-Terminating Equipment (DCE) on Public Data Networks CCITT Recommendation X.25, Interface Between Data Terminal Equipment (DTE) and Data Circuit- Copyright 8 1997 by the SOCIETY OF MOTION PICTURE AND TELEVI
11、SION ENGINEERS 595 W. Hartsdale Ave., White Plains, NY 10607 (91 4) 761 -1 1 O0 Approved August 12, 1997 STD-SMPTE RP 139-ENGL 1997 8357403 0002838 844 R P 1 39-1 997 Terminating Equipment (DCE) for Terminals Operat- ing in the Packet Mode and Connected to Public Data Networks by Dedicated Circuit C
12、CITT Recommendation X.27, Electrical Charac- teristics for Balanced Double-Current Interchange Circuits for General Use with Integrated Circuit Equip- ment in the Field of Data Communications IS0 4903:1989, Information Technology - Data Communication - 15-Pole DTE/DCE Interface Connector and Contact
13、 Number Assignments ISOAEC 3309:1993, Information Technology - Tele- communications and Information Exchange Between Systems - High-Level Data Link Control (HDLC) Procedures - Frame Structure IS0 43351 993, Information Technology - Telecom- munications and Information Exchange Between Systems - High
14、-Level Data Link Control (HDLC) Elements of Procedures 3 Interconnection within a local network 3.1 Message transfer The mechanism for message transfer between tribu- taries is based broadly on the principles of communi- cations layering and makes use of virtual circuits. This allows for the establi
15、shing of, and breaking down of, multiple links between the tributaries. System service messages perform this function. A linkage directory is established within the bus controller for each working session. The directory is considered to be a system service feature and provides for the establishment
16、of multiple virtual circuits through the network. 3.2 Linkage directory The linkage directory shall establish a relationship between virtual machines: .e., a virtual circuit. Estab- lishment of the linkage directory shall be completed as the initial task in each working session. The linkage director
17、y resident within the system service level of the bus controller binds message sources and desti- nations. Linkage information may originate in any application level, and shall effect directory construction within the system service level of the bus controller. Linkage messages are reserved messages
18、 within the system service subset of all message dialects; they establish and disconnect virtual circuits within the network. The bus controller, on receipt of a transmission request from the supervisory level of any tributary, will identify the destination tributary by reference to the linkage dire
19、ctory; acting as an intermediary, it will forward the message as directed. 3.3 Multiplexing within tributaries Tributaries, in general, have a single supervisory level address, and a single physical connection end point to the bus. Alternative multiplexing mechanisms, as described below, enable mult
20、iple virtual circuits to pass through any single connection end point. 3.3.1 Mu It i p I e , I o g i ca I I y independent virtu al machines, each with a unique supervisory level address, may be attached to the communica- tions channel through a common connection end point. Multiplexing is then perfo
21、rmed by multiple polling of the addressing entity residing within the supervisory level (see figure 1). NOTE - It may be noted that any individual tributary address may achieve a higher priority - and hence an improved response time at the expense of that of the remaining tributaries - by being allo
22、cated more than one poll within each poll sequence. 3.3.2 Alternatively, a single supervisory level address may be multiplexed to multiple logi- cally independent virtual machines with selec- tion being performed by a logical switch residing within the entity of the destination tributary system serv
23、ice level (see figure 2). The required virtual machine is selected from those associated with the single Supervisory level address, by means of a system service virtual-machine-select message (see 4.4). This is transmitted from the bus controller under the direction of the linkage directory held wit
24、hin its system service level, to the destination tributary system service level, immediately prior to the transmission of any control message, or sequence of control messages, destined for that specific virtual machine. The selected routing will remain in existence until receipt, by the system servi
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