SANS 10746-2-2003 Information technology - Open distributed processing - Reference model Foundations《信息技术 开放分布式处理 参考模型 基础》.pdf
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1、 Collection of SANS standards in electronic format (PDF) 1. Copyright This standard is available to staff members of companies that have subscribed to the complete collection of SANS standards in accordance with a formal copyright agreement. This document may reside on a CENTRAL FILE SERVER or INTRA
2、NET SYSTEM only. Unless specific permission has been granted, this document MAY NOT be sent or given to staff members from other companies or organizations. Doing so would constitute a VIOLATION of SABS copyright rules. 2. Indemnity The South African Bureau of Standards accepts no liability for any
3、damage whatsoever than may result from the use of this material or the information contain therein, irrespective of the cause and quantum thereof. ICS 35.100.01 ISBN 0-626-14688-7 SANS 10746-2:2003 Edition 1 ISO/IEC 10746-2:1996 Edition 1 SOUTH AFRICAN NATIONAL STANDARD Information technology Open d
4、istributed processing Reference model: Foundations This national standard is the identical implementation of ISO/IEC 10746-2:1996 and is adopted with the permission of the International Organization for Standardization and the International Electrotechnical Commission. Published by Standards South A
5、frica 1 dr lategan road groenkloof private bag x191 pretoria 0001 tel: 012 428 7911 fax: 012 344 1568 international code + 27 12 www.stansa.co.za Standards South Africa 2003 SANS 10746-2:2003 Edition 1 ISO/IEC 10746-2:1996 Edition 1 Table of changes Change No. Date Scope National foreword This South
6、 African standard was approved by National Committee STANSA SC 71C, ICT software and systems engineering, in accordance with procedures of Standards South Africa, in compliance with annex 3 of the WTO/TBT agreement. INTERNATIONAL STANDARD ISO/IEC 10746-2 First edition 1996-09-I 5 Information technol
7、ogy - Open Distributed Processing - Reference Model: Foundations Technologies de /information - Traitement distribue ouvert - Mod b) the structure of distributed systems which claim compliance with the Reference Model (the configuration of the systems); Cl the concepts needed to express the combined
8、 use of the various standards supported; d) the basic concepts to be used in the specifications of the various components which make up the open distributed system. 2 Normative references The following Recommendations and International Standards contain provisions which, through reference in this te
9、xt, constitute provisions of this Recommendation I International Standard. At the time of publication, the editions indicated were valid. All Recommendations and Standards are subject to revision, and parties to agreements based on this Recommendation I International Standard are encouraged to inves
10、tigate the possibility of applying the most recent edition of the Recommendations and Standards listed below. Members of IEC and IS0 maintain registers of currently valid International Standards. The Telecommunication Standardization Bureau of the ITU maintains a list of currently valid ITU-T Recomm
11、endations. 21 . Identical Recommendations I International Standards - ITU-T Recommendation X.903 (1995) I ISO/IEC 10746-3: 1996, Infomzation technology - en distributed processing - Reference Model: Architecture. 3 Definitions For the purposes of this Recommendation I International Standard, the fol
12、lowing definitions apply. 31 0 Definitions from other Recommendations I International Standards There are no definitions from other Recommendations I International Standards in this Recommendation I International Standard. 32 . Background definitions 3.2.1 distributed processing: Information process
13、ing in which discrete components may be located in different places, and where communication between components may suffer delay or may fail. 3.2.2 ODP standards: This Reference Model and those standards that comply with it, directly or indirectly. 3.2.3 open distributed processing: Distributed proc
14、essing designed to conform to ODP standards. 3.2.4 ODP system: A system (see 6.5) which conforms to the requirements of ODP standards. IT the grammar of any language for the ODP Architecture must be described in terms of these concepts. These concepts are described in clause 7. Basic modelZing conce
15、pts: Concepts for building the ODP Architecture; the modelling constructs of any language must be based on these concepts. These concepts are described in clause 8. Specification concepts: Concepts related to the requirements of the chosen specification languages used in ODP. These concepts are not
16、intrinsic to distribution and distributed systems, but they are requirements to be considered in these specification languages. These concepts are described in clause 9. Structuring concepts: Concepts that emerge from considering different issues in distribution and distributed systems. They may or
17、may not be directly supported by specification languages adequate for dealing with the problem area. Specification of objects and functions that directly support these concepts must be made possible by the use of the chosen specification languages. These concepts are described in clauses 10 to 14. C
18、onformance concepts: Concepts necessary to explain the notions of conformance to ODP standards and of conformance testing. These concepts are defined in clause 15. IT b) one or more pertinent levels of abstraction The elements of the universe of discourse are entities and propositions. 61 Entity: An
19、y concrete or abstract thing of interest. While in general the word entity can be used to refer to anything, in the context of modelling it is reserved to refer to things in the universe of discourse being modelled. 62 . Proposition: An observable fact or state of affairs involving one or more entit
20、ies, of which it is possible to assert or deny that it holds for those entities. 63 piocess. Abstraction: The process of suppressing irrelevant detail to establish a simplified model, or the result of that 64 . Atomicity: An entity is atomic at a given level of abstraction if it cannot be subdivided
21、 at that level of abstraction. Fixing a given level of abstraction may involve identifying which elements are atomic. 65 . System: Something of interest as a whole or as comprised of parts. Therefore a system may be referred to as an entity. A component of a system may itself be a system, in which c
22、ase it may be called a subsystem. NOTE - For modelling purposes, the concept of system is understood in its general, system-theoretic sense. The term “system” can refer to an information processing system but can also be applied more generally. 66 Architecture (of a system): A set of rules to define
23、 the structure of a system and the interrelationships between its parts. 7 Basic linguistic concepts Whatever the concepts or semantics of a modelling language for the ODP Architecture, it will be expressed in some syntax, which may include linear text or graphical conventions. It is assumed that an
24、y suitable language will have a grammar defining the valid set of symbols and well-formed linguistic constructs of the language. The following concepts provide a common framework for relating the syntax of any language used for the ODP Architecture to the interpretation concepts. 7.1 Term: A linguis
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