ANSI INCITS37-1999 Information Systems - Programming Language APT Processor Input Language and System-Neutral CLFILE《信息技术.程序设计语言APT 处理器输入语言和系统中性点CLFILE》.pdf
《ANSI INCITS37-1999 Information Systems - Programming Language APT Processor Input Language and System-Neutral CLFILE《信息技术.程序设计语言APT 处理器输入语言和系统中性点CLFILE》.pdf》由会员分享,可在线阅读,更多相关《ANSI INCITS37-1999 Information Systems - Programming Language APT Processor Input Language and System-Neutral CLFILE《信息技术.程序设计语言APT 处理器输入语言和系统中性点CLFILE》.pdf(474页珍藏版)》请在麦多课文档分享上搜索。
1、ANSI INCITS 37-1999(formerly ANSI NCITS 37-1999)for Information Technology Programming Language APT:Processor Input Language andSystem-Neutral CLFILECopyright American National Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted without li
2、cense from IHS-,-,-Copyright American National Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-ANSI NCITS 37-1999Revision, redesignation, and conslidationof ANSI X3.37-1995,ANSI X3.37/AM 1-1998,ANSI X3.37-1
3、995/AM 2-1998American National Standardfor Information Technology Programming Language APT:Processor Input Language andSystem-Neutral CLFILESecretariatInformation Technology Industry CouncilApproved December 8, 1999American National Standards Institute, Inc.Copyright American National Standards Inst
4、itute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Approval of an American National Standard requires review by ANSI that therequirements for due process, consensus, and other criteria for approval havebeen met by the stand
5、ards developer.Consensus is established when, in the judgement of the ANSI Board ofStandards Review, substantial agreement has been reached by directly andmaterially affected interests. Substantial agreement means much more thana simple majority, but not necessarily unanimity. Consensus requires tha
6、t allviews and objections be considered, and that a concerted effort be madetowards their resolution.The use of American National Standards is completely voluntary; theirexistence does not in any respect preclude anyone, whether he has approvedthe standards or not, from manufacturing, marketing, pur
7、chasing, or usingproducts, processes, or procedures not conforming to the standards.The American National Standards Institute does not develop standards andwill in no circumstances give an interpretation of any American NationalStandard. Moreover, no person shall have the right or authority to issue
8、 aninterpretation of an American National Standard in the name of the AmericanNational Standards Institute. Requests for interpretations should beaddressed to the secretariat or sponsor whose name appears on the titlepage of this standard.CAUTION NOTICE: This American National Standard may be revise
9、d orwithdrawn at any time. The procedures of the American National StandardsInstitute require that action be taken periodically to reaffirm, revise, orwithdraw this standard. Purchasers of American National Standards mayreceive current information on all standards by calling or writing the AmericanN
10、ational Standards Institute.American National StandardPublished byAmerican National Standards Institute, Inc.11 West 42nd Street, New York, NY 10036Copyright 1999 by Information Technology Industry Council (ITI)All rights reserved.No part of this publication may be reproduced in anyform, in an elect
11、ronic retrieval system or otherwise,without prior written permission of ITI, 1250 Eye Street NW, Washington, DC 20005. Printed in the United States of AmericaCopyright American National Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted w
12、ithout license from IHS-,-,-iContentsPageAbstract viiForeword . viii1. PURPOSE AND SCOPE 1 - 11.1 Purpose. 1 - 11.2 Scope 1 - 12. METHOD AND TERMINOLOGY2.1 Introduction . 2 - 12.2 The Metalanguage 2 - 12.3 Example of Metalanguage 2 - 22.4 Nucleus and Modular Features. 2 - 22.4.1 Point-to-Point 2 - 3
13、2.4.2 2D Complex Geometry . 2 - 42.4.3 Input/Output 2 - 42.4.4 Deferred Processing . 2 - 42.4.5 3D Geometry. 2 - 52.4.6 Lathe. 2 - 52.4.7 Extended 2D Geometry 2 - 52.4.8 Real Time Processing. 2 - 52.4.9 3D Point-to-Point. 2 - 52.4.10 Large Surfaces 2 - 52.4.11 Extended 3D Geometry 2 - 52.4.12 Region
14、al Milling. 2 - 62.4.13 Communications . 2 - 62.5 Language Status. 2 - 62.6 Revision Status. 2 - 63. APT INPUT LANGUAGE3.1 Introduction . 3 - 13.2 Input Language. 3 - 54. APT OUTPUT DATA4.1 Introduction . 4 - 14.2 Requesting Output Data in the SCL Format . 4 - 24.3 SCL Commands 4 - 34.4 SCL File Str
15、ucture. 4 - 34.5 SCL Record Structure. 4 - 34.5.1 Length. 4 - 34.5.2 Identification 4 - 44.5.3 Continuation 4 - 44.6 System - Neutral CLFILE Format 4 - 5AnnexesA. ABBREVIATIONS AND DEFINITIONSA1. Abbreviations A - 1A2. Definitions .A - 1Copyright American National Standards Institute Provided by IHS
16、 under license with ANSINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-iiPageB. TUTORIALB1. INTRODUCTIONB1.1 Overview.B1 - 1B1.2 Notation Conventions .B1 - 1B1.2.1 Vocabulary Words B1 - 1B1.2.2 Required Syntax .B1 - 2B1.2.3 Optional Syntax B1 - 2B1.2.4 Entity Spec
17、ificationsB1 - 3B2. THE METALANGUAGE OF NCITS 37B2.1 Overview.B2 - 1B2.2 Syntax.B2 - 1B2.3 Semantics .B2 - 2B2.3.1 Rule Names B2 - 2B2.3.2 Explanatory InformationB2 - 2B2.3.3 Options .B2 - 3B2.3.4 Default Conditions B2 - 3B2.3.5 Substitute For Syntax .B2 - 3B2.4 Special Features.B2 - 4B2.4.1 Recursi
18、onB2 - 4B2.4.2 Cross Reference.B2 - 4B2.5 System Flags B2 - 5B2.5.1 Language Extensions .B2 - 5B2.5.2 Implementation Status B2 - 5B2.5.3 Revision Status.B2 - 6B2.5.4 Working Status .B2 - 6B3. DIAGNOSTICSB3.1 Overview.B3 - 1B3.2 Discussion B3 - 1B4. GEOMETRYB4.1 Overview.B4 - 1B4.2 Tabulated Cylinder
19、B4 - 1B4.3 Ruled Surface .B4 - 2B4.4 Sculptured Surfaces Language B4 - 2B4.4.1 Introduction .B4 - 2B4.4.2 Space Curve .B4 - 3B4.4.3 Sculptured Surface .B4 - 8B4.4.4 Defining Points And Vectors From Space Curves And Surfaces B4 - 11B5. MOTIONB5.1 Overview.B5 - 1B5.2 Initial Continuous Motion B5 - 1B5
20、.3 Control Surfaces .B5 - 2B5.4 Cutters B5 - 3B5.5 Terminal Tool-Surface OrientationB5 - 5B5.6 Motion DirectionB5 - 5B5.7 Tool-Surface Orientation.B5 - 6B5.8 ToleranceB5 - 7Copyright American National Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or network
21、ing permitted without license from IHS-,-,-iiiPageB5.9 Regional Milling Of Sculptured Surfaces B5 - 7B5.9.1 The General Sculptured Milling Statement B5 - 7B5.9.2 The Single Move Sculptured Milling Statement . B5 - 13B5.9.3 The Single Cutter Path Sculptured Milling Statement B5 - 14B5.9.4 Regular APT
22、 Parameters Used By SMILL . B5 - 15B5.9.5 SMILL Examples B5 - 15B5.10 Pocketing . B5 - 17B5.10.1 Overview B5 - 17B5.10.2 Simple Pocket Command. B5 - 17B5.10.3 Pocket Block B5 - 19B5.10.4 Expanded Pocket Command . B5 - 20B5.10.5 Example Of Pocket Block Use With The Expanded Pocket Command. B5 - 23B5.
23、11 Extended CLDATA Point Record . B5 - 23B5.11.1 Introduction B5 - 23B5.11.2 Discussion B5 - 24B5.11.3 Extended MULTAX Command. B5 - 25B5.11.4 Extended CLDATA Record B5 - 25B5.11.5 Examples . B5 - 26B6. LANGUAGE EXTENSIONSB6.1 Overview B6 - 1B6.2 Multiple Check Surface Motion Statement (CHKNUM Subse
24、t) B6 - 1B6.3 Points And Vectors From The Last Motion Command (CLDATA Subset) B6 - 2B6.3.1 Summary B6 - 2B6.3.2 Definitions B6 - 2B6.3.3 Examples . B6 - 3B7. PROCESSOR PROGRAMMING LOGICB7.1 Structured Programming B7 - 1B7.1.1 Logical Variables B7 - 1B7.1.2 Logical Expressions . B7 - 1B7.1.3 Logical
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