ANSI ISO IEC 9636-2-1991 Information Technology - Computer Graphics - Interfacing Techniques for Dialogues with Graphical Devices (CGI) - Functional Specification - Part 2 Control .pdf
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1、INCITS/ISO/IEC 9636-2-1991 (R1997)(formerly ANSI/ISO/IEC 9636-2-1991 (R1997) for Information Technology -Computer Graphics -Interfacing Techniques forDialogues with Graphical Devices (CGI) -Functional Specification -Part 2: ControlANSI/ISO/IEC 9636-2-l 991 Redesignation of ANSI X3.161 (never publish
2、ed) American National Standard for Information Technology - Computer Graphics - Interfacing Techniques for Dialogues with Graphical Devices (CGI)- Functional Specification - Part 2: Control Secretariat Computer and Business Equipment Manufacturers Association Approved August 6,1992 American National
3、 Standards Institute, Inc. AmericanNationalStandardApproval of an American National Standard requires review by ANSI that therequirements for due process, consensus, and other criteria for approval havebeen met by the standards developer.Consensus is established when, in the judgment of the ANSI Boa
4、rd of StandardsReview, substantial agreement has been reached by directly and materiallyaffected interests. Substantial agreement means much more than a simplemajority, but not necessarily unanimity. Consensus requires that all views andobjections be considered, and that a concerted effort be made t
5、oward theirresolution.The use of American National Standards is completely voluntary; their existencedoes not in any respect preclude anyone, whether he has approved the standardsor not, from manufacturing, marketing, purchasing, or using products, processes,or procedures not conforming to the stand
6、ards.The American National Standards Institute does not develop standards and will inno circumstances give an interpretation of any American National Standard.Moreover, no person shall have the right or authority to issue an interpretation ofan American National Standard in the name of the American
7、National StandardsInstitute. Requests for interpretations should be addressed to the secretariat orsponsor whose name appears on the title page of this standard.CAUTION NOTICE: This American National Standard may be revised orwithdrawn at any time. The procedures of the American National StandardsIn
8、stitute require that action be taken periodically to reaffirm, revise, or withdrawthis standard. Purchasers of American National Standards may receive currentinformation on all standards by calling or writing the American National StandardsInstitute.Published byAmerican National Standards Institute1
9、1 West 42nd Street, New York, New York 10036Copyright 1991 by Information Technology Industry Council (ITI)All rights reserved.These materials are subject to copyright claims of International Standardization Organization (ISO),International Electrotechnical Commission (IEC), American National Standa
10、rds Institute (ANSI), andInformation Technology Industry Council (ITI). Not for resale. No part of this publication may bereproduced in any form, including an electronic retrieval system, without the prior written permission of ITI.All requests pertaining to this standard should be submitted to ITI,
11、 1250 Eye Street NW, Washington, DC20005.Printed in the United States of AmericaContents Page Foreword . Introduction . 1 S-pe 2 Normative references . 3 Concepts . 3.1 Introduction . 3.2 Virtual Device management . 33.1 Device control 3.23 Drawing surface . 3.2.3 Deferral mode . 33.4 Serial synchro
12、nous interface . 33 CoLY*.Y BNI: requires that the Viiual Device complete the display of an image “Before the Next Interaction”, that is, before the next interaction with a Logical Input Device gets underway; If an interaction is already underway (i.e. some LID is initialized for events) then BNI is
13、 equivalent to ASAP, ASAP: requires that the Virtual Device complete the display of an image “As Soon As Possible”. Note that none of these values requires an implementation to delay the display of an image. On the other hand, for hard-copy devices, the CGI does not require a page to be printed per
14、function. Explicit control of deferral is provided by the EXECUTE DEPERRED ACTIONS function which ensures that any pending actions are completed (such as rendering any buffered output so that the operator can see it). The CGI requires that any soliciting function immediately following EXECUTE DEPERR
15、ED ACTIONS will not return data until all pending actions ate performed and the drawing surface is up to date. NOTE-Some implementations, such as buffered one-way output devices, may be unable to support Deferral Mode ASAP. 33.4 Serial synchronous interface The CGI is a serial synchronous interface.
16、 There are no asynchronous signals over the interface to report events (whether from input interactions or from environmental changes) or the occurrence of errors. The CGI is therefore able to guarantee synchronization of its soliciting functions, including DEQUEUE ERROR REPORTS, with preceding func
17、tion executions. Invocation of DEQUEUE ERROR REPORTS will return all errors detected as a result of the execution of the preceding functions provided the error queue has not overflowed. This synchronous interface does not preclude implementations that have many parallel processes within them. Deferr
18、al allows for this potential parallelism within the implementation and the function EXECUTE DEFERRED ACTIONS provides a client with some degree of control of this parallelism. 3.3 Coordinate space concepts 33.1 The Virtual Device coordinate system Coordinate data across the CGI is specified in Virtu
19、al Device Coordinates (VDCs), except where a direct reference is made to the drawing or display surface. VDC space is an abstract space described in more detail below. The subset of VDC space specified by the finite VDC extent is mapped to a portion of the physical device drawing surface specified b
20、y the device viewport. here are two ways for a CGI client to ensure isotropic mapping from VDC space to the display surface: by asking the CGI to enForce it, or by using a VDC extent whose aspect ratio matches the visual aspect ratio of the selected device viewport. Entries in the Output Device Desc
21、ription Table provide the information that enables the client to ensure isotropy without resorting to implicit CGI mechanisms. 4 ISO/IEC 9636-2 : 1991 (E) Coordinate space concepts Concepts Furthermore, the CGI allows viewport specifications to cause the entire image to be mirrored relative to the n
22、ormal orientation, in either axes. The Device Viewport Mirroring entry in the Control Description Table provides information on the support of this mirroring capability. 3.32 Device coordinates The drawing surface and display surface are addressed by means of a Cartesian coordinate system. The Displ
23、ay Surface Bottom-Left Comer and Display Surface Upper-Right comer entries in the Output Device Description Table specify this physical device coordinate system. Although the graphic object pipeline model recognizes an abstract DC space with real coordinates, the only form in which device coordinate
24、s are passed across the CGI is as integers. If the implementation uses raster techniques, then the units of DCs correspond to single pixel displacements. 3.33 Device viewport The - in physical device coordinates, which requires either inquiry or prior knowledge of the device. The device viewport is
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