AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY...

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S AD-A135 760 AISIM (AUTOMATED INTERACTIVE SIMULATION MODEL) I INSTALLATION AND ACCEPTANC..(U) HUGHES AIRCRAFT CO FULLERTON CA GROUND SYSTEMS GROUP W AUSTELL ET AL. UNCLASSIFIED 26 FEB 82 ESD-TR-83-216 F19628-79-C-0153 F/G 9/2 NL mIIEEEIIIII IIIEIIEEEEEEEE EIIIIIIIIIEEEE IIEIhEEEEIhEII EEEIIIIIEEEIIE EIIIIIIIEIIEEE

Transcript of AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY...

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S AD-A135 760 AISIM (AUTOMATED INTERACTIVE SIMULATION MODEL) I

INSTALLATION AND ACCEPTANC..(U) HUGHES AIRCRAFT COFULLERTON CA GROUND SYSTEMS GROUP W AUSTELL ET AL.UNCLASSIFIED 26 FEB 82 ESD-TR-83-216 F19628-79-C-0153 F/G 9/2 NLmIIEEEIIIII

IIIEIIEEEEEEEEEIIIIIIIIIEEEEIIEIhEEEEIhEIIEEEIIIIIEEEIIEEIIIIIIIEIIEEE

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I I

1111 1 2. II lllliii L L 12.2

11111.25 111 .4 ii

MICROCOPY RESOLUTION TEST CHART

NATIONAL BUREAU OF STANOARDS -'963- A

I4: i'

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ESD-TR- 83-216

C AISIM INSTALLATION AND ACCEPTANCE TEST

j PLANS AND PROCEDURES

W. Austell' S. Kneeburg

SM. Mabry

Hughes Aircraft CompanyGround Systems GroupBox 3310

SFullerton, California 92634

Approved for public release; distribution unlimited

26 February 1982

DTIC~~r:-ECTE

DECI j 19~83Prepared for

ELECTRONIC SYSTEMS DIVISION FL=J AIR FORCE SYSTEMS COMMAND__j DEPUTY FOR ACQUISITION LOGISTICSLL... AN TECHNICAL OPERATIONS

cm HANSCOM AFB, MASSACHUSETTS 01731

83 12 13 292

" "- [ IIL'-- " -- I , I I _

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LEGAL NOTICE

When U. S. Government drawings, specifications or other data are used for anypurpose other than a definitely related government procurement operation, thegovernment thereby incurs no responsibility nor any obligation whatsoever; andthe fact that the government may have formulated, furnished, or in any way sup-plied the said drawings, specifications, or other data is not to be regarded byimplication or otherwise as in any manner licensing the holder or any other personor conveying any rights or permission to manufacture, use, or sell any patentedinvention that may in any way be related thereto.

OTHER NOTICES

Do not return this copy. Retain or destroy.

Review and Approval

This technical report has been reviewed and is approved for publication.

WILLIAM J. ETEADRE ARTHUR G. DECELLES, CAPT, USAFProgram Maager, Computer Resouce Project Officer, RequirementsManagement Technology (PE 64740F) Analysis

FOR THE COMMANDER

WALTER W. TURGISSDirector, Engineer ng and TestDeputy for Acquisition Logistics

and Technical Operations

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UnclassifiadSECURITY CLASSIFICATION OF THIS PAGE (W~hen Data Entered),

READ INSTRUCTIONSREPORT DOCUMENTATrION PAGE BEFORE COMPLETING FORMIREPORT NJMFE-R 2. GOVT ACCESSION NO. 3. RECIPIENT'S CATALOG NUMBER

4. TITLE (arto Subtitle) S. TYPE OF REPORT II PERIOD COVERED

AISIM Installation and Acceptance Test CDRL 121Plans and Procedures ______________

S. PERFORMING 01G. REPORT NUMBER

7. AUTHOA(s, S. CONTRACT OR GRANT NUMBER(s)

W. Austell F19628-79-C-0153S. KneeburgM. Mabry ____________

9. PERFORMING ORGANIZATION NAME AND ADDRESS 10. PROGRAM ELEMENT PROJECT. TASK(

Hughes Aircraft Company AREA & WORK UNIT NUMBERS

Ground Systems GroupBox 3310, Fullerton, CA 92634

ft. CONTROLLING OFFICE NAME AND ADDRES 12. REPORT DATE

Hq Electronic Systems Division (ALEE) 26 February 1982Hanscom AFB 13. NUMBER OF PAGESMassachusetts 01731 240

14. MONITORING AGENCY NAME II ADDRESS0tI different from Controllintl Office) 15. SECURITY CLASS. (of tis report)

Same Unclassified

S;. DECL ASSI FICATION/OWN GRADING

IS. DISTRIBUTION STATEMENT (of this Report)

Approved for public release; distribution unlimited.

17. DISTRIBUTION STATEMENT (of the abstract entered In Block 20. If different from Report)

Ill. SUPPLEMENTARY NOTES

IS. KEY WOPOS (Continue on reverse side If necessary and Identify by block number)

AISIM RehostInstallation Acceptance

*Test Plans Models

20. ABSSTRA( T fCont~rnue on reverse tide It necessary and Identify by block number)

, This document describes the procedures for installing and conducting theInstallation and acceptance testing of the Hughes developed Automated

* Interactive Simulation Model (AISIM). -

DD IAN31473 EDITION OF I'NOV SS IS OBSOLETE Unclassified

SECURITY CLASSIFICATION OF THIS PAG E (Whten Data Entered)

does

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CONTENTS

1. INTRODUCTION .....................*...................... 1

2. SYSTEM GENERATION PROCEDURES............................. 22.1 Host System Requirements.......-o.... .... ....- 22.2 Rehosting AISIM .. o...... o... o........... ....... 22.3 Reading the AISIMTapes....... ........................ 2

2.3.1 Contents of the Tape ....... .... o... ..... 52.4 Building AISIM......... ... .o...*o... ... .. 8

2.4.1 General Information About Host SystemRequirements. .. .o ... o .. o... 8

2.4.2 Executing Existing Load Modules .....o...........92.4.3 Building A Frm Sromtc...... ...... ..... 9

2.4.3.1 Modifying Assembly LanguageRoutines........ ... o...... .... 9

2.4.3.2 Altering the CLISTS ......- o.oo 102.4.3.3 Compiling AISIM......... ... _....10

2.4.3.3.1 FORTRAN Subroutines ....... 102.4.3.3.2 Common Block.... ........... 112.4.3.3.3 Utilities,..........o.. . 122.4.3.3.4 Mains. o................12

2.4.3.4 Linking The Load Modules...... ....... 132.4.3.5 Build The Start Data Bases .......... 142.4.3.6 Test The System ....... . .... . . 14

3. INSTALLATION TESTING- o ......- o.........o.o......... . . . 163.1 Test Descriptions ...................... . ...... 16

3.1.1 Design User Interface Test Description,.........163.1.2 Analysis User Interface Test Description . 173.1.3 Replot User Interface Test Description ........ 173.1o4 Hardcopy User Interface Test Description. 173.1.5 Library User Interface Test Description.......18

3.2 Test Equipment..................... o .......... 183.3 Test Conditions...o....... ..--.... oo....o....1is3.4 Test Procedures-.......o....o.........o.....-..o 19

3.4.1 Design User Interface Test Procedure .......... 193.4.2 Analysis User Interface Test Procedure. ....... 293.4o3 Replot User Interface Test Procedure. ......... 333o4.4 Hardcopy User Interface Test Procedure ........ 353o4.5 Library User Interface Test Procedure... ...... 36

4. ACCEPTANCE TESTING. o................o....................414.1 Acceptance Testing Procedures.................. 43

4.1.1. Locate Acceptance Data Bases ........... o.. 434.1.2 Verify Test Data Bases ......................... 434.1.3 Perform Test.......... ....................... 43

APPENDIX A -JCL FIrES FOR THE TAPES ................... o 45

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APPENDIX B - MODEL DESCRIPTION FOR INSTALLATION TESTINGSUPPORT ....................................... 72

APPENDIX C - MODEL DESCRIPTIONS FOR ACCEPTANCE TESTINGSUPPORT -- TESTDBA.DBF through TESTDBE.DBF ..... 95

TEST 1 MODEL - File Verification --TESTDBA.DBF Listing ...................... 96

TEST 2 MODEL - File Verification --TESTDBB.DBF Listing ......... .. . .............. 104

TEST 3 MODEL - File Verification --TESTDBC.DBF Listing ............................ 111

TEST 4 MODEL - File Verification --TESTDBD.DBF Listing .......................... 118

TEST 5 MODEL - File Verification --TESTDBE.DBF Listing .................. ......... 137

APPENDIX D - Expected Results for Acceptance Test 1-5 ....... 150

TEST 1 Statistics - Results Verification forTESTDBA.DBF .................................... 151

TEST 2 Statistics - Results Verification forTESTDBB.DBF .................. ................... 163

TEST 3 Statistics - Results Verification forTESTDBC.DBF .................................... 174

TEST 4 Statistics - Results Verification forTESTDBD.DBF ....................................... 183

TEST 5 Statistics - Results Verification forTESTDBE.DBF .................................... 219

tiv

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1. 'INTRODUCTION

This document describes the procedures for installing and con-duct ng the installation and acceptance testing of AISIM Version2.0. \Comprehensive testing of a system can be divided into threecategories: component testing, integration testing, and demons-tration testing.

Component testing is intended to verify that each system com-ponent works properly. Such testing is the sole responsibilityof the developers and, therefore, is beyond the scope of thisdocument.

Integration testing is intended to show that all the componentsoperate together properly. This testing is planned and performedby the developers.

Demonstration testing is intended to show that the system meetsits functional requirements. This testing is broken into twophases: 1) installation testing and 2) acceptance testing.Hughes has developed the procedures for performing these testsand they are contained herein. Testing should be performed bypersonnei representing the contractor and the customer.

This document also contains a description of the contents of thesystem tape - its files and organization. The procedures forioading this tape on the host computer and then building theAISIM system are described in detail.

Accession For

NTIS GRA&IDTIC TABUnannouncedJustification

._Distri ,iition/

Availaliitv CodesAva i : n/or

Dist Speci].

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2. SYSTEM GENERATION PROCEDURES

The data necessary to install AISIM on a suitable computer systemare described in this section.

2.1 Host System Requirements

Before AISIM can be installed on a computer (or "host") system,the foliowing constraints must be satisfied:

1. The prospective host must have an interactive operating sys-tem that is compatible with IBM 370 file structures;

2. A FORTRAN IV compiler must be available;

3. A SIMSCRIPT 11.5 compiler must be available;

4. A copy of the PLOT10 package must be available;

5. The host must have the memory capacity to handle the largestioad module (i.e., the DESIGN program: 868,648 bytes), orthe ability to segment load modules into manageable chunks.

If any of these conditions are not met, AISIM cannot be success-fuiiy instaiied on that system.

2.2 Rehosting AISIM

There are two different scenarios to which this section isdirected. The first is the user who has an IBM 370/MVS EXTENDEDTSO machine and wants to get AISIM up as quickly as possible.After dumping the files from the tape, this user should only haveto aiter the CLISTS and will then be able to execute the system.Section 2.3 describes how to dump the files from the tape andsection 2.4.2 describes how to set up the CLISTS to execute AISIMon the new host system.

The second scenario is the user who determines that the operatingsystem of the target host machine is not exactly compatible with

4 IIBM 370/MVS EXTENDED TSO. In this case the user will have to doS4 more work, the amount being relative to the number of system

incompatibiiities. The user will probably have to recompile the

source fiies, create new data bases, and bring AISIM up fromscratch. This user should consult section 2.3.1 on dumping thefiies from the tape and section 2.4.3 on bringing AISIM up fromscratch.

2.3 Reading the AISIM Tapes

Foxiowing is a iist of the types of fiies which are on the AISIMtapes.

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1. Fortran source files: xxxx.fort - The Fcrtran routines makeup the source for the Design, Replot, arid Hardcopy Func-tions, the translator, and the user interface for theAnalyze and Library Functions.

2. The AIS.GFM.DATA, AIS.CHECKIN.DATA, and AIS.MERGEIN.DATAfiles - These are the simscript 11.5 source code for theAISIM simulator and Library Function. These programs aresplit up into functional parts and stored in partitioneddata sets (PDS).

3. Load Modules: AIS.SYSTEM.LOAD and AIS.LIBUTIL.LOAD - Theseare the load modules for executing the AISIM system.

4. CLISTS: xxxx.clist - These are the command procedures thatare executed to build and run the system.

5. Data Bases: xxxx.dbf - These are the initialized AISIM startdata bases, the System Library data base, and the data basesto be used in conjunction with the test procedures for veri-fying the operation of AISIM.

6. JCL files: CRKEX1.CNTL and CRKSR1.CNTL - These are Job Con-trol Language (JCL) files which will dump the files from thetapes to a disk.

7. Miscellaneous files: everything else - These include thedata base schemas and data used to initialize AISIM databases.

Note: There are no object files contained on these tapes. TheIBM utilities used to create the tapes were IEBCOPY for the PDS'sand IEBGENER for the sequential data sets. In order to makeunloading the tapes as easy as possible, a file has been placedon each of the tapes to read the tape files to disk. These filesalso use IEBCOPY and IEBGENER to handle the PDS's and sequentialdata sets, respectively. These files must be modified beforethey cart be executed:

1. The data set names in the JCL, indicating the names underwhich the files are to be placed on the disk, must be fullyqualified (without quotes). The JCL file must be modifiedto reference the account where the AISIM files are to bepiaced: all occurrences of 't******' must be changed to theappropriate identification of the account where the AISIMfiies are to reside.

2. The output disk where the files are to be placed must bespecified. All instances of 'TSO###' must be changed toreference a valid disk unit. All references to UNIT shouldbe changed to the appropriate reference.

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3. Finally, the serial number of the tape must be specified.This name or number is assigned to the tape before it ismounted. The JCL assumes the tapes will be named AISSRl andAISEXI, but this should be changed to be compatible with theactual labelling.

Following are the JCL files for retrieving the JCL files from thetapes. These programs will retrieve the JCL files which willread the files off of the tapes. These JCL programs must bewritten and modified as outlined in the above three steps. Theycan then be submitted to read from the tape the files which willload all of the AISIM files. The retrieved JCL files will bepiaced on the disk under the names CRKSR1.CNTL and CRKEX1.CNTL.

// EXEC PGM=IEBGENER//SYSPRINT DD SYSOUT=A//SYSIN DD DUMMY//SYSUTl DD UNIT=TAPE,VOL-SER-AISSR,SPACE=(l,(1,1)),// LABEL=(39,NL),DISP=(OLD, PASS,KEEP),// DCB=(RECFM-FB,LRECL=80,BLKSIZE=6160,DEN=3)//SYSUT2 DD DSN=T******.CRKSR1.CNTL,// UNIT=DISK,DISP=(NEW,CATLG,CATLG),VOL=SER=TSO###,// SPACE=(TRK,(1,l),RLSE),// DCB=(RFCFM=FB,LRECL=80,BLKSIZE=6160)

/1 EXEC PGM=IEBGENER//SYSPRINT DD SYSOUT=A//SYSIN DD DUMMY//SYSUT1 DD UNIT=TAPE,VOL=SER=AISEXI,SPACE=(l,(1,1)),// LABEL=(20,NL),DISP=(OLD, PASSKEEP),// DCB=(RECFM=FB,LRECL=80,BLKSIZE=6160,DEN=3)//SYSUT2 DD DSN=T******.CRKEXl.CNTL,// UNIT=DISK,DISP-(NEW,CATLG,CATLG),VOL=SER=TSO###,// SPACE=(TRK,(1,1),RLSE),// DCB=(RECFM-FB,LRECL-80,BLKSIZE=6160)/*

After the above changes have been made to the JCL files

(CRKEX1.CNTL and CRKSR1.CNTL) from the tape, these files shouldexecute without further difficulty. An attempt has been made tosupply aii of the necessary parameters to the JCL files, but ifnecessary, the fiies can be altered to suit specific needs. How-ever, the input DCB paramenters should not be changed because thecurrent parameters will ensure that the files are read correctlyfrom the tape. Likewise the space allocations should be alteredwith care. If the space on the disk upon which the files are toreside is higly fragmented, it may be necessary to increase theai ocations, but the allocations presently in the JCL file arethe smaliest possible with a margin of safety to ensure thatthere is enough space for norma± aliocation of the files.

Note: When the AISIM fiies are dumped from the tapes to disk,

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there must not already exist on the disk any files with the samenames as those assigned to the files on the tape. If files bythose names already exist, the tape files with the duplicatenames will not be dumped from the tape. If there are problemsexecuting the JCL file, consult the IBM/MVS JCL manual.

2.3.1 Contents of the Tape The following is a list of all thedata sets in the-order in which they appear on the tapes, alongwith a brief description of each data set and its organization:PDS for partitioned data set and SEQ for sequential data set.

Tape AISSRI:

AIS.DDL.DATA - This is the schema for the design database. (SEQ)

AIS.MODEL.DDL.DATA - This is the schema for the library modeldata base. (SEQ)

AIS.PLOT.DDL.DATA - This is the schema for the plot data base.(SEQ)

AIS.KERNEL.ADEGRAPH.DATA - This is the data for initializing theADE graphics in the design data base. (SEQ)

AIS.KERNEL.FORMSPEC.DATA - This is the data for initializingforms in the design and library model databases. (SEQ)

AIS.KERNEL.GRAPHICS.DATA - This is the data for initializing Pro-cess Primitive graphics in the design andlibrary model data bases. (SEQ)

AIS.KERNEL.SYMBOL.DATA - This is the data for initializing theADE symbol forms in the design data base.(SEQ)

AIS.SYSGEN.CLIST - These CLISTS are used to compile and linkthe AISIM system. (PDS)

AIS.SYSGEN.LINK.CNTL - These files are data used by theAIS.SYSGEN.CLISTs in performing links. (Pn'.

ADBMS.SLIB.ASM - These are the ADBMS assembly ianquaqe rou-tines. (PDS)

AIS.IOLIB.ASM These are the assembly languageinput/output routines. (PDS)

ADBMS.DBLIB.FORT - These are the ADBMS user and internal rou-tines. (PDS)

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ADBMS.FLIB.FORT - These are the ADBMS utility routines. (PDS)

AIS.ADEDBL.FORT - These are the ADE data base access rou-tines. (PDS)

AIS.ADELIB.FORT - These are the ADE top level routines. (PDS)

AIS.ANLDBLIB.FORT - These are the Analyze and Replot data baseaccess routines. (PDS)

AIS.AUILIB.FORT - These are the Analysis User Interface rou-tines. (PDS)

AIS.CLILIB.FORT - These are the Command Language Interfaceroutines. (PDS)

AIS.COXLAT.FORT - These are the Fortran Checkout Functionroutines. (PDS)

AIS.DBDLIB.FORT - This contains the utility titines for ini-tializing data bases and th-- DBMS common

block. (PDS)

AIS.DBLIB.FORT - These are the Design data ;e access rou-tines. (PDS)

AIS.DUILIB.FORT - These are the top level De:.gn User Inter-face routines. (PDS)

AIS.FAST. FORT - These routines buffer data to and from theterminal to speed graphics. (PDS)

AIS.HCLIB.FORT - These are the routines for the HardcopyGraphics Function. (PDS)

AIS.HPLIB.FORT - These routines control the HP terminal.(PDS)

AIS.INITDB.FORT - These routines are used to generate newinitialized data bases. (PDS)

AIS.IOLIB.FORT - These routines perform data I/O betweenAISIM and the host system communications.(PDS)

AIS.LIBUSIF.FORT - These are the routines for the Library UserInterface. (PDS)

AiS.LPTLIB.FORT - These routines are used in the generationof a legal path tabie. (PDS)

AIS.MOXLAT.FORT - These are the Fortran Mergeout Functionroutines. (PDS)

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AIS.QFDLIB.FORT - These are the routines for the Process Edi-tor Interface. (PDS)

AIS.PLOTFLIB.FORT - These are the routines for the Replot Func-tion. (PDS)

AIS.PLOTL.FORT - These routines are used to draw lineargraphics. (PDS)

AIS.TTYAUI.FORT - These are Analysis support routines. (PDS)

AIS.XLATLIB.FORT - These are the Translator routines. (PDS)

AIS.CHECKIN.DATA - These are the Simscript routines for theCheckin Function. (PDS)

AIS.MERGEIN.DATA - These are the Simscript routines for theMergein Function. (PDS)

AIS.SIMLATOR.DATA - These are the Simscript routines for theAnalyze Function. (PDS)

CRKSR1.CNTL - This is the JCL file for dumping all of theabove files to disk.

Tape AISEXI:

AIS.LIBUTIL.LOAD - This the load module for the Library Func-tion. (PDS)

AIS.SYSTEM.LOAD - This is the load module for the rest of theATSIM system. (PDS)

AIS.CONTRL.CLIST - These are the CL STS which control the exe-cution of AISIM . (POS)

AIS.USER.CLIST - This is the CLIST which is placed on theuser's ID to enable access to the AISPI1 sys-tem. (PDS)

AIS.MESSAGES.TEXT -This contains text messages which can bedisplayed at the start of an AISIM session.(PDS)

AIS.VERSION.TEXT - This contains text messages which can bedisplayed for a specific version of AISIM.(PDS)

AIS.STARTDB.DBT - This is the initialized data base table forthe Design Function. (SEQ)

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AIS.MODEL.STARTDB.DBT - This is the initialized data base tablefor the Library Function. (SEQ)

AIS.PLOT.START.DBT - This is the initialized data base table forthe Replot Function. (PDS)

AIS.STARTDB.DBF - This is the initialized start data base forthe Design Function. (SEQ)

AIS.MODEL.STARTDB.DBF - This is the initialized start data basefor the Library Function

AIS.PLOT.STARTDB.DBF - This is the initialized start data basefor the Analyze Function. (SEQ)

AIS.SYSTEM.LIBRARY.DBF - This is the initialized start data basefor the System library for the Library Func-tion. (SEQ)

TESTDB1.DBF - This is a data base to be used in theInstallation Test Plans and Procedures. (SEQ)

TESTDBA.DBF - This is a data base to be used in theInstallation Test Plans and Procedures. (SEQ)

TESTDBB.DBF - This is a data base to be used in theInstallation Test Plans and Procedures. (SEQ)

TESTDBC.DBF - This is a data base to be used in theInstallation Test Plans and Procedures. (SEQ)

TESTDBD.DBF - This is a data base to be used in theT-stallation Test Plans and Procedures. (SEQ)

TESTDBE.DBF - This is a data bse to be used in theInstallation Test Plans and Procedures. (SEQ)

CRKEX1.CNTL - This is a JCL file to dump all of the abovefiie to disk. (SEQ)

Appendix A shows the JCL which was used to place the files on thetape and read the fiies from the tape.

2.4 Building AISIM

2.4.1 Generai Information About Host System RequirementsFiiowing is a list of conditions which must exist on the host

system in order for AISIM to be executable.

- The host system must aliow a terminal transmission length ofat ieast 620 bytes in order to accommodate the largest formdispiayed by AISIM.

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- The ASCII to EBCDIC translation table inAIS.IOLIB.ASM(anyout) must generate EBCDIC code which iscompatible with what the host system expects.

- The terminal line size must be at least 80 characters perline to accommodate Fortran read statements in theAIS.CLILIB.FORT r -tines.

2.4.2 Executing Existing Load Modules A user who has an IBM370/VMS EXTENDED TSO machine available and who wants to get AISIMup as quickly as possible can do so by simply executing the I -admodules loaded from the tape. It will not be necessary to bringup the system from scratch.

In order to execute AISIM, the user will need the load modules

for the system and the controlling CLISTS (i.e. everything readfrom tape AISEXI). The necessary load modules are all in thePDS's ais.system.load and ais.libutil.load. The data bases areais.startdb.dbf, ais.model.startdb.dbf, ais.plot.startdb.dbf, andais.system.library.dbf. These data bases are already initializedand ready to be used to create a user's data bases. When a userinvokes AISIM and does not have an existing data base, a copy ismade of the AISIM start data base. These start data bases shouldnever be used as a user's data base.

Before the system can be executed, the execution CLISTS will haveto be modified slightly. The file ais.user.clist(ais) is the toplevel CLIST used to execute AISIM. This file calls theais.contri CLISTS which actually control the execution of AISIM.The ais.user.clist(ais) and the files in ais.contrl.clist willhave to be altered to access the catalog where the AISIM filesare stored. Most of these files are currently set to execute offthe account 'TF01508'; they should be changed to reference theaccount where the AISEXI tape has been dumped.

2.4.3 Building AISIM From Scratch If the user determines thatthe operating system of the target host machine is not exactlycompatible with IBM/MVS EXTENDED TSO, then bringing up AISIM willinvolve a bit more work. The amount of work necessary willdepend on the extent of the incompatibilities. The followingsteps will outline what is necessary to bring up AISIM completelyfrc.m scratch and the user will have to decide if some of thesesteps are unnecessary or if the entire system must be rebuilt.

2.4.3.1 Modifying Assembly Language Routines AISIM contains twodata sets of assembly language routines: ais.ioiib.asm andadbms.slib.asm. These routines are highly system dependent andthus will probably have to be rewritten. These can be used as aguide tQ what the routines must do, but host compatible routinesmust be created.

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2.4.3.2 Axtering The CLISTS First of all, the CLISTS must bealtered. Tnese CLISTS include the ais.user.clist,ais.contri.ciist, and ais.sysgen.clist data sets. If theseCLISTS are completely unusable in their present form, the usercan use them as a guide in writing his own CLISTS. If they canbe executed as is, then only some minor modifications will be

necessary. The ais.user.clist and ais.contrl.clist data setswhich are used to execute the system must be modified as outlinedin section 2.4.2. The files in the ais.sysgen.clist data set areused to compile the source files and link load the modules. Allof the files in this data set will also have to be modified as insection 2.4.2 to reference the correct account. These files alsousually access the account 'TF01508'. In the CLISTS, any dataset which is referenced without s:,ngle quotes around its name isassumed to reside in the user's own area. All data sets whosenames are enclosed in single quotes reference data sets residingin the catalog whose name is the portion of the name up to thefirst period. For example the data set 'sysl.fortib2' referencesthe data set fortlb2 in the catalog 'sysl'. All data sets refer-enced in the CLISTS whose names are enclosed in quotes but whichare not referenced as '&user' or 'TF01508' are system utilitieson the user's system. The following is a list of the non-userdata sets referenced in the CLISTS and a brief description ofeach.

sysl.fortib2 - These are the system FORTRANutility routines.

scin.tcs2lib - These are the PLOT10 utilityroutines.

scin.simiib8 - These are the Simscript systemutility routines.

2.4.3.3 Compiling AISIM The second step is to compile thesource files. Each of the source data sets has a correspondirgCLIST to compile the routines in the data set. Ail routines ineach data set should be compiled. The following is a list ofwhich CLIST is used to compile which data set. All of the CLISTSare in the partitioned data set ais.sysgen.clist so only themember name will be listed.

2.4.3.3.1 FORTRAN Subroutines The following are the FORTRANsubroutines and the CLISTS used to compile them and put theobject code into load ±ibraries.

ais.adbdbl.fort - adbdbi

adbms.dblib.fort - adbmsdb

ais.adbmsiib.fort - adbmsiib

ais.adedbi.fort - adedbi

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ais.adeiib.fort - adelib

ais.anldblib.fort - arildbiib

ais.auilib.fort - auilib

ais.clilib.fort - ciilib

ais.coxiat.fort - coxiat

ais.dblib.fort - dblib

ais.dui~ib.fort - duilib

ais.fast.fort - fast

adbms.flib.fort - fiib

ais.hc3.ib.fort - hclib

ais.hpiib.fort - hplib

ais.iolib.fort - ioiib

ais.iolib.asm - iolibasin

ais.±ibusif.fort -libU~if

ais.lptlib.fort - ptli3

ais.moxiat.fort - moxiat

ais.ofdiib.fort - ofdlib

ais.piotflib.fort - plotfiib

ais.ploti.fort -p3.otl

adbms.siib.asm -slib

ais.ttyaui.fort -ttyaui

ais.xiatiib.fort -xiatiih

Ai of the above compi~e CLI;TS are executed by using the foiiow-ing command:

* ex ais.sysgen.clist(abQ~e CLIST) 'routine name'

2.4.3.3.2 Common Biock The ADBMS common biock must au1so be comn-piied. it is compiied using the foiiowing command:

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ex ais.sysgen.cIist(dbblk)

2.4.3.3.3 Utilities The routines which are used to create aiADBMS data base and initialize that data base with AISIM formsand graphics data must also be compiled. These CLISTS which :om-pile the necessary routines are listed and described below:

mddia - compile the program which creates a blank ADBMSdata base.

mdbin - compile the program which initializes an ADBMSdata base with necessary ADBMq Atta.

mdbdmain - compile the program which initializes an ADBM3data base with AISIM forms and graphics data for adesign data base.

mdbimain - compile the program which initializes an ADBM:;data base with AISIM forms and graphics data for alibrary model data base.

dbdlib - compile the subroutines which are used by thedbdmain and the dbimain programs.

The first four CLISTS are executed using the following command:

ex ais.sysgen.ciist(above CLIST)

The iast CLIST is executed with the following command:

ex ais.sysgen.cIist(dbdiib) 'routine'

where routine is the name of the routine in ais.dbdlib.fort whichis to be compiled. All routines in this data set should be com-piled.

* 2.4.3.3.4 Mains Ali of the AISIM main programs must also be

compiled. The files to execute are the following:

auimain - compile the Analyze Function main

checkin - compile the Checkin Function main

duimain - compile the Design Function main

hcmain - compile the Hardcopy Function main

mergein - compile the Mergein Function main

piotmain - compile the Replot Function main

xiatmain - compile the Translator main

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These CLISTS are executed using the following command:

ex ais.sysgen.clist(above CLIST)

2.4.3.4 Linking The Load Modules After all of the files havebeen compiled, the next step is to link all of the load modules.The following CLISTS are used to link the various modules:

sinkddla - link the program which creates an emply ADBMSdata base.

slnkdbin - link the program which initializes an ADBMS database.

siinkdbd - link the program which initializes an AISIM database with the forms and graphics data for a designdata base.

slinkdbl - link the program which initializes an AISIM database with the forms and graphics data for a librarymodel data base.

siinkaui - link the Analyze Function.

siinkci - link the Checkin Function.

siinkcos - link the Checkout Function selection interface.

slinkcox - link the Checkout Function translator.

siinkdui - link the Design Function.

siinkhc - link the Hardcopy Graphics Function.

slinkmi - link the Mergein Function.

siinkmos - iink the Mergeout Function seiection interface.

siinkmox - link the Mergeout Function translator.

siinkpci - link the precheckin interface.

siinkpit - link the Replot Function.

sLinkx - link the Translator.

The CLISTS siinkaui, siinkdui, siinkhc, siinkpit, and siinkx areexecuted using the fo±iowing command:

ex ais.sysgen.ciist(above CLIST) 'version'

where version is the number of the version to be linked. Ali of

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the other CLISTS are executed as above, but without the version.

2.4.3.5 Build The Start Data Bases After all of the loadmodules have been buit, th- next step is to build the AISIMstart data bases. The CLIST members which build the necessarydata bases are the following:

allocdbd - build the Design start data base:ais.startdb.dbf and ais.startdb.dbt.

ailocdbi - build the Library model start data base:ais.model.startdb.dbf and ais.model.startdb.dbt.

a!iocplt - build the Replot start data base:ais.plot.startdb.dbf and ais.plot.startdb.dbt

These CLISTS are executed using the following command:

ex ais.sysgen.clist(above CLIST)

2.4.3.6 Test The System After the data bases have been built,the user is ready to execute AISIM. Assuming the CLISTS havebeen set up as described in section 2.4.2, the user should beable to invoke AISIM by entering the command AISIM. The operationof AISIM should then be verified using the procedures in thismanual.

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3. INSTALLATION TESTING

3.1 Test Descriptions

Instailation testing of AISIM consists of verifying that all thecomponents of the system work together properly. Figure 1 showsall these components and their relationships to one another.Five tests will be performed, each exercising one of the userinterfaces and all of the components related to it.

3.1.1 Design User Interface Test Description The Design UserInterface is used to create AISIM models. This includes themodel entity definition which is performed under the Design UserInterface, as well as the subordinate functions of the ProcessEditor Interface which is used to construct Processes, and theArchitecture Design Editor which is used to specify a systemarchitecture and its message routing characteristics. Test Pro-cedure 3.4.1 is designed to show that the following capabilitiesare available:

- Create entities

- Copy entities

- Modify entities

- List entities

- Delete entities

- Save model data bases

- Add Process Primitives

- Change Process Primitives

- Delete Process Primitives

- Display various portion of Processes

- Creation of an architecture - placement of symbols and con-nections

- Definition of Resource attributes through symbol prototyping

- Movement of symbols and connections within architecture

- Windowing in architecture work space

- Creation of LPT both manually and automatically

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3.1.2 Analysis User Interface Test Description The AnalysisUser Interface is used to run simulations of AISIM models. TestProcedure 3.4.2 is intended to show that the following capabili-ties are available:

- Translate models

- List certain entities

- Display certain entity statistics

- Modify certain entity values

- Establish breakpoints

- Cancel breakpoints

- Define plots

- Display plots

- Save plot sets (definitions or data)

- List saved plot sets

- Retrieve saved plot definition sets

- Run simulations

3.1.3 Replot User Interface Tist Description The Replot User

Interface is used to plot selected simulation results. Test Pro-cedure 3.4.3 is designed to verify that the following capabili-ties are available:

- List saved plot sets (definitions or data)

- Retrieve saved plot data sets

- Display plots

- Deiete saved plot sets

3.1.4 Hardcopy User Interface Test Description The HardcopyUser Iiterface is used to document the graphical description ofmodei Processes. Processes 7an be plotted individuaiiy or aiiProces3es 4n a mode! can be oiotted. Test Procedure 3.4.4 isdesigned t, verify that the following capabilities are availabie:

- U3er can specify paper ;ize

- User can plot individuai Processes

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r!

- User can plot all model Processes

3.1.5 Library User Interface Test Description The Library U:;erInterface is used to access the fur functions of the LibraryFunction. The Library Function is used to check models into indout of a user's library or the system library, and to merge partsof iibraries into and out of a user's data base. Test procedire3.4.5 is designed to verify that the following capabilities a-eavaiiabie:

- List the models in a library.

- List the contents of a specific library.

- Check a model out of a library.

- Merge in a model without conflicts.

- Resolve naming conflicts in a model to be merged into a database.

- List entities in a data base.

- Seiect entities to be merged out.

- Check a modei into a library

- Deiete a modei from a library.

3.2 Test Equipment

Installation testing will be performed on the version of AISIlwhich is to be rehosted on the MITRE Corporation IBM 3031 com--puter system. This testing will take place after rehost at theMITRE faciiity. MITRE must provide the foliowing equipment forthis testing:

4 1 HP2647A graphics terminal

4 1 HP2631G printer plotter connected to terminal with HPIBinterface

* connection to computer system

3.3 Test Conditions

Aii input data wiil be entered by the tester in interactive m,.de.The specific inputs are listed in Section 3.4. No other testcznditions appiy to this test plan.

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3.4 Test Procedures

The test procedures are presented in tabular form. Each includesa list of the functions to be performed, user commands andresponses to perform the function, expected results of each com-mand and function, and an area for recording the test results.

3.4.1 Design User Interface Test Procedure This test exercisesthe commands aa---abe in the Design User Interface. The test isstructured such that results of functions which are not directlyobservable are verified as part of the te:3t. For example, when anode is placed in the architecture with predefined Resourceattributes, the presence of these attributes is verified later inthe test.

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FUNCTION/COMMANDS ADDITIONAL INPUTS/ TEST RESULTSEXPECTED RESULTS

1. Initiate an AISIMsession

EX AISIM AISIM Executive Messagesare displayed. AISIMREADY prompt is displayed.displayed.

2. Invoke Design UserInterface

d p(intgtest) DUI messages displayed.Copy data base promptdisplayed. User enters"yes". Data base is cop-ied. "*" prompt is dis-played.

3. Edit one of eachof the followingentity types.

e r,restest,new Appropriate entity forme i,itemtest,new is displayed. User enterse t,tabltest,new random data into formse a,acttest,new and enters them. "*"

e v,vartest,new prompt is displayed.e c,contest,newe q,quetest,newe i,ioadtest,new

4. e s,scentest Message is displayed in-dicating that "scentest"does not exist and theuser is asked if (s)hewishes to create it.User enters "yes" andtest proceeds as in 3above.

5. e, p,proctest,new Process form is displayed.User enters random datainto form and enters it."#" prompt is displayed.

6. menu The menu of Primitivesymbols is displayed.

7. Place one of eachPrimitive type.

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p action Each Primitive form isp alloc displayed. User entersp assign miscellaneous data andp branch enters form. "#" promptp call is displayed. Userp create issues next PLACE command.p comparep deailocp destroyp entryp evalp filep findp lockp loopp probp resetp removep resumep sendp suspendp testp tracep unlockp wait

8. Change selectedProcess Primitives.

C I Change primitives shownc 2 on first page of Process.c 3 In response to changec 4 command, specified Primi-c 5 tive form is displayedc 6 with existing information.

User changes informationas desired and entersform. System responds byredrawing Primitive and

* displaying "#" prompt."*" prompt.

9. Dispiay portions ofProcess moving bothup and down.

bottom User enters combinationL 1.3 of movement commands.c 5 After each command, screentop i; erased an new portion

of Process is dispiayed."I" prompt is redisplayed.

1q. Delete seiected

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Process Primitives.

de± 5 Randomly select Primitivesdel 2,2 to be deleted. In re-deL 13 sponse, the selected Pri-

mitive and those dispiayedbelow it are erased. Pri-mitives below one selectedare redrawn. "#" promptdisplayed. Note that Pri-mitives may on±y be de-leted if presently shownon the screen.

11. Exit the Process Editor.

end Screen is cleared andK*" prompt is displayed.

12. Copy one of eachentity type.

copy r,restest,res2 User enters list of com-copy i,itemtest,itm2 mands, one at a time.copy t,tabltest,tab12 After each command, "*"copy a,acttest,act2 prompt is redisplayed.copy v,vartest,var2copy c,cont,?st,con2copy q,quetest,q2copy i,ioadtest,load2copy s,scentest,scen2copy p,proctest,proc2

13. Verify that Copycommands worked.

list r Appropriate entity listList i (original entities andList t copies). "*" prompt islist a redisplayed after eachlist v command.list clist qlist Ilist sList p

14. Delete original of eachentity type.

Jei r,restest After each command, systemjel i,itemtest performs processing anddel t,tabltest returns "*" prompt.

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del a,acttestdei v,vartestdel c,contestdel q,quetestdel l,loadtestdel s,scentestdei p,proctest

15. List each entitytype.

list r Appropriate entity listlist i (copied entities only).list t "*" prompt redisplayedlist a after each command.list vlist clist qlist Ilist slist p

16. Save the data base.

save Console beeps 5 times."*" prompt is returned.

17. Delete existingResources and verify.Create new Resource.

de± r,* Processing performed andlist r "*" prompt returned. Usere r,archtest lists Resources to verify

that all are de±eted.System provides null listand returns "A" prompt.User enters new Resource,filling in Resource formand filling attribute formwith misceiianeous infor-mation.

18. Edit an architecture.

a Screen is cieared. Archi-tecture grid is drawn."#" prompt is provided.

19. Definition of symbol/Resource prototypes forvarious symbols.

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def sqr,archtest After processing each com-def bus mand. The system returnsdef crd a "#" prompt. The userdef dia should note that the formdef drm displayed is the same thatdef dsk was entered for the Re-def iod source archtest. Afterdef pig the user enters each com-def prp mand, the system displaysdef ptr the form for the specifieddef rec symbol. The user shoulddef tap enter miscellaneous infor-def tri mation into this form,def tty being sure to enter "YES"

in the "attributes field".After entering this form,an attribute form will bedisplayed. The user entersmiscellaneous informationinto this form and entersit. The "#" prompt is re-turned.

20. Piacement of symbolsand connections.

p sqr,AA,20,20 Starting with these com-p tri,SB,40,40 mands, create an archi-p ±od,CC,60,60 tecture.con AA,CC,conlcon AA,BB,con2.F

21. move a symboLwithin the archi-tecture.

move AA,30,30 Symboi is erased andredrawn at new location.Connection is replaced."*" prompt is returned.

22. Redraw a connec-tion within thearchitecture.

recon con3.F Connection is erased andgraphics cursor is dis-played to user. Enterthe connection again.

23. Window view spaceover work space.

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win d,20 Issue various window com-win u,10 mands as shown at left.win r,30 After each command screenwin 1,20 is erased and redrawn atwin r,20,u,10 new location. "#" promptwin l,lO,d,30 is returned.

24. Manipulate LPT functions.

list lpt LPT is listed in alphamemory of terminal. LPTshould represent point-

wise connection of adja-cent nodes. "t" promptis returned.

list path,AA,BB Should provide path onlylist path,BB,CC when adjacent nodes are

specified. System res-ponds with "NO SUCH PATH"for nonadjacent nodes."#" prompt is displayed.

def path,BB,CC,con2.F,conl User defines a path throughseveral nodes. System pro-cesses command and displays"#" prompt.

list path,BB,CC "From node" and "To node"should be the same nodesas used in processing com-mand. Path just enteredand all subpaths are dis-

played. "i" prompt is re-turned.

list lpt LPT as above is listed butwith defined path added."#" prompt returned.

dei,path,BB,CC Use "from node" and "tonode" as above. Systemprocesses command. Returnsprompt.

list path,BB,CC Use "from node" and "tonode" as above. Systemresponds with "NO SUCHPATH". Returns "V prompt.prompt.

list lpt LPT is listed as in lastlist lpt command execpt

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deleted path is gone."#" prompt is displayed.

25. Change node andconnection parameters.

chg name,CC,XX Node name is changed onscreen. O" prompt re-turned.

list Ipt Note change to new nodename in LPT. "#" promptreturned after listingof LPT.

chg size,BB,4 Appropriate changes made.list lpt After each command, listchg type,AA.tty LPT and verify no changelist ipt to LPT. #" prompt dis-

played after each commandin this sequence.

chg name,Conl,Conx Connection name is changed.list lpt List LPT to verify correct

LPT change. "#" displayedafter each command.

26. Save data base whilein architecture.

save Console beeps 5 times."#' prompt displayed.

27. End architecturesession.

end Screen is cleared. LPTmessage prompts are output.W#N prompt displayed.

28. Verify LPT algorithmoperation.

info Messages output describingLPT algorithms. "#" promptreturned.

end No LPT processing done."*" prompt displayed. Usershould reenter architecture,list ipt, and verify thatno change has occurred.User then ends architecture

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session again and uses nextinput as response to LPTgenerator prompt.

a LPT algorithm A operates.Control is passed to DUI."*" prompt displayed.User should reenter archi-tecture, view LPT with"list ipt" and verifyagainst the architecture.User then returns to DUIsession, enters architec-design editor, and receivesLPT messages again.

b LPT algorithm B operates.Same prompts and sequencesshould be reported as inprevious step.

c LPT algorithm C operates.Same as previous stepsexcept upon reentering DUI,user performs followingcommands.

29. Verify architecturenodes are representedin list of Resources.

list r List of Resources is dis-played. User verifies pres-ence of all architecturenode and channel Resources,including .A and .B Resour-ces for .F connections usedin architecture.

e r,AA Resource forms presented.(representing tty User verifies presence ofin architecture) attributes as specified in

Step 19. Repeat for tri-angle symbol. "*" promptdisplayed after entering

30. Reenter Architecture

a Grid redrawn. "4" promptdisplayed.

31. Delete architecturenodes and connections

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del conx Use various delete commandsdei con2.F,BB as shown at left to verifydel * use of each. Appropriate

symbols and connections aredeleted. "#" prompt dis-played after processing ofeach command.

32. End architecture

end Screen cleared. LPT gen-erator prompt messagesdisplayed. "#" promptreturned.

33. End LPT.

end "*" prompt returned.

34. Save data base whilein DUI.

save Terminal "beeps" 5 times.*, prompt returned.

35. End DUI.

end Data base save/no saveprompt. User respondsyes or no as desired. Ifno, DUI ended and "AISIMREADY prompt is displayed.If yes, terminal "beeps"5 times and then "AISIMREADY" is displayed.displayed.

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3.4.2 Analysis User Interface Test Procedure The analysis testprocedure verifies three functions:

1. that a model data base created in a Design session can betransiated by the Translate Function,

2. that the translated model can be initialized by the AnalysisUser Interface, and

3. that the Analysis User Interface commands can be success-fully exercised against the initialized model.

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FUNCTION/COMMANDS ADDITIONAL INPUTS/ TEST RESULTSEXPECTED RESULTS

1. Model Input

Use Design User Using the capabilities ofInterface the DUI, build a model des-

cribed in Appendix B. Exitthe DUI, saving the modeldata base, and return tothe AISIM Ready level.User may instead wish touse test data base Testdblprovided with the instal-lation tape. This is the

same model listed in Ap-pendix B.

2. Invoke the AnalysisUser Interface (AUI)

a p(testdbl) AUI messages are displayed.User is queried "Yes toproceed-No to abort". Userenters "Yes". Translationof model data base is per-formed. Model initializa-tion takes place. Promptissued "NO ERRORS DETECTEDIN MODEL TRANSLATION YOUMAY NOW ENTER COMMANDS"."#" prompt is also dis-played.

3. List each entity type.

i c Appropriate list of enti-I. r ties is displayed and "#"I p prompt returned after eachI v command. Check lists,I. q against Appendix B.

J I. i

4. Define Piots-user selectsentity names to plot

def r,resource name An attribute form for thedef q,queue name seiected entity type isdef u,variabie name dispiayed. Testor selects

def p,process name attribute and enters form.def i,item name A statistic form is dis-

played. User selects sta-tistic and enters form.

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*prompt is displayed.This step can be repeatedto test various combina-tions.

5. Set a breakpoint

set r,bLb2 Appropriate entity attri-bute and statistic selec-tion forms are displayed.User enters forms and re-ceives "#" prompt.

6. Initiate the simulation.

go Simulation begins. Whenbreakpoint reached, simu-lation is halted and useris allowed to enter com-mands. "#" prompt is dis-played.

7. Display selected entitystatistics

iv r,blb2 All statistics associatediv r,h2 with specified entity areiv i,msg displayed.iv stream

8. Edit one of each legalentity type

edit v,v.cs,.001 The screen is cleared andedit stream,load,7 the 4 prompt is returned.

9. Continue the simulation

go Simulation continues untilterminated. Message indi-cating normal termination

! is displayed. User is ai-

lowed to enter commands.4 prompt displayed.

10. Display the plots invarious combinations.

plot Menu of plots is dispiayed.User selects desired plots.Plots generated 4 promptdisplayed. User should re-peat for vaious plots.

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11. Save piot data anddefinitions

save def,defsetl, Definitions & plots aredefinitions saved. Screen is cleared

save piot,piotsetl, after each command and ""runi. results prompt is displayed.

12. List the saved plotsets and definition sets.

i pLot The names of each Plot setI def and definition set and

their descriptions are dis-played. A "#" prompt isdisplayed.

13. Exit Analysis UserInterface

end Clear screen and AISIMReady prompt.

14. Reenter AUI

a p(data base name) See step 2.

15. Edit selected constantsand variables to changesimuiation results.

edit v, seiect variable, See Step 8.select value

edit c, select constant,select value

16. Set piot definitions

get def,defsetl Clear screen and # prompt, returned.

17. Set a breakpoint

set r,b3b4 See step 5.

18. Cancei the breakpoint

can Breakpoint is cancelled.Ciear screen foliowed bynew "#" prompt.

19. Set infinite resources

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infres Infinite resources set.Clear screen followed bynew "#" prompt.

20. Execute simulationgo Simulation executes. Nor-

mal termination messagesdisplayed. "#" prompt dis-played.

21. Save plot results

save plot,plotset2,run Plot results saved. "*"2 results prompt displayed.

22. Exit AUI

end See step 13

3.4.3 Replot User Interface Test Procedure The Replot UserInterface Test Procedure will be used to test all Replot commandsand all capabilities of the Replot function as described in sec-tion 3.1.3

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FUNCTION/COMMANDS ADDITIONAL INPUTS/ TEST RESULTSEXPECTED RESULTS

1. Invoke the ReplotUser Interface

replot p(project name) R.plot messages and promptto continue followed by"" prompt.

2. List set types

1 def i def lists all plot def-i plot inition sets, ! plot listsi title all plot data sets, i title

lists current plot titles--none at this point. "S"prompt displayed.

3. Retrieve each plot dataset selecting plots fromeach set.

get plot,piotsetl Plot titles in each setget piot,plotset2 are displayed. User is

allowed to select specificplots which are put in thecurrent set of plots.

4. List titles

i title List of titles of currentplots. "$" prompt displayed.

5. Dispiay the plots invarious combinations

plot Current plot titles are

displayed for user selec-tion. After selection plotis generated and "$" promptis displayed.

n. Clear the current plots.

ciear Current plot informationis purged. "S" prompt isdisplayed.

7. Repeat steps 2-53eiecting new ,lots See steps 3-5

3. : elete 3 plot set

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dejete plot,plotsetl Plotset is deleted. "S"prompt is displayed.

9. Delete a definition set

delete def,defsetl Definition set is deleted."S" prompt is displayed.

10. List sets

1 def List of remaining sets ofi plot each type are displayed

followed by S prompt.

11. Exit the Repiot UserInterface.

end Screen is cleared. AISIMREADY prompt is dispiayed.

3.4.4 Hardcopy User Interface Test Procedure The Hardcopy UserInterface verifies that the data interface between the AISIM sys-

tem and the terminal is operating properly. It also verifies the

actual operation of the AISIM software. It exercises the func-tions described in section 3.1.4.

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FUNCTION/COMMANDS ADDITIONAL INPUTS/ TEST RESULTSEXPECTED RESULTS

i. Invoke tne Hardcopy UserInterface - pit singleProcess.

hcopy p(project name) Hardcopy messages andprompt to continue. Useris then prompted whetherto plot all Processes ornot. User enters no. Useris prompted for paper size.User enters paper size.User prompted to positionpaper. User positions pa-per. User prompted forProcesses to plot one at atime. Processes plotted.Return to AISIM READY lev-el when user indicates de-sire to exit.

2. Invoke the HUI-piotaii Processes.

hcopy p(project name) Hardcopy messages andprompt to continue. Useris then prompted whetherto plot all Processes ornot. User enters yes.User is prompted for papersize. User enters papersize. User prompted toposition paper. User po-sitions paper. Processesplotted. Return to AISIMReady level.

3.4.5 Library User Interface Test Procedure The four Librarysubf'inctions are Checkin, Checkout, Mergein, and Mergeout. Inthe f'.iowinq test procedure all four of these functions aretes"Pd. Test steps associated with the testing of Checkout arepr ,ceeded by an A or AA (i.e. Al, A2, A3, etc.). Mergein is pre-

a B (i.e. Bi, B2, etc.). Likewize Mergeout and Chec-,:n are preceeded with C and D respectiveiy.

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FUNCTION/COMMANDS ADDITIONAL INPUTS/ TEST RESULTSEXPECTED RESULTS

Access the LibraryFunctions

Library Enter command at the AISIMReady level. System re-sponds with LIBRARY READY.

A 1 Invoke the CheckoutFunction on the systemlibrary.

co i(system) b(testbuf) System displays verifica-tion messages and prompt.User types yes. "You maynow extract models from thelibrary" is displayed aswell as "*" prompt.

A 2 List all models in thelibrary.

. * All models in system li-brary are listed. "*"

prompt is displayed.

A 3 List the contents of aspecific model.

i commun-a For every legal entity type,all the entities of thattype are displayed followedby "do you wish to continuelisting the model?" query.User should respond yes un-til the "*" prompt is dis-

played after the Processesare listed.

A 4 Fiag a modei for beingChecked out

ext commun-a The modei is flagged forextraction. "*" promptdisplayed.

A 5 Exit the CheckoutFuncti ,n

end A message is displayed whenthe Checkout has been com-

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pieted. The user is re-turned to the LIBRARY Readylevel.

B 1 Invoke the MergeinFunction using the samebuffer with an emptydata base.

mi p(testdb) b(testbuf) Verification messaqes andi(iibrary) prompt are displayed. User

responds yes. User isasked if (s)he wants tocreate the project. Userresponds yes. Messagesare displayed indicatingno naming conflicts. Merg-in operation completes andLIBRARY READY prompt isdisplayed.

B 2 Invoke the MergeinFunction again withnaming confLicts.

mi p(testdb) b(testbuf) Verification messages andprompt displayed. Userresponds yes. This timethe system tells the userthat 7 conflicts were de-tected and asks if the us-er wishes to resoive theseconflicts. User respondsyes.

B 3 Reseive the namaingconfiicts.

(msg) rn message User responds to "option:"(chlio) rp chiio prompts and verification(controi) ig is given. Mergein opera-(esr-caii) rn cail-esr tion is begun as soon as(ihandier) rp ali naming conflicts are(req-i/o) ig resolved.(router) ig

C 1 Invoke the MergeoutFunction using the samebuffer and data base

mo p(testdb) b(testbuf) Verificaton messages andpr, -t displayed. UserenLt.s yes. User prompted

P',ge 38

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to reuse buffer. User en-ters yes. "* prompt isdisplayed.

C 2 List entities in thedata base.

i item Entities of the specifiedi var types are displayed. "*"

± process prompt is displayed.

C 3 Select entities to bemerged out.

s i,message Selected entities ares p,chiio flagged to be merged out.

C 4 Exit the MergeoutFunction

end The Mergeout operation isperformed. The user is

returned to the LIBRARYREADY level.

D 1 invoke the CheckinFunction using thesame buffer and anempty library.

ci i(test±ib) b(testbuf) Verification messages andprompt displayed. Userenters yes. User is askedif the library should becreated. User enters yes.

D 2 Describe the modelto be checked in.

(name) MODEL The user is prompted for a<number> name, a document reference<description> number and a description.

User is asked if iibraryupdate is to be permanent.user enters yes.

AA 1 Invoke the CheckoutFunction using thesame buffer andlibrary.

co i(testiib) b(testbuf) Ve rification messages andprompt dispiayed. User

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enters yes. **" promptdisplayed.

AA 2 List ail modeis in the

data base.

Names of models is the

data base are listed.

AA 3 List the contents ofthe previously checkedin modei.

i model The entities of model arelisted as in A 3 above.

AA 4 Delete the model fromthe library.

d modei The model is deleted. "*"prompt is displayed.

AA 5 Verify the deletion

with the list command.

i * Existing models are listed.

AA 6 Exit the CheckoutFunction.

end User is returned to theLIBRARY READY level.

Exit the Library level

end User is returned to theAISIM READY level.

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4. ACCEPTANCE TESTING

Acceptance testing consists of verifying all the operationalrequirements of the system. Acceptance testing for AISIM con-sists of the foregoing Installation Tests as well as the testsdescribed in the following paragraphs. The combination of thesetests provides for verification of user interface software(Installation Test Procedures) , exercise of all Library, Hard-copy, Replot, and Design functions (Installation Test Pro-cedures), verification of the Translator (Installation Tests andAcceptance Test) and verification of the AISIM simulator (Accep-tance Tests) . As can be seen the Installation Tests cover allsystem capabilities except the AISIM simulator. Its capabilitiesare fully exercised by the five Acceptance Tests. Table 1 showsa cross reference of Acceptance Tests and functional requirementsof the simulator tested by each test.

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TABLE 1

ACCEPTANCE TESTING

FUNCTIONAL REQUIREMENTS CROSS-REFERENCE

I--------------------------

Random Number Seed I I IX

Random Sampiing by Variable Dist. I I IX I x

Arithmetic Constructs x X I I X x I

Parameter Passing IX x I Ix Ix

Terminai Interface- I I I I ISimuiate for Muitipie Periods I Ix I

Statisticai Summary Percision I I x I

Queue Manipuiation I IX I x I

Resource Logic I Ix Ix I x I

Keywo rds lx xi

Protocoi Processes I x I

Resource Manipu.±ation x IX I IX I

Process Triggering I X x IX X IX I

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4.1 Acceptance Testing Procedures

Each of the five Acceptance Tests are executed using the sameprocedure. The following paragraph describes this procedure andall associated information necessary to perform the tests.

4.1.1 Locate Acceptance Tests Data Bases Included on thedeiivered system tape are five files labeled TESTDBA.DBF,TESTDBB.DBF, TESTDBC.DBF, TESTDBD.DBF, and TESTDBE.DBF. Each ofthese files are nodel data bases that contain model definitionswhich when simulated exercise a different portion of the simula-tor. The data bases TESTDBA through TESTDBE are used in tests 1through 5 respectively. When the system tape was read onto disk,these files were read onto the user ID specified in the JCL jobsteps.

4.1.2 Verify Test Data Bases To insure that no errors wereintroduced into the test d bases during tape reads, etc. dur-ing rehost, each data base should be verified. This is done byentering AISIM and executing the Analyze command specifying thetest data base to be verified. For example to verify test database TESTDBA.DBF the testor should enter:

a p(testdba)

In response the system wili issue Analysis User Interface mes-sages and prompt for a continuation indication. After the userenters "yes", the Translator wilL be called and the test database wiii be translated and initialized. The system should issuethe message:

NO ERRORS DETECTED IN MODEL TRANSLATIONYOU MAY NOW ENTER COMMANDS

If errors are detected, the test data base is not usabie. If theprompt is issued as shown above the user should aiso verify allvalues within the model. This is done by exiting the Analyzefunction and obtaining a listing of the report.data file for thatdata base. For exampie, to verify the vaiues for TESTDBA.DBF theuser shouid iist the testdba.report.data fiie. The user shouidthen do a line by line comparison of this listing to the listingprovided in Appendix C for the given data base. If any differenceis detected, the test data base is unusable. This validationstep should be repeated against each test data base.

4.1.3 Perform Test Enter the AISIM system and execute theAnalyze command specifying the test data base to be executed. Forexampie to execute test 1, test data base TESTDBA.DBF should beexecuted by issuing the anaiyze command as follows:

a p(testdba)

For tests 2-5, this command would be altered by inserting testdbh

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through testdbe respectively. When the prompt:

NO ERRORS DETECTED IN MODEL TRANSLATIONYOU MAY NOW ENTER COMMANDS

is displayed, the user should enter "go". This will execute thesimuiation and the following prompt should be displayed:

SIMULATION ENDED - NORMAL TERMINATIONYOU MAY NOW ENTER COMMANDS

Any other response indicates an error. The testor should theniist the "test".report.data file for the test just executed where"test" is rep-aced by the name of the test data base just exe-cuted. For example, tj obtain the report for Test 1 which usesTESTDBA.DBF the fiie to be listed is testdba.report.data. Thetester then perfvrms a iine by line comparison of the listingobtained in this way with the corresponding test results listingprovided in Appendix D. Any differences indicate an error. Thisstep is repeated for each test data base.

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APPENDIX A

JCL FILES FOR THE TAPES

Pan3e 45

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000 000 000 000 000 000 000 000 000 000c00 00 000000000

OOOllo4=,00c 0 0000000000000000000 000000 0 c000000000cc

00000~!-4 0 a. .00 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 00 00 0-a 0 0 . , 0 e 43 0 -00000000000 0 0 0c0 00

1 a, 0 a- I o' n I i- - - in - "1

-7 -- 777 SMtI- 0 N 0 L-- 0: 0 -W - X&

.1 u0uV- . .00 0 w 1. 0 u 0 .0R~, *c* o O.- 0 D X 40 0 in M x<0 0 -

0 n00 1 M- 0 . ' 09 1.-oCL-(' 0

)of -3e 000 -0.0 ' 0*-,- -. 0 -0- 0?12 aC; 0 -15 LA> W.SM A NS ,'ALA N a' 0L

.~L LA 0S0,SiA -0SM 0L IALA 0 S.LALx-LL MI

- o In I. 4.too V.f0 0. .50 A0. -" 2 - w -1 tn Lw t- 1 - .1 LL *O A- . L U.1 .0 ck _j w

N u 0 Q>.0 0 0 M.SULNSANOI.-0zU>S mNOSN 0 I1-

0: 7 w K ! - 0 SM wf 1.. 0K (3 SAXSI 0u 11>..L A

* ~ ~ ZM 0 -S, 0 " SM -. N I 5 5S 0 U, .4 .4 SM L 4t.5 54S .411 Nl >45 'K40 NA LA- *44.. Nr U,04 . l- t' .

rA 4,11 L.a-.. rA LAont ML LA - 0ft4f LL AC o LjS ft* t LA LASIJ n1 00ww .C-. . .G~ a T4 -St L'0 w4 *LAm.p- 3 a - *4**.4asQJ - *4

'-3 CL MS a ~ 0.LA.. DM w o-~ 'LL u CoM U'A. w 1- t" ELit

z -O m C, 0 0 '~ 1- 0 0 -. 0 A " a -4 -1'0 - >r 0 0'Zof 04 l S 0 .1 cc, LA 4 0 0 M LA1 0 4 ' 0 1 oz, LA U ML 0 4

C) U 0.r- Z t. ut 1A C3 4AL CU: -r LAo 0.oA 1-> (a LA to4 . -> *D L O O.4LA5wo m m C5) m u on. SM on ow 0 &- Co. Nu Ia SMW 0 c,5 U. 0 o ..- ' IL SM 0. '5- 45Olt,4, n.) S0 St..SM-L U t I0 0 .UML ft *-000-ICU ~ju 0tZ '- a

O 0 fu a-a"0 ', Q 0!..-,a *IS35 *3 0.S~-10Z aS - QM-S0. z S II "4 O.SL~L 0Zr5'.f 0' 0S-Z--0.4.4fCort=)r 0"0 W0--f4f :" rO~ t f aS 00

n Co.f' '- - C 0 0 0 LA l' - 5 - - M 0 0 LA - -U. S 0 0 0 I LA '- U, C -S 0 0LA u5

L. "n a4LO w ILI 7-.O 0 C0 u 5-> 0 3u uz>o" O O~ z ~ ; 0 uDOL m A z wmc . kC

-I- 1) X U . 0 0 LL w0 0 0. 5. LL w. w55 V.0 (L 0 w LAM in 0) 0 M W( 0 ZSM 0 on)

OS-~ w* t' w*>04 *>04LA" ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ u 00L M. A ctt L rff A Z S00

-~~~ Ns oll N~i55 0 * ~ .S 0l *4 X.S 4 0

Ll doLL L A OAA U A SIAA 0 A SIL A SIL

Page 46

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,~ 0b .

0U v

co oeo ooo o O O O o oO oo ~ o oo eoeo oooo-o ooeoooooS, Q o I 7In0N0a.0 -NI . A0N '0 - A. I ' A 7I 0 ' 'o A. I 0 I ,Ico I'. cll 0'lo 0 " c0 Q o 0~ 0o 0o~ 0 ' '.NNNNN o 000 'CI '0 ' '0 '0'00000

0 0 '

0 0 0 c

o!c o 0.0 o c

c' c, w " .

-L !? 0 o-l- -N -, --j i x- w L) 0c 0o - 0j 0 t

0-~~( 0n 0 0 0 -- -0 >"

LJ v2 UJ LJ10Q'W 0a? v2 c 4-00 N 04 N

"4 0 it .411 L ??O. ..-I ~ ~ t wj . Q, NO. o I. -. k NCL-- . I -1 .4 .4(

-000.0 m c .J 00 . ,C =0S 0 )( 0 1 L 0 tn *0w _j (A .. m v - tm - w0 0 oO 4 -00

WtnI'c,~ 0 tn I~JI 005- 0K C3JIJ 0 ~o) [L 0

L)4O.U~~ %n 4c- m00. -cn. -' 01. - L 0 . -

*- tZ oI . 4 ' O " ~ sf .n~I0 0 a-1.~' 5,0-r ' 00 L)40 L> 5 r -K 4o LLoO -o T w.0 ' -r 4 ww C *

ft: Qi0-u a Z I.I.030 0 D LI 0 - If I l . I. 1 tS.0C cio 0- 1 Ic;0m i ii1

ut.f o' 0 lZI 4-I 0" u0 10I -f o0 1 " -4-f u, t-' I -- fta00l o 0

M o fm M DO o01 5.l os- m o0 m- -c 0 .IL o

D - L Oo L) rco0 0 0, 3 -0IJ u 0% roro 3 o Lo o000 a . o 0c 0 a.o0

o 00 L) I z o00

0 IL

A O i Page 47

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aa0 -'a a~a~ aa a00 aaa ooo 4,Q ooa~ oo o00 000 a0 ooooooom

CI a 0 0 oa00 0 0 0

In 0 C 0 0 0n(

C,~~~~~~' -j 'C C , C - C C- CC C C

CL aa a, M Ui Iti 'TtC- U, lItC oC w o WC I- 0 CW 0. oC C

94 m o xu.'O a UJCI 0L UJC1 0e ,l - UCC ~ I o CC Uo oo 3ii CU , t 4 U Mt v) ox 4 CU , A "-4~ o ~ IiCA o ~ In UJ N 44 CC tPC 04 WC Ut

;J -JN. . - I-. .4 N .i -J N 2 4 9 L! w.-. V:- 421 ICn~'U C I. >10 11 - aO . ul n0 . I- M a. I r UtC.~ . 704 - , Q

-~~I I, mA). iC aCC *U. IAo~tI. t/OO LJ. jCC- 0v - t In l:alC L a-.4- atUC L4. vC In... tut

* ~ ~~~~~~~~~~~~~~ CC. 'C C C C C ~ f. U C A U O4 C C.~ a0 , C~

o Cu *.- -J0-it. - - .t. "j4 0 -U 9- In- 1. I, 11 - In T w w -La tw U) Z e Cj L4 0III> N 0

o . a u f-t a mUt -L * a a w. - " -CCU - * a *lJU- ChueaC CCt.... C AJ U.IC l C UtI . Cr Cl -tA .I a

4~ ~~~~~~~~~~ .ICC -r 4 ftU C-I -r 4 fU C CC - -- U r ~ 1ICtC-~ ~~~~~~~~ ~ ~~~ w .CCCt xt iI. U.C tC . tI - Cf .0I C . Cf . 0 -U U ' I r t . 0

-~~ 5-u z:lC .. ~t. C-U. 1~Cl .). ~ .t z ~ . l.- C t 7,'ta,.DlZ-,uCT

*tl*L) 4 u < 4u <. 4u U- 1.a- ft n r3 r) a ( CC a C a CL 0o 0 M. 0 a* a M 0 0L a. 0c0 0 0 EL 0 0 0 ftC

t u L 2 In Ul a 0 14 &M co IA Ln r 0 C 0 Ut (A coo a ktu.1- 0.-f -

tC~ I N U" -t Ci L-' NU" 4 NU-UtftC- .,

(n In.''. Eni A i

"II

~ -.Page 48

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0 00 00 0000 00 00 00 0 a- 0 N 80 -0-'. ) '0 -)~' ~ U 0 C)O* N . U~.CNC)0 j ON 2 2 U ) .0 N NN00 N N~ Nt LIN N) N )

N *. ) f3C3C)C)C)C)C)C)C)0~ 00~0'0~0'0'0'0'0 00 00 0 0 0C CC-- Oo 0000-o 0 Q O Cc a', 00o ... ccNJNN N~eNNN NN

C' L 00000 000 0 0000 00 0 0 000 0 0000 0 000000000

0 0 Q0 00 00 0 0 0

-~L V0- U - a )Va -.) Na.) VIn

Ia '3Ia I - a Ia riz t z t-. t - z f

-~' a~ J- LJ L U ~ U

t n 0 V)-0 0 N -%C 0 -- 0 N0AV

-t a- V:o.i tm 0A -,1 0' a- .V! .

-LU 0 u~ t L-Ul - 0 LU3 0

LuN - aL 4 a 'I LU a :r V) ~ a aW c

C) 1. In N C) 13 4x N 411u 411 N I t13u 4T0.u1U -- .fCL -0U L N0U ~ Lm uC It) U14 - (11 3- Ey, afl . -1-Uk

-0. w -0. a:, 01 -. 0 CL -. Ck- L u

X0.0aa..1 0 0cL.- 0- -(j )LL 0 (.L.N C

-W u0 .9a( Q.1 'La d) V,1 EUS a-..00In..CL u

C, I U -3 u ( ftCJ~ tu ftU ,a.C 0.:ftCLUjUj-.. a aa4D' -4 W0aIS Za -j)- .

C a -aa wO.O m S ' r .. ua00~ 11, -. W0O a *aw0.a) U a- Wa.' a- Ma-n.. a- D*LU-anft.7

-' a 0 j I 0 0 Q' uO at) - ) C a QO U)3 Z a N0 u

M -~CU C3 41 0 0.-0 U at 4 1L 0 0 CL 0 (n C)-r 4 CLan -La C 0' C3 V' ar 0cooL. a0 0 tn Li L I- N a 0 V) 0001- a a Ca 0 0.Li

Zn-~~ ~ C a.aa a-. Z.a)'.a.g m)I...,aa-W ;94..-aaLa( ?-aaaa'. aaN aI3.~f aaT.I~~aaN.f C o.-~rraN~f

(1v,:.oaI0Zoaa~ ~ ~~~~~~~% z;!.-O u.a - a1-0 ,oa. Lla.aOa.,0-~Z-L~iItaa a)frai )Z a D'n 4~a z a 114' OU U

In000 0, 0. 0 0 0 o 3 0 0 a 00t 000 0 5' t 0 0 0 a ItoO 0 V0 ro o C t

aPag 49

0-a.-(1.0 -N -A

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00000000000~04 0 1 10 .0 N a~ 0 0.40 0 0000000"000 0 00000000 0 00 0 0 0 0 00 0C 0000 0 0 0 0 0 0000000000000 0 000000000

.0

Cl 00

X 10

a a-- 0

- 0 10* 0

- * 0 0

- 0

0 -

U - "4II, -

nOV) U N10

0 10

10.c~ -- 4

'~'o' r~44 ~

* U <p (4

.~~aLlJ IQI

10O-~.

* - IC' U

* :-

- -in

* 1. - I.0 '1 - IA I -,

- *' r, .. L~(k (.1

U in - III ~J

10 U 0 0 4 C' 10

000 0 11.0

LU'IC (fl C)

* I 7'. 1 ~ U i~hJtflVl'.) 10

* -- 101.110 10

I I'~ . . ~

Page 50

'4 _____

-. ~ -~--

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-' 0, 9 C9,

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Page 61: AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY for the PDS's and IEBGENER for the sequential data sets. In order to make unloading

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Page 62: AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY for the PDS's and IEBGENER for the sequential data sets. In order to make unloading

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Page 63: AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY for the PDS's and IEBGENER for the sequential data sets. In order to make unloading

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Page 64: AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY for the PDS's and IEBGENER for the sequential data sets. In order to make unloading

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Page 69: AD-A135 760 (AUTOMATED INTERACTIVE SIMULATION …IBM utilities used to create the tapes were IEBCOPY for the PDS's and IEBGENER for the sequential data sets. In order to make unloading

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APPENDIX B

MODEL DESCRIPTION FOR INSTALLATION TESTING SUPPORT

Page 72

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AD-A135 760 AISIM (AUTOMATED INTERACTIVE SIMULATION MODEL IINSTALLATION AND ACCEPTANC..(U) HUGHES AIRCRAFT COFULLERTON CA GROUND SYSTEMS GROUP W AUSTELL ET AL,UNCLASSIFIED 26 FEB 8 2 ESD-TR _83-_216 Fig9628-79-_C-0D153 F/G 9/2 NLIIlllll

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APPENDIX C

MODEL DESCRIPTIONS FOR ACCEPTANCE TESTING SUPPORT

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APPENDIX C

TEST 1 MODEL - File Verification

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APPENDIX C

TEST 2 MODEL - File verification

TESTDBB.DBF Listing

Page 104

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APPENDIX C

TEST 3 MODEL - File Verification

TESTDBC.DBF Listing

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APPDNDIX C

TEST 4 MODEL - File Verification

TESTDBD.DBF Listing

Page 118

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APPENDIX C

TEST 5 MODEL - File Verification

TESTDBE.DBF Listing

Page 137

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APPENDIX D

Expected Results for Acceptance Tests 1-5

j Page 150

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APPENDIX D

TEST 1 Statistics - Results Verification for

TESTDBA. DRF

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APPENDIX D

TEST 2 Statistics - Results Verification for

TESTDBB.DBF

Page 163

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APPENDIX D

TEST 3 Statistics - Results Verification for

TESTDBC.DBF

Page 174

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APPENDIX D

TEST 4 Statistics - Results Verification for

TESTDBD. DBF

r Page 183

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7 AA3 N76 ASM (AUTOMATED INTRACTVE

SMULATONMOELAT NSTALLATION AND ACCEPTARC (U HUGHES A RCRA ICO 3

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APPENDIX D

TEST 5 Statistics - Resuits Verification for

TESTDBE. DBF

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