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Conference vmsdev::alpha_verification

Title:Alpha Verification conference
Notice:QTV Bug Chasers! Practicing the fine art of defect detection, reporting and reproduction...
Moderator:STAR::JFRAZIER
Created:Wed Mar 20 1991
Last Modified:Tue Jun 03 1997
Last Successful Update:Fri Jun 06 1997
Number of topics:487
Total number of notes:2459

481.0. "Memory Channel Tima Kit" by EVMS::GLATFELTER () Wed Feb 12 1997 09:26

    
    	This note will be used for Memory Channel OpenVMS V7.1    
        Tima Kit Plans and Reports.
    
    	-Glenn
    
T.RTitleUserPersonal
Name
DateLines
481.1MC V1.5 Adapter Qual ReportEVMS::GLATFELTERWed Feb 12 1997 09:2855
  
         ___ ___ ___ ___ ___ ___ ___ TM            
        |   |   |   |   |   |   |   |           OpenVMS QUALIFICATION  
        | d | i | g | i | t | a | l |                  ~QTV~
        |___|___|___|___|___|___|___|             TEST & VALIDATION       
                                               
                                              INTEROFFICE :: MEMORANDUM  
                                               
        To: Ray Boucher                          Date: 11-Feb-1997
                                                 From: Glenn Glatfelter
        cc: Pete Michaud                          Loc: ZKO3-4/4Z05 
            Mick Konrad                            Ms: /S23
            Curt Spacht                           Ext: 381-1340
            Tim Beaudin                          Enet: EVMS::GLATFELTER
                                                 File: mc_v1_5_qual.report


        Subject: QTV Memory Channel V1.5 Adapter Qualification

        QTV has completed the MC V1.5 Adapter Qualification on a mixed
        architecture cluster for OpenVMS Alpha and VAX V7.1 (X6C7-SSB,
        X6NO-SSB).  There were no system crashes or significant errors
        logged specifically related to the MC V1.5 Adapters during the
        duration testing (CTM, SITP). One problem was uncovered by an mc
        regression test (QAR 732), which has a planned fix. Another problem
        was found during failover/fault insertion (QAR 709), which has a 
        fix planned for the MC Tima Kit. A low level QAR was entered relating
        to messaging (QAR 708).
  
        Since there were no adverse failures or regressions related to 
        the MC V1.5 Adapters during the qualification period, QTV 
        recommends that the MC V1.5 Adapter be a supported option.

	Configurations Tested:   2 Hub/2 Adapter  2 MC nodes
                                 1 Hub/1 Adapter  4 MC nodes
                                 0 Hub/1 Adapter  2 MC nodes

        Qualification Testing:   - CTM 48 Hours
                                 - SITP 24 Hours
                                 - Faulty Towers + CTM
                                 - Failover/Fault Insertion
                                 - MC Regression Test

        EVMS-RAVEN QARs Logged:
 
	708 OP L MC_GENERAL 30-JAN X6C7-SSB  NONAME MESSAGE DURING MCSHOW WITH
                                             VIRTUAL HUB.
	709 OP H MC_GENERAL 30-JAN X6C7-SSB  MC VIRTUAL HUB DOES NOT REJOIN
                                             OVER PMA0 AFTER CABLE CONNECT/
                                             DISCONNECT.
        732 CL H MC_GENERAL 5-FEB X6C7-SSB   INVEXCEPTN CRASH DURING CREATE
                                             CREATE MESSAGE CHANNEL TEST

    
    
481.2MC OpenVMS V7.1 TIMA Kit Validation Plan (TXT)EVMS::GLATFELTERMon Feb 24 1997 10:53502
 















           OpenVMS V7.1 Memory Channel TIMA Kit
           Validation Plan






           Glenn Glatfelter

           OpenVMS Quality Test & Validation



           20-February-1997



           Reviewers/Approvers:

           Mick Konrad          QTV Engineering Manager

           Ray Boucher          OpenVMS Memory Channel Project Leader

           Glenn Glatfelter     QTV Memory Channel Project Leader

           Tim Beaudin          QTV Engineer

           Revision History:

              X1.0 Initial Version 12-Feb-1997
              X1.0 Initial Review 12-Feb-1997
              V1.0 Updated Version with Review Comments 20-Feb-1997










           Digital Equipment Corporation
           Maynard, Massachusetts

 


 






           1  Goal

           The goal of this effort is to target test the outstanding OpenVMS
           V7.1 Memory Channel QARS from the OpenVMS V7.1 TIMA Kit release,
           identify must fix defects, and make a statement of quality relative
           to the qual- ity goals and expectations for this project.

           Finding defects is planned because defects exist even in the best
           code. It is estimated that there are 84 defects introduced by this
           project, and the goal of this plan is to identify 9 of these
           defects. This num- ber was determined by summing the following
           estimations:

              - 09 defects generated by fixing 28 QARs in the TIMA Kit.
              - 65 defects remaining from OpenVMS V7.1 code reviews.
              - 10 latent defects not found in OpenVMS V7.1

           In general, 1 defect will be generated for every 3 defects fixed.
           If 28 QARs are planned to be fixed, then 9 additional defects can
           be ex- pected. Initial code reviews of the OpenVMS V7.1 release by
           the MC Team found a high rate of defects through inspection. These
           defects are still present and were not addressed due to time
           constraints. It is esti- mated that there are 10 latent defects
           still present in the code, based on the total number of defects
           introduced by this project. It is rec- ommended that the majority
           of the defects found by code inspection be fixed through the code
           review process therefore, reducing the vali- dation effort. It is
           not a goal of this project to address the 65 code review or 10
           latent defects.

           2  Problem Statement

           Memory Channel (MC) V1.0 was successfully validated and qualified
           for shipment with OpenVMS V7.1 Release. However, as with any
           release there are a number of remaining defects ranging from High
           to Low that need to be addressed. These QARs have been identified
           and moved for the EVMS- GRYPHON database to the EVMS-RAVEN QAR
           database. The release mecha- nism for selected fixed software
           images is by an OpenVMS TIMA Kit.

           The MC Development Team has identified 28 QAR's in the EVMS-RAVEN
           database which have been selected to be addressed for the OpenVMS
           V7.1 Memory Channel TIMA Kit release. These QARs were organized in
           a a prioritized list, grouped together by similar defect
           characterizations.

              - Initialization/Termination
              - Corruption: Queue, Disk, and Packet
              - SYSGEN Parameter Robustness
              - Messages and Errorlog Entries
              - Performance
              - System Programming Interface (SPI)

           From the list above, specific QARs were selected to be addressed
           for the OpenVMS V7.1 MC TIMA Kit. These QARs are listed are
           prioritized below with the assigned MC Team member and a brief
           description of the problem. These are the only QARs that will be
           target tested by this project.


                                                                             1

 






           ___________________________________________________________________

           Table_1:__TIMA_Kit_QARs____________________________________________

           QAR_____PRI____DRI________DURATIONDESCRIPTION______________________

           *****   *****  ********   *****  *** INITIALIZATION And TERMINATION
                                            ***

           174     P0     Fraser     2d     HUB TIMEOUT DETECTED, CONTINUOUS 
                                            REINITIALIZATION

           225     P0     Fraser     2d     MCSWINIT INFINITE LOOP

           234     P0     Fraser     1d     INVEXCEPTN BOOTING V1.5 MC CARDS ON
                                            SABLE

           242     P0     Fraser     2d     STREAMING MC LOGIC REPEATS LONGWORD
                                            TO PAGE BOUNDARY

           318     P0     Fraser     2d     SYSTEM HANG WITH FAULTY TOWERS 
                                            W/PORT CRASHES

           325     P0     Fraser     2d     DUAL HUB POWER CYCLE TEST PROBLEM
                                            WITH PMA0 FAILOVER

           543     P0     Fraser     2d     MC NODE LOOPS W/NODE STATE RESPONSES
                                            MISSING DURING BOOT

           606     P0     Fraser     2d     MC VIRTUAL HUB EXCEEDS INIT RETRIES
                                            DURING SIMULTANEOUS BOOT

           240     P1     Fraser     1d     RAWHIDE HANG WITH V1.5 MC cards

           241     P1     Fraser     2d     PMDRIVER INVEXCEPTN

           269     P1     Fraser     2d     PKA DDB ON THE RSB QUEUE

           316     P1     Fraser     2d     INVEXCEPTN IN TERMINATION TEST - 
                                            DUAL ADAPTER CLUSTER

           400     P1     Fraser     2d     BATCHED MC_CRASH ENDED UP WITH MCA0
                                            OFFLINE ON ALL NODES

           183     P2     Fraser     1d     CRASH WHEN CABLE ON HUB SWAPPED

           323     P2     Fraser     1d     SWAPPING CABLES ON MC HUB RESULTS
                                            IN MC OFFLINE

           324     P2     Fraser     1d     (RE-)CONNECTING A MC CABLE SOMETIMES
                                            LEAVES MCA0 OFFLINE

           *****   *****  ********   ***    *** ERRORLOG And MESSAGES ***

           157     P1     Astorga    1d     PMA0 REINIT MESSAGES DURING UPGRADE
                                            QUESTION

           188     P1     Astorga    1d     MC CONSOLE FORCED LINEFEEDS WITH 
                                            TERM SET TO NOBROADCAST

           189     P1     Astorga    1d     UNRECOGNIZED PORTION OF ERRLOG 
                                            ENTRY

           541     P1     Astorga    1d     PMDRIVER DEVATTN ERRORLOGS IN 
                                            MCDRIVER FORMAT

           544     P1     Astorga    1d     MEMORY CHANNEL ERRORS-ALL NODES

           548     P1     Astorga    1d     MCA0 ERRORS BEING LOGGED AS PMA0
                                            ERRORS?

           036     P2     Astorga    1d     MC & PM CONSOLE MESSAGES NEED TIME
                                            STAMPS

           2

 





           ___________________________________________________________________

           Table_1_(Cont.):__TIMA_Kit_QARs____________________________________

           QAR_____PRI____DRI________DURATIONDESCRIPTION______________________

           158     P2     Astorga    1d     PM AND MC DRIVER CONSOLE MESSAGE 
                                            OUTPUT NOT CONSISTENT

           589     P2     Astorga    1d     MEMORY CHANNEL ERRORS-ALL NODES

           *****   *****  ********   *****  *** SYSGEN PARAMETERS ***

           148     P1     Schuetz    1d     SHOW DEV MCA0, PDT ERROR COUNT 
                                            PROBLEM

           156     P1     Schuetz    1d     INVEXCEPTN WHEN MC_SERVICES_P9 <> ON
                                            CLUSTER

           237     P1     Schuetz    1d     MC_SERVICES_P0 DID NOT WORK AS AD-
           _________________________________VERTIZED__________________________

           2.1  Quality Goals

           To be consistent between the OpenVMS V7.1 SSB Release and the MC
           V7.1 TIMA Kit, the same quality goals defined for the OpenVMS V7.1
           validation will be considered for this project. The quality goals
           considered most important for this project are integrity,
           reliability, efficiency, and correctness.

           3  Tactics

           1. Identified QARs will be grouped by characterization then
              assigned to MC Development Team members by the MC Project
              Leader.

           2. Each MC Team member will then review their assigned QARs for
              pri- ority and then selected QARS will be investigated for
              potential fix or possible closure.

           3. QTV will target test a fix for a QAR on a priority basis as 
              assigned by the MC Project Leader.

           4. A target test will consist of setting up the failing condition
              us- ing the information and configuration specified in the QAR.
              In ad- dition, the latest firmware, baselevel, and MC code will
              be uti- lized to reflect updates to the MC TIMA Kit support.
              Specifically this will include MC V1.5 Adapter Cards.

           5. When appropriate and QTV and the MC Team are in agreement, it
              may be necessary to fall back to a previous level of MC Adapter,
              Line Card, Hub, or OpenVMS Alpha baselevel to exactly reproduce
              a de- fect failing condition or to ensure a particular fix is
              working.

           6. A target test (QAR) will be considered closed (fixed): if the
              fail- ing condition cannot be reproduced; a specific code fix
              check-in fixes the problem; reassignment of QAR to another
              component; no sup- porting documentation or images ; a
              reasonable explanation with sup- porting evidence; or an upgrade
              to hardware or firmware components that fixes the problem.

                                                                             3

 






           7. A qualification will be done when all specified QARs are consid-
              ered fixed. The qualification will consist of: CTM, SITP, UETP,
              Faulty Towers, Failover/Fault-Insertion and the MC Regression
              Test.

           8. The following interation times will be used for fault insertion
              test- ing during qualification:

           FAULTY TOWERS        Daytime 2Hr/Test  15 Min. Iterations

                                Overnight/WeekEnd 1 Hour Iterations

           MC_CRASH_COMMUNITY   Overnight         1 Hour Iterations

           FORCED SSRVEXCEPTN   24, 48 Hour       1 Hour Iterations.

           4  Deliverables

           The following is a list of deliverables:

           1. Status Reports as needed.

           2. Target Test Results

           3. Statement of Quality

           4. EVMS-RAVEN Database QAR Reporting

           5  Schedule

           Since target testing the QARs will be assigned by the OpenVMS MC
           Project Leader, it is difficult to schedule specific QAR testing
           dates. This project is expected to begin February 10 and must be
           completed by March 31.
           ___________________________________________________________________

           Table_2:__Schedule_________________________________________________

           Task__________________________________Start___Finish___Status______

           Validation Plan                       02-Jan  12-Feb   Done

           Validation Plan Review                12-Feb  20-Feb   Done

           QAR Target Tests                      10-Feb  21-Mar   Started[1]

           Qualification                         21-Mar  28-Mar   Not Started
           ___________________________________________________________________
           [1]Refer to Table 1 - TIMA Kit QARs
           ___________________________________________________________________

           6  Staffing

           Staffing for this project will require one QTV engineer full time
           with support of the OpenVMS Memory Channel Development Team.

           QTV:

           Glenn Glatfelter   EVMS::GLATFELTER  100%   QTV Project Leader

           MC Development Team:

           Ray Boucher        STAR::BOUCHER     100%   Project Leader

           4

 







           Juan Astorga       STAR::ASTORGA     50%

           James Fraser       STAR::FRASER      100%

           Paul Harter        STAR::HARTER             Consulting as Needed

           Phil Norwich       STAR::NORWICH     50%

           Chris Schuetz      STAR::SCHUETZ     100%   Contractor

           Mike Wolinski      STAR::MWOLINSKI   100%   Until March 1997

           7  Hardware Requirements

           The hardware requirements for this project are listed in the
           follow- ing table which shows the item, quantity required and
           available, and the group responsible for supplying the item. If an
           item is required and no source is indicated, it will be listed the
           project dependen- cies and risks section of this document. In
           addition to this list, it may be necessary to borrow specific
           hardware from OpenVMS MC Devel- opment to configure required MC
           configurations. This project requires a minimum of 4 V1.5 MC
           Adapter modules.
           ___________________________________________________________________

           Table_3:__Hardware_Requirements____________________________________

           Item________________________Qty_ReqQty_AvSource____________________

           AlphaServer 1000 4/233      01    01     QTV

           AlphaServer 2100 4/200      01    01     QTV

           AlphaServer 4100 5/300      01    01     QTV

           AlphaServer 2100 5/300      01    01     QTV

           AlphaServer 1000A 5/333     01    01     QTV

           DEC3000-500                 01    01     QTV

           VAX3100                     01    01     QTV

           CCMAA PCI V1.0 Adapter      04    04     MC Dev.

           CCMAA PCI V1.5 Adapter      04    04     QTV

           CCMAA Hub                   02    02     QTV

           CCMLA_LineCard______________04____04_____QTV_______________________

           8  Dependencies

           The following factors may prevent or delay completion of scheduled
           tasks:

           1. Time Constraint - QAR fixes are expected to be completed by
              March 31 timeframe to be in included in the TIMA Kit. QTV will
              target test fixes based on a priority basis determined by the MC
              Development Team.

           2. Staffing - The MC Development Team has had a significant
              turnover in staffing. The MC Development Project Leader has
              asked that the present team members choose QARs to investigate
              and fix in which they are best able to meet the time constraint.

                                                                             5

 






           3. Defect Reproducibility - The failing condition (ie. corruption)
              may need to be recreated prior to implementing a fix and this
              may re- quire an unknown amount of time. In these situations QTV
              will at- tempt to recreate the failing condition for 2 working
              days or a week- end run depending on estimated reproducabilty .
              If unable to recre- ate the failing condition, it will be
              suggested the QAR be closed as unreproducable.

           4. QTV will be depend on Chris Schuetz to address the defects that
              he found during the GRYPHON validation period in a parallel
              target test effort.

           5. This project will depend on a minimum of quanity of 4 V1.5 MC
              Adapter cards owned by QTV and 4 V1.0 MC Adapter cards provided
              by MC Development.

           9  Non-Goals

           The following areas will not be addressed for this project:

           1. This project will not address issues or validate added or
              modified MC features that are not directly related to the
              specific QAR target testing.

           2. This project will not address issues or validate baselevels of
              the RAVEN Project.

              This project will not address modifications to the existing QTV
           3. MC Community testbed configurations with the exception of the
              upgraded MC V1.5 Adapter Cards.

           4. It is a non-goal of this project to test fixes for latent
              defects or the remaining code review defects identified in
              GRYPHON release.























           6
    
481.3MC OpenVMS V7.1 TIMA Kit Validation Plan (PS)EVMS::GLATFELTERMon Feb 24 1997 10:551068
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  /num exch def  /nam exch def
  /namstr nam cvsstr cvs def
  /newlen namstr length num sub def
  namstr num newlen getinterval  cvn
}def
%		ROUTINES TO HANDLE PACKING/UNPACKING NUMBERS
/PackHW {	% <target> <pos> <num> PackHW --> <new target>
  /num exch def  /pos exch def  /target exch def
  num 16#0000FFFF and 1 pos sub 16 mul bitshift  target or
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/PackByte {	% <target> <pos> <num> PackByte --> <new target>
  /num exch def  /pos exch def  /target exch def
  num 16#000000FF and 3 pos sub 8 mul bitshift   target or
}def
/UnpkHW {	%  <pos> <num> UnpkHW --> <unpacked value>
  /num exch def  /pos exch def
  num 1 pos sub -16 mul bitshift 16#0000FFFF and
  dup 16#00007FFF gt {16#00010000 sub} if
}def
/UnpkByte {	%  <pos> <num> UnpkByte --> <unpacked value>
  /num exch def  /pos exch def
  num 3 pos sub -8 mul bitshift 16#000000FF and
  dup 16#0000007F gt {16#00000100 sub} if
}def
%
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    dup /x-size exch def cvi /x-int exch def
                % calc decimal remainder, mul x 1000, round
    x-size x-int sub 1000 mul round cvi /remainder exch def
                % see how we scale...
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                % scale isomorphically
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    } ifelse
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%
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%
/PXLBuildCharDict 17 dict def
/CMEncodingArray 256 array def
0 1 255 {CMEncodingArray exch dup cvsstr cvs cvn put} for
/RasterConvert {RasterScaleFactor div}def
/TransformBBox {
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    BB-urx RasterConvert BB-ury RasterConvert ]
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/RunLengthToRasters {
  % none yet
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/GenerateRasters {			% GENERATE RASTERS FOR "IMAGEMASK"
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%
/int-dict-name {int (-dict) concatnam}def
/int-dict {int (-dict) concatnam cvx load}def
%
/DefinePXLFont {
	%  <int-font-name><ext-font-name><pt-sz(pix)><PXL mag><num-chars>...
	%  ...[llx lly urx ury]<newfont-fg>DefinePXLFont
  /newfont exch def  /bb exch def      /num exch def  /psz exch def
  /dsz exch def      /pxlmag exch def  /ext exch def  /int exch def
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  newfont not {
    int-dict-name 13 dict def
    int-dict begin
      /FontType 3 def  /FontMatrix [ 1 dsz div 0 0 1 dsz div 0 0 ] def
      /FontBBox bb TransformBBox def  /Encoding CMEncodingArray def
      /CharDict 1 dict def  CharDict begin  /Char-Info num array def  end
      /BuildChar {
        PXLBuildCharDict begin
          /char exch def  /fontdict exch def
          fontdict /CharDict get /Char-Info get char get aload pop
          /rasters exch def  /PackedWord1 exch def
          0 PackedWord1 UnpkHW 16#7FFF ne {
	    /PackedWord2 exch def  /wx 0 PackedWord1 UnpkHW def
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	  }{ %else
	    /PackedWord2 exch def  /PackedWord3 exch def /PackedWord4 exch def
            /wx 1 PackedWord1 UnpkHW def    /rows 0 PackedWord2 UnpkHW def
            /cols 1 PackedWord2 UnpkHW def  /llx 0 PackedWord3 UnpkHW def
            /lly 1 PackedWord3 UnpkHW def   /urx 0 PackedWord4 UnpkHW def
            /ury 1 PackedWord4 UnpkHW def
          } ifelse
          rows 0 lt {
	    /rows rows neg def /runlength 1 def
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	    /runlength 0 def
	  } ifelse
          wx 0
          llx RasterConvert lly RasterConvert 
          urx RasterConvert ury RasterConvert setcachedevice
          rows 0 ne {
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	      cols rows true  RasterScaleFactor 
              0 0 RasterScaleFactor neg llx .5 add neg ury .5 add 
              tempmatrix astore  GenerateRasters imagemask
            grestore
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    fnam int-dict definefont pop 
  } if 
  int-dict-name fnam findfont psz scalefont def
  currentdict int [ int-dict /setfont cvx ] cvx put
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/PXLF { true  DefinePXLFont}def	% SIGNAL THAT FONT ALREADY LOADED
/PXLNF {false  DefinePXLFont}def	% SIGNAL THAT FONT NOT ALREADY LOADED
%
/PXLC {	% <int-font-name><code><wx><llx><lly><urx><ury>...
	% ...<rows><cols><runlength><rasters>PXLC
  /rasters exch def  /runlength exch def  /cols exch def  /rows exch def
  /ury exch def      /urx exch def        /lly exch def   /llx exch def
  /wx exch def       /code exch def       /int exch def
  % SEE IF LONG OR SHORT FORMAT IS REQUIRED
  true cols CKSZ rows CKSZ ury CKSZ urx CKSZ lly CKSZ llx CKSZ 
  TackRunLengthToRows {
    int-dict /CharDict get /Char-Info get code 
    [ 0 0 llx PackByte 1 lly PackByte 2 urx PackByte 3 ury PackByte
      0 0 wx PackHW 2 rows PackByte 3 cols PackByte rasters ] put
  }{ %else
    int-dict /CharDict get /Char-Info get code 
    [ 0 0 urx PackHW 1 ury PackHW   0 0 llx PackHW 1 lly PackHW
      0 0 rows PackHW 1 cols PackHW 0 0 16#7FFF PackHW 1 wx PackHW rasters ] put
  } ifelse
}def
%
/CKSZ {abs 127 le and}def
/TackRunLengthToRows {runlength 0 ne {/rows rows neg def} if}def
%
/PLOTC {
  % <wx><dsz><psz><llx><lly><urx><ury><rows><cols><runlength><rasters>PLOTC
  /rasters exch def  /runlength exch def  /cols exch def  /rows exch def
  /ury exch def      /urx exch def        /lly exch def   /llx exch def
  /psz exch def      /dsz exch def        /wx exch def
  % "PLOT" A CHARACTER'S RASTER PATTERN
  rows 0 ne {
    gsave
      currentpoint translate  psz dsz div dup scale
      cols rows true  RasterScaleFactor 0 0 RasterScaleFactor 
      neg llx .5 add neg ury .5 add  tempmatrix astore
      GenerateRasters imagemask
    grestore
  } if
  wx x
}def
%
% set color routine: Color# SC
/SC {ColorPalette exch get 1.0 setcustomcolor}bind def
%
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