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$0 [RUN PROCESSOR FOR [THE BASIC LANGUAGE [SYSTEM $1 NOP [X5 USED AS A TEMP [X4 PROCESSOR STACK,LAST FILLED [X3 DATA STACK,LAST FILLED SET 3 1767 SET 4 1766 [ LDA [6 1750+10 [U|FB2[FD3] BCL i 6777 ROR 6 ADD 1J+10 [=RDC STA 1J+10 STC 1F+20 NOP [17 [ [ 3A=1770 [PC1,PROGRAM COUNTER BLOCK 3B=1771 [PC2,PROGRAM COUNTER WORD [ [LOCATION 20 $20 [BEGIN CYCLE #4A LDA 3A [BLOCK,PC1 COM ADA i #1J 1000 [PROGRAM BIC AZE i JMP p+13 [CORRECT BLOCK IS IN CORE LDA i 6|0 [Q6|0 ADD 3A [BLOCK,PC1 STC p+3 UMB 9Z [P3 RDC 0 [READ PROGRAM BLOCK LDA 3A [PC1 STC 1J [SET NEW BIC LDA i 3000 [Q6 BASE ADDR ADD 3B [PC2 STC 4H+12 [ [ [INCREMENT PC [ [ CLR [LINK=0 LDA i #4H 1 [CONSTANT ADM 3B [WORD,PC2 ROL i 4 ROR 4 STC 3B [PC2 LAM 3A [PC1 UMB 9Z [P3 LDA 0 [CURRENT INSTR ADDRESS [ [EXIT SWITCH [ NOP [ [ APO i JMP p+10 [JMP=>NOT SL# [ [CSL PROCESSING [ COM STA 2B [CSL SRO 1750+22 [TRACE INDICATOR JMP 6O [TRACE JMP 4E [NO TRACE-TEST KST [ ROL 1 APO i JMP p+15 [NOT TAG [ [TAG PROCESSING [ STC p+3 [SAVE JMP 3D [PUSH PS LDA i 0 ROR 1 BCL i 6000 UMB 9X [P1 STA 4 [B11=0=>NO DS PTR LDA i 5400 JMP 3F-4 [STA i 4,RESET PS PTR,4E [ ROL 1 APO i JMP 3F [JMP=>OPERATOR [ [OPERAND PROCESSING [ ROR 2 BCL i [REMOVE INSTR CODE 7000 [ACC=CODE FOR DATA LOCATION JMP 4B [CONVERT TO BLOCK-WORD FORM SET 5 1 [SAVE PTR TEMPORARILY JMP 3D [PUSH PROCESSOR STACK [4 PTS TO THE TOP OF THE PROCESSOR STACK LDA 5 [WORD UMB 9X [P1 STA 4 [>0=>NO DS-PTR STA i 4 [SET WORD LDA i 5 [BLOCK ADA i 11 [SYMBOL TABLE ALLOTMENT-1 BCO i 0777 ADD 2D [U|FB2[FD3] BCL i 7000 STA i 4 SET 4 [RESTORE 4 1H [ [EXIT SWITCH 2 JMP 4E [TEST FOR KST [ [ [ OPERATOR PROCESSING [ [ #3F ROR 1 ADA i 4D [TABLE BASE STA 1 SCR 7 SAE i 0017 JMP 6R [ILLEGAL OP CODE UMB 9Y [P2 LDA 1 STC p+3 LDA i 1 STC p+2 0 [OPERATOR JUMP 1 0 [OPERATOR JUMP 2 [ [ [ACC=LVI OR OPERAND CODE TO BE DECODED #4F 0 [TEMP 0 [W1 WORD COUNT 7777 0 [W0 0 [TEMP 0 [BLOCK COUNT [ALGORITHM: SUBTRACT 10 BLOCKS AS LONG AS POSSIBLE USING [DOUBLE WORD ARITH. [THEN FINISH USING 1 BLOCK DECREMENTS USING SINGLE WORD ARITH #4B STC 4F ADD 0 STC 4G+5 ADD 4F MUL 4|2F [LEN FP # AZE i JMP 3H-3 [USE SINGLE P ARITH SCR i 1 STC 4F+3 [W0 ROR i 1 STC 4F+1 ADD 4F [LVI MUL 2F [LEN FP # ADM 4F+1 LDA 2G [-#WDS|D-BLOCK ROL 3 [-#WDS|10 D-BLOCKS STC 4F STC 4F+5 [0->BLOCK COUNT SET i 1 4F LDA 1 LAM i 1 LDA i 1 LAM i 1 STC 4F+4 [0->ACC LAM 4F+1 STC 4F+4 LAM 1 AZE i JMP p+6 LDA i 10 [BLOCK COUNT INCREMENT XSK i 1 ADM i 1 JMP p-21 ADD 4F+1 APO JMP 0 LDA i 10 JMP 4G-3 ZTA [3H-3 STC 4F+1 STC 4F+5 #3H LDA 4F+1 [WORD COUNT ADA 2G [-#WDS|D-BLOCK APO JMP 4G STC 4F+1 LDA i 1 ADM 4F+5 [BLOCK COUNT JMP 3H #4G LDA 4F+1 [WORD COUNT STC 4F+4 SET i 1 4F+4 [1 PTS TO WD AND BLOCK JMP [EXIT [ [ [CONSTANTS CARRIED FROM SCAN PROGRAM 2C=1756 [FB1[FD3] 2D=1760 [U|FB2[FD3] 2E=1753 [FB1[FD2] 2F=1777 [LEN FP # 2G=1776 [-#WDS|D-BLOCK 2B=1774 [CSL 3Z=1764 1G=1767 [DATA STACK POINTER 1H=1766 [PROCESSOR STACK POINTER [ [ [PARAMETERS [ 9W=0 [PAGE 0 9X=1 [PAGE 1 9Y=2 [PAGE 2 9Z=3 [PAGE 3 1A=4000 [PROCESSOR STACK HI 2H=3400 [DATA STACK LO 6S=0 [RBN COMPILER 6T=14 [RBN ERROR PROC 6U=24 [RBN ERROR FILE 6V=34 [RBN TRANSITION PROGRAM 6W=50 [RBN RUN PROCESSOR 6X=62 [RBN ERROR PROC 6Y=72 [RBN SYSTEM FUNCTIONS [ [END OF PROCESSING [AND ERROR EXIT [MUST RESIDE IN PAGE 0 #4N JMP 6I [OUTPUT LAST DATA BLOCK LDA i RCG STC 15 [READ IN LAP6 FROM UNIT 0 UMB 9X LDA i 7300 STC 16 JMP 15 [TRANSFER TO LAP6 [ [MUST RESIDE IN P0 AND NOT AT ADDR 1000-1377 #2A LDA 0 STC 1773 JMP 6I [OUTPUT DATA BIC LDA 1J [PROGRAM BIC STC 1750+15 LDA 1755 [U|FB2[SYSTEM FILE BCL i 6777 ROR 6 ADM p+5 [=RDC [ LDA i 2|6X [QN2,RBN OBJECT TIME ERROR PROC ADD 2E [FB1[SYSTEM FILE] STC p+2 RDC 0 [QN|BN [ JMP 1000 [ENTER ERROR PROC JMP 1B [POP TOP OF STACK [1B MUST NOT BE IN ADDR 1000-1377 LDA i 2|6W+2 [RBN OF NON-SELF MOD CODE ADD 2E [FB1[SYSTEM FILE] STC p+10 ADD 1750+5 [U|FB2[SYSTEM FILE] BCL i 2777 ROR 6 ADD p+2 STC p+1 RDC QN|BN LDA 1750+15 STC 1J [PROGRAM BIC JMP 6 [REINIT READS [ [END OF BASIC INTERPRETER [8|12|69 [ [ [THE FOLLOWING ROUTINE IS USED BY #2A AND MUST NOT RESIDE IN Q2 [POP PROCESSOR STACK [ #1B SET 1 1H [PROCESSOR STACK PTR LDA 0 STC p+12 UMB 9X [P1 LDA 1 [DS-PTR APO JMP 1C [POP DS ENTRY LDA i 3 [LEN PROC STK ENTRY ADM 1H STC 4 JMP [EXIT [ [DS-POP [ACC=DS-PTR #1C STC 1 LDA i 0077 UMB 9X [P1 STA i 1 [POP THE ELEMENT SET 1 0 [CLEAN-UP LDA 1G [DATA STACK PTR STA 3 SAE i 2H-5 [STACK LIMIT CHECK APO [SKIP JMP 1 [RETURN LDA i 3 [WD 2 OF TOP ENTRY SET 3 1G [RESTORE 3 SAE i 0077 [POPPED INDICATOR JMP 1 [RETURN LDA 2F [LEN FP # COM ADM 1G JMP p-21 [CHECK FOR MORE [ [OPERATOR CODES FOR [THE BASIC LANGUAGE SYSTEM [ [ [NEGATION OPERATOR 3 #2L JMP 1K [FETCH TOP LDA 11 BCO i 4000 [REVERSE SIGN STA 11 JMP 4E [ [ASSIGNMENT OPERATOR 7 #2P JMP 1K [FETCH TOP JMP 9V+6 [ADDR OF E1 OF PS STC 4 [4 CONTAINS PTR TO 2ND ELEMENT IN THE STACK JMP 1M [ACC=-1 JMP 7V [STORE DATA JMP 1B [POP ARG1 JMP 1B [POP ARG2 JMP 4E [ [ADDITION OPERATOR 1 #2J LDA i JMP 8A JMP 2N+2 [ [SUBTRACTION OPERATOR 2 #2K LDA i JMP 8Q JMP 2N+2 [ [MULTIPLY OPERATOR 4 #2M LDA i JMP 8R JMP 2N+2 [ [ [DIVIDE OPERATOR 5 #2N LDA i JMP 9A JMP 7U [CREATE FLOD CALL LDA 9O-6+2000 [ARG A STA 9O-4+2000 [ARG A IS ALSO RESULT LMB 9X [P1 JMP 9O JMP 1B [POP PS JMP 4E [ [RELATIONAL OPERATORS [ [= 10 #3I LDA i AZE i [TEST FOR F JMP 3N+2 [< 11 #3J LDA i APO i [TEST FOR F JMP 3N+2 [<= 12 #3K LDA i JMP 3K+3 JMP 3N+2 AZE i JMP 0 APO XSK i 0 JMP 0 [<> 13 #3L LDA i AZE [TEST FOR F JMP 3N+2 [> 14 #3M LDA i JMP 3M+3 JMP 3N+2 APO AZE i XSK i 0 JMP 0 [>= 15 #3N LDA i APO [TEST FOR F STC 3N+6 JMP 1L [FETCH ARG1 JMP 1K [FETCH ARG2 JMP 7T [COMPARE [ [CRUCIAL TEST FOR F [F=>SKIP T=>NO SKIP [ 0 [ [ [ JMP p+5 [TRUE BRANCH LDA i JMP 4E-3 [RESET EXIT SWITCH STC 4H+13 JMP 2P+5 [POP 2 JMP 1B [POP ARG2 JMP 1B [POP ARG1 JMP 4I [BRANCH [ [GOSUB 17 #3P JMP 3D [PUSH PS JMP 5T [SAVE PC SET 4 1H LDA i 4 BSE i [SET GOSUB LINK FLAG 2000 STA 4 JMP 4I [BRANCH [ [BRANCH 20 #4I LDA i JMP 4I+4 STC 4H+13 [SET EXIT SWITCH JMP 4A [INPUT ADA i 2000 [CODE =2000+2000=4000 ROR 1 [PRODUCE ADDR 2000+ STC 11 [ADDR OF JMP TABLE ENTRY UMB 9Y [P2 LDH 11 STH i 0 LDH i 11 STH 4|p-3 STH i 0 LDH i 11 ADD p-2 SHD i 7700 JMP p+13 [CHECK DEF BCL i 7000 STC 3B [PC2 LDA p-17 ROR 3 BCL i 7000 STC 3A [PC1 JMP 4E-3 [RESET EXIT SWITCH [ SAE i 7777 JMP 0 [DEFINED SAE p-31 JMP 0 [DEFINED JMP 6M [UNDEFINED LABEL [ [STACK CONSTANT OF "1." 31 #2R JMP 3D [PUSH PS JMP 1E [PUSH DS LDA i 4000 [DS-PTR DEFINED FLAG ADD 3 [DS PTR UMB 9X [P1 STA 4 LDA i 5400 [FLAGS STA i 4 [SET FLAGS LDA i 0001 [EXP FOR 1. STA 3 ROL 6 STA i 3 CLR STA i 3 STA i 3 STA i 3 JMP 4E [ [INCR FOR FOR 32 #2S LDA i JMP 8A [ADD ENTRY JMP 7U [CREATE ADD LDA 9O-5+2000 [ARG B STA 9O-4+2000 [ARG B IS ALSO RESULT LMB 9X [P1 JMP 9O [INCREMENT SET 4 1H UMB 9X [P1 LDA 4 [DS-PTR STC 11 JMP 1M JMP 7V [STORE VARIABLE JMP 4E [ [PART OF FOR 33 #2T JMP 3D [PUSH PS JMP 5T [PUSH [PC]+1 LDA i 10 ADD 1H [PS PTR STC 16 LDA i -1 ADD 1H [PS PTR STC 17 SET i 15 -3 [#WORDS |PS ENTRY [UMB=9X FROM 5T ABOVE [INTERCHANGE VARIABLE AND LINK LDA i 16 STC p+4 LDA i 17 STA 16 LDA i 0 STA 17 XSK i 15 JMP p-10 [ JMP 4I [BRANCH [ [RETURN 34 JMP 1B [POP PROCESSOR STACK #2U SET 4 1H [SET PS PTR LDA i -4000 ADD 4 AZE i JMP 6N [NO STACK ENTRY UMB 9X [P1 LDA i 4 [LOAD WORD ENTRY SCR 10 [ISOLATE FLAGS SAE i 0007 JMP 2U-1 [NOT ADDR ENTRY LDA 4 BCL i [ISOLATE WORD ADDR 7400 STC 3B [PC2,WORD LDA i 4 STC 3A [PC1,BLOCK JMP 1B [POP PROCESSOR STACK JMP 4E [TEST KST [ [SUBROUTINE TO EXAMINE [SIGN BIT OF 2ND STACK [ELEMENT LDA i 3 [LENGTH OF PS ENTRY ADD 1H [PS PTR STC 1 UMB 9X [P1 LDA 1 STC 1 LDA 1 APO XSK i 0 [STEP<0=>[0]+1 RETURN JMP 0 [RETURN VIA 0 [ [COMPARE FOR FOR 36 #2W JMP 9V [ADDR OF LINK IN STACK STC 1 UMB 9X [P1 LDA i 1 [LOAD WORD PORTION SCR 10 [ISOLATE FLAGS SAE i 0003 JMP 6N [NEXT ERROR JMP 9V+3 [E3 OF PS STC 4 JMP1K+2 SET 12 11 JMP 1K [SET R11 JMP 7T [COMPARE VAR:LIM [ACC=SIGNIFICANT WORD OF VAR-LIM AZE i JMP p+5 [REPEAT LOOP APO JMP p+12 [VAR<LIM JMP 2W-13 [STEP:0 JMP p+5 [STEP>=0,FOR COMPLETED [REPEAT LOOP JMP 9V [ADDR OF E4 OF PS STC 4 XSK i 4 JMP 2U+15 [TRANSFER AND POP PS [FOR COMPLETED JMP 1B [POP PS JMP 1B [POP PS JMP 2P+5 [1B,1B,4E [VAR<LIM JMP 2W-13 [STEP:0 JMP p-10 [STEP>=0,CONTINUE LOOP JMP p-5 [STEP<0,DONE [ [PUSH TOP PS AND COPY [PART OF FOR 37 #2X SET 17 1H [PS PTR JMP 3D [PUSH PS UMB 9X [P1 LDA 17 STA 4 LDA i 17 STA i 4 LDA i 17 STA i 4 JMP 4E [ [ [UTILITY ROUTINES [ [ [SET UP ARG 2 [MUST BE DONE BEFORE ARG1 #1L LDA 0 [LINKAGE STC p+6 JMP 9V+6 [A[E2] OF PS STC 4 JMP 1K+2 SET 12 11 JMP [EXIT [SET UP TOP OF PROC STACK #1K SET 4 1H UMB 9X [P1 LDA 4 [DS-PTR STA 11 APO JMP 0 [DS-PTR DEFINED SET 10 0 [LINKAGE JMP 1E [PUSH DATA STACK LDA i 4000 [DS-PTR DEFINED FLAG ADD 3 [DS-PTR STA 4 STC 11 [DS-PTR NOW DEFINED JMP 1M ADM 3 [MOVE DATA TO STACK UMB 9Z [P3 LDA i 1 UMB 9X [P1 STA i 3 XSK i 5 JMP p-5 LDA 11 JMP 10 [EXIT [UTILITY ROUTINE #1M LDA i 4 [FLAG|WORD BCL i 7400 ADA i 3377 [O-BUF -1 STC 1 LDA i 4 [BLOCK SET 5 0 [LINKAGE JMP 1F SET 0 5 LDA 2F [LEN FP # COM STC 5 LDA i -1 JMP 0 [ #5T CLR [LINK<-0 UMB 9X [P1 STA 4 [NO DS-PTR DEFINED ADD 4H [=1 ADD 3B [WORD,PC2 ROL i 4 ROR 4 BSE i 1400 [STACK CODE STA i 4 SCR 13 [0->ACC ROL i 1 [LINK->ACC ADD 3A [BLOCK,PC1 STA i 4 JMP 0 [ [DEVELOP STACK ADDRESS [ENTRY 4 OF PS #9V CLR ADD 1B+12 [=3 APO [ENTRY 3 9V+3 CLR ADD 1B+12 [=3 APO [ENTRY 2 9V+6 CLR ADD 1B+12 [=3 APO [ENTRY 1 9V+11 CLR ADD 1H [PS PTR JMP 0 [RETURN VIA 0 [ [ [ACC=-1 #7V ADD 11 STC 11 ADD 0 [LINK STC p+10 STC 3C [BIC CHANGED UMB 9X [P1 LDA i 11 UMB 9Z [P3 STA i 1 XSK i 5 JMP p-5 JMP [RETURN [ [ACC=JMP TO FLOD PKG #7U UMB 9X [P1 STA 9O-7+2000 [OP SET 17 0 [LINK JMP 1L [FETCH STK2 BCL i 2000 STA 9O-6+2000 [ARG A JMP 1K [FETCH STK1 [FLOD IN P1 AND WORK AREA IN P2=>P1 STACK ADDR<2000 BCL i 2000 STA 9O-5+2000 [ARG B JMP 17 [RETURN [ #7T SET 17 0 [LINK JMP 1M+14 ADM 12 JMP 1M+20 [-1->ACC ADM 11 [ LDA i 12 [COMPARE EXP AND SIGN BCO i 11 APO i JMP p+6 [NUMBER SIGNS SAME LDA 11 [NUMBER SIGN DIFFERENT SCR 13 BCO i [INSURE NON-ZERO 0252 JMP 17 [EXIT [ ROL 2 STC p+5 LDA 12 COM ADA 11 SRO i 0 COM JMP p+4 [ LDA i 12 COM ADA i 11 AZE JMP 17 [RETURN XSK i 5 JMP p-6 JMP 17 [RETURN [ [ [ [PUSH PROCESSOR STACK [ #3D LDA i -3 ADM 1H [PROCESSOR STACK PTR STA 4 COM ADD 1G [CURRENT DS-PTR APO i JMP 6L [OVERLAP STACKS JMP 0 [RETURN VIA 0 [ [PUSH DATA STACK [ #1E LDA 2F [LEN FP# ADM 1G [CURRENT DS-PTR STA 3 ADA 2F [LEN FP # COM ADD 1H [PS PTR APO JMP 6L [OVERLAP STACKS JMP 0 [RETURN VIA 0 [ [DATA BLOCK TO CORE [ACC= BLOCK REQUESTED [ #1F STA i 0 [SAVE BLOCK COM ADA i #1I 1000 [BIC AZE i JMP 0 LDA 0 STC p+14 JMP 6I [WRITE OUT BIC [READY TO READ BLOCK LDA i 7|0 ADD 1F+1 [BLOCK REQ STC p+3 UMB 9Z [P3 RDC 0 STC 3C [7777=>BIC NOT CHANGED ADD 1F+1 [BLOCK REQ STC 1I [UPDATE BIC JMP [EXIT [ [WRITE OUT DATA BIC #6I SRO i #3C 7777 [0=>BIC CHANGED JMP 0 [NOT CHANGED,NO WRITE REQUIRED LDA i 7|0 [DATA BUF=Q7,P3 ADD 1I [BIC STC p+6 ADD 1J+10 [=RDC ADD 3D+5 [=4=WRC STC p+2 UMB 9Z [P3 0 [WRC 0 [5|BIC STC 3C [7777=>BIC NOT DIF TAPE JMP 0 [RETURN VIA 0 [ [ [END OF OPERATOR CODE [ [ [ [RESET EXIT SWITCH [ LDA i NOP STC 4H+13 #4E KST JMP 4A KBD SAE i 0012 [EOL JMP 4A [IGNORE NON EOL JMP 6O [USER QUERY [ [ [ [RUN PROCESSOR [PRINT [ [ACC=LINC CODE CHAR [OUTPUT CHAR TO TELETYPE #4X ROR 1 ADA i 3Y STC 1 [LINKAGE ADD 0 STC 4X+20 UMB 9Y [P2 LDH 1 ADA i 1640 ROL 1 [ACC=TELETYPE CODE [TELETYPE CODE IS [B11=0 [B8-10=1 [B1-B7=ASCII CODE[REVISED [B0=0 JMP 3X [SEND TO TELETYPE LDA i 1 ADM 3Z [CCP [CCP=CURRENT CARRIAGE POSITION JMP [RETURN [ [CR-LF #4W LDA 0 STC 4W+13 STA 3Z [0->CCP LDA i 3432 [CR JMP 3X LDA i 3424 [LF JMP 3X JMP [RETURN [ [ [TELETYPE OUTPUT ROUTINE #3X SET 1 0 [LINK STC p+5 MSC 4 APO i JMP p+7 LDA i TT CODE ROR 1 OPR 42 JMP p-1 JMP 1 [RETURN ADD 1 STC p+13 LDA 3X+7 ATR SET i 1 -435 XSK i 1 JMP p-1 SCR 1 AZE JMP p-7 JMP [RETURN [ [ [ [PRINT STACK 23 #4L LDA i -110+17 [# CHAR|LINE-MIN REMAINING ADA 3Z [CCP APO i JMP 4W [CR-LF [PREPARE STACK TOP JMP 1K LDA 11 BCL i 2000 UMB 9X [P1 STA 2011 [GET NEXT CHAR LMB 9X [P1 JMP 1V+1 JMP 2P+6 [DONE JMP 4X [OUTPUT JMP p-4 [ [ [PRINT TAB 24 #4M LDA 3Z [CCP ADA i 22-110+1 [LINE POSITIONS 66 THRU 107=>CR-LF APO JMP p+3 JMP 4W [CR-LF JMP 4E [ LDA 3Z [CCP ADA i -22 APO AZE i JMP p-4 STC 15 LDA i 14 [SPACE JMP 4X [OUTPUT XSK i 15 JMP p-4 JMP 4E [ [PRINT CR-LF 21 #4J JMP 4W JMP 4E [ [ [PRINT TEXT 22 #4K LDA i JMP 1P STC 4H+13 [SET EXIT SWITCH LDA 3Z [CCP ADA i -110+1 [END OF LINE TEST APO i JMP 4W [CR-LF JMP 4A [GET TEXT #1P STA i 0 LDH 1P+1 SHD i 1300 [TEXT TERMINATOR JMP 4E-3 [DONE- RESET SWITCH JMP 4X [OUTPUT [ACC=CCP ADA i -110+1 [EOL TEST APO i JMP 4W [CR-LF LDH 4|1P+1 [NEXT CHAR SHD i 1300 [TEXT TERMINATOR JMP 4E-3 [DONE- RESET SWITCH JMP 4X [OUTPUT JMP 1P-5 [ [ [ [ [ [ERROR JMP LIST $1740 #6K JMP 2A [1 #6L JMP 2A [2 #6M JMP 2A [3 #6N JMP 2A [4 #6O JMP 2A [5 #6P JMP 2A [6 #6Q JMP 2A [7 #6R JMP 2A [8 [ [SYSTEM CONSTANT AREA [ [1750 FB1 FD 1 SOURCE FILE [1751 CFP [1752 U|FB2 [1753 FB1 FD 2 SYSTEM FILE [1754 CFP [1755 U|FB2 [1756 FB1 FD 3 TARGET FILE [1757 CFP [1760 U|FB2 [1761 FB1 FD 4 DATA FILE [1762 CFP [1763 U|FB2 [1764 CURRENT TELETYPE CARRIAGE POSITION [1765 LAST VARIABLE INITIALIZED [1766 PROCESSOR STACK POINTER [1767 DATA STACK POINTER [1770 PC1-BLOCK-PROGRAM COUNTER| BLOCK CFP ERROR FILE [1771 PC2-WORD-PROGRAM COUNTER| WORD CFP ERROR FILE [1772 TRACE<=7777: 0=>NO TRACE [1773 ERROR CODE [1774 CSL=CURRENT SOURCE LINE [1775 LAST VARIABLE USED [1776 -#WDS|FP BLOCK [1777 LENGTH FP # [END OF PAGE 0 [ 1V=1071 8Q=262 8R=270 9A=547 9O=30 8A=64 [RPP2 DEF 3Y=3340 4D=3600 [END OF GLOBAL DEF