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P51-P53.s
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P51-P53.s
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# Copyright: Public domain.
# Filename: P51-P53.agc
# Purpose: Part of the source code for Comanche, build 055. It
# is part of the source code for the Command Module's
# (CM) Apollo Guidance Computer (AGC), Apollo 11.
# Assembler: yaYUL
# Reference: pp. 737-784
# Contact: Ron Burkey <info@sandroid.org>
# Website: http://www.ibiblio.org/apollo.
# Mod history: 2009-05-12 RSB Adapted from Colossus249 file of the same
# name, and Comanche 055 page images.
# 2009-05-20 RSB Corrections: SETI/PDT -> SET1/PDT,
# GOTOPOOH -> GOTOP00H, R33EXIT -> R53EXIT,
# V853 -> VB53, R56A -> R56A1 (some places
# only), added missing R56A1 label, added a
# missing CAF in COARSTYP, corrected a SETLOC
# from P50S to P50S3.
# 2009-05-21 RSB In COARFINE, a TC BANKCALL was corrected to
# TC PHASCHNG. In R53C, a CADR GOFLASHR was
# corrected to CADR GOFLASH.
#
# The contents of the "Comanche055" files, in general, are transcribed
# from scanned documents.
#
# Assemble revision 055 of AGC program Comanche by NASA
# 2021113-051. April 1, 1969.
#
# This AGC program shall also be referred to as Colossus 2A
#
# Prepared by
# Massachussets Institute of Technology
# 75 Cambridge Parkway
# Cambridge, Massachusetts
#
# under NASA contract NAS 9-4065.
#
# Refer directly to the online document mentioned above for further
# information. Please report any errors to info@sandroid.org.
# Page 737
# PROGRAM NAME -- PROG52 DATE -- NOV 30, 1966
# MOD NO -- 2 LOG SECTION -- P51-P53
# MODIFICATION BY -- LONSKE ASSEMBLY -- SUNDISK REV 30
#
# FUNCTIONAL DESCRIPTION --
#
# ALIGNS THE IMU TO ONE OF THREE ORIENTATIONS SELECTED BY THE ASTRONAUT. THE PRESENT IMU ORIENTATION IS KNOWN
# AND IS STORED IN REFSMMAT. THE THREE POSSIBLE ORIENTATIONS MAY BE:
#
# (A) PREFERRED ORIENTATION
#
# AN OPTIMUM ORIENTATION FOR A PREVIOUSLY CALCULATED MANEUVER. THIS ORIENTATION MUST BE CALCULATED AND
# STORED BY A PREVIOUSLY SELECTED PROGRAM.
#
# (B) NOMINAL ORIENTATION
#
# X = UNIT ( Y x Z )
# -SM -SM -SM
#
# Y = UNIT (V X R)
# -SM - -
#
# Z = UNIT ( -R )
# -SM -
#
# WHERE:
#
# R = THE GEOMETRIC RADIUS VECTOR AT TIME T(ALIGN) SELECTED BY THE ASTRONAUT
# -
#
# V = THE INERTIAL VELOCITY VECTOR AT TIME T(ALIGN) SELECTED BY THE ASTRONAUT
# -
#
# (C) RERSMMAT ORIENTATION
#
# THIS SELECTION CORRECTS THE PRESENT IMU ORIENTATION. THE PRESENT ORIENTATION DIFFERS FROM THAT TO WHICH IT
# WAS LAST ALIGNED ONLY DUE TO GYRO DRIVE (I.E., NEITHER GIMBAL LOCK NOR IMU POWER INTERRUPT HAS OCCURRED
# SINCE THE LAST ALIGNMENT).
#
# AFTER A IMU ORIENTATION HAS BEEN SELECTED ROUTINE S52.2 IS OPERATED TO COMPUTE THE GIMBAL ANGLES USING THE
# NEW ORIENTATION AND THE PRESENT VEHICLE ATTITUDE. CAL52A THEN USES THESE ANGLES, STORED IN THETAD,+1,+2, TO
# COARSE ALIGN THE IMU. THE STARS SELECTION ROUTINE, R56, IS THEN OPERATED. IF 2 STARS ARE NOT AVAILABLE AN ALARM
# IS FLASHED TO NOTIFY THE ASTRONAUT. AT THIS POINT THE ASTRONAUT WILL MANEUVER THE VEHICLE AND SELECT 2 STARS
# EITHER MANUALLY OR AUTOMATICALLY. AFTER 2 STARS HAVE BEEN SELECTED THE IMU IS FINE ALIGNED USING ROUTINE R51. IF
# THE RENDEZVOUS NAVIGATION PROCESS IS OPERATING (INDICATED BY RNDVZFLG) P20 IS DISPLAYED. OTHERWISE P00 IS
# REQUESTED.
#
# CALLING SEQUENCE --
#
# THE PROGRAM IS CALLED BY THE ASTRONAUT BY DSKY ENTRY.
# Page 738
#
# SUBROUTINES CALLED --
#
# 1. FLAGDOWN 7. S52.2 13. NEWMODEX
# 2. R02BOTH 8. CAL53A 14. PRIOLARM
# 3. GOPERF4 9. FLAGUP
# 4. MATMOVE 10. R56
# 5. GOFLASH 11. R51
# 6. S52.3 12. GOPERF3
#
# NORMAL EXIT MODES --
#
# EXITS TO ENDOFJOB
#
# ALARM OR ABORT EXIT MODES --
#
# NONE
#
# OUTPUT --
#
# THE FOLLOWING MAY BE FLASHED ON THE DSKY
# 1. IMU ORIENTATION CODE
# 2. ALARM CODE 215 -- PREFERRED IMU ORIENTATION NOT SPECIFIED
# 3. TIME OF NEXT IGNITION
# 4. GIMBAL ANGLES
# 5. ALARM CODE 405 -- TWO STARS NOT AVAILABLE
# 6. PLEASE PERFORM P00
# THE MODE DISPLAY MAY BE CHANGED TO 20
#
# ERASABLE INITIALIZATION REQUIRED --
#
# PFRATFLG SHOULD BE SET IF A PREFERRED ORIENTATION HAS BEEN COMPUTED. IF IT HAS BEEN COMPUTED IT IS STORED IN
# XSMD, YSMD, ZSMD.
#
# RNDVZFLG INDICATES WHETHER THE RENDEZVOUS NAVIGATION PROCESS IS OPERATING.
#
# DEBRIS --
#
# WORK AREA
P54 = PROG52
BANK 33
SETLOC P50S
BANK
SBANK= LOWSUPER
EBANK= SAC
COUNT 15/P52
PROG52 TC PHASCHNG
OCT 00254
TC DOWNFLAG
ADRES UPDATFLG # BIT 7 FLAG 1
# Page 739
TC DOWNFLAG
ADRES TRACKFLG # BIT 5 FLAG 1
TC BANKCALL
CADR R02BOTH # IMU STATUS CHECK
CAF BIT4
MASK STATE +2 # IS PFRATFLG SET?
CCS A
TC P52A # YES
CAF BIT2 # NO
TC P52A +1
P52A CAF BIT1
TS OPTION2
P52B CAF BIT1
TC BANKCALL # FLASH OPTION CODE AND ORIENTATION CODE
CADR GOPERF4R
TC GOTOP00H
TC +5
TC P52B # NEW CODE -- NEW ORIENTATION CODE INPUT
TC PHASCHNG
OCT 00014
TC ENDOFJOB
CA OPTION2
MASK THREE
INDEX A
TC +1
TC P52T # L.S.
TC P52J # PREF
TC P52T # NORM
TCF P52C # REF
P52T EXTEND
DCA NEG0
DXCH DSPTEM1
CAF V06N34
TC BANKCALL
CADR GOFLASH
TC GOTOP00H
TC +2
TC -5
EXTEND
DCA DSPTEM1
EXTEND
BZF +2
TCF +4
EXTEND
DCA TIME2
DXCH DSPTEM1
CA OPTION2
MASK BIT2
CCS A
# Page 740
TCF +6 # NOM
TC INTPRET # LS
CALL
P52LS
GOTO
P52D
TC INTPRET
DLOAD
DSPTEM1
CALL # COMPUTE NOMINAL IMU
S52.3 # ORIENTATION
P52D CALL # READ VEHICLE ATTITUDE AND
S52.2 # COMPUTE GIMBAL ANGLES
EXIT
CAF VB06N22
TC BANKCALL # DISPLAY GIMBAL ANGLES
CADR GOFLASH
TC GOTOP00H
TC COARSTYP
P52J TC INTPRET # RECYCLE: VEHICLE HAS BEEN MANEUVERED
GOTO
P52D
TC INTPRET
CALL # DO COARSE ALIGN
CAL53A # ROUTINE
CAL53RET SET EXIT
REFSMFLG
P52C TC PHASCHNG
OCT 04024
CAF ALRM15
TC BANKCALL
CADR GOPERF1
TC GOTOP00H
TC +2 # V33
TC P52F # E
TC INTPRET
RTB DAD
LOADTIME
TSIGHT1
CALL
LOCSAM
EXIT
P52E TC BANKCALL # DO STAR SELECTION
CADR PICAPAR
TC P52I # 2 STARS NOT AVAILABLE
P52F TC INTPRET # 2 STARS AVAILABLE
CALL
R51
ENDP50S EXIT
TC GOTOP00H
# Page 741
P52I TC ALARM
OCT 405
CAF V05N09
TC BANKCALL
CADR GOFLASH
TC GOTOP00H
TC P52F # PROCEED: DO FINE ALIGN-R51
TC P52C # RECYCLE: VEHICLE HAS BEEN MANEUVERED
V06N34 VN 0634
VB06N22 VN 00622
COARSTYP CAF OCT13
TC BANKCALL
CADR GOPERF1
TCF GOTOP00H # V34
TCF P52J +3 # NORMAL
TC INTPRET # GYRO COARSE
GYCRS VLOAD MXV
XSMD
REFSMMAT
UNIT
STOVL XDC
YSMD
MXV UNIT
REFSMMAT
STOVL YDC
ZSMD
MXV UNIT
REFSMMAT
STCALL ZDC
CALCGTA
CLEAR CLEAR
DRIFTFLG
REFSMFLG
EXIT
CAF V16N20
TC BANKCALL
CADR GODSPR
CA R55CDR
TC BANKCALL
CADR IMUPULSE
TC BANKCALL
CADR IMUSTALL
TC CURTAINS
TC PHASCHNG
OCT 04024
TC INTPRET
AXC,1 AXC,2
XSMD
REFSMMAT
CALL
# Page 742
MATMOVE
CLEAR SET
PFRATFLG
REFSMFLG
RTB VLOAD
SET1/PDT
ZEROVEC
STORE GCOMP
SET GOTO
DRIFTFLG
R51K
V16N20 VN 1620
ALRM15 EQUALS OCT15
SETLOC P50S2
BANK
V06N89* VN 0689
# NAME -- P52LS
#
# FUNCTION -- TO DISPLAY THE LANDING SITE LATITUDE,
# LONGITUDE AND ALTITUDE. TO ACCEPT NEW DATA VIA
# THE KEYBOARD. TO COMPUT THE LANDING SITE
# ORIENTATIION FOR P52 OR P54.
#
# LET:
# RLS = LANDING SITE VECTOR IN REF COORDINATES
# R = CSM POSITION VECTOR IN REF COORDINATES
# V = CSM VELOCITY VECTOR IN REF COORDINATES
# THEN THE LANDING SITE ORIENTATION IS:
# XSMD = UNIT(RLS)
# YSMD = UNIT(ZSMD*XSMD)
# ZSMD = UNIT((R*V)*RLS)
#
# CALL: CALL
# P52LS
#
# INPUTS: DSPTEM1 = TIME OF ALIGNMENT
# RLS = LANDING SITE VECTOR IN MOON FIXED COORDINATES
#
# OUTPUTS: XSMD, YSMD, ZSMD
#
# SUBROUTINES: RP-TO-R, LAT-LONG, LLASRD, LLASRDA, CSMPREC
#
# DEBRIS: VAC, SEE SUBROUTINES
P52LS STQ SET
QMAJ
LUNAFLAG
DLOAD
DSPTEM1
STORE TSIGHT
VLOAD SET
RLS
ERADFLAG
STODL 0D
TSIGHT
STCALL 6D
# Page 743
RP-TO-R
VSR2
STODL ALPHAV
TSIGHT
CALL
LAT-LONG
CALL
LLASRD
EXIT
LSDISP CAF V06N89*
TC BANKCALL
CADR GOFLASH
TC GOTOP00H
TC +2
TC LSDISP
TC INTPRET
CALL
LLASRDA
DLOAD CALL
TSIGHT
LALOTORV
VLOAD UNIT
ALPHAV
STODL XSMD
TSIGHT
STCALL TDEC1
CSMPREC
VLOAD VXV
RATT
VATT
VXV UNIT
XSMD
STORE ZSMD
VXV UNIT
XSMD
STCALL YSMD
QMAJ
SETLOC P50S1
BANK
# NAME: AUTOMATIC OPTICS POSITIONING ROUTINE
#
# FUNCTION: (1) TO POINT THE STAR LOS OF THE OPTICS AT A STAR OR LANDMARK DEFINED BY THE PROGRAM OR BY DSKY INPUT.
# (2) TO POINT THE STAR LOS OF THE OPTICS AT THE LEM DURING RENDEZVOUS TRACKING OPERATIONS.
#
# CALLING: CALL R52
#
# INPUT: 1. TARG1FLG AND TARG2FLG: PRESET BY CALLER
# 2. RNDVZFLG AND TRACKFLG: PRESET BY CALLER
# 3. STAR CODE: PRESET BY CALLER. ALSO INPUT THROUGH DSKY
# 4. LAT, LONG, AND ALT OF LANDMARK: INPUT THROUGH DSKY
# Page 744
# 5. NO. OF MARKS (MARKINDX): PRESET BY CALLER
#
# OUTPUT: DRIVE SHAFT AND TRUNNION CDUS.
#
# SUBROUTINES: 1. FIXDELAY 7. CLEANDSP
# 2. GOPERF1 8. GODSPR
# 3. GOFLASH 9. REFLASHR
# 4. R53 10. R52.2
# 5. ALARM 11. R52.3
# 6. SR52.1
COUNT 15/R52
R52 STQ CLEAR
SAVQR52
ADVTRK
R52VRB EXIT
EXTEND
DCA CDUT
DXCH DESOPTT
TC INTPRET
SSP CLEAR
OPTIND
0
R53FLAG
EXIT
R52A TC INTPRET
SET BON
TRUNFLAG
TARG1FLG
R52H
CLEAR EXIT
TERMIFLG
R52C CA SWSAMPLE # IS OPTICS MODE IN AGC
EXTEND
BZMF R52M # MANUAL
R52D TC BANKCALL # AGC
CADR SR52.1
TCF R52L # GR 90 DEGREES
TCF R52J # GR 50 DEGREES
TC UPFLAG # LS 50 DEGREES
ADRES TRUNFLAG # SET TRUNFLAG BIT 4 FLAG 0
R52JA CAF BIT10 # IS THIS A LEM
MASK STATE +1
CCS A
TC R52E # YES
CAF BIT6 # NO, IS R53FLAG SET
MASK STATE
CCS A
TCF R52E # YES
# Page 745
CAF V06N92 # NO
TC BANKCALL
CADR GODSPR
R52E CA SWSAMPLE # IS OSS IN CMC MODE
EXTEND
BZMF R52F # NO
CS STATE # YES: IS TRUNFLAG SET
MASK BIT4
CCS A
TC +3 # NO
CA PAC # YES
TS DESOPTT
CA SAC
TS DESOPTS
R52F CAF .5SEC # WAIT 1/2 SEC
TC BANKCALL
CADR DELAYJOB
CAF BIT10
MASK STATE +1
CCS A
TCF R52HA # YES, LEM
CAF BIT15 # NO
MASK STATE +7 # IS TERMIFLG SET
EXTEND
BZF R52C # NO
R52Q TC INTPRET # YES
GOTO
SAVQR52
R52H EXIT # LEM
R52HA TC BANKCALL
CADR R61CSM
CA STATE +1
MASK BIT5
EXTEND # TRACKFLG
BZF R52Q
CS STATE +1
MASK BIT7 # UPDATFLG
CCS A
TCF R52SYNC
R52I CA STATE +5
MASK BIT10
CCS A
TC R52D # PRFTRKAT = 1
R52SYNC CAF 1.8SEC # MAKE UP FOR LOST TIME
TCF R52F +1
R52J TC DOWNFLAG # CLEAR TRUNFLAG
ADRES TRUNFLAG # BIT 4 FLAG 0
# Page 746
TC ALARM # SET 407 ALARM
OCT 407
TC R52JA
R52M CAF BIT6 # IS R53FLAG SET
MASK STATE
CCS A
TC R52F # YES
INHINT # NO
CAF PRIO24
TC FINDVAC
EBANK= SAC
2CADR R53JOB
RELINT
TCF R52F
R53JOB TC INTPRET
CALL
R53
ENDPLAC EXIT # INTERPRETER RETURN TO ENDOFJOB (R22 USES)
TC ENDOFJOB
V06N92 VN 00692
V06N89A VN 0689
SHAXIS 2DEC .5376381241 B-1
2DEC 0
2DEC .8431766920 B-1
R52L CAF BIT10 # IS THIS A LEM
MASK STATE +1
CCS A
TC R52J # YES
CAF OCT404
TC BANKCALL
CADR PRIOLARM
TCF TERM52 # TERMINATE
TCF R52F # PROCEED
TCF R52F # NO PROVISION FOR NEW DATA
TCF ENDOFJOB
OCT404 OCT 404
1.8SEC DEC 180
TERM52 TC CLEARMRK
TC BANKCALL # KILL MARK SYSTEM
CADR MKRELEAS
# Page 747
CAF ZERO
TS OPTCADR
TC BANKCALL # CLEAR OUT EXTENDED VERBS
CADR KLEENEX
TC GOTOP00H # NO GO TO P00
ADVORB STQ SET # SETS UP ADVANCED ORBIT TRACKING
SAVQR52
ADVTRK
SET SET
LUNAFLAG
ERADFLAG
GOTO
R52VRB
# Page 748
# NAME -- S50 ALIAS LOCSAM
# NAME: LOCSAM
#
# FUNCTION -- TO COMPUTE QUATITIGS LISTED BELOW, USED IN THE
# IMU ALIGNMENT PROGRAMS.
#
# DEFINE:
#
# RATT = POSITION VECTOR OF CM WRT PRIMARY BODY
#
# VATT = VELOCITY VECTOR OF CM WRT PRIMARY BODY
#
# RE = RADIUS OF EARTH
#
# RM = RADIUS OF MOON
#
# ECLIPOL = POLE OF ECLIPTIC SCALED BY TANGENTIAL VELOCITY OF EARTH
# WRT TO SUN OVER THE VELOCITY OF LIGHT
#
# REM = POSITION OF MOON WRT EARTH
#
# RES = POSITION OF SUN WRT EARTH
#
# C = VELOCITY OF LIGHT
#
# EARTH IS PRIMARY MOON IS PRIMARY
# _ _
# VEARTH=-1(RATT) VEARTH=-1(REM+RATT)
# _ _
# VMOON = 1(REM-RATT) VMOON =-1(RATT)
# _ _
# VSUN = 1(RES) VSUN = 1(RES-REM)
# -1
# CEARTH=COS(SIN (RE/RATT)+5) CEARTH=COS 5
# -1
# CMOON =COS 5 CMOON =COS(SIN CRM/RATT)+5)
#
# CSUN =COS 15 CSUN =COS 15
#
# VEL/C = VSUN x ECLIPOL + VATT/C
#
# CALL: DLOAD CALL
# DESIRED TIME
# LOCSAM
#
# INPUTS: MPAC = TIME
#
# OUTPUTS: VEARTH, VMOON, VSUN, CEARTH, CMOON, CSUN, VEL/C
#
# SUBROUTINES: LSPOS, CSMCONIC
#
# DEBRIS: VAC AREA, SEE SUBROUTINES.
# Page 749
SETLOC P50S1
BANK
COUNT* $$/S50
LOCSAM = S50
S50 STQ
QMAJ
STCALL TSIGHT
LSPOS
STOVL VMOON
2D
STODL VSUN
TSIGHT
STCALL TDEC1
CSMCONIC
SSP TIX,2
S2
0
MOONCNTR
EARTCNTR VLOAD VSU
VMOON
RATT
UNIT
STOVL VMOON
RATT
UNIT VCOMP
STODL VEARTH
RSUBE
CALL
OCCOS
STODL CEARTH
CSS5
STOVL CMOON
VSUN
UNIT
STCALL VSUN
ENDSAM
MOONCNTR VLOAD VSR8
VMOON
VSR1 BVSU
VSUN
UNIT
STOVL VSUN
VMOON
VAD UNIT
RATT
VCOMP
STOVL VEARTH
# Page 750
RATT
UNIT VCOMP
STODL VMOON
RSUBM
CALL
OCCOS
STODL CMOON
CSS5
STOVL CEARTH
VSUN
ENDSAM VXV
ECLIPOL
STOVL VEL/C
VATT
VXSC VAD
1/C
VEL/C
STODL VEL/C
CSSUN
STCALL CSUN
QMAJ
OCCOS DDV SR1
36D
ASIN DAD
5DEGREES
COS SR1
RVQ
SETLOC P50S
BANK
RSUBM 2DEC 1738090 B-29 # MOON RADIUS IN METERS
RSUBE 2DEC 6378166 B-29
5DEGREES 2DEC .013888889 # SCALED IN REVS
1/C 2DEC .000042699 B-1 # *
ECLIPOL 2DEC 0 # *
2DEC -.00007896 B-1 # *
2DEC .00018209 B-1 # * * FOR USE BY CSM ONLY
TSIGHT1 2DEC 24000
CEARTH = 14D
CSUN = 16D
CMOON = 18D
CSS5 2DEC .2490475 # (COS 5)/4
# Page 751
CSSUN 2DEC .24148 # (COS 15)/4
# Page 752
# PROGRAM NAME -- PICAPAR DATE: DEC 20 66
# MOD 1 LOG SECTION: P51-P53
# ASSEMBLY: SUNDISK REV40
# BY KEN VINCENT
#
# FUNCTION
# THIS PROGRAM READS THE IMU-CDUS AND COMPUTES THE VEHICLE ORIENTATION
# WITH RESPECT TO INERTIAL SPACE. IT THEN COMPUTES THE SHAFT AXIS (SAX)
# WITH RESPECT TO REFERENCE INTERTIAL. EACH STAR IN THE CATALOG IS TESTED
# TO DETERMINE IF IT IS OCCULTED BY EITHER EARTH, SUN OR MOON. IF A
# STAR IS NOT OCCULTED THEN IT IS PAIRED WITH ALL STARS OF LOWER INDEX.
# THE PAIRED STAR IS TESTED FOR OCCULTATION. PAIRS OF STARS THAT PASS
# THE OCCULTATION TESTS ARE TESTED FOR GOOD SEPARATION. A PAIR OF STARS
# HAVE GOOD SEPARATION IF THE ANGLE BETWEEN THEM IS LESS THAN 66 DEGREES
# AND MORE THAN 40 DEGREES. THOSE PAIRS WITH GOOD SEPARATION
# ARE THEN TESTED TO SEE IF THEY LIE IN CURRENT FIELD OF VIEW. (WITHIN
# 33 DEGREES OF SAX). THE PAIR WITH MAX SEPARATION IS CHOSEN FROM
# THOSE WITH GOOD SEPARATION, AND IN FIELD OF VIEW.
#
# CALLING SEQUENCE
# L TC BANKCALL
# L+1 CADR PICAPAR
# L+2 ERROR RETURN -- NO STARS IN FIELD OF VIEW
# L+3 NORMAL RETURN
#
# OUTPUT
# BESTI, BESTJ -- SINGLE PREC, INTEGERS, STAR NUMBERS TIMES 6
# VFLAG -- FLAG BIT SET IMPLIES NO STARS IN FIELD OF VIEW
#
# INITIALIZATION
# 1) A CALL TO LOCSAM MUST BE MADE
# 2) VEARTH = -UNIT(R) WHERE R HAS BEEN UPDATED TO APPROXIMATE TIME OF
# SIGHTINGS.
#
# DEBRIS
# WORK AREA
# X,Y,ZNB
# SINCDU, COSCDU
# STARAD -- STAR +5
COUNT 14/PICAP
SETLOC P50S1
BANK
PICAPAR TC MAKECADR
TS QMIN
TC INTPRET
CALL
CDUTRIG
CALL
CALCSMSC
# Page 753
SETPD
0
SET DLOAD # VFLAG = 1
VFLAG
DPZERO
STOVL BESTI
XNB
VXSC PDVL
SIN33
ZNB
AXT,1 VXSC
228D # X1 = 37 X 6 + 6
COS33
VAD
VXM UNIT
REFSMMAT
STORE SAX # SAX = SHAFT AXIS
SSP SSP # S1 = S2 = 6
S1
6
S2
6
PIC1 TIX,1 GOTO # MAJOR STAR
PIC2
PICEND
PIC2 VLOAD* CALL
CATLOG,1
OCCULT
BON LXA,2
CULTFLAG
PIC1
X1
PIC3 TIX,2 GOTO
PIC4
PIC1
PIC4 VLOAD* CALL
CATLOG,2
OCCULT
BON VLOAD*
CULTFLAG
PIC3
CATLOG,1
DOT* DSU
CATLOG,2
CSS66 # SEPARATION LESS THAN 66 DEG.
BMN DAD
PIC3
CSS6640 # SEPARATION MORE THAN 40 DEG.
BPL
PIC3
# Page 754
VLOAD* DOT
CATLOG,1
SAX
DSU BMN # MAJOR STAR IN CONE
CSS33
PIC1
VLOAD* DOT
CATLOG,2
SAX
DSU BPL
CSS33
STRATGY
GOTO
PIC3
STRATGY BONCLR
VFLAG
NEWPAR
XCHX,1 XCHX,2
BESTI
BESTJ
STRAT VLOAD* DOT*
CATLOG,1
CATLOG,2
PUSH BOFINV
VFLAG
STRAT -3
DLOAD DSU
BPL
PIC3
NEWPAR SXA,1 SXA,2
BESTI
BESTJ
GOTO
PIC3
OCCULT MXV BVSU
CULTRIX
CSS
BZE
CULTED
BMN SIGN
CULTED
MPAC +3
BMN SIGN
CULTED
MPAC +5
BMN CLRGO
CULTED
CULTFLAG
QPRET
CULTED SETGO
# Page 755
CULTFLAG
QPRET
CSS = CEARTH
SIN33 2DEC .5376381241
COS33 2DEC .8431756920
CSS66 2DEC .060480472 # (COS76)/4
CSS6640 2DEC -.15602587 # (COS76 - COS30)/4
CSS33 2DEC .197002688 # (COS(1/2(76))/4
PICEND BOFF EXIT
VFLAG
PICGXT
TC PICBXT
PICGXT EXIT
INCR QMIN
PICBXT CA QMIN
TC SWCALL
#V1 = 12D
# Page 756
# NAME -- R51 FINE ALIGN
# FUNCTION -- TO ALIGN THE STABLE MEMBER TO REFSSMAT
# CALLING SEQ -- CALL R51
# INPUT -- BESTI, BESTJ (PAIR OF STAR NO)
# OUTPUT -- GYRO TORQUE PULSES
# SUBROUTINES -- R52, R54, R55 (SXTNB, NBSM, AXISGEN)
COUNT 14/R51
R51 EXIT
CAF BIT1
TS STARIND
TS MARKINDX
R51.2 TC INTPRET
R51.3 CLEAR CLEAR
TARG2FLG
TARG1FLG
EXIT
TC PHASCHNG
OCT 05024 # RESTART GR 4 FOR R52-R53
OCT 13000
INDEX STARIND
CA BESTI
EXTEND
MP 1/6TH
TS STARCODE
R51DSP CAF V01N70
TC BANKCALL
CADR GOFLASHR
TC GOTOP00H
TC +5
TC -5
CAF SIX
TC BLANKET
TCF ENDOFJOB
TC CHKSCODE
TC FALTON
TC R51DSP
TC INTPRET
RTB CALL
LOADTIME
PLANET
SSP LXA,1
S1
0
STARIND
TIX,1
R51ST
STCALL STARSAV2 # 2ND STAR
R51ST +1
R51ST STORE STARSAV1 # 1ST STAR
# Page 757
EXIT
CS MODREG # IS THIS P54
AD OCT66
EXTEND
BZF R51B # YES
TC INTPRET
CALL
R52 # AOP WILL MAKE CALLS TO SIGHTING
R51A CALL # COMPUTE LOS IN SM FROM MARK DATA
SXTSM
STORE STARSAV2
EXIT
TC BANKCALL
CADR MKRELEAS
TC INTPRET
DLOAD CALL
TSIGHT
PLANET
EXIT
CCS STARIND
TC R51.4
TC INTPRET
MXV UNIT
REFSMMAT
STORE STARAD
VLOAD
STARSAV2
STOVL 6D
STARSAV1
STOVL 12D
PLANVEC
STCALL STARAD +6
R54 # STAR DATA TEST
BOFF CALL