[2403] | 1 | *
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| 2 | * $Id: mnimpr.F,v 1.1.1.1 2003-06-11 14:18:28 cmv Exp $
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| 3 | *
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| 4 | * $Log: not supported by cvs2svn $
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| 5 | * Revision 1.1.1.1 1996/03/07 14:31:30 mclareni
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| 6 | * Minuit
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| 7 | *
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| 8 | *
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| 9 | #include "minuit/pilot.h"
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| 10 | SUBROUTINE MNIMPR(FCN,FUTIL)
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| 11 | #include "minuit/d506dp.inc"
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| 12 | CC Attempts to improve on a good local minimum by finding a
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| 13 | CC better one. The quadratic part of FCN is removed by MNCALF
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| 14 | CC and this transformed function is minimized using the simplex
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| 15 | CC method from several random starting points.
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| 16 | CC ref. -- Goldstein and Price, Math.Comp. 25, 569 (1971)
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| 17 | CC
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| 18 | #include "minuit/d506cm.inc"
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| 19 | EXTERNAL FCN,FUTIL
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| 20 | DIMENSION DSAV(MNI), Y(MNI+1)
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| 21 | PARAMETER (ALPHA=1.,BETA=0.5,GAMMA=2.0)
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| 22 | DATA RNUM/0./
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| 23 | IF (NPAR .LE. 0) RETURN
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| 24 | IF (AMIN .EQ. UNDEFI) CALL MNAMIN(FCN,FUTIL)
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| 25 | CSTATU = 'UNCHANGED '
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| 26 | ITAUR = 1
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| 27 | EPSI = 0.1*UP
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| 28 | NPFN=NFCN
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| 29 | NLOOP = WORD7(2)
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| 30 | IF (NLOOP .LE. 0) NLOOP = NPAR + 4
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| 31 | NPARX = NPAR
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| 32 | NPARP1=NPAR+1
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| 33 | WG = 1.0/FLOAT(NPAR)
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| 34 | SIGSAV = EDM
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| 35 | APSI = AMIN
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| 36 | DO 2 I= 1, NPAR
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| 37 | XT(I) = X(I)
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| 38 | DSAV(I) = WERR(I)
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| 39 | DO 2 J = 1, I
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| 40 | NDEX = I*(I-1)/2 + J
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| 41 | P(I,J) = VHMAT(NDEX)
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| 42 | 2 P(J,I) = P(I,J)
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| 43 | CALL MNVERT(P,MAXINT,MAXINT,NPAR,IFAIL)
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| 44 | IF (IFAIL .GE. 1) GO TO 280
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| 45 | C Save inverted matrix in VT
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| 46 | DO 12 I= 1, NPAR
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| 47 | NDEX = I*(I-1)/2
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| 48 | DO 12 J= 1, I
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| 49 | NDEX = NDEX + 1
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| 50 | 12 VTHMAT(NDEX) = P(I,J)
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| 51 | LOOP = 0
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| 52 | C
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| 53 | 20 CONTINUE
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| 54 | DO 25 I= 1, NPAR
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| 55 | DIRIN(I) = 2.0*DSAV(I)
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| 56 | CALL MNRN15(RNUM,ISEED)
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| 57 | 25 X(I) = XT(I) + 2.0*DIRIN(I)*(RNUM-0.5)
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| 58 | LOOP = LOOP + 1
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| 59 | REG = 2.0
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| 60 | IF (ISW(5) .GE. 0) WRITE (ISYSWR, 1040) LOOP
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| 61 | 30 CALL MNCALF(FCN,X,YCALF,FUTIL)
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| 62 | AMIN = YCALF
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| 63 | C . . . . set up random simplex
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| 64 | JL = NPARP1
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| 65 | JH = NPARP1
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| 66 | Y(NPARP1) = AMIN
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| 67 | AMAX = AMIN
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| 68 | DO 45 I= 1, NPAR
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| 69 | XI = X(I)
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| 70 | CALL MNRN15(RNUM,ISEED)
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| 71 | X(I) = XI - DIRIN(I) *(RNUM-0.5)
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| 72 | CALL MNCALF(FCN,X,YCALF,FUTIL)
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| 73 | Y(I) = YCALF
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| 74 | IF (Y(I) .LT. AMIN) THEN
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| 75 | AMIN = Y(I)
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| 76 | JL = I
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| 77 | ELSE IF (Y(I) .GT. AMAX) THEN
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| 78 | AMAX = Y(I)
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| 79 | JH = I
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| 80 | ENDIF
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| 81 | DO 40 J= 1, NPAR
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| 82 | 40 P(J,I) = X(J)
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| 83 | P(I,NPARP1) = XI
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| 84 | X(I) = XI
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| 85 | 45 CONTINUE
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| 86 | C
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| 87 | EDM = AMIN
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| 88 | SIG2 = EDM
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| 89 | C . . . . . . . start main loop
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| 90 | 50 CONTINUE
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| 91 | IF (AMIN .LT. ZERO) GO TO 95
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| 92 | IF (ISW(2) .LE. 2) GO TO 280
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| 93 | EP = 0.1*AMIN
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| 94 | IF (SIG2 .LT. EP .AND. EDM.LT.EP ) GO TO 100
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| 95 | SIG2 = EDM
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| 96 | IF ((NFCN-NPFN) .GT. NFCNMX) GO TO 300
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| 97 | C calculate new point * by reflection
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| 98 | DO 60 I= 1, NPAR
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| 99 | PB = 0.
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| 100 | DO 59 J= 1, NPARP1
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| 101 | 59 PB = PB + WG * P(I,J)
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| 102 | PBAR(I) = PB - WG * P(I,JH)
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| 103 | 60 PSTAR(I)=(1.+ALPHA)*PBAR(I)-ALPHA*P(I,JH)
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| 104 | CALL MNCALF(FCN,PSTAR,YCALF,FUTIL)
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| 105 | YSTAR = YCALF
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| 106 | IF(YSTAR.GE.AMIN) GO TO 70
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| 107 | C point * better than jl, calculate new point **
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| 108 | DO 61 I=1,NPAR
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| 109 | 61 PSTST(I)=GAMMA*PSTAR(I)+(1.-GAMMA)*PBAR(I)
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| 110 | CALL MNCALF(FCN,PSTST,YCALF,FUTIL)
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| 111 | YSTST = YCALF
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| 112 | 66 IF (YSTST .LT. Y(JL)) GO TO 67
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| 113 | CALL MNRAZZ(YSTAR,PSTAR,Y,JH,JL)
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| 114 | GO TO 50
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| 115 | 67 CALL MNRAZZ(YSTST,PSTST,Y,JH,JL)
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| 116 | GO TO 50
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| 117 | C point * is not as good as jl
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| 118 | 70 IF (YSTAR .GE. Y(JH)) GO TO 73
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| 119 | JHOLD = JH
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| 120 | CALL MNRAZZ(YSTAR,PSTAR,Y,JH,JL)
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| 121 | IF (JHOLD .NE. JH) GO TO 50
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| 122 | C calculate new point **
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| 123 | 73 DO 74 I=1,NPAR
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| 124 | 74 PSTST(I)=BETA*P(I,JH)+(1.-BETA)*PBAR(I)
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| 125 | CALL MNCALF(FCN,PSTST,YCALF,FUTIL)
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| 126 | YSTST = YCALF
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| 127 | IF(YSTST.GT.Y(JH)) GO TO 30
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| 128 | C point ** is better than jh
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| 129 | IF (YSTST .LT. AMIN) GO TO 67
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| 130 | CALL MNRAZZ(YSTST,PSTST,Y,JH,JL)
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| 131 | GO TO 50
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| 132 | C . . . . . . end main loop
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| 133 | 95 IF (ISW(5) .GE. 0) WRITE (ISYSWR,1000)
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| 134 | REG = 0.1
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| 135 | C . . . . . ask if point is new
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| 136 | 100 CALL MNINEX(X)
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| 137 | CALL FCN(NPARX,GIN,AMIN,U,4,FUTIL)
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| 138 | NFCN = NFCN + 1
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| 139 | DO 120 I= 1, NPAR
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| 140 | DIRIN(I) = REG*DSAV(I)
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| 141 | IF (ABS(X(I)-XT(I)) .GT. DIRIN(I)) GO TO 150
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| 142 | 120 CONTINUE
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| 143 | GO TO 230
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| 144 | 150 NFCNMX = NFCNMX + NPFN - NFCN
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| 145 | NPFN = NFCN
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| 146 | CALL MNSIMP(FCN,FUTIL)
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| 147 | IF (AMIN .GE. APSI) GO TO 325
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| 148 | DO 220 I= 1, NPAR
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| 149 | DIRIN(I) = 0.1 *DSAV(I)
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| 150 | IF (ABS(X(I)-XT(I)) .GT. DIRIN(I)) GO TO 250
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| 151 | 220 CONTINUE
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| 152 | 230 IF (AMIN .LT. APSI) GO TO 350
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| 153 | GO TO 325
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| 154 | C . . . . . . truly new minimum
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| 155 | 250 LNEWMN = .TRUE.
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| 156 | IF (ISW(2) .GE. 1) THEN
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| 157 | ISW(2) = 1
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| 158 | DCOVAR = MAX(DCOVAR,HALF)
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| 159 | ELSE
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| 160 | DCOVAR = 1.
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| 161 | ENDIF
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| 162 | ITAUR = 0
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| 163 | NFCNMX = NFCNMX + NPFN - NFCN
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| 164 | CSTATU = 'NEW MINIMU'
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| 165 | IF (ISW(5) .GE. 0) WRITE (ISYSWR,1030)
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| 166 | RETURN
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| 167 | C . . . return to previous region
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| 168 | 280 IF (ISW(5) .GT. 0) WRITE (ISYSWR,1020)
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| 169 | GO TO 325
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| 170 | 300 ISW(1) = 1
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| 171 | 325 DO 330 I= 1, NPAR
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| 172 | DIRIN(I) = 0.01*DSAV(I)
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| 173 | 330 X(I) = XT(I)
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| 174 | AMIN = APSI
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| 175 | EDM = SIGSAV
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| 176 | 350 CALL MNINEX(X)
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| 177 | IF (ISW(5) .GT. 0) WRITE (ISYSWR,1010)
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| 178 | CSTATU= 'UNCHANGED '
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| 179 | CALL MNRSET(0)
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| 180 | IF (ISW(2) .LT. 2) GO TO 380
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| 181 | IF (LOOP .LT. NLOOP .AND. ISW(1) .LT. 1) GO TO 20
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| 182 | 380 CALL MNPRIN (5,AMIN)
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| 183 | ITAUR = 0
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| 184 | RETURN
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| 185 | 1000 FORMAT (54H AN IMPROVEMENT ON THE PREVIOUS MINIMUM HAS BEEN FOUND)
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| 186 | 1010 FORMAT (51H IMPROVE HAS RETURNED TO REGION OF ORIGINAL MINIMUM)
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| 187 | 1020 FORMAT (/44H COVARIANCE MATRIX WAS NOT POSITIVE-DEFINITE)
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| 188 | 1030 FORMAT (/38H IMPROVE HAS FOUND A TRULY NEW MINIMUM/1H ,37(1H*)/)
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| 189 | 1040 FORMAT (/18H START ATTEMPT NO.,I2, 20H TO FIND NEW MINIMUM)
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| 190 | END
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