1 | *
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2 | * $Id: mnderi.F,v 1.1.1.1 2003-06-11 14:18:26 cmv Exp $
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3 | *
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4 | * $Log: not supported by cvs2svn $
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5 | * Revision 1.2 1996/03/15 18:02:43 james
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6 | * Modified Files:
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7 | * mnderi.F eliminate possible division by zero
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8 | * mnexcm.F suppress print on STOP when print flag=-1
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9 | * set FVAL3 to flag if FCN already called with IFLAG=3
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10 | * mninit.F set version 96.03
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11 | * mnlims.F remove arguments, not needed
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12 | * mnmigr.F VLEN -> LENV in debug print statement
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13 | * mnparm.F move call to MNRSET to after NPAR redefined, to zero all
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14 | * mnpsdf.F eliminate possible division by zero
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15 | * mnscan.F suppress printout when print flag =-1
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16 | * mnset.F remove arguments in call to MNLIMS
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17 | * mnsimp.F fix CSTATU so status is PROGRESS only if new minimum
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18 | * mnvert.F eliminate possible division by zero
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19 | *
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20 | * Revision 1.1.1.1 1996/03/07 14:31:29 mclareni
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21 | * Minuit
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22 | *
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23 | *
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24 | #include "minuit/pilot.h"
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25 | SUBROUTINE MNDERI(FCN,FUTIL)
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26 | #include "minuit/d506dp.inc"
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27 | CC Calculates the first derivatives of FCN (GRD),
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28 | CC either by finite differences or by transforming the user-
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29 | CC supplied derivatives to internal coordinates,
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30 | CC according to whether ISW(3) is zero or one.
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31 | CC
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32 | #include "minuit/d506cm.inc"
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33 | EXTERNAL FCN,FUTIL
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34 | LOGICAL LDEBUG
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35 | CHARACTER CBF1*22
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36 | NPARX = NPAR
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37 | LDEBUG = (IDBG(2) .GE. 1)
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38 | IF (AMIN .EQ. UNDEFI) CALL MNAMIN(FCN,FUTIL)
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39 | IF (ISW(3) .EQ. 1) GO TO 100
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40 | IF (LDEBUG) THEN
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41 | C make sure starting at the right place
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42 | CALL MNINEX(X)
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43 | NPARX = NPAR
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44 | CALL FCN(NPARX,GIN,FS1,U,4,FUTIL)
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45 | NFCN = NFCN + 1
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46 | IF (FS1 .NE. AMIN) THEN
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47 | DF = AMIN - FS1
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48 | WRITE (CBF1(1:12),'(G12.3)') DF
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49 | CALL MNWARN('D','MNDERI',
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50 | + 'function value differs from AMIN by '//CBF1(1:12) )
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51 | AMIN = FS1
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52 | ENDIF
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53 | WRITE
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54 | + (ISYSWR,'(/'' FIRST DERIVATIVE DEBUG PRINTOUT. MNDERI''/
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55 | + '' PAR DERIV STEP MINSTEP OPTSTEP '',
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56 | + '' D1-D2 2ND DRV'')')
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57 | ENDIF
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58 | DFMIN = 8. * EPSMA2*(ABS(AMIN)+UP)
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59 | VRYSML = 8.* EPSMAC**2
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60 | IF (ISTRAT .LE. 0) THEN
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61 | NCYC = 2
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62 | TLRSTP = 0.5
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63 | TLRGRD = 0.1
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64 | ELSE IF (ISTRAT .EQ. 1) THEN
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65 | NCYC = 3
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66 | TLRSTP = 0.3
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67 | TLRGRD = 0.05
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68 | ELSE
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69 | NCYC = 5
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70 | TLRSTP = 0.1
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71 | TLRGRD = 0.02
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72 | ENDIF
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73 | C loop over variable parameters
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74 | DO 60 I=1,NPAR
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75 | EPSPRI = EPSMA2 + ABS(GRD(I)*EPSMA2)
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76 | C two-point derivatives always assumed necessary
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77 | C maximum number of cycles over step size depends on strategy
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78 | XTF = X(I)
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79 | STEPB4 = 0.
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80 | C loop as little as possible here!
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81 | DO 45 ICYC= 1, NCYC
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82 | C ........ theoretically best step
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83 | OPTSTP = SQRT(DFMIN/(ABS(G2(I))+EPSPRI))
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84 | C step cannot decrease by more than a factor of ten
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85 | STEP = MAX(OPTSTP, ABS(0.1*GSTEP(I)))
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86 | C but if parameter has limits, max step size = 0.5
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87 | IF (GSTEP(I).LT.ZERO .AND. STEP.GT.0.5) STEP=0.5
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88 | C and not more than ten times the previous step
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89 | STPMAX = 10.*ABS(GSTEP(I))
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90 | IF (STEP .GT. STPMAX) STEP = STPMAX
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91 | C minimum step size allowed by machine precision
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92 | STPMIN = MAX(VRYSML, 8.*ABS(EPSMA2*X(I)))
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93 | IF (STEP .LT. STPMIN) STEP = STPMIN
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94 | C end of iterations if step change less than factor 2
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95 | IF (ABS((STEP-STEPB4)/STEP) .LT. TLRSTP) GO TO 50
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96 | C take step positive
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97 | GSTEP(I) = SIGN(STEP, GSTEP(I))
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98 | STEPB4 = STEP
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99 | X(I) = XTF + STEP
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100 | CALL MNINEX(X)
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101 | CALL FCN(NPARX,GIN,FS1,U,4,FUTIL)
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102 | NFCN=NFCN+1
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103 | C take step negative
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104 | X(I) = XTF - STEP
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105 | CALL MNINEX(X)
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106 | CALL FCN(NPARX,GIN,FS2,U,4,FUTIL)
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107 | NFCN=NFCN+1
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108 | GRBFOR = GRD(I)
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109 | GRD(I) = (FS1-FS2)/(2.0*STEP)
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110 | G2(I) = (FS1+FS2-2.0*AMIN)/(STEP**2)
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111 | X(I) = XTF
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112 | IF (LDEBUG) THEN
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113 | D1D2 = (FS1+FS2-2.0*AMIN)/STEP
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114 | WRITE (ISYSWR,41) I,GRD(I),STEP,STPMIN,OPTSTP,D1D2,G2(I)
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115 | 41 FORMAT (I4,2G11.3,5G10.2)
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116 | ENDIF
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117 | C see if another iteration is necessary
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118 | IF (ABS(GRBFOR-GRD(I))/(ABS(GRD(I))+DFMIN/STEP) .LT. TLRGRD)
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119 | + GO TO 50
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120 | 45 CONTINUE
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121 | C end of ICYC loop. too many iterations
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122 | IF (NCYC .EQ. 1) GO TO 50
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123 | WRITE (CBF1,'(2E11.3)') GRD(I),GRBFOR
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124 | CALL MNWARN('D','MNDERI',
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125 | + 'First derivative not converged. '//CBF1)
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126 | 50 CONTINUE
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127 | C
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128 | 60 CONTINUE
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129 | CALL MNINEX(X)
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130 | RETURN
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131 | C . derivatives calc by fcn
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132 | 100 DO 150 IINT= 1, NPAR
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133 | IEXT = NEXOFI(IINT)
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134 | IF (NVARL(IEXT) .GT. 1) GO TO 120
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135 | GRD(IINT) = GIN(IEXT)
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136 | GO TO 150
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137 | 120 DD = (BLIM(IEXT)-ALIM(IEXT))*0.5 *COS(X(IINT))
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138 | GRD(IINT) = GIN(IEXT)*DD
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139 | 150 CONTINUE
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140 | 200 RETURN
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141 | END
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