1 | *$ CREATE SOURCE.FOR |
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2 | *COPY SOURCE |
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3 | * |
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4 | *=== source ===========================================================* |
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5 | * |
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6 | SUBROUTINE SOURCE ( NOMORE ) |
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7 | |
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8 | INCLUDE '(DBLPRC)' |
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9 | INCLUDE '(DIMPAR)' |
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10 | INCLUDE '(IOUNIT)' |
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11 | * |
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12 | *----------------------------------------------------------------------* |
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13 | * * |
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14 | * Copyright (C) 1990-2009 by Alfredo Ferrari & Paola Sala * |
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15 | * All Rights Reserved. * |
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16 | * * |
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17 | * * |
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18 | * New source for FLUKA9x-FLUKA20xy: * |
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19 | * * |
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20 | * Created on 07 january 1990 by Alfredo Ferrari & Paola Sala * |
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21 | * Infn - Milan * |
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22 | * * |
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23 | * Last change on 08-feb-09 by Alfredo Ferrari * |
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24 | * * |
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25 | * This is just an example of a possible user written source routine. * |
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26 | * note that the beam card still has some meaning - in the scoring the * |
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27 | * maximum momentum used in deciding the binning is taken from the * |
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28 | * beam momentum. Other beam card parameters are obsolete. * |
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29 | * * |
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30 | * Output variables: * |
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31 | * * |
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32 | * Nomore = if > 0 the run will be terminated * |
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33 | * * |
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34 | *----------------------------------------------------------------------* |
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35 | * |
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36 | |
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37 | INCLUDE '(BEAMCM)' |
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38 | INCLUDE '(FHEAVY)' |
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39 | INCLUDE '(FLKSTK)' |
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40 | INCLUDE '(IOIOCM)' |
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41 | INCLUDE '(LTCLCM)' |
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42 | INCLUDE '(PAPROP)' |
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43 | INCLUDE '(SOURCM)' |
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44 | INCLUDE '(SUMCOU)' |
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45 | INCLUDE 'flukaio.inc' |
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46 | |
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47 | LOGICAL LFIRST |
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48 | |
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49 | SAVE LFIRST |
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50 | DATA LFIRST / .TRUE. / |
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51 | |
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52 | CHARACTER*13 FILNAM |
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53 | SAVE FILNAM |
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54 | DATA FILNAM / 'coupling.stop' / |
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55 | |
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56 | LOGICAL LEXIST |
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57 | SAVE LEXIST |
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58 | DATA LEXIST / .FALSE. / |
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59 | |
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60 | INTEGER ICOUNT, ITOTAL |
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61 | COMMON /TRACKING/ ICOUNT, ITOTAL |
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62 | |
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63 | INTEGER IPRINT |
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64 | LOGICAL LPRINT |
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65 | |
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66 | |
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67 | *======================================================================* |
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68 | * * |
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69 | * BASIC VERSION * |
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70 | * * |
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71 | *======================================================================* |
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72 | NOMORE = 0 |
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73 | * +-------------------------------------------------------------------* |
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74 | * | First call initializations: |
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75 | IF ( LFIRST ) THEN |
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76 | * | *** The following 3 cards are mandatory *** |
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77 | TKESUM = ZERZER |
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78 | LFIRST = .FALSE. |
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79 | LUSSRC = .TRUE. |
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80 | * | *** User initialization *** |
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81 | |
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82 | * Server Initialization |
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83 | |
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84 | IPORT = 0 ! Random assigned |
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85 | ITOTAL = 0 |
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86 | ICOUNT = 0 |
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87 | ITURN = 0 |
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88 | |
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89 | IPORT = 12345 |
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90 | IPORT = NTSTART(IPORT) |
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91 | if (IPORT .EQ. -1 ) THEN |
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92 | WRITE(LUNOUT,*) ' Error initializing server' |
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93 | CALL FLUSH(LUNOUT) |
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94 | GOTO 3900 |
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95 | END IF |
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96 | |
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97 | WRITE(LUNOUT,*) ' ' |
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98 | WRITE(LUNOUT,*) ' !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!' |
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99 | WRITE(LUNOUT,*) ' !! FlukaIO server initialized !!' |
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100 | WRITE(LUNOUT,*) ' !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!' |
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101 | WRITE(LUNOUT,*) ' ' |
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102 | WRITE(LUNOUT,*) ' Listening on port ', IPORT |
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103 | WRITE(LUNOUT,*) ' ' |
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104 | WRITE(LUNOUT,*) ' To stop the simulation, touch file: '// |
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105 | & FILNAM |
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106 | WRITE(LUNOUT,*) ' ' |
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107 | |
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108 | * Write server parameters |
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109 | CALL OAUXFI( '../network.nfo', 95, 'APPEND', IERR ) |
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110 | WRITE(95,*) IPORT ! Port number where the server is listening |
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111 | CALL FFLUSH |
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112 | CALL FLUSH(95) |
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113 | CLOSE(95) |
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114 | |
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115 | * parse configuration file: |
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116 | c CALL PARSECONF() |
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117 | |
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118 | * Initialize scrapers |
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119 | c CALL SCR_INIT() |
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120 | |
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121 | * Accept network connection |
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122 | WRITE(LUNOUT,*) ' Waiting for connection' |
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123 | CALL FLUSH(LUNOUT) |
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124 | |
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125 | ICID = NTACCEPT() |
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126 | IF (ICID .lt. 0) THEN |
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127 | WRITE(LUNOUT,*) ' Error accepting connection' |
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128 | CALL FLUSH(LUNOUT) |
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129 | GOTO 3800 |
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130 | END IF |
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131 | |
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132 | c NTTIMEOUT(ICID, 10000) |
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133 | WRITE(LUNOUT,*) ' Connection accepted' |
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134 | CALL FLUSH(LUNOUT) |
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135 | |
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136 | END IF ! End of initialization |
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137 | |
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138 | 1972 CONTINUE ! Next message |
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139 | |
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140 | * A.Mereghetti, 04/05/2011 |
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141 | * since BEAMPOS card is used, X/Y/Z/U/V/WBEAM are used |
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142 | * as expected: |
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143 | N = NTWAIT( |
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144 | & ICID, |
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145 | & MTYPE, |
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146 | & IDP, IDGEN, WGT, |
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147 | & XCBEAM, YCBEAM, ZCBEAM, |
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148 | & UCBEAM, VCBEAM, WCBEAM, |
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149 | & IAA, IZZ, AMBEAM, PCBEAM, |
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150 | & T) |
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151 | if(n.lt.0) then |
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152 | write(LUNOUT,*) 'Client timeout' |
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153 | CALL FLUSH(LUNOUT) |
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154 | goto 3900 |
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155 | end if |
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156 | |
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157 | *A enlever... |
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158 | * WRITE(LUNOUT,*)'PARAM: ', ICID, MTYPE, ITURN, |
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159 | * & IDP,IDGEN, WGT, XCBEAM, YCBEAM, ZCBEAM, |
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160 | * & UCBEAM, VCBEAM, WCBEAM, IAA, IZZ, |
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161 | * & AMBEAM, PCBEAM |
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162 | |
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163 | * +-- Parse message type and act consecuently |
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164 | * | |
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165 | IF(MTYPE.EQ.N_PART) THEN |
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166 | c Particle read, continue processing |
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167 | goto 3000 |
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168 | end if |
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169 | |
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170 | IF(MTYPE.EQ.N_TURN) THEN |
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171 | goto 3100 |
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172 | end if |
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173 | |
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174 | IF(MTYPE.EQ.N_END) THEN |
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175 | write(LUNOUT,*) ' Read end of computation' |
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176 | goto 3700 |
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177 | end if |
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178 | * | |
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179 | * +-- End of message parsing |
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180 | |
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181 | |
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182 | 3000 continue ! A particle was read |
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183 | * | |
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184 | * +-------------------------------------------------------------------* |
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185 | * Push one source particle to the stack. Note that you could as well |
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186 | * push many but this way we reserve a maximum amount of space in the |
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187 | * stack for the secondaries to be generated |
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188 | |
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189 | * First particle of the turn, start of turn |
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190 | IF(ICOUNT.EQ.0) THEN |
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191 | |
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192 | c User requested run stop by creating coupling.stop file |
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193 | INQUIRE ( FILE = FILNAM, EXIST = LEXIST ) |
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194 | IF (LEXIST) goto 4200 ! Inform error and close |
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195 | |
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196 | * Scraper start of turn |
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197 | c CALL SCR_SOT() |
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198 | END IF |
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199 | |
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200 | * Npflka is the stack counter: of course any time source is called it |
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201 | * must be =0 |
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202 | NPFLKA = NPFLKA + 1 |
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203 | ICOUNT = ICOUNT + 1 |
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204 | |
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205 | * Wt is the weight of the particle |
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206 | WTFLK (NPFLKA) = ONEONE |
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207 | WEIPRI = WEIPRI + WTFLK (NPFLKA) |
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208 | |
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209 | * Particle type (1=proton.....). Ijbeam is the type set by the BEAM |
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210 | * card |
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211 | * +-------------------------------------------------------------------* |
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212 | * | (Radioactive) isotope: |
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213 | IF ( IJBEAM .EQ. -2 .AND. LRDBEA ) THEN |
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214 | IARES = IPROA |
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215 | IZRES = IPROZ |
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216 | IISRES = IPROM |
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217 | CALL STISBM ( IARES, IZRES, IISRES ) |
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218 | IJHION = IPROZ * 1000 + IPROA |
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219 | IJHION = IJHION * 100 + KXHEAV |
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220 | IONID = IJHION |
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221 | CALL DCDION ( IONID ) |
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222 | CALL SETION ( IONID ) |
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223 | * | |
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224 | * +-------------------------------------------------------------------* |
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225 | * | Heavy ion: |
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226 | ELSE IF ( IJBEAM .EQ. -2 ) THEN |
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227 | IJHION = IPROZ * 1000 + IPROA |
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228 | IJHION = IJHION * 100 + KXHEAV |
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229 | IONID = IJHION |
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230 | CALL DCDION ( IONID ) |
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231 | CALL SETION ( IONID ) |
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232 | ILOFLK (NPFLKA) = IJHION |
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233 | * | Flag this is prompt radiation |
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234 | LRADDC (NPFLKA) = .FALSE. |
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235 | * | Group number for "low" energy neutrons, set to 0 anyway |
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236 | IGROUP (NPFLKA) = 0 |
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237 | * | |
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238 | * +-------------------------------------------------------------------* |
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239 | * | Normal hadron: |
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240 | ELSE |
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241 | IONID = IJBEAM |
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242 | ILOFLK (NPFLKA) = IJBEAM |
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243 | * | Flag this is prompt radiation |
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244 | LRADDC (NPFLKA) = .FALSE. |
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245 | * | Group number for "low" energy neutrons, set to 0 anyway |
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246 | IGROUP (NPFLKA) = 0 |
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247 | END IF |
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248 | * | |
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249 | * +-------------------------------------------------------------------* |
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250 | |
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251 | |
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252 | |
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253 | * From this point ..... |
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254 | * Particle generation (1 for primaries) |
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255 | LOFLK (NPFLKA) = 1 |
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256 | * User dependent flag: |
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257 | LOUSE (NPFLKA) = 0 |
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258 | * No channeling: |
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259 | LCHFLK (NPFLKA) = .FALSE. |
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260 | DCHFLK (NPFLKA) = ZERZER |
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261 | * User dependent spare variables: |
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262 | DO 100 ISPR = 1, MKBMX1 |
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263 | SPAREK (ISPR,NPFLKA) = ZERZER |
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264 | 100 CONTINUE |
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265 | * User dependent spare flags: |
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266 | DO 200 ISPR = 1, MKBMX2 |
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267 | ISPARK (ISPR,NPFLKA) = 0 |
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268 | 200 CONTINUE |
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269 | * Save the track number of the stack particle: |
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270 | ISPARK (MKBMX2,NPFLKA) = NPFLKA |
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271 | NPARMA = NPARMA + 1 |
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272 | NUMPAR (NPFLKA) = NPARMA |
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273 | NEVENT (NPFLKA) = 0 |
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274 | DFNEAR (NPFLKA) = +ZERZER |
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275 | * ... to this point: don't change anything |
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276 | * Particle age (s) |
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277 | AGESTK (NPFLKA) = +ZERZER |
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278 | AKNSHR (NPFLKA) = -TWOTWO |
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279 | * Kinetic energy of the particle (GeV) |
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280 | TKEFLK (NPFLKA) = SQRT ( PCBEAM**2 + AMBEAM**2 ) - AMBEAM |
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281 | * Particle momentum |
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282 | PMOFLK (NPFLKA) = PCBEAM |
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283 | * Cosines (tx,ty,tz) |
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284 | TXFLK (NPFLKA) = UCBEAM |
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285 | TYFLK (NPFLKA) = VCBEAM |
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286 | TZFLK (NPFLKA) = WCBEAM |
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287 | * Polarization cosines: |
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288 | TXPOL (NPFLKA) = -TWOTWO |
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289 | TYPOL (NPFLKA) = +ZERZER |
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290 | TZPOL (NPFLKA) = +ZERZER |
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291 | * Particle coordinates |
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292 | XFLK (NPFLKA) = XBEAM + XCBEAM |
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293 | YFLK (NPFLKA) = YBEAM + YCBEAM |
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294 | ZFLK (NPFLKA) = ZBEAM + ZCBEAM |
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295 | |
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296 | *Test, a enlever apres!!! |
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297 | |
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298 | * WRITE(LUNOUT,*)'Coordonnees:',XFLK (NPFLKA), YFLK (NPFLKA), |
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299 | * & ZFLK (NPFLKA), ZBEAM, ZCBEAM |
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300 | |
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301 | * |
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302 | * A.Mereghetti, 19/02/2010 |
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303 | * the fort.99 file is written every IPRINT revolutions, as |
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304 | * requested from the config.txt file: |
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305 | IF ( LPRINT ) THEN |
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306 | * first turn: print anyway |
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307 | IF ( ITURN .EQ. 1 ) THEN |
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308 | WRITE(99,'(2i7,1p,6(1x,e16.9))') IDP,ITURN, |
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309 | & XFLK(NPFLKA),YFLK(NPFLKA), |
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310 | & TXFLK(NPFLKA),TYFLK(NPFLKA),TZFLK(NPFLKA),TKEFLK(NPFLKA) |
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311 | CALL FLUSH(99) |
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312 | |
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313 | * moving scraper? |
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314 | c ELSEIF ( LMVSCR ) THEN |
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315 | * print if: |
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316 | c IF ( ( MOD( ITURN, IPRINT ).EQ.1 .AND. |
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317 | c & ( ITURN .GE. ISCINS ) ) .OR. |
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318 | c & ( IPRINT .EQ. 1 ) ) THEN |
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319 | c WRITE(99,'(2i7,1p,6(1x,e16.9))') IDP,ITURN, |
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320 | c & XFLK(NPFLKA),YFLK(NPFLKA), |
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321 | c & TXFLK(NPFLKA),TYFLK(NPFLKA),TZFLK(NPFLKA), |
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322 | c & TKEFLK(NPFLKA) |
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323 | c CALL FLUSH(99) |
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324 | c ENDIF |
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325 | |
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326 | * not moving scraper? |
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327 | ELSEIF ( ( MOD( ITURN, IPRINT ).EQ.1 ) .OR. |
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328 | & ( IPRINT .EQ. 1 ) ) THEN |
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329 | WRITE(99,'(2i7,1p,6(1x,e16.9))') IDP,ITURN, |
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330 | & XFLK(NPFLKA),YFLK(NPFLKA), |
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331 | & TXFLK(NPFLKA),TYFLK(NPFLKA),TZFLK(NPFLKA),TKEFLK(NPFLKA) |
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332 | CALL FLUSH(99) |
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333 | ENDIF |
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334 | ENDIF |
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335 | * |
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336 | * Calculate the total kinetic energy of the primaries: don't change |
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337 | IF ( ILOFLK (NPFLKA) .EQ. -2 .OR. ILOFLK (NPFLKA) .GT. 100000 ) |
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338 | & THEN |
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339 | TKESUM = TKESUM + TKEFLK (NPFLKA) * WTFLK (NPFLKA) |
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340 | ELSE IF ( ILOFLK (NPFLKA) .NE. 0 ) THEN |
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341 | TKESUM = TKESUM + ( TKEFLK (NPFLKA) + AMDISC (ILOFLK(NPFLKA)) ) |
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342 | & * WTFLK (NPFLKA) |
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343 | ELSE |
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344 | TKESUM = TKESUM + TKEFLK (NPFLKA) * WTFLK (NPFLKA) |
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345 | END IF |
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346 | RADDLY (NPFLKA) = ZERZER |
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347 | |
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348 | |
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349 | * Here we ask for the region number of the hitting point. |
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350 | * NREG (NPFLKA) = ... |
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351 | * The following line makes the starting region search much more |
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352 | * robust if particles are starting very close to a boundary: |
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353 | CALL GEOCRS ( TXFLK (NPFLKA), TYFLK (NPFLKA), TZFLK (NPFLKA) ) |
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354 | CALL GEOREG ( XFLK (NPFLKA), YFLK (NPFLKA), ZFLK (NPFLKA), |
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355 | & NRGFLK(NPFLKA), IDISC ) |
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356 | |
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357 | |
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358 | * Do not change these cards: |
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359 | CALL GEOHSM ( NHSPNT (NPFLKA), 1, -11, MLATTC ) |
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360 | NLATTC (NPFLKA) = MLATTC |
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361 | CMPATH (NPFLKA) = ZERZER |
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362 | CALL SOEVSV |
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363 | |
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364 | ! Scraper particle |
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365 | ! statistics on received particles |
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366 | c CALL SCR_PART(XCBEAM, YCBEAM, ZCBEAM, UCBEAM, VCBEAM, WCBEAM) |
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367 | |
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368 | ! Skip the rest, return with the particle |
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369 | RETURN |
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370 | |
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371 | 3100 continue ! End of turn |
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372 | ITURN = IDP |
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373 | c CALL SCR_EOT() |
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374 | N = NTSENDEOT(ICID, ITURN) |
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375 | |
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376 | write(LUNOUT,*) ' End of turn ', ITURN, ' received ', ICOUNT, |
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377 | & ' particles' |
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378 | |
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379 | ITOTAL = ITOTAL + ICOUNT |
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380 | ICOUNT = 0 |
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381 | |
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382 | ! iterate again |
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383 | goto 1972 |
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384 | |
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385 | |
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386 | 3700 continue ! the tracking is over, FLUKA is going to end |
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387 | |
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388 | write(LUNOUT,*) '** Sending end of connection' |
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389 | N = NTSENDEOC(ICID) |
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390 | |
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391 | c CALL SCR_EOC() |
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392 | |
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393 | 3800 continue ! Close connection |
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394 | |
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395 | write(LUNOUT,*) '** Closing connection' |
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396 | N = NTEND(ICID) |
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397 | ICID = -1 |
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398 | |
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399 | 3900 continue ! Close server |
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400 | |
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401 | write(LUNOUT,*) '** Shuting server down' |
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402 | N = NTSHDWN() |
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403 | NOMORE = 1 |
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404 | |
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405 | IF (ITOTAL.eq.0) THEN |
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406 | write(LUNOUT, *) '** 0 Particles received STOPPING Fluka' |
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407 | STOP |
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408 | END IF |
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409 | |
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410 | 4000 continue |
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411 | |
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412 | RETURN |
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413 | |
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414 | * +-------------------------------------------------------------------* |
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415 | * Exceptional exit, send and wait for end of computation |
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416 | 4200 continue |
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417 | |
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418 | write(LUNOUT,*) '** coupling.stop detected, ', |
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419 | & 'ending simulation' |
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420 | write(LUNOUT,*) "** Sending End Of Computation" |
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421 | |
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422 | N = NTSENDEOC(ICID) |
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423 | if(N.lt.0) then |
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424 | write(LUNOUT,*) 'Error sending end of turn' |
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425 | CALL FLUSH(LUNOUT) |
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426 | goto 3900 |
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427 | end if |
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428 | |
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429 | 4500 continue |
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430 | |
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431 | * Wait for an end of computation message |
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432 | N = NTWAIT( |
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433 | & ICID, |
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434 | & MTYPE, |
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435 | & IDP, IDGEN, WGT, |
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436 | & XCBEAM, YCBEAM, ZCBEAM, |
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437 | & UCBEAM, VCBEAM, WCBEAM, |
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438 | & IAA, IZZ, AMBEAM, PCBEAM, |
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439 | & T) |
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440 | if(N.lt.0) then |
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441 | write(LUNOUT,*) 'Client timeout' |
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442 | CALL FLUSH(LUNOUT) |
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443 | goto 3900 |
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444 | end if |
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445 | |
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446 | IF(MTYPE.NE.N_END) THEN |
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447 | goto 4500 ! Read next message |
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448 | end if |
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449 | |
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450 | goto 3800 |
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451 | * +-------------------------------------------------------------------* |
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452 | |
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453 | *=== End of subroutine Source =========================================* |
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454 | END |
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