1 | |
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2 | subroutine getfpfields(itime,nstop,metdata_format) |
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3 | ! i o |
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4 | !***************************************************************************** |
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5 | ! * |
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6 | ! This subroutine manages the 3 data fields to be kept in memory. * |
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7 | ! During the first time step of petterssen it has to be fulfilled that the * |
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8 | ! first data field must have |wftime|<itime, i.e. the absolute value of * |
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9 | ! wftime must be smaller than the absolute value of the current time in [s].* |
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10 | ! The other 2 fields are the next in time after the first one. * |
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11 | ! Pointers (memind) are used, because otherwise one would have to resort the* |
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12 | ! wind fields, which costs a lot of computing time. Here only the pointers * |
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13 | ! are resorted. * |
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14 | ! * |
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15 | ! Author: A. Stohl * |
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16 | ! * |
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17 | ! 29 April 1994 * |
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18 | ! * |
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19 | !***************************************************************************** |
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20 | ! Changes, Bernd C. Krueger, Feb. 2001: |
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21 | ! Variables tth,qvh,tthn,qvhn (on eta coordinates) in common block. |
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22 | ! Function of nstop extended. |
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23 | !***************************************************************************** |
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24 | ! * |
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25 | ! Variables: * |
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26 | ! lwindinterval [s] time difference between the two wind fields read in * |
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27 | ! indj indicates the number of the wind field to be read in * |
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28 | ! indmin remembers the number of wind fields already treated * |
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29 | ! memind(2) pointer, on which place the wind fields are stored * |
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30 | ! memtime(2) [s] times of the wind fields, which are kept in memory * |
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31 | ! itime [s] current time since start date of trajectory calcu- * |
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32 | ! lation * |
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33 | ! nstop > 0, if trajectory has to be terminated * |
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34 | ! nx,ny,nuvz,nwz field dimensions in x,y and z direction * |
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35 | ! uu(0:nxmax,0:nymax,nuvzmax,2) wind components in x-direction [m/s] * |
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36 | ! vv(0:nxmax,0:nymax,nuvzmax,2) wind components in y-direction [m/s] * |
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37 | ! ww(0:nxmax,0:nymax,nwzmax,2) wind components in z-direction [deltaeta/s]* |
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38 | ! tt(0:nxmax,0:nymax,nuvzmax,2) temperature [K] * |
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39 | ! ps(0:nxmax,0:nymax,2) surface pressure [Pa] * |
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40 | ! * |
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41 | ! Constants: * |
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42 | ! idiffmax maximum allowable time difference between 2 wind * |
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43 | ! fields * |
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44 | ! * |
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45 | !***************************************************************************** |
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46 | |
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47 | use par_mod |
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48 | use com_mod |
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49 | |
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50 | use fpmetbinary_mod |
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51 | |
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52 | implicit none |
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53 | |
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54 | integer :: indj,itime,nstop,memaux,metdata_format |
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55 | |
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56 | real :: uuh(0:nxmax-1,0:nymax-1,nuvzmax) |
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57 | real :: vvh(0:nxmax-1,0:nymax-1,nuvzmax) |
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58 | real :: pvh(0:nxmax-1,0:nymax-1,nuvzmax) |
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59 | real :: wwh(0:nxmax-1,0:nymax-1,nwzmax) |
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60 | real :: uuhn(0:nxmaxn-1,0:nymaxn-1,nuvzmax,maxnests) |
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61 | real :: vvhn(0:nxmaxn-1,0:nymaxn-1,nuvzmax,maxnests) |
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62 | real :: pvhn(0:nxmaxn-1,0:nymaxn-1,nuvzmax,maxnests) |
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63 | real :: wwhn(0:nxmaxn-1,0:nymaxn-1,nwzmax,maxnests) |
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64 | |
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65 | integer :: indmin = 1 |
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66 | |
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67 | !character(len=120) :: fpdir ! Directory the .fp files are in |
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68 | character(len=512) fpfname ! .fp filename |
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69 | |
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70 | #ifdef PERFTIMER |
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71 | INTEGER millisecs_start, millisecs_stop, count_rate, count_max |
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72 | #endif |
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73 | |
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74 | |
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75 | ! Check, if wind fields are available for the current time step |
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76 | !************************************************************** |
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77 | |
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78 | nstop=0 |
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79 | |
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80 | if ((ldirect*wftime(1).gt.ldirect*itime).or. & |
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81 | (ldirect*wftime(numbwf).lt.ldirect*itime)) then |
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82 | write(*,*) 'FLEXPART WARNING: NO WIND FIELDS ARE AVAILABLE.' |
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83 | write(*,*) 'A TRAJECTORY HAS TO BE TERMINATED.' |
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84 | nstop=4 |
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85 | return |
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86 | endif |
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87 | |
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88 | |
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89 | if ((ldirect*memtime(1).le.ldirect*itime).and. & |
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90 | (ldirect*memtime(2).gt.ldirect*itime)) then |
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91 | |
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92 | ! The right wind fields are already in memory -> don't do anything |
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93 | !***************************************************************** |
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94 | |
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95 | continue |
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96 | |
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97 | else if ((ldirect*memtime(2).le.ldirect*itime).and. & |
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98 | (memtime(2).ne.999999999)) then |
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99 | |
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100 | |
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101 | ! Current time is after 2nd wind field |
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102 | ! -> Resort wind field pointers, so that current time is between 1st and 2nd |
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103 | !*************************************************************************** |
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104 | |
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105 | memaux=memind(1) |
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106 | memind(1)=memind(2) |
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107 | memind(2)=memaux |
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108 | memtime(1)=memtime(2) |
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109 | |
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110 | |
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111 | ! Read a new wind field and store it on place memind(2) |
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112 | !****************************************************** |
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113 | |
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114 | do indj=indmin,numbwf-1 |
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115 | if (ldirect*wftime(indj+1).gt.ldirect*itime) then |
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116 | |
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117 | #ifdef PERFTIMER |
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118 | CALL SYSTEM_CLOCK(millisecs_start, count_rate, count_max) |
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119 | #endif |
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120 | ! Read in a single .fp file, placing contents at index 2 |
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121 | if ( ldirect.eq.1 ) then |
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122 | fpfname = TRIM(path(3)) // TRIM(wfname(indj+1)) |
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123 | else |
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124 | fpfname = TRIM(path(3)) // TRIM(wfname(indj+1)) |
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125 | endif |
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126 | print *, 'loading... ', TRIM(fpfname) |
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127 | CALL fpmetbinary_load(TRIM(fpfname), memind(2)) |
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128 | memtime(2)=wftime(indj+1) |
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129 | nstop = 1 |
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130 | |
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131 | #ifdef PERFTIMER |
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132 | CALL SYSTEM_CLOCK(millisecs_stop, count_rate, count_max) |
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133 | PRINT *, 'Wall time to process: ', TRIM(fpfname), & |
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134 | ': ', (millisecs_stop-millisecs_start)/1000.0, ' seconds' |
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135 | #endif |
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136 | |
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137 | |
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138 | goto 40 |
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139 | |
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140 | endif |
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141 | end do |
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142 | 40 indmin=indj |
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143 | |
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144 | else |
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145 | |
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146 | ! No wind fields, which can be used, are currently in memory |
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147 | ! -> read both wind fields |
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148 | !*********************************************************** |
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149 | |
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150 | do indj=indmin,numbwf-1 |
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151 | if ((ldirect*wftime(indj).le.ldirect*itime).and. & |
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152 | (ldirect*wftime(indj+1).gt.ldirect*itime)) then |
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153 | memind(1)=1 |
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154 | |
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155 | #ifdef PERFTIMER |
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156 | CALL SYSTEM_CLOCK(millisecs_start, count_rate, count_max) |
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157 | #endif |
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158 | ! Read in first .fp file |
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159 | if ( ldirect.eq.1 ) then |
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160 | fpfname = TRIM(path(3)) // TRIM(wfname(indj)) |
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161 | else |
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162 | fpfname = TRIM(path(3)) // TRIM(wfname(indj)) |
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163 | endif |
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164 | print *, 'loading... ', TRIM(fpfname) |
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165 | CALL fpmetbinary_load(TRIM(fpfname), memind(1)) |
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166 | memtime(1)=wftime(indj) |
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167 | memind(2)=2 |
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168 | #ifdef PERFTIMER |
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169 | CALL SYSTEM_CLOCK(millisecs_stop, count_rate, count_max) |
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170 | PRINT *, 'Wall time to process: ', TRIM(fpfname), & |
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171 | ': ', (millisecs_stop-millisecs_start)/1000.0, ' seconds' |
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172 | #endif |
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173 | |
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174 | #ifdef PERFTIMER |
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175 | CALL SYSTEM_CLOCK(millisecs_start, count_rate, count_max) |
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176 | #endif |
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177 | ! Read in second .fp file |
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178 | if ( ldirect.eq.1 ) then |
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179 | fpfname = TRIM(path(3)) // TRIM(wfname(indj+1)) |
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180 | else |
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181 | fpfname = TRIM(path(3)) // TRIM(wfname(indj+1)) |
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182 | endif |
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183 | print *, 'loading... ', TRIM(fpfname) |
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184 | CALL fpmetbinary_load(TRIM(fpfname), memind(2)) |
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185 | memtime(2)=wftime(indj+1) |
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186 | nstop = 1 |
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187 | #ifdef PERFTIMER |
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188 | CALL SYSTEM_CLOCK(millisecs_stop, count_rate, count_max) |
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189 | PRINT *, 'Wall time to process: ', TRIM(fpfname), & |
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190 | ': ', (millisecs_stop-millisecs_start)/1000.0, ' seconds' |
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191 | #endif |
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192 | |
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193 | |
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194 | goto 60 |
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195 | endif |
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196 | end do |
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197 | 60 indmin=indj |
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198 | |
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199 | endif |
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200 | |
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201 | lwindinterv=abs(memtime(2)-memtime(1)) |
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202 | |
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203 | if (lwindinterv.gt.idiffmax) nstop=3 |
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204 | |
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205 | end subroutine getfpfields |
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206 | |
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207 | |
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