1 | !WRF:MEDIATION:IO |
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2 | ! ---principal wrf input routine (called from routines in module_io_domain ) |
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3 | |
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4 | SUBROUTINE input_wrf ( fid , grid , config_flags , switch , ierr ) |
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5 | USE module_domain |
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6 | USE module_state_description |
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7 | USE module_configure |
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8 | USE module_io |
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9 | USE module_io_wrf |
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10 | USE module_date_time |
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11 | USE module_bc_time_utilities |
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12 | USE module_utility |
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13 | IMPLICIT NONE |
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14 | #include <wrf_io_flags.h> |
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15 | #include <wrf_status_codes.h> |
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16 | TYPE(domain) :: grid |
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17 | TYPE(grid_config_rec_type), INTENT(INOUT) :: config_flags |
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18 | INTEGER, INTENT(IN) :: fid |
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19 | INTEGER, INTENT(IN) :: switch |
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20 | INTEGER, INTENT(INOUT) :: ierr |
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21 | |
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22 | ! Local data |
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23 | INTEGER ids , ide , jds , jde , kds , kde , & |
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24 | ims , ime , jms , jme , kms , kme , & |
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25 | ips , ipe , jps , jpe , kps , kpe |
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26 | |
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27 | INTEGER iname(9) |
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28 | INTEGER iordering(3) |
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29 | INTEGER icurrent_date(24) |
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30 | INTEGER i,j,k |
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31 | INTEGER icnt |
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32 | INTEGER ndim |
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33 | INTEGER ilen |
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34 | INTEGER , DIMENSION(3) :: domain_start , domain_end |
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35 | INTEGER , DIMENSION(3) :: memory_start , memory_end |
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36 | INTEGER , DIMENSION(3) :: patch_start , patch_end |
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37 | CHARACTER*256 errmess, currtimestr |
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38 | CHARACTER*40 :: this_datestr, next_datestr |
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39 | CHARACTER*9 NAMESTR |
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40 | INTEGER IBDY, NAMELEN |
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41 | LOGICAL wrf_dm_on_monitor |
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42 | EXTERNAL wrf_dm_on_monitor |
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43 | Type(WRFU_Time) time, currtime |
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44 | CHARACTER*19 new_date |
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45 | CHARACTER*24 base_date |
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46 | CHARACTER*80 fname |
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47 | LOGICAL dryrun |
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48 | INTEGER idt |
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49 | INTEGER itmp |
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50 | INTEGER dyn_opt_tmp, dyn_opt, filestate, ierr3 |
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51 | INTEGER :: ide_compare , jde_compare , kde_compare |
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52 | REAL , DIMENSION(16) :: lats16 , lons16 |
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53 | CHARACTER (len=19) simulation_start_date |
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54 | INTEGER simulation_start_year , & |
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55 | simulation_start_month , & |
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56 | simulation_start_day , & |
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57 | simulation_start_hour , & |
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58 | simulation_start_minute , & |
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59 | simulation_start_second |
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60 | REAL dx_compare , dy_compare , dum |
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61 | |
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62 | !<DESCRIPTION> |
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63 | ! |
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64 | ! Core wrf input routine for all input data streams. Part of mediation layer. |
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65 | ! |
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66 | ! Note that WRF IOAPI routines wrf_get_dom_ti_*() do not return values during |
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67 | ! training reads (dryrun). |
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68 | ! |
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69 | !</DESCRIPTION> |
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70 | |
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71 | WRITE(wrf_err_message,*)'input_wrf: begin, fid = ',fid |
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72 | CALL wrf_debug( 300 , wrf_err_message ) |
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73 | |
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74 | ierr = 0 |
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75 | |
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76 | CALL get_ijk_from_grid ( grid , & |
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77 | ids, ide, jds, jde, kds, kde, & |
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78 | ims, ime, jms, jme, kms, kme, & |
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79 | ips, ipe, jps, jpe, kps, kpe ) |
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80 | |
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81 | ! simulation start time is a Singleton maintained by head_grid |
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82 | IF ( ( switch .EQ. model_input_only ) .OR. & |
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83 | ( switch .EQ. restart_only ) ) THEN |
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84 | CALL wrf_get_dom_ti_char ( fid , 'SIMULATION_START_DATE' , simulation_start_date , ierr ) |
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85 | IF ( ierr .EQ. 0 ) THEN |
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86 | ! Overwrite simulation start date with metadata. |
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87 | READ ( simulation_start_date , fmt = '(I4,1x,I2,1x,I2,1x,I2,1x,I2,1x,I2)' ) & |
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88 | simulation_start_year, simulation_start_month, & |
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89 | simulation_start_day, simulation_start_hour, & |
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90 | simulation_start_minute, simulation_start_second |
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91 | CALL nl_set_simulation_start_year ( 1 , simulation_start_year ) |
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92 | CALL nl_set_simulation_start_month ( 1 , simulation_start_month ) |
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93 | CALL nl_set_simulation_start_day ( 1 , simulation_start_day ) |
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94 | CALL nl_set_simulation_start_hour ( 1 , simulation_start_hour ) |
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95 | CALL nl_set_simulation_start_minute ( 1 , simulation_start_minute ) |
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96 | CALL nl_set_simulation_start_second ( 1 , simulation_start_second ) |
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97 | IF ( switch .EQ. model_input_only ) THEN |
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98 | WRITE(wrf_err_message,*)fid,' input_wrf, model_input_only: SIMULATION_START_DATE = ', & |
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99 | simulation_start_date(1:19) |
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100 | CALL wrf_debug ( 300 , TRIM(wrf_err_message ) ) |
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101 | ELSE IF ( switch .EQ. restart_only ) THEN |
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102 | WRITE(wrf_err_message,*)fid,' input_wrf, restart_only: SIMULATION_START_DATE = ', & |
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103 | simulation_start_date(1:19) |
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104 | CALL wrf_debug ( 300 , TRIM(wrf_err_message ) ) |
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105 | ENDIF |
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106 | ELSE |
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107 | CALL nl_get_start_year ( 1 , simulation_start_year ) |
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108 | CALL nl_get_start_month ( 1 , simulation_start_month ) |
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109 | CALL nl_get_start_day ( 1 , simulation_start_day ) |
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110 | CALL nl_get_start_hour ( 1 , simulation_start_hour ) |
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111 | CALL nl_get_start_minute ( 1 , simulation_start_minute ) |
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112 | CALL nl_get_start_second ( 1 , simulation_start_second ) |
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113 | CALL nl_set_simulation_start_year ( 1 , simulation_start_year ) |
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114 | CALL nl_set_simulation_start_month ( 1 , simulation_start_month ) |
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115 | CALL nl_set_simulation_start_day ( 1 , simulation_start_day ) |
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116 | CALL nl_set_simulation_start_hour ( 1 , simulation_start_hour ) |
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117 | CALL nl_set_simulation_start_minute ( 1 , simulation_start_minute ) |
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118 | CALL nl_set_simulation_start_second ( 1 , simulation_start_second ) |
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119 | CALL wrf_message('input_wrf: SIMULATION_START_DATE not available in input') |
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120 | CALL wrf_message('will use head_grid start time from namelist') |
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121 | ENDIF |
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122 | ! Initialize derived time quantity in grid%xtime. |
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123 | ! Note that this call is also made in setup_timekeeping(). |
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124 | ! Ugh, what a hack. Simplify all this later... |
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125 | CALL domain_clock_get( grid, minutesSinceSimulationStart=grid%xtime ) |
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126 | ! Note that it is NOT necessary to reset grid%julian here. |
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127 | WRITE(wrf_err_message,*) 'input_wrf: set xtime to ',grid%xtime |
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128 | CALL wrf_debug ( 100, TRIM(wrf_err_message) ) |
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129 | ENDIF |
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130 | |
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131 | #if (EM_CORE == 1) |
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132 | |
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133 | ! Test to make sure that the input data is the right size. Do this for input from real/ideal into |
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134 | ! WRF, and from the standard initialization into real. |
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135 | |
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136 | IF ( ( switch .EQ. model_input_only ) .OR. & |
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137 | ( switch .EQ. aux_model_input1_only ) ) THEN |
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138 | ierr = 0 |
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139 | CALL wrf_get_dom_ti_integer ( fid , 'WEST-EAST_GRID_DIMENSION' , ide_compare , 1 , icnt , ierr3 ) |
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140 | ierr = max( ierr, ierr3 ) |
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141 | CALL wrf_get_dom_ti_integer ( fid , 'SOUTH-NORTH_GRID_DIMENSION' , jde_compare , 1 , icnt , ierr3 ) |
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142 | ierr = max( ierr, ierr3 ) |
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143 | CALL wrf_get_dom_ti_integer ( fid , 'BOTTOM-TOP_GRID_DIMENSION' , kde_compare , 1 , icnt , ierr3 ) |
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144 | ierr = max( ierr, ierr3 ) |
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145 | ! IF ( ierr3 .NE. 0 ) CALL wrf_error_fatal( 'wrf_get_dom_ti_integer getting dimension information from dataset' ) |
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146 | IF ( ierr3 .NE. 0 ) CALL wrf_debug( 'wrf_get_dom_ti_integer getting dimension information from dataset' ) |
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147 | |
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148 | ! Test to make sure that the grid distances are the right size. |
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149 | |
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150 | CALL wrf_get_dom_ti_real ( fid , 'DX' , dx_compare , 1 , icnt , ierr ) |
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151 | CALL wrf_get_dom_ti_real ( fid , 'DY' , dy_compare , 1 , icnt , ierr ) |
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152 | IF ( ( ABS ( dx_compare - config_flags%dx ) .GT. 1.E-5 * dx_compare ) .OR. & |
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153 | ( ABS ( dy_compare - config_flags%dy ) .GT. 1.E-5 * dy_compare ) ) THEN |
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154 | print *,'dx_compare,dy_compare = ',dx_compare,dy_compare |
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155 | CALL wrf_error_fatal( 'DX and DY do not match from the namelist and the input file' ) |
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156 | END IF |
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157 | END IF |
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158 | |
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159 | ! do the check later (see check_if_dryrun below) |
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160 | |
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161 | #endif |
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162 | |
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163 | |
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164 | CALL nl_get_dyn_opt( 1, dyn_opt ) |
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165 | CALL wrf_get_dom_ti_integer ( fid, 'DYN_OPT', dyn_opt_tmp, 1, icnt, ierr ) |
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166 | |
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167 | ! We do not want the CEN_LAT LON values from the boundary file. For 1-way nests |
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168 | ! with ndown, this ends up being the data from the previous coarse domain. |
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169 | |
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170 | IF ( switch .NE. boundary_only ) THEN |
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171 | CALL wrf_get_dom_ti_real ( fid , 'CEN_LAT' , config_flags%cen_lat , 1 , icnt , ierr ) |
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172 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for CEN_LAT returns ',config_flags%cen_lat |
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173 | CALL wrf_debug ( 300 , wrf_err_message ) |
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174 | CALL nl_set_cen_lat ( grid%id , config_flags%cen_lat ) |
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175 | |
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176 | CALL wrf_get_dom_ti_real ( fid , 'CEN_LON' , config_flags%cen_lon , 1 , icnt , ierr ) |
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177 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for CEN_LON returns ',config_flags%cen_lon |
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178 | CALL wrf_debug ( 300 , wrf_err_message ) |
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179 | CALL nl_set_cen_lon ( grid%id , config_flags%cen_lon ) |
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180 | ELSE |
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181 | CALL wrf_get_dom_ti_real ( fid , 'CEN_LAT' , dum , 1 , icnt , ierr ) |
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182 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for CEN_LAT returns ',dum |
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183 | CALL wrf_debug ( 300 , wrf_err_message ) |
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184 | |
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185 | CALL wrf_get_dom_ti_real ( fid , 'CEN_LON' , dum , 1 , icnt , ierr ) |
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186 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for CEN_LON returns ',dum |
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187 | CALL wrf_debug ( 300 , wrf_err_message ) |
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188 | END IF |
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189 | |
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190 | CALL wrf_get_dom_ti_real ( fid , 'TRUELAT1' , config_flags%truelat1 , 1 , icnt , ierr ) |
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191 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for TRUELAT1 returns ',config_flags%truelat1 |
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192 | CALL wrf_debug ( 300 , wrf_err_message ) |
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193 | CALL nl_set_truelat1 ( grid%id , config_flags%truelat1 ) |
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194 | |
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195 | CALL wrf_get_dom_ti_real ( fid , 'TRUELAT2' , config_flags%truelat2 , 1 , icnt , ierr ) |
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196 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for TRUELAT2 returns ',config_flags%truelat2 |
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197 | CALL wrf_debug ( 300 , wrf_err_message ) |
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198 | CALL nl_set_truelat2 ( grid%id , config_flags%truelat2 ) |
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199 | |
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200 | CALL wrf_get_dom_ti_real ( fid , 'MOAD_CEN_LAT' , config_flags%moad_cen_lat , 1 , icnt , ierr ) |
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201 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for MOAD_CEN_LAT returns ',config_flags%moad_cen_lat |
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202 | CALL wrf_debug ( 300 , wrf_err_message ) |
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203 | CALL nl_set_moad_cen_lat ( grid%id , config_flags%moad_cen_lat ) |
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204 | |
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205 | CALL wrf_get_dom_ti_real ( fid , 'STAND_LON' , config_flags%stand_lon , 1 , icnt , ierr ) |
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206 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for STAND_LON returns ',config_flags%stand_lon |
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207 | CALL wrf_debug ( 300 , wrf_err_message ) |
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208 | CALL nl_set_stand_lon ( grid%id , config_flags%stand_lon ) |
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209 | |
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210 | #if ( NMM_CORE != 1 ) |
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211 | IF ( program_name(1:7) .EQ. "REAL_EM" ) THEN |
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212 | CALL wrf_get_dom_ti_real ( fid , 'corner_lats' , lats16 , 16 , icnt , ierr ) |
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213 | WRITE(wrf_err_message,FMT='(A,16f6.1)')'input_wrf: wrf_get_dom_ti_real for CORNER_LATS returns ',lats16 |
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214 | CALL wrf_debug ( 300 , wrf_err_message ) |
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215 | grid%em_lat_ll_t = lats16( 1) |
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216 | grid%em_lat_ul_t = lats16( 2) |
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217 | grid%em_lat_ur_t = lats16( 3) |
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218 | grid%em_lat_lr_t = lats16( 4) |
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219 | grid%em_lat_ll_u = lats16( 5) |
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220 | grid%em_lat_ul_u = lats16( 6) |
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221 | grid%em_lat_ur_u = lats16( 7) |
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222 | grid%em_lat_lr_u = lats16( 8) |
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223 | grid%em_lat_ll_v = lats16( 9) |
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224 | grid%em_lat_ul_v = lats16(10) |
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225 | grid%em_lat_ur_v = lats16(11) |
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226 | grid%em_lat_lr_v = lats16(12) |
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227 | grid%em_lat_ll_d = lats16(13) |
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228 | grid%em_lat_ul_d = lats16(14) |
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229 | grid%em_lat_ur_d = lats16(15) |
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230 | grid%em_lat_lr_d = lats16(16) |
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231 | |
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232 | CALL wrf_get_dom_ti_real ( fid , 'corner_lons' , lons16 , 16 , icnt , ierr ) |
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233 | WRITE(wrf_err_message,FMT='(A,16f6.1)')'input_wrf: wrf_get_dom_ti_real for CORNER_LONS returns ',lons16 |
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234 | CALL wrf_debug ( 300 , wrf_err_message ) |
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235 | grid%em_lon_ll_t = lons16( 1) |
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236 | grid%em_lon_ul_t = lons16( 2) |
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237 | grid%em_lon_ur_t = lons16( 3) |
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238 | grid%em_lon_lr_t = lons16( 4) |
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239 | grid%em_lon_ll_u = lons16( 5) |
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240 | grid%em_lon_ul_u = lons16( 6) |
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241 | grid%em_lon_ur_u = lons16( 7) |
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242 | grid%em_lon_lr_u = lons16( 8) |
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243 | grid%em_lon_ll_v = lons16( 9) |
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244 | grid%em_lon_ul_v = lons16(10) |
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245 | grid%em_lon_ur_v = lons16(11) |
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246 | grid%em_lon_lr_v = lons16(12) |
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247 | grid%em_lon_ll_d = lons16(13) |
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248 | grid%em_lon_ul_d = lons16(14) |
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249 | grid%em_lon_ur_d = lons16(15) |
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250 | grid%em_lon_lr_d = lons16(16) |
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251 | ENDIF |
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252 | #endif |
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253 | |
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254 | #if ( NMM_CORE != 1 ) |
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255 | ! program_name is defined in module_domain and set in the main program for whatever application |
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256 | ! is using subroutine input_wrf (that is, the subroutine you are looking at here). Data files |
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257 | ! written by SI have P_TOP as a metadata item; the real program and wrf model have it as a |
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258 | ! state variable. This test is to supress non-fatal but confusing messages from the model complaining |
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259 | ! that P_TOP cannot be read from the metadata for this dataset. JM 20040905 |
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260 | ! |
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261 | ! Note, P_TOP is not defined in the NMM core. |
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262 | |
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263 | IF ( program_name(1:7) .EQ. "REAL_EM" ) THEN |
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264 | CALL wrf_get_dom_ti_real ( fid , 'P_TOP' , grid%p_top , 1 , icnt , ierr ) |
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265 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for P_TOP returns ',grid%p_top |
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266 | CALL wrf_debug ( 300 , wrf_err_message ) |
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267 | ENDIF |
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268 | #endif |
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269 | |
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270 | IF ( switch .NE. boundary_only ) THEN |
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271 | CALL wrf_get_dom_ti_real ( fid , 'GMT' , config_flags%gmt , 1 , icnt , ierr ) |
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272 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_real for GMT returns ',config_flags%gmt |
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273 | CALL wrf_debug ( 300 , wrf_err_message ) |
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274 | CALL nl_set_gmt ( grid%id , config_flags%gmt ) |
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275 | |
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276 | CALL wrf_get_dom_ti_integer ( fid , 'JULYR' , config_flags%julyr , 1 , icnt , ierr ) |
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277 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for JULYR returns ',config_flags%julyr |
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278 | CALL wrf_debug ( 300 , wrf_err_message ) |
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279 | CALL nl_set_julyr ( grid%id , config_flags%julyr ) |
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280 | |
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281 | CALL wrf_get_dom_ti_integer ( fid , 'JULDAY' , config_flags%julday , 1 , icnt , ierr ) |
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282 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for JULDAY returns ',config_flags%julday |
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283 | CALL wrf_debug ( 300 , wrf_err_message ) |
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284 | CALL nl_set_julday ( grid%id , config_flags%julday ) |
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285 | ENDIF |
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286 | |
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287 | CALL wrf_get_dom_ti_integer ( fid , 'MAP_PROJ' , config_flags%map_proj , 1 , icnt , ierr ) |
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288 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for MAP_PROJ returns ',config_flags%map_proj |
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289 | CALL wrf_debug ( 300 , wrf_err_message ) |
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290 | CALL nl_set_map_proj ( grid%id , config_flags%map_proj ) |
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291 | |
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292 | CALL wrf_get_dom_ti_char ( fid , 'MMINLU', mminlu , ierr ) |
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293 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_char for MMINLU returns ',mminlu(1:4) |
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294 | CALL wrf_debug ( 300 , wrf_err_message ) |
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295 | CALL nl_set_mminlu ( 1, mminlu(1:4) ) |
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296 | |
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297 | CALL wrf_get_dom_ti_integer ( fid , 'ISWATER' , config_flags%iswater , 1 , icnt , ierr ) |
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298 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for ISWATER returns ',config_flags%iswater |
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299 | CALL wrf_debug ( 300 , wrf_err_message ) |
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300 | IF ( ierr .NE. 0 ) THEN |
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301 | IF (mminlu == 'UMD') THEN |
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302 | config_flags%iswater = 14 |
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303 | ELSE |
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304 | config_flags%iswater = 16 |
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305 | ENDIF |
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306 | ENDIF |
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307 | CALL nl_set_iswater ( grid%id , config_flags%iswater ) |
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308 | |
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309 | CALL wrf_get_dom_ti_integer ( fid , 'ISICE' , config_flags%isice , 1 , icnt , ierr ) |
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310 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for ISICE returns ',config_flags%isice |
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311 | CALL wrf_debug ( 300 , wrf_err_message ) |
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312 | IF ( ierr .NE. 0 ) THEN |
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313 | IF (mminlu == 'UMD') THEN |
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314 | config_flags%isice = 14 |
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315 | ELSE |
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316 | config_flags%isice = 24 |
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317 | ENDIF |
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318 | ENDIF |
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319 | CALL nl_set_isice ( grid%id , config_flags%isice ) |
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320 | |
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321 | CALL wrf_get_dom_ti_integer ( fid , 'ISURBAN' , config_flags%isurban , 1 , icnt , ierr ) |
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322 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for ISURBAN returns ',config_flags%isurban |
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323 | CALL wrf_debug ( 300 , wrf_err_message ) |
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324 | IF ( ierr .NE. 0 ) THEN |
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325 | IF (mminlu == 'UMD') THEN |
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326 | config_flags%isurban = 13 |
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327 | ELSE |
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328 | config_flags%isurban = 1 |
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329 | ENDIF |
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330 | ENDIF |
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331 | CALL nl_set_isurban ( grid%id , config_flags%isurban ) |
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332 | |
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333 | CALL wrf_get_dom_ti_integer ( fid , 'ISOILWATER' , config_flags%isoilwater , 1 , icnt , ierr ) |
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334 | WRITE(wrf_err_message,*)'input_wrf: wrf_get_dom_ti_integer for ISOILWATER returns ',config_flags%isoilwater |
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335 | CALL wrf_debug ( 300 , wrf_err_message ) |
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336 | IF ( ierr .NE. 0 ) THEN |
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337 | config_flags%isoilwater = 14 |
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338 | ENDIF |
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339 | CALL nl_set_isoilwater ( grid%id , config_flags%isoilwater ) |
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340 | |
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341 | #ifdef MOVE_NESTS |
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342 | ! Added these fields for restarting of moving nests, JM |
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343 | ! DANGER and TODO |
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344 | ! It is very important that these be set correctly if they are set at all in here. |
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345 | ! Garbage values will produce unpredictable results, possibly segfaults, in the nesting |
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346 | ! code. Need some integrity checking here or elsewhere in the code to at least check to |
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347 | ! make sure that the istart and jstart values make sense with respect to the nest dimensions |
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348 | ! and the position in the parent domain. |
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349 | CALL wrf_get_dom_ti_integer ( fid , 'I_PARENT_START' , itmp , 1 , icnt, ierr ) |
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350 | IF ( ierr .EQ. 0 .AND. switch .EQ. restart_only ) THEN |
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351 | config_flags%i_parent_start = itmp |
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352 | CALL nl_set_i_parent_start ( grid%id , config_flags%i_parent_start ) |
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353 | ENDIF |
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354 | CALL wrf_get_dom_ti_integer ( fid , 'J_PARENT_START' , itmp , 1 , icnt, ierr ) |
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355 | IF ( ierr .EQ. 0 .AND. switch .EQ. restart_only ) THEN |
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356 | config_flags%j_parent_start = itmp |
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357 | CALL nl_set_j_parent_start ( grid%id , config_flags%j_parent_start ) |
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358 | ENDIF |
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359 | #endif |
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360 | |
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361 | ! If this was not a training read (dry run) check for erroneous values. |
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362 | CALL wrf_inquire_filename ( fid , fname , filestate , ierr ) |
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363 | IF ( ierr /= 0 ) THEN |
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364 | WRITE(wrf_err_message,*)'module_io_wrf: input_wrf: wrf_inquire_filename Status = ',ierr |
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365 | CALL wrf_error_fatal( wrf_err_message ) |
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366 | ENDIF |
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367 | |
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368 | WRITE(wrf_err_message,*)'input_wrf: fid,filestate = ',fid,filestate |
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369 | CALL wrf_debug( 300 , wrf_err_message ) |
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370 | |
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371 | dryrun = ( filestate .EQ. WRF_FILE_OPENED_NOT_COMMITTED ) |
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372 | |
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373 | WRITE(wrf_err_message,*)'input_wrf: dryrun = ',dryrun |
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374 | CALL wrf_debug( 300 , wrf_err_message ) |
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375 | |
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376 | check_if_dryrun : IF ( .NOT. dryrun ) THEN |
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377 | |
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378 | #if (EM_CORE == 1) |
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379 | |
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380 | !KLUDGE - is there a more elegant way to determine "old si" input |
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381 | IF ( ( switch .EQ. model_input_only ) .OR. & |
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382 | ( ( switch .EQ. aux_model_input1_only ) .AND. & |
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383 | ( config_flags%auxinput1_inname(1:8) .EQ. 'wrf_real' ) ) ) THEN |
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384 | |
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385 | ! Test to make sure that the input data is the right size. |
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386 | |
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387 | IF ( ( ide .NE. ide_compare ) .OR. & |
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388 | ( kde .NE. kde_compare ) .OR. & |
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389 | ( jde .NE. jde_compare ) ) THEN |
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390 | ! a hack for sure |
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391 | #ifndef ESMFIO |
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392 | WRITE(wrf_err_message,*)'input_wrf.F: SIZE MISMATCH: namelist ide,jde,kde=',ide,jde,kde,& |
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393 | '; input data ide,jde,kde=',ide_compare , jde_compare , kde_compare |
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394 | CALL wrf_error_fatal( wrf_err_message ) |
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395 | #else |
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396 | WRITE(wrf_err_message,*)'DEBUG input_wrf.F switch = ',switch, & |
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397 | ': namelist ide,jde,kde=',ide,jde,kde,& |
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398 | '; input data ide,jde,kde=',ide_compare , jde_compare , kde_compare |
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399 | CALL wrf_debug( 100, wrf_err_message ) |
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400 | #endif |
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401 | ENDIF |
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402 | |
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403 | ELSE IF ( switch .EQ. aux_model_input1_only ) THEN |
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404 | |
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405 | ! Test to make sure that the input data is the right size. |
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406 | |
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407 | IF ( ( ide .NE. ide_compare ) .OR. & |
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408 | ( config_flags%num_metgrid_levels .NE. kde_compare ) .OR. & |
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409 | ( jde .NE. jde_compare ) ) THEN |
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410 | WRITE(wrf_err_message,*)'input_wrf.F: SIZE MISMATCH: ',& |
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411 | 'namelist ide,jde,num_metgrid_levels=',ide,jde,config_flags%num_metgrid_levels,& |
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412 | '; input data ide,jde,num_metgrid_levels=',ide_compare , jde_compare , kde_compare |
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413 | CALL wrf_error_fatal( wrf_err_message ) |
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414 | ENDIF |
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415 | ENDIF |
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416 | |
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417 | #endif |
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418 | |
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419 | IF ( dyn_opt_tmp .NE. dyn_opt .AND. switch .EQ. model_input_only ) THEN |
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420 | WRITE(wrf_err_message,*)'input_wrf: dyn_opt in file ',dyn_opt_tmp,' NE namelist ',dyn_opt |
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421 | CALL wrf_error_fatal( wrf_err_message ) |
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422 | ENDIF |
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423 | |
---|
424 | ENDIF check_if_dryrun |
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425 | |
---|
426 | ! |
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427 | ! This call to wrf_get_next_time will position the dataset over the next time-frame |
---|
428 | ! in the file and return the current_date, which is used as an argument to the |
---|
429 | ! read_field routines in the blocks of code included below. Note that we read the |
---|
430 | ! next time *after* all the meta data has been read. This is only important for the |
---|
431 | ! WRF internal I/O format because it is order-dependent. Other formats shouldn't care |
---|
432 | ! about this. |
---|
433 | ! |
---|
434 | |
---|
435 | 3003 continue |
---|
436 | |
---|
437 | CALL wrf_get_next_time(fid, current_date , ierr) |
---|
438 | WRITE(wrf_err_message,*)fid,' input_wrf: wrf_get_next_time current_date: ',current_date(1:19),' Status = ',ierr |
---|
439 | CALL wrf_debug ( 300 , TRIM(wrf_err_message ) ) |
---|
440 | IF ( ierr .NE. 0 .AND. ierr .NE. WRF_WARN_NOTSUPPORTED .AND. ierr .NE. WRF_WARN_DRYRUN_READ ) THEN |
---|
441 | CALL wrf_message ( TRIM(wrf_err_message ) ) |
---|
442 | IF ( switch .EQ. boundary_only ) THEN |
---|
443 | WRITE(wrf_err_message,*) ' ... May have run out of valid boundary conditions in file ',TRIM(fname) |
---|
444 | CALL wrf_error_fatal( TRIM(wrf_err_message) ) |
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445 | ELSE |
---|
446 | #if ( NMM_CORE != 1 ) |
---|
447 | WRITE(wrf_err_message,*) '... Could not find matching time in input file ',TRIM(fname) |
---|
448 | CALL wrf_error_fatal( TRIM(wrf_err_message) ) |
---|
449 | #endif |
---|
450 | ENDIF |
---|
451 | ELSE IF ( ierr .NE. WRF_WARN_NOTSUPPORTED .AND. ierr .NE. WRF_WARN_DRYRUN_READ) THEN |
---|
452 | ! |
---|
453 | ! check input time against domain time (which will be start time at beginning, see share/set_timekeeping.F) |
---|
454 | ! JM 20040511 |
---|
455 | ! |
---|
456 | SELECT CASE ( switch ) |
---|
457 | CASE ( model_input_only, aux_model_input1_only, aux_model_input2_only, & |
---|
458 | aux_model_input3_only, aux_model_input4_only, aux_model_input5_only ) |
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459 | CALL wrf_atotime( current_date(1:19), time ) |
---|
460 | CALL domain_clock_get( grid, current_time=currtime, & |
---|
461 | current_timestr=currtimestr ) |
---|
462 | CALL domain_clockprint(150, grid, & |
---|
463 | 'DEBUG input_wrf(): get CurrTime from clock,') |
---|
464 | IF ( time .NE. currtime ) THEN |
---|
465 | WRITE( wrf_err_message , * )'Time in file: ',trim( current_date(1:19) ) |
---|
466 | CALL wrf_message ( trim(wrf_err_message) ) |
---|
467 | WRITE( wrf_err_message , * )'Time on domain: ',trim( currtimestr ) |
---|
468 | CALL wrf_message ( trim(wrf_err_message) ) |
---|
469 | CALL wrf_message( "**WARNING** Time in input file not equal to time on domain **WARNING**" ) |
---|
470 | WRITE(wrf_err_message,*) "**WARNING** Trying next time in file ",TRIM(fname)," ..." |
---|
471 | CALL wrf_message( TRIM(wrf_err_message) ) |
---|
472 | GOTO 3003 |
---|
473 | ENDIF |
---|
474 | CASE DEFAULT |
---|
475 | END SELECT |
---|
476 | ENDIF |
---|
477 | |
---|
478 | ! set the lbc time interval fields in the domain data structure |
---|
479 | ! these time values are checked as stopping condition for the while loop in |
---|
480 | ! latbound_in() defined in share/medation_integrate.F, which is used to |
---|
481 | ! iterate forward to the correct interval in the input LBC file |
---|
482 | ! |
---|
483 | IF ( switch .EQ. boundary_only ) THEN |
---|
484 | CALL wrf_get_dom_td_char ( fid , 'THISBDYTIME' , current_date(1:19), this_datestr , ierr ) |
---|
485 | CALL wrf_atotime( this_datestr(1:19), grid%this_bdy_time ) |
---|
486 | CALL wrf_get_dom_td_char ( fid , 'NEXTBDYTIME' , current_date(1:19), next_datestr , ierr ) |
---|
487 | CALL wrf_atotime( next_datestr(1:19), grid%next_bdy_time ) |
---|
488 | ENDIF |
---|
489 | |
---|
490 | #if 1 |
---|
491 | IF ( switch .EQ. model_input_only ) THEN |
---|
492 | CALL wrf_inputin( fid , grid , config_flags , switch , ierr ) |
---|
493 | ELSE IF ( switch .EQ. history_only ) THEN |
---|
494 | CALL wrf_histin( fid , grid , config_flags , switch , ierr ) |
---|
495 | ELSE IF ( switch .EQ. aux_model_input1_only ) THEN |
---|
496 | CALL wrf_auxinput1in( fid , grid , config_flags , switch , ierr ) |
---|
497 | ELSE IF ( switch .EQ. aux_model_input2_only ) THEN |
---|
498 | CALL wrf_auxinput2in( fid , grid , config_flags , switch , ierr ) |
---|
499 | ELSE IF ( switch .EQ. aux_model_input3_only ) THEN |
---|
500 | CALL wrf_auxinput3in( fid , grid , config_flags , switch , ierr ) |
---|
501 | ELSE IF ( switch .EQ. aux_model_input4_only ) THEN |
---|
502 | CALL wrf_auxinput4in( fid , grid , config_flags , switch , ierr ) |
---|
503 | ELSE IF ( switch .EQ. aux_model_input5_only ) THEN |
---|
504 | CALL wrf_auxinput5in( fid , grid , config_flags , switch , ierr ) |
---|
505 | ELSE IF ( switch .EQ. aux_model_input6_only ) THEN |
---|
506 | CALL wrf_auxinput6in( fid , grid , config_flags , switch , ierr ) |
---|
507 | ELSE IF ( switch .EQ. aux_model_input7_only ) THEN |
---|
508 | CALL wrf_auxinput7in( fid , grid , config_flags , switch , ierr ) |
---|
509 | ELSE IF ( switch .EQ. aux_model_input8_only ) THEN |
---|
510 | CALL wrf_auxinput8in( fid , grid , config_flags , switch , ierr ) |
---|
511 | ELSE IF ( switch .EQ. aux_model_input9_only ) THEN |
---|
512 | CALL wrf_auxinput9in( fid , grid , config_flags , switch , ierr ) |
---|
513 | ELSE IF ( switch .EQ. aux_model_input10_only ) THEN |
---|
514 | CALL wrf_auxinput10in( fid , grid , config_flags , switch , ierr ) |
---|
515 | ELSE IF ( switch .EQ. aux_model_input11_only ) THEN |
---|
516 | CALL wrf_auxinput11in( fid , grid , config_flags , switch , ierr ) |
---|
517 | |
---|
518 | |
---|
519 | ELSE IF ( switch .EQ. aux_hist1_only ) THEN |
---|
520 | CALL wrf_auxhist1in( fid , grid , config_flags , switch , ierr ) |
---|
521 | ELSE IF ( switch .EQ. aux_hist2_only ) THEN |
---|
522 | CALL wrf_auxhist2in( fid , grid , config_flags , switch , ierr ) |
---|
523 | ELSE IF ( switch .EQ. aux_hist3_only ) THEN |
---|
524 | CALL wrf_auxhist3in( fid , grid , config_flags , switch , ierr ) |
---|
525 | ELSE IF ( switch .EQ. aux_hist4_only ) THEN |
---|
526 | CALL wrf_auxhist4in( fid , grid , config_flags , switch , ierr ) |
---|
527 | ELSE IF ( switch .EQ. aux_hist5_only ) THEN |
---|
528 | CALL wrf_auxhist5in( fid , grid , config_flags , switch , ierr ) |
---|
529 | ELSE IF ( switch .EQ. aux_hist6_only ) THEN |
---|
530 | CALL wrf_auxhist6in( fid , grid , config_flags , switch , ierr ) |
---|
531 | ELSE IF ( switch .EQ. aux_hist7_only ) THEN |
---|
532 | CALL wrf_auxhist7in( fid , grid , config_flags , switch , ierr ) |
---|
533 | ELSE IF ( switch .EQ. aux_hist8_only ) THEN |
---|
534 | CALL wrf_auxhist8in( fid , grid , config_flags , switch , ierr ) |
---|
535 | ELSE IF ( switch .EQ. aux_hist9_only ) THEN |
---|
536 | CALL wrf_auxhist9in( fid , grid , config_flags , switch , ierr ) |
---|
537 | ELSE IF ( switch .EQ. aux_hist10_only ) THEN |
---|
538 | CALL wrf_auxhist10in( fid , grid , config_flags , switch , ierr ) |
---|
539 | ELSE IF ( switch .EQ. aux_hist11_only ) THEN |
---|
540 | CALL wrf_auxhist11in( fid , grid , config_flags , switch , ierr ) |
---|
541 | |
---|
542 | ELSE IF ( switch .EQ. restart_only ) THEN |
---|
543 | CALL wrf_restartin( fid , grid , config_flags , switch , ierr ) |
---|
544 | ELSE IF ( switch .EQ. boundary_only ) THEN |
---|
545 | CALL wrf_bdyin( fid , grid , config_flags , switch , ierr ) |
---|
546 | ENDIF |
---|
547 | #else |
---|
548 | CALL wrf_message ( "ALL I/O DISABLED IN share/module_io_wrf.F") |
---|
549 | #endif |
---|
550 | |
---|
551 | WRITE(wrf_err_message,*)'input_wrf: end, fid = ',fid |
---|
552 | CALL wrf_debug( 300 , wrf_err_message ) |
---|
553 | |
---|
554 | RETURN |
---|
555 | END SUBROUTINE input_wrf |
---|