1 | SUBROUTINE read_map2D(filename, varname, timestep, inverse, varout) |
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2 | ! Open file and read one variable for one timestep. |
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3 | ! Return variable for the given timestep. |
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4 | USE dimphy |
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5 | USE netcdf |
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6 | USE mod_grid_phy_lmdz |
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7 | USE mod_phys_lmdz_para |
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8 | USE print_control_mod, ONLY: lunout |
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9 | |
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10 | IMPLICIT NONE |
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11 | |
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12 | ! Input arguments |
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13 | CHARACTER(len=*), INTENT(IN) :: filename ! name of file to read |
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14 | CHARACTER(len=*), INTENT(IN) :: varname ! name of variable in file |
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15 | INTEGER, INTENT(IN) :: timestep ! actual timestep |
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16 | LOGICAL, INTENT(IN) :: inverse ! TRUE if latitude needs to be inversed |
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17 | ! Output argument |
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18 | REAL, DIMENSION(klon), INTENT(OUT) :: varout ! The variable read from file for the given timestep |
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19 | |
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20 | ! Local variables |
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21 | INTEGER :: j |
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22 | INTEGER :: nid, nvarid, ierr |
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23 | INTEGER, DIMENSION(3) :: start, count |
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24 | CHARACTER(len=20) :: modname='read_map2D' |
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25 | |
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26 | REAL, DIMENSION(nbp_lon,nbp_lat) :: var_glo2D ! 2D global |
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27 | REAL, DIMENSION(nbp_lon,nbp_lat) :: var_glo2D_tmp ! 2D global |
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28 | REAL, DIMENSION(klon_glo) :: var_glo1D ! 1D global |
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29 | |
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30 | ! Read variable from file. Done by master process MPI and master thread OpenMP |
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31 | IF (is_mpi_root .AND. is_omp_root) THEN |
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32 | ierr = NF90_OPEN(trim(filename), NF90_NOWRITE, nid) |
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33 | IF (ierr /= NF90_NOERR) CALL write_err_mess('Problem in opening file') |
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34 | |
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35 | ierr = NF90_INQ_VARID(nid, trim(varname), nvarid) |
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36 | IF (ierr /= NF90_NOERR) CALL write_err_mess('The variable is absent in file') |
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37 | |
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38 | start=(/1,1,timestep/) |
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39 | count=(/nbp_lon,nbp_lat,1/) |
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40 | ierr = NF90_GET_VAR(nid, nvarid, var_glo2D,start,count) |
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41 | IF (ierr /= NF90_NOERR) CALL write_err_mess('Problem in reading varaiable') |
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42 | |
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43 | ierr = NF90_CLOSE(nid) |
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44 | IF (ierr /= NF90_NOERR) CALL write_err_mess('Problem in closing file') |
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45 | |
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46 | ! Inverse latitude order |
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47 | IF (inverse) THEN |
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48 | var_glo2D_tmp(:,:) = var_glo2D(:,:) |
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49 | DO j=1, nbp_lat |
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50 | var_glo2D(:,j) = var_glo2D_tmp(:,nbp_lat-j+1) |
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51 | END DO |
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52 | END IF |
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53 | |
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54 | ! Transform the global field from 2D to 1D |
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55 | CALL grid2Dto1D_glo(var_glo2D,var_glo1D) |
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56 | |
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57 | WRITE(lunout,*) 'in read_map2D, filename = ', trim(filename) |
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58 | WRITE(lunout,*) 'in read_map2D, varname = ', trim(varname) |
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59 | WRITE(lunout,*) 'in read_map2D, timestep = ', timestep |
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60 | ENDIF |
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61 | |
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62 | ! Scatter gloabl 1D variable to all processes |
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63 | CALL scatter(var_glo1D, varout) |
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64 | |
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65 | CONTAINS |
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66 | SUBROUTINE write_err_mess(err_mess) |
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67 | USE print_control_mod, ONLY: lunout |
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68 | IMPLICIT NONE |
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69 | CHARACTER(len=*), INTENT(IN) :: err_mess |
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70 | |
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71 | WRITE(lunout,*) 'Error in read_map2D, filename = ', trim(filename) |
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72 | WRITE(lunout,*) 'Error in read_map2D, varname = ', trim(varname) |
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73 | WRITE(lunout,*) 'Error in read_map2D, timestep = ', timestep |
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74 | |
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75 | CALL abort_physic(modname, err_mess, 1) |
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76 | |
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77 | END SUBROUTINE write_err_mess |
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78 | |
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79 | END SUBROUTINE read_map2D |
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