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#include "EXF_CPPOPTIONS.h" |
C $Header$ |
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C $Name$ |
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#include "EXF_OPTIONS.h" |
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subroutine exf_set_gen( |
subroutine exf_set_gen( |
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& genfile, genstartdate, genperiod, exf_inscal_gen, |
& genfile, genstartdate, genperiod, |
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& genstartdate1, genstartdate2, |
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& exf_inscal_gen, genremove_intercept, genremove_slope, |
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& genfld, gen0, gen1, genmask, |
& genfld, gen0, gen1, genmask, |
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#ifdef USE_EXF_INTERPOLATION |
#ifdef USE_EXF_INTERPOLATION |
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& gen_lon0, gen_lon_inc, gen_lat0, gen_lat_inc, |
& gen_lon0, gen_lon_inc, gen_lat0, gen_lat_inc, |
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& gen_nlon, gen_nlat, gen_xout, gen_yout, |
& gen_nlon, gen_nlat, gen_xout, gen_yout, interp_method, |
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#endif |
#endif |
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& mycurrenttime, mycurrentiter, mythid ) |
& mytime, myiter, mythid ) |
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c ================================================================== |
c ================================================================== |
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c SUBROUTINE exf_set_gen |
c SUBROUTINE exf_set_gen |
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c replaced all routines by one generic routine |
c replaced all routines by one generic routine |
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c 5-Aug-2003: added USE_EXF_INTERPOLATION for arbitrary |
c 5-Aug-2003: added USE_EXF_INTERPOLATION for arbitrary |
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c input grid capability |
c input grid capability |
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c 11-Dec-2006 added time-mean and monthly-mean climatology options |
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c genperiod=0 means input file is one time-constant field |
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c genperiod=-12 means input file contains 12 monthly means |
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c ================================================================== |
c ================================================================== |
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c SUBROUTINE exf_set_gen |
c SUBROUTINE exf_set_gen |
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#include "EEPARAMS.h" |
#include "EEPARAMS.h" |
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#include "SIZE.h" |
#include "SIZE.h" |
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#include "PARAMS.h" |
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#include "GRID.h" |
#include "GRID.h" |
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#include "exf_param.h" |
#include "EXF_PARAM.h" |
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#include "exf_constants.h" |
#include "EXF_CONSTANTS.h" |
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c == routine arguments == |
c == routine arguments == |
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integer genstartdate(4) |
integer genstartdate1, genstartdate2 |
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_RL genperiod |
_RL genstartdate, genperiod |
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_RL exf_inscal_gen |
_RL exf_inscal_gen |
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_RL genfld(1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
_RL genremove_intercept, genremove_slope |
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_RL gen0 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
_RL genfld(1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
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_RL gen1 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
_RL gen0 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
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_RL gen1 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
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character*1 genmask |
character*1 genmask |
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character*(128) genfile |
character*(128) genfile |
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_RL mycurrenttime |
_RL mytime |
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integer mycurrentiter |
integer myiter |
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integer mythid |
integer mythid |
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#ifdef USE_EXF_INTERPOLATION |
#ifdef USE_EXF_INTERPOLATION |
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c gen_lon_0 ,gen_lat_0 :: longitude and latitude of SouthWest |
c gen_lon_0 ,gen_lat_0 :: longitude and latitude of SouthWest |
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c corner of global input grid |
c corner of global input grid |
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INTEGER gen_nlon, gen_nlat |
INTEGER gen_nlon, gen_nlat |
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_RS gen_xout (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
_RS gen_xout (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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_RS gen_yout (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
_RS gen_yout (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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#endif |
integer interp_method |
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#endif /* USE_EXF_INTERPOLATION */ |
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c == local variables == |
c == local variables == |
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logical first, changed |
logical first, changed |
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integer count0, count1 |
integer count0, count1 |
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integer year0, year1 |
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integer bi, bj, i, j, il |
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_RL fac |
_RL fac |
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character*(128) genfile0, genfile1 |
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integer bi, bj |
c == external == |
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integer i, j |
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integer ilnblnk |
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external ilnblnk |
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c == end of interface == |
c == end of interface == |
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if ( genfile .NE. ' ' ) then |
if ( genfile .NE. ' ' .and. genperiod .ne. 0 ) then |
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cph( |
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cph-exf-print if (genfile .EQ. hfluxfile) year0 = 3000 |
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cph) |
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if ( genperiod .eq. -12 ) then |
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c genperiod=-12 means input file contains 12 monthly means |
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c record numbers are assumed 1 to 12 corresponding to |
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c Jan. through Dec. |
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call cal_GetMonthsRec( |
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O fac, first, changed, |
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O count0, count1, |
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I mytime, myiter, mythid |
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& ) |
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elseif ( genperiod .lt. 0 ) then |
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print *, 'genperiod is out of range' |
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STOP 'ABNORMAL END: S/R EXF_GETFFIELDREC' |
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else |
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c get record numbers and interpolation factor for gen |
c get record numbers and interpolation factor for gen |
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call exf_GetFFieldRec( |
call exf_GetFFieldRec( |
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I genstartdate, genperiod |
I genstartdate, genperiod |
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O , fac, first, changed |
I , genstartdate1, genstartdate2 |
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O , count0, count1 |
I , useExfYearlyFields |
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I , mycurrenttime, mycurrentiter, mythid |
O , fac, first, changed |
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& ) |
O , count0, count1, year0, year1 |
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I , mytime, myiter, mythid |
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& ) |
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endif |
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if ( first ) then |
if ( first ) then |
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if (useExfYearlyFields.and.genperiod.gt.0) then |
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C Complete filename with YR or _YEAR extension |
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il = ilnblnk( genfile ) |
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if (twoDigitYear) then |
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if (year0.ge.2000) then |
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write(genfile0(1:128),'(a,i2.2)') |
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& genfile(1:il),year0-2000 |
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else |
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write(genfile0(1:128),'(a,i2.2)') |
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& genfile(1:il),year0-1900 |
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endif |
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else |
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write(genfile0(1:128),'(2a,i4.4)') |
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& genfile(1:il),'_',year0 |
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endif |
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else |
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genfile0 = genfile |
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endif |
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#ifdef USE_EXF_INTERPOLATION |
#ifdef USE_EXF_INTERPOLATION |
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call exf_interp( genfile, exf_iprec |
call exf_interp( genfile0, exf_iprec |
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& , gen1, count0, gen_xout, gen_yout |
& , gen1, count0, gen_xout, gen_yout |
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& , gen_lon0,gen_lon_inc |
& , gen_lon0,gen_lon_inc |
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& , gen_lat0,gen_lat_inc |
& , gen_lat0,gen_lat_inc |
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& , gen_nlon,gen_nlat,mythid |
& , gen_nlon,gen_nlat,interp_method,mythid |
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& ) |
& ) |
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#else |
#else |
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call mdsreadfield( genfile, exf_iprec, exf_yftype, 1 |
call mdsreadfield( genfile0, exf_iprec, exf_yftype, 1 |
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& , gen1, count0, mythid |
& , gen1, count0, mythid |
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& ) |
& ) |
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#endif |
#endif /* USE_EXF_INTERPOLATION */ |
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if (exf_yftype .eq. 'RL') then |
if (exf_yftype .eq. 'RL') then |
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call exf_filter_rl( gen1, genmask, mythid ) |
call exf_filter_rl( gen1, genmask, mythid ) |
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if (( first ) .or. ( changed )) then |
if (( first ) .or. ( changed )) then |
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call exf_SwapFFields( gen0, gen1, mythid ) |
call exf_SwapFFields( gen0, gen1, mythid ) |
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if (useExfYearlyFields.and.genperiod.gt.0) then |
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C Complete filename with YR or _YEAR extension |
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il = ilnblnk( genfile ) |
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if (twoDigitYear) then |
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if (year1.ge.2000) then |
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write(genfile1(1:128),'(a,i2.2)') |
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& genfile(1:il),year1-2000 |
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else |
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write(genfile1(1:128),'(a,i2.2)') |
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& genfile(1:il),year1-1900 |
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endif |
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else |
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write(genfile1(1:128),'(2a,i4.4)') |
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& genfile(1:il),'_',year1 |
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endif |
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else |
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genfile1 = genfile |
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endif |
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#ifdef USE_EXF_INTERPOLATION |
#ifdef USE_EXF_INTERPOLATION |
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call exf_interp( genfile, exf_iprec |
call exf_interp( genfile1, exf_iprec |
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& , gen1, count1, gen_xout, gen_yout |
& , gen1, count1, gen_xout, gen_yout |
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& , gen_lon0,gen_lon_inc |
& , gen_lon0,gen_lon_inc |
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& , gen_lat0,gen_lat_inc |
& , gen_lat0,gen_lat_inc |
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& , gen_nlon,gen_nlat,mythid |
& , gen_nlon,gen_nlat,interp_method,mythid |
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& ) |
& ) |
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#else |
#else |
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call mdsreadfield( genfile, exf_iprec, exf_yftype, 1 |
call mdsreadfield( genfile1, exf_iprec, exf_yftype, 1 |
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& , gen1, count1, mythid |
& , gen1, count1, mythid |
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& ) |
& ) |
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#endif |
#endif /* USE_EXF_INTERPOLATION */ |
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if (exf_yftype .eq. 'RL') then |
if (exf_yftype .eq. 'RL') then |
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call exf_filter_rl( gen1, genmask, mythid ) |
call exf_filter_rl( gen1, genmask, mythid ) |
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c Loop over tiles. |
c Loop over tiles. |
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do bj = mybylo(mythid),mybyhi(mythid) |
do bj = mybylo(mythid),mybyhi(mythid) |
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do bi = mybxlo(mythid),mybxhi(mythid) |
do bi = mybxlo(mythid),mybxhi(mythid) |
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do j = 1,sny |
do j = 1,sny |
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do i = 1,snx |
do i = 1,snx |
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c Interpolate linearly onto the time. |
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c Interpolate linearly onto the current time. |
genfld(i,j,bi,bj) = exf_inscal_gen * ( |
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& fac * gen0(i,j,bi,bj) + |
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genfld(i,j,bi,bj) = exf_inscal_gen * ( |
& (exf_one - fac) * gen1(i,j,bi,bj) ) |
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& fac * gen0(i,j,bi,bj) + |
genfld(i,j,bi,bj) = |
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& (exf_one - fac) * gen1(i,j,bi,bj) ) |
& genfld(i,j,bi,bj) - |
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& exf_inscal_gen * ( genremove_intercept + |
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& genremove_slope*(mytime-starttime) ) |
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enddo |
enddo |
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enddo |
enddo |
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enddo |
enddo |
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end |
end |
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C+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ |
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C+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ |
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subroutine exf_init_gen ( |
subroutine exf_init_gen ( |
238 |
& genconst, genfld, gen0, gen1, mythid ) |
& genfile, genperiod, exf_inscal_gen, genmask, |
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& genconst, genfld, gen0, gen1, |
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#ifdef USE_EXF_INTERPOLATION |
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& gen_lon0, gen_lon_inc, gen_lat0, gen_lat_inc, |
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& gen_nlon, gen_nlat, gen_xout, gen_yout, interp_method, |
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#endif |
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& mythid ) |
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c ================================================================== |
c ================================================================== |
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c SUBROUTINE exf_init_gen |
c SUBROUTINE exf_init_gen |
266 |
#include "EEPARAMS.h" |
#include "EEPARAMS.h" |
267 |
#include "SIZE.h" |
#include "SIZE.h" |
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269 |
#include "exf_param.h" |
#include "EXF_PARAM.h" |
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c == routine arguments == |
c == routine arguments == |
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_RL genconst |
_RL genperiod, exf_inscal_gen, genconst |
274 |
_RL genfld(1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
_RL genfld(1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
275 |
_RL gen0 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
_RL gen0 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
276 |
_RL gen1 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
_RL gen1 (1-olx:snx+olx,1-oly:sny+oly,nsx,nsy) |
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character*1 genmask |
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character*(128) genfile |
279 |
integer mythid |
integer mythid |
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#ifdef USE_EXF_INTERPOLATION |
282 |
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c gen_lon_0 ,gen_lat_0 :: longitude and latitude of SouthWest |
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c corner of global input grid |
284 |
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c gen_nlon, gen_nlat :: input x-grid and y-grid size |
285 |
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c gen_lon_inc :: scalar x-grid increment |
286 |
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c gen_lat_inc :: vector y-grid increments |
287 |
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c gen_xout, gen_yout :: coordinates for output grid |
288 |
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_RL gen_lon0, gen_lon_inc |
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_RL gen_lat0, gen_lat_inc(MAX_LAT_INC) |
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INTEGER gen_nlon, gen_nlat |
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_RS gen_xout (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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_RS gen_yout (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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integer interp_method |
294 |
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#endif /* USE_EXF_INTERPOLATION */ |
295 |
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296 |
c == local variables == |
c == local variables == |
297 |
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298 |
integer bi, bj |
integer bi, bj, i, j, count |
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integer i, j |
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299 |
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300 |
c == end of interface == |
c == end of interface == |
301 |
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302 |
do bj = mybylo(mythid), mybyhi(mythid) |
do bj = mybylo(mythid), mybyhi(mythid) |
303 |
do bi = mybxlo(mythid), mybxhi(mythid) |
do bi = mybxlo(mythid), mybxhi(mythid) |
304 |
do j = 1, sny |
do j = 1-oly, sny+oly |
305 |
do i = 1, snx |
do i = 1-olx, snx+olx |
306 |
genfld(i,j,bi,bj) = genconst |
genfld(i,j,bi,bj) = genconst |
307 |
gen0(i,j,bi,bj) = 0. _d 0 |
gen0(i,j,bi,bj) = genconst |
308 |
gen1(i,j,bi,bj) = 0. _d 0 |
gen1(i,j,bi,bj) = genconst |
309 |
enddo |
enddo |
310 |
enddo |
enddo |
311 |
enddo |
enddo |
312 |
enddo |
enddo |
313 |
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314 |
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if ( genfile .NE. ' ' .and. genperiod .eq. 0. ) then |
315 |
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count = 1 |
316 |
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317 |
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#ifdef USE_EXF_INTERPOLATION |
318 |
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call exf_interp( genfile, exf_iprec |
319 |
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& , genfld, count, gen_xout, gen_yout |
320 |
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& , gen_lon0,gen_lon_inc |
321 |
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& , gen_lat0,gen_lat_inc |
322 |
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& , gen_nlon,gen_nlat,interp_method,mythid |
323 |
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& ) |
324 |
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#else |
325 |
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call mdsreadfield( genfile, exf_iprec, exf_yftype, 1 |
326 |
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& , genfld, count, mythid |
327 |
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& ) |
328 |
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#endif /* USE_EXF_INTERPOLATION */ |
329 |
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330 |
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if (exf_yftype .eq. 'RL') then |
331 |
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call exf_filter_rl( genfld, genmask, mythid ) |
332 |
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else |
333 |
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call exf_filter_rs( genfld, genmask, mythid ) |
334 |
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end if |
335 |
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336 |
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c Loop over tiles. |
337 |
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do bj = mybylo(mythid),mybyhi(mythid) |
338 |
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do bi = mybxlo(mythid),mybxhi(mythid) |
339 |
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do j = 1,sny |
340 |
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do i = 1,snx |
341 |
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c Interpolate linearly onto the time. |
342 |
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genfld(i,j,bi,bj) = |
343 |
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& exf_inscal_gen * genfld(i,j,bi,bj) |
344 |
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enddo |
345 |
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enddo |
346 |
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enddo |
347 |
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enddo |
348 |
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349 |
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endif |
350 |
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351 |
end |
end |