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wwm_initio.F90
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#include "wwm_functions.h"
!#define LTESTWAMSOURCES
#undef LTESTWAMSOURCES
!**********************************************************************
!* *
!**********************************************************************
SUBROUTINE INIT_ARRAYS
USE DATAPOOL
IMPLICIT NONE
IF (DIMMODE .EQ. 1) THEN
ALLOCATE( DX1(0:MNP+1), DX2(0:MNP+1), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 1')
DX1 = zero
DX2 = zero
ENDIF
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 1'
! FLUSH(STAT%FHNDL)
ALLOCATE( XP(MNP), YP(MNP), DEP(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 2')
XP = zero
YP = zero
DEP = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 2'
! FLUSH(STAT%FHNDL)
ALLOCATE( INVSPHTRANS(MNP,2), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 3')
INVSPHTRANS = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 3'
! FLUSH(STAT%FHNDL)
ALLOCATE( INE(3,MNE), IEN(6,MNE), IEND(3,3,MNE), TRIA(MNE), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 4')
INE = 0
IEN = zero
IEND = zero
TRIA = zero
#ifdef MPI_PARALL_GRID
# ifdef PDLIB
INE(:,:) = INETMP(:,:)
# else
INE = INETMP(1:3,:)
# endif
#endif
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 4'
! FLUSH(STAT%FHNDL)
!
! spectral grid - shared
!
ALLOCATE(NUMSIG_HF(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 5')
NUMSIG_HF = NUMSIG
!
! action densities and source terms - shared
!
ALLOCATE (AC2(NUMSIG,NUMDIR,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 8')
AC2 = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 5'
! FLUSH(STAT%FHNDL)
ALLOCATE (AC1(NUMSIG,NUMDIR,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 9')
AC1 = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 6'
! FLUSH(STAT%FHNDL)
IF ((.NOT. BLOCK_GAUSS_SEIDEL).and.(AMETHOD .eq. 7)) THEN
ALLOCATE (U_JACOBI(NUMSIG,NUMDIR,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 9a')
U_JACOBI = zero
END IF
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 7'
! FLUSH(STAT%FHNDL)
IF (ICOMP .GE. 2) THEN
ALLOCATE (PHIA(NUMSIG,NUMDIR,MNP), DPHIDNA(NUMSIG,NUMDIR,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 10')
PHIA = zero
DPHIDNA = zero
END IF
ALLOCATE( A_BR_COEF(MNP), BRCRIT(MNP), stat=istat)
A_BR_COEF = zero
BRCRIT = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 8'
! FLUSH(STAT%FHNDL)
IF ((ICOMP .eq. 3).and.(AMETHOD .eq. 7).AND.(ASPAR_LOCAL_LEVEL .eq. 0)) THEN
#ifdef WWM_SOLVER
IF (REFRACTION_IMPL) THEN
allocate(CAD_THE(NUMSIG,NUMDIR,NP_RES), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 11.1')
END IF
IF (FREQ_SHIFT_IMPL) THEN
allocate(CAS_SIG(NUMSIG,NUMDIR,NP_RES), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 11.2')
END IF
#else
CALL WWM_ABORT('Needs WWM_SOLVER for JACOBI_ITERATION (AMETHOD 7)')
#endif
END IF
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 10'
! FLUSH(STAT%FHNDL)
#ifdef SHYFEM_COUPLING
IF (LSHYFEM) THEN
ALLOCATE(SHYFZETA(NLVT,MNP),NLEV(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 12')
SHYFZETA = ZERO
NLEV = 0
ALLOCATE(STOKES_X(NLVT,MNP), STOKES_Y(NLVT,MNP), JPRESS(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 13')
STOKES_X = ZERO; STOKES_Y = ZERO; JPRESS = ZERO
END IF
#endif
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 11'
! FLUSH(STAT%FHNDL)
!
! Boundary conditions - shared
!
ALLOCATE( IOBDP(MNP), IOBPD(NUMDIR,MNP), IOBP(MNP), IOBWB(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 15')
IOBDP = 1
IOBPD = 0
IOBP = 0
IOBWB = 1
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 12'
! FLUSH(STAT%FHNDL)
!
! phase velocity, wave number, group velocity, dwdh, kh
!
ALLOCATE( WK(NUMSIG,MNP), CG(NUMSIG,MNP), WC(MNP,NUMSIG), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 16')
WK = ZERO
CG = ZERO
WC = ZERO
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 13'
! FLUSH(STAT%FHNDL)
!
! phase velocity, wave number, group velocity, dwdh, kh
!
IF (MESTR .EQ. 7) THEN
ALLOCATE( DWKDX(MNP,NUMSIG), DCGDY(MNP,NUMSIG), DWKDY(MNP,NUMSIG), DCGDX(MNP,NUMSIG), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 16')
DWKDX = ZERO
DCGDX = ZERO
DWKDY = ZERO
DCGDY = ZERO
ENDIF
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 14'
! FLUSH(STAT%FHNDL)
!
ALLOCATE( TABK (0:IDISPTAB), TABCG(0:IDISPTAB), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 17')
TABK = zero
TABCG = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 15'
! FLUSH(STAT%FHNDL)
!
! diffraction parameter - shared
!
IF (LDIFR) THEN
ALLOCATE(DIFRM(MNP), DIFRX(MNP), DIFRY(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 18')
DIFRM = zero
DIFRX = zero
DIFRY = zero
END IF
!
! water level, currents and depths ...
!
ALLOCATE(NumberIterationSolver(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('error in allocate of NumberIterationSolver')
NumberIterationSolver = 0
!
! water level, currents and depths ...
!
ALLOCATE(WINDXY(MNP,2), PRESSURE(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 19')
WINDXY = zero
PRESSURE = zero
ALLOCATE( DVWIND(MNP,2), CURTXY(MNP,2), DVCURT(MNP,2), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 20')
DVWIND = zero
CURTXY = zero
DVCURT = zero
ALLOCATE( DDEP(MNP,2), DCUX(MNP,2), DCUY(MNP,2), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 21')
DDEP = zero
DCUX = zero
DCUY = zero
ALLOCATE( WATLEV(MNP), WATLEVOLD(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 22')
WATLEV = zero
WATLEVOLD = zero
ALLOCATE( DVWALV(MNP), WLDEP(MNP), DEPDT(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 23')
DVWALV = zero
WLDEP = zero
DEPDT = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 16'
! FLUSH(STAT%FHNDL)
!
! convergence analysis - shared
!
IF (LCONV .OR. (LQSTEA .AND. LCHKCONV)) THEN
ALLOCATE ( SUMACOLD(MNP), HSOLD(MNP), KHSOLD(MNP), TM02OLD(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 24')
SUMACOLD = zero
HSOLD = zero
TM02OLD = zero
KHSOLD = zero
END IF
!
! new stuff not ready
!
IF (LCONV) THEN ! more work needed ...
ALLOCATE ( IP_IS_STEADY(MNP), IE_IS_STEADY(MNE), STAT2D(NUMSIG,NUMDIR), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 24')
IP_IS_STEADY = 0
IE_IS_STEADY = 0
STAT2D = ZERO
END IF
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 17'
! FLUSH(STAT%FHNDL)
!
! output - shared
!
ALLOCATE( QBLOCAL(MNP), DISSIPATION(MNP), AIRMOMENTUM(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 25')
QBLOCAL = zero
DISSIPATION = zero
AIRMOMENTUM = zero
ALLOCATE( UFRIC(MNP), ALPHA_CH(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 26')
IF (ISOURCE .eq. 1) THEN
UFRIC = 1.e-5_rkind
ELSE
UFRIC = zero
END IF
ALPHA_CH = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 18'
! FLUSH(STAT%FHNDL)
ALLOCATE( TAUW(MNP), TAUTOT(MNP), TAUWX(MNP), TAUWY(MNP), TAUHF(MNP), TAUHFT2(0:IUSTAR,0:IALPHA,0:ILEVTAIL), TAUHFT(0:IUSTAR,0:IALPHA,NUMSIG), TAUT(0:ITAUMAX,0:JUMAX,JPLEVT), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 27')
TAUW = zero
TAUTOT = zero
TAUWX = zero
TAUWY = zero
TAUHF = zero
TAUHFT2 = zero
ALLOCATE( Z0(MNP), CD(MNP), USTDIR(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 28')
Z0 = zero
CD = zero
USTDIR = zero
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 19'
! FLUSH(STAT%FHNDL)
ALLOCATE( RSXX(MNP), RSXY(MNP), RSYY(MNP), FORCEXY(MNP,2), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 29')
RSXX = zero
RSXY = zero
RSYY = zero
FORCEXY = zero
IF (LCFL .or. (ICOMP .eq. 0) ) THEN
ALLOCATE (CFLCXY(3,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 30')
CFLCXY(1,:) = ZERO
CFLCXY(2,:) = LARGE
CFLCXY(3,:) = ZERO
END IF
IF (LCFL_CASD) THEN
ALLOCATE(CFL_CASD(4,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 31')
END IF
#ifdef SCHISM
ALLOCATE( SXX3D(NVRT,MNP), SXY3D(NVRT,MNP), SYY3D(NVRT,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 32')
SXX3D = zero
SXY3D = zero
SYY3D = zero
#endif
#ifndef SCHISM
IF (LCPL) THEN
IF (LTIMOR.or.LSHYFEM) THEN
ALLOCATE( SXX3D(NLVT,MNP), SXY3D(NLVT,MNP), SYY3D(NLVT,MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 31')
SXX3D = zero
SXY3D = zero
SYY3D = zero
END IF
END IF
#endif
ALLOCATE(HMAX(MNP), ISHALLOW(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 32')
HMAX = zero
ISHALLOW = 0
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 20'
! FLUSH(STAT%FHNDL)
ALLOCATE(FMEANWS(MNP)); FMEANWS = ZERO
ALLOCATE(FMEAN(MNP)); FMEAN = ZERO
ALLOCATE(EMEAN(MNP)); EMEAN = ZERO
IF (ISOURCE == 2) THEN
ALLOCATE( MIJ(MNP), ENH(MNP,NUMSIG+4,1), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 32b')
MIJ = 0
ENH = 1.d0
ALLOCATE( USOLD(MNP), THWOLD(MNP), THWNEW(MNP), Z0OLD(MNP), Z0NEW(MNP), ROAIRO(MNP), ROAIRN(MNP), U10OLD(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 32c')
U10OLD = ZERO
USOLD = ZERO
THWOLD = ZERO
THWNEW = ZERO
Z0OLD = ZERO
Z0NEW = ZERO
ROAIRO = 1.2250000238
ROAIRN = 1.2250000238
ALLOCATE( ZIDLOLD(MNP), ZIDLNEW(MNP), U10NEW(MNP), USNEW(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 32d')
ZIDLOLD = ZERO
ZIDLNEW = ZERO
U10NEW = ZERO
USNEW = ZERO
ALLOCATE( FCONST(MNP,NUMSIG), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 32e')
FCONST = 1
ENDIF
! WRITE(STAT%FHNDL,*) 'INIT_ARRAYS, step 21'
! FLUSH(STAT%FHNDL)
!
! init source term parameter
!
IF (IPHYS.EQ.0) THEN
! ECMWF PHYSICS:
! BETAMAX = 1.52
! ZALP = 0.008
! TAUWSHELTER=0.0
IF(NUMSIG.GT.30) THEN
ALPHA = 0.0060
ELSE
ALPHA = 0.0075
ENDIF
ELSE IF (IPHYS.EQ.1) THEN
! METEO FRANCE PHYSICS:
! BETAMAX = 1.52
! ZALP = 0.0060
! TAUWSHELTER=0.6
IF(NUMSIG.GT.30) THEN
ALPHA = 0.0090
ELSE
ALPHA = 0.0095
ENDIF
ELSE IF (IPHYS.EQ.2) THEN
! COMBINED ECMWF/METEO FRANCE PHYSICS:
! BETAMAX = 1.52
! ZALP = 0.0060
! TAUWSHELTER=0.0
IF(NUMSIG.GT.30) THEN
ALPHA = 0.003
ELSE
ALPHA = 0.004
ENDIF
ELSE
CALL WWM_ABORT('UKNOWN PHYSICS SELECTION')
ENDIF ! IPHYS
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'LEAVING INIT_ARRAYS'
FLUSH(STAT%FHNDL)
END IF
END SUBROUTINE
!**********************************************************************
!* *
!**********************************************************************
SUBROUTINE DEALLOC_ARRAYS
USE DATAPOOL
IMPLICIT NONE
IF (DIMMODE == 1) THEN
DEALLOCATE( DX1, DX2)
END IF
DEALLOCATE(XP, YP, DEP)
DEALLOCATE(INVSPHTRANS)
DEALLOCATE(INE, IEN, TRIA)
!
! spectral grid - shared
!
DEALLOCATE( SPSIG, SPDIR, FR, COSTH, SINTH, COS2TH, SIN2TH)
DEALLOCATE( SINCOSTH, SIGPOW, DS_BAND, DS_INCR)
DEALLOCATE(NUMSIG_HF)
!
! action densities and source terms - shared
!
IF ((.NOT. BLOCK_GAUSS_SEIDEL).and.(AMETHOD .eq. 7)) THEN
DEALLOCATE (U_JACOBI)
END IF
DEALLOCATE (AC2, AC1)
IF (ICOMP .GE. 2) THEN
DEALLOCATE (PHIA, DPHIDNA)
END IF
IF (LITERSPLIT) THEN
DEALLOCATE (DAC_ADV, DAC_THE, DAC_SIG, DAC_SOU)
END IF
#ifdef WWM_SOLVER
IF ((ICOMP .eq. 3).and.(AMETHOD .eq. 7).AND.(ASPAR_LOCAL_LEVEL .eq. 0)) THEN
IF (REFRACTION_IMPL) THEN
deallocate(CAD_THE)
END IF
IF (FREQ_SHIFT_IMPL) THEN
deallocate(CAS_SIG)
END IF
END IF
#endif
#ifdef SHYFEM_COUPLING
IF (LSHYFEM) THEN
DEALLOCATE(SHYFZETA, NLEV)
END IF
#endif
!
! WAM Cycle 4.5 - shared
!
IF (ISOURCE .EQ. 2) THEN
DEALLOCATE ( TAUHFT, TAUT)
ENDIF
!
! Boundary conditions - shared
!
DEALLOCATE( IOBPD, IOBP, IOBWB)
!
! phase velocity, wave number, group velocity, dwdh, kh
!
DEALLOCATE( WK, CG, TABK, TABCG)
!
! diffraction parameter - shared
!
IF (LDIFR) THEN
DEALLOCATE ( DIFRM, DIFRX, DIFRY )
END IF
!
! water level, currents and depths ...
!
DEALLOCATE( WINDXY, PRESSURE, DVWIND, CURTXY, DVCURT)
DEALLOCATE( DDEP, DCUX, DCUY, WATLEV, WATLEVOLD)
DEALLOCATE( DVWALV, WLDEP, DEPDT)
!
! convergence analysis - shared
!
IF (LCONV .OR. (LQSTEA .AND. LCHKCONV)) THEN
DEALLOCATE ( SUMACOLD, HSOLD, KHSOLD, TM02OLD)
END IF
!
! output - shared
!
DEALLOCATE( QBLOCAL, DISSIPATION, AIRMOMENTUM, UFRIC, ALPHA_CH)
DEALLOCATE( TAUW, TAUTOT, TAUWX, TAUWY, TAUHF)
DEALLOCATE( Z0, CD, USTDIR)
DEALLOCATE( RSXX, RSXY, RSYY)
#ifdef SCHISM
DEALLOCATE( SXX3D, SXY3D, SYY3D)
#endif
#ifndef SCHISM
IF (LCPL) THEN
IF (LTIMOR.or.LSHYFEM) THEN
DEALLOCATE( SXX3D, SXY3D, SYY3D)
END IF
END IF
#endif
DEALLOCATE(HMAX, ISHALLOW)
#ifdef NCDF
IF (GRIDWRITE) THEN
DEALLOCATE(XPtotal, YPtotal, IOBPtotal, DEPtotal, INEtotal)
END IF
#endif
END SUBROUTINE
!**********************************************************************
!* *
!**********************************************************************
SUBROUTINE INITIALIZE_WWM
#if defined ROMS_WWM_PGMCL_COUPLING || defined MODEL_COUPLING_ATM_WAV || defined MODEL_COUPLING_OCN_WAV
USE WWMaOCN_PGMCL
#endif
#if defined MODEL_COUPLING_ATM_WAV || defined MODEL_COUPLING_OCN_WAV
USE pgmcl_lib_WWM, only : WAV_common_initialize
#endif
USE DATAPOOL
#ifdef SCHISM
use schism_glbl, only: xlon,ylat
#endif
#ifdef PDLIB
USE yowpd, only : initFromGridDim
#endif
#if !defined PDLIB && defined MPI_PARALL_GRID
USE schism_glbl, only : ics
#endif
#ifdef PETSC
USE PETSC_CONTROLLER, ONLY : PETSC_INIT
#endif
#ifdef ST41
USE W3SRC4MD_OLD
#endif
#ifdef ST42
USE W3SRC4MD
#endif
USE W3SRC6MD
USE W3UOSTMD
IMPLICIT NONE
INTEGER :: I, J
#ifdef TIMINGS
REAL(rkind) :: TIME1, TIME2
CALL WAV_MY_WTIME(TIME1)
#endif
CALL SET_WWMINPULNML
! variable nx1 should be initialized in SCHISM code, not here!
#if defined MPI_PARALL_GRID && !defined PDLIB
do i=1,3
do j=1,2
nx1(i,j)=i+j
if(nx1(i,j)>3) nx1(i,j)=nx1(i,j)-3
if(nx1(i,j)<1.or.nx1(i,j)>3) then
write(wwmerr,*)'MAIN: nx1 wrong',i,j,nx1(i,j)
call wwm_abort(wwmerr)
endif
enddo
enddo
#endif
CALL INIT_FILE_HANDLES
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'DONE SETTING FHNDL'
FLUSH(STAT%FHNDL)
END IF
CALL READ_WWMINPUT
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'DONE READING NAMELIST'
FLUSH(STAT%FHNDL)
END IF
CALL READ_SPATIAL_GRID_TOTAL
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'DONE READ SPATIAL GRID'
FLUSH(STAT%FHNDL)
END IF
#ifndef MPI_PARALL_GRID
MNP=NP_TOTAL
MNE=NE_TOTAL
NP_RES=MNP
CALL INIT_ARRAYS
XP=XPtotal
YP=YPtotal
DEP=DEPtotal
INE=INEtotal
#else
# ifdef PDLIB
IF (IGRIDTYPE .eq. 2) THEN
CALL WWM_ABORT('Not yet support for PDLIB and IGRIDTYPE=2')
END IF
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'sum(XPtotal)=', sum(XPtotal)
write(STAT%FHNDL,*) 'sum(YPtotal)=', sum(YPtotal)
write(STAT%FHNDL,*) 'sum(DEPtotal)=', sum(DEPtotal)
write(STAT%FHNDL,*) 'sum(INEtotal)=', sum(INEtotal)
write(STAT%FHNDL,*) NP_TOTAL, NE_TOTAL, NUMDIR, NUMSIG
FLUSH(STAT%FHNDL)
END IF
CALL initFromGridDim(NP_TOTAL, XPtotal, YPtotal, DEPtotal, NE_TOTAL, INEtotal, NUMDIR, NUMSIG, comm)
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After initFromGridDim'
FLUSH(STAT%FHNDL)
END IF
call fillPublicVars
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After fillPublicVars'
FLUSH(STAT%FHNDL)
END IF
CALL INIT_ARRAYS
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After INIT_ARRAYS'
FLUSH(STAT%FHNDL)
END IF
XP = XPTMP
YP = YPTMP
DEP=DEP8
INETMP=INE
# else
# ifndef SCHISM
call partition_hgrid
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After partition_hgrid'
FLUSH(STAT%FHNDL)
END IF
call aquire_hgrid(.true.)
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After aquire_hgrid'
FLUSH(STAT%FHNDL)
END IF
call msgp_tables
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After msgp_tables'
FLUSH(STAT%FHNDL)
END IF
call msgp_init
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After msgp_init'
FLUSH(STAT%FHNDL)
END IF
call parallel_barrier
# endif
CALL INIT_ARRAYS
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After INIT_ARRAYS'
FLUSH(STAT%FHNDL)
END IF
DEP = DEP8
IF (ics .eq. 2) THEN
XP = XLON*RADDEG
YP = YLAT*RADDEG
ELSE
XP = XPTMP
YP = YPTMP
END IF
# endif
CALL COLLECT_ALL_IPLG
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After COLLECT_ALL_IPLG'
FLUSH(STAT%FHNDL)
END IF
CALL SETUP_ONED_SCATTER_ARRAY
IF (PrintLOG) THEN
write(STAT%FHNDL,*) 'After SETUP_ONED_SCATTER_ARRAY'
FLUSH(STAT%FHNDL)
END IF
#endif
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'DONE PARALLEL INITIALIZATION'
FLUSH(STAT%FHNDL)
END IF
WLDEP=DEP
CALL INIT_SPATIAL_GRID
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INIT SPATIAL GRID'
FLUSH(STAT%FHNDL)
END IF
!
! Main inits done, now the secondary ones.
!
#ifdef VDISLIN
CALL INIT_DISLIN()
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INIT DISLIN '
FLUSH(STAT%FHNDL)
END IF
#endif
CALL CHECK_LOGICS
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'CHECK LOGICS '
FLUSH(STAT%FHNDL)
END IF
!
IF (LADVTEST) THEN
ALLOCATE(UTEST(MNP), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 33')
UTEST = 0.
CALL ADVTEST(UTEST)
AC2(1,1,:) = UTEST
CALL CHECKCONS(UTEST,SUMACt0)
!AR: check the advections test if it still works ...
DEALLOCATE(UTEST)
END IF
#ifdef MPI_PARALL_GRID
CALL BUILD_WILD_ARRAY
#endif
CALL BUILD_IPSTATUS
CALL BUILD_TRIANGLE_CORRESPONDENCES
CALL SET_IOBPD_BY_DEP
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'SET DEPTH POINTER'
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INITIALIZE SPECTRAL GRID'
FLUSH(STAT%FHNDL)
END IF
CALL INIT_SPECTRAL_GRID
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INITIALIZE BOUNDARY POINTER 1/2'
FLUSH(STAT%FHNDL)
END IF
#if defined SCHISM
!AR: let dmin free ...
! DMIN = DMIN_SCHISM
#endif
CALL SET_IOBP_NEXTGENERATION
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INITIALIZE BOUNDARY POINTER 2/2'
FLUSH(STAT%FHNDL)
END IF
CALL SET_IOBPD
IF (DIMMODE .EQ. 2) THEN
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'THE FLUCTUATION SPLITTING PREPROCESSOR HAS STARTED'
FLUSH(STAT%FHNDL)
END IF
CALL INIT_FLUCT_ARRAYS
CALL INIT_FLUCT
IF (AMETHOD .EQ. 4 .OR. AMETHOD .EQ. 5) THEN
#ifdef PETSC
CALL PETSC_INIT
#endif
END IF
IF (AMETHOD .EQ. 6) THEN
#if defined WWM_SOLVER && defined MPI_PARALL_GRID
CALL WWM_SOLVER_INIT
#endif
END IF
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'THE FLUCTUATION SPLITTING PREPROCESSOR HAS ENDED'
FLUSH(STAT%FHNDL)
END IF
END IF
IF (LZETA_SETUP) THEN
#ifdef WWM_SETUP
CALL INIT_WAVE_SETUP
#else
CALL WWM_ABORT('Need WWM_SEZUP if LZETA is selected')
#endif
END IF
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INITIALIZE WIND CURRENT WATERLEVEL'
FLUSH(STAT%FHNDL)
END IF
#if !defined ROMS_WWM_PGMCL_COUPLING && !defined MODEL_COUPLING_ATM_WAV && !defined MODEL_COUPLING_OCN_WAV
IF (LWINDFROMWWM) THEN
CALL INIT_WIND_INPUT
END IF
#endif
#ifdef SCHISM
IF (.NOT. LWINDFROMWWM) THEN
WINDXY(:,1) = WINDX0
WINDXY(:,2) = WINDY0
END IF
#endif
#if !defined ROMS_WWM_PGMCL_COUPLING && !defined MODEL_COUPLING_OCN_WAV
IF (.NOT. LCPL) THEN
CALL INIT_CURRENT_INPUT
CALL INIT_WATLEV_INPUT
END IF
#endif
IF (MESIC.EQ.1) THEN
IF (LICEFROMWWM) THEN
CALL INIT_ICE_INPUT
ELSE
CALL WWM_ABORT('For now only LICEFROMWWM==T is supported')
END IF
END IF
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'COMPUTE THE WAVE PARAMETER'
FLUSH(STAT%FHNDL)
END IF
CALL INITIATE_WAVE_PARAMETER
CALL SETSHALLOW
CALL SET_HMAX
IF (ISOURCE == 1) THEN
#if defined ST41 || defined ST42
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INIT ARDHUIN et al.'
FLUSH(STAT%FHNDL)
END IF
CALL PREPARE_ST4
#else
CALL WWM_ABORT('For PREPARE_ARDHUIN, you need ST42 to be selected')
#endif
ELSE IF (ISOURCE == 4) THEN
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INIT ST6'
FLUSH(STAT%FHNDL)
END IF
CALL PREPARE_ST6
ENDIF
IF ( MESUO .GT. 0) THEN
CALL UOST_INIT
ENDIF
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'SET THE INITIAL WAVE BOUNDARY CONDITION'
FLUSH(STAT%FHNDL)
END IF
CALL INIT_WAVE_BOUNDARY_CONDITION
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'SET THE INITIAL CONDITION'
FLUSH(STAT%FHNDL)
END IF
CALL INITIAL_CONDITION
CALL Print_SumAC2("After INITIAL_CONDITION")
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INIT STATION OUTPUT'
FLUSH(STAT%FHNDL)
END IF
CALL INIT_STATION_OUTPUT
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'WRITING INITIAL TIME STEP'
FLUSH(STAT%FHNDL)
END IF
#ifdef MPI_PARALL_GRID
CALL EXCHANGE_P4D_WWM(AC2)
#endif
! WRITE(740+myrank,*) 'Before call to GENERAL_OUTPUT'
! FLUSH(740+myrank)
CALL GENERAL_OUTPUT(ZERO)
! WRITE(740+myrank,*) 'End call to GENERAL_OUTPUT'
! FLUSH(740+myrank)
IF (LWXFN) THEN
CALL WRINPGRD_XFN
ELSE IF(LWSHP) THEN
CALL WRINPGRD_SHP
END IF
#if !defined SCHISM && !defined ROMS_WWM_PGMCL_COUPLING && !defined MODEL_COUPLING_ATM_WAV && !defined MODEL_COUPLING_OCN_WAV
IF (LCPL) THEN
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'OPEN PIPES FOR COUPLING'
FLUSH(STAT%FHNDL)
END IF
IF (LTIMOR) THEN
CALL INIT_PIPES_TIMOR()
#ifdef SHYFEM_COUPLING
ELSE IF (LSHYFEM) THEN
CALL INIT_PIPES_SHYFEM()
#endif
ELSE IF (LROMS) THEN
CALL INIT_PIPES_ROMS()
END IF
END IF
#endif
#ifdef ROMS_WWM_PGMCL_COUPLING
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'Before ROMS_COUPL_INITIALIZE'
FLUSH(STAT%FHNDL)
END IF
CALL WWM_common_coupl_initialize
CALL WWM_a_OCN_COUPL_INITIALIZE
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'After ROMS_COUPL_INITIALIZE'
FLUSH(STAT%FHNDL)
END IF
#endif
#if defined MODEL_COUPLING_ATM_WAV || defined MODEL_COUPLING_OCN_WAV
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'Before WAV_common_initialize'
FLUSH(STAT%FHNDL)
END IF
CALL WAV_common_initialize
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'After WAV_common_initialize'
FLUSH(STAT%FHNDL)
END IF
#endif
#ifdef TIMINGS
CALL WAV_MY_WTIME(TIME2)
#endif
#if defined SCHISM
IF (NUMSIG_SCHISM .NE. NUMSIG .OR. NUMDIR_SCHISM .NE. NUMDIR) THEN
WRITE(DBG%FHNDL,*) 'NUMSIG_SCHISM', NUMSIG_SCHISM
WRITE(DBG%FHNDL,*) 'NUMSIG', NUMSIG
WRITE(DBG%FHNDL,*) 'NUMDIR_SCHISM', NUMDIR_SCHISM
WRITE(DBG%FHNDL,*) 'NUMDIR', NUMDIR
FLUSH(DBG%FHNDL)
CALL PARALLEL_ABORT('THERE IS AND ERROR IN NUMSIG2 OR NUMDIR2 IN PARAM.IN')
END IF
#endif
IF (PrintLOG) THEN
WRITE(STAT%FHNDL,'("+TRACE...",A)') 'INITIALIZE_WWM'
#ifdef TIMINGS
WRITE(STAT%FHNDL,'("+TRACE...",A,F15.4)') 'CPU Time for the preprocessing', TIME2-TIME1
#endif
FLUSH(STAT%FHNDL)
END IF
AC1 = AC2
CALL Print_SumAC2("Leaving INITIALIZE_WWM")
END SUBROUTINE
!**********************************************************************
!* *
!**********************************************************************
SUBROUTINE TERMINATE_WWM
#ifdef ROMS_WWM_PGMCL_COUPLING
USE WWMaOCN_PGMCL
#endif
#if defined MODEL_COUPLING_ATM_WAV || defined MODEL_COUPLING_OCN_WAV
USE pgmcl_lib_WWM, only : WAV_all_deallocate
#endif
USE DATAPOOL
#ifdef ST41
USE W3SRC4MD_OLD
#endif
#ifdef ST42
USE W3SRC4MD
#endif
#ifdef PETSC
USE PETSC_CONTROLLER, ONLY : PETSC_FINALIZE
#endif
CALL CLOSE_FILE_HANDLES
CALL DEALLOC_ARRAYS
#ifdef MPI_PARALL_GRID
CALL DEALLOC_WILD_ARRAY
#endif
IF (DIMMODE .EQ. 2) THEN
CALL DEALLOC_FLUCT_ARRAYS
CALL DEALLOC_FLUCT
IF (AMETHOD .EQ. 4 .OR. AMETHOD .EQ. 5) THEN
#ifdef PETSC
CALL PETSC_FINALIZE
#endif
END IF
END IF
IF (LZETA_SETUP) THEN
CALL FINALIZE_WAVE_SETUP
END IF
CALL DEALLOC_SPECTRAL_GRID
CALL CLOSE_IOBP
CALL TERMINATE_STATION_OUTPUT
#if !defined SCHISM && !defined ROMS_WWM_PGMCL_COUPLING && !defined MODEL_COUPLING_ATM_WAV && !defined MODEL_COUPLING_OCN_WAV
IF (LCPL) THEN
IF (LTIMOR) THEN
CALL TERMINATE_PIPES_TIMOR()
# ifdef SHYFEM_COUPLING
ELSE IF (LSHYFEM) THEN
CALL TERMINATE_PIPES_SHYFEM()
# endif
ELSE IF (LROMS) THEN
CALL TERMINATE_PIPES_ROMS()
END IF
END IF
#endif
#ifdef ROMS_WWM_PGMCL_COUPLING
CALL WWM_a_OCN_COUPL_DEALLOCATE
#endif
#if defined MODEL_COUPLING_ATM_WAV || defined MODEL_COUPLING_OCN_WAV
CALL WAV_all_deallocate
#endif
END SUBROUTINE
!**********************************************************************
!* *
!**********************************************************************
#ifdef MPI_PARALL_GRID
SUBROUTINE BUILD_WILD_ARRAY
USE DATAPOOL, only : MNP, NP_RES, ONE, rkind
USE DATAPOOL, only : nwild_gb, nwild_loc, nwild_loc_res
USE datapool, only : iplg, np_global
USE datapool, only : istatus, itype, comm, ierr, myrank, rtype, nproc
use datapool, only : MPI_SUM
IMPLICIT NONE
integer, allocatable :: nwild_i(:), nwild_gbi(:)
integer :: iProc, istat
INTEGER :: IP
real(rkind), allocatable :: nwild_gb_res(:)
ALLOCATE(nwild_i(np_global), nwild_gbi(np_global), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 33')
!
nwild_i=0
nwild_gbi=0
DO IP=1,MNP
nwild_i(IPLG(IP))=1
END DO
call mpi_reduce(nwild_i,nwild_gbi,NP_GLOBAL,itype,MPI_SUM,0,comm,ierr)
ALLOCATE(nwild_gb(NP_GLOBAL), stat=istat)
IF (istat/=0) CALL WWM_ABORT('wwm_initio, allocate error 34')
IF (myrank.eq.0) THEN