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czaja | 
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C $Header: /u/gcmpack/models/MITgcmUV/model/src/thermodynamics.F,v 1.13 2001/09/28 03:36:16 adcroft Exp $ | 
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C $Name: release1_beta1 $ | 
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#include "CPP_OPTIONS.h" | 
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CBOP | 
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C     !ROUTINE: THERMODYNAMICS | 
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C     !INTERFACE: | 
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      SUBROUTINE THERMODYNAMICS(myTime, myIter, myThid) | 
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C     !DESCRIPTION: \bv | 
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C     *==========================================================* | 
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C     | SUBROUTINE THERMODYNAMICS                                  | 
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C     | o Controlling routine for the prognostic part of the       | 
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C     |   thermo-dynamics.                                         | 
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C     *=========================================================== | 
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C     | The algorithm... | 
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C     | | 
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C     | "Correction Step" | 
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C     | ================= | 
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C     | Here we update the horizontal velocities with the surface | 
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C     | pressure such that the resulting flow is either consistent | 
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C     | with the free-surface evolution or the rigid-lid: | 
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C     |   U[n] = U* + dt x d/dx P | 
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C     |   V[n] = V* + dt x d/dy P | 
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C     | | 
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C     | "Calculation of Gs" | 
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C     | =================== | 
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C     | This is where all the accelerations and tendencies (ie. | 
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C     | physics, parameterizations etc...) are calculated | 
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C     |   rho = rho ( theta[n], salt[n] ) | 
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C     |   b   = b(rho, theta) | 
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C     |   K31 = K31 ( rho ) | 
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C     |   Gu[n] = Gu( u[n], v[n], wVel, b, ... ) | 
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C     |   Gv[n] = Gv( u[n], v[n], wVel, b, ... ) | 
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C     |   Gt[n] = Gt( theta[n], u[n], v[n], wVel, K31, ... ) | 
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C     |   Gs[n] = Gs( salt[n], u[n], v[n], wVel, K31, ... ) | 
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C     | | 
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C     | "Time-stepping" or "Prediction" | 
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C     | ================================ | 
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C     | The models variables are stepped forward with the appropriate | 
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C     | time-stepping scheme (currently we use Adams-Bashforth II) | 
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C     | - For momentum, the result is always *only* a "prediction" | 
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C     | in that the flow may be divergent and will be "corrected" | 
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C     | later with a surface pressure gradient. | 
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C     | - Normally for tracers the result is the new field at time | 
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C     | level [n+1} *BUT* in the case of implicit diffusion the result | 
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C     | is also *only* a prediction. | 
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C     | - We denote "predictors" with an asterisk (*). | 
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C     |   U* = U[n] + dt x ( 3/2 Gu[n] - 1/2 Gu[n-1] ) | 
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C     |   V* = V[n] + dt x ( 3/2 Gv[n] - 1/2 Gv[n-1] ) | 
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C     |   theta[n+1] = theta[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] ) | 
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C     |   salt[n+1] = salt[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] ) | 
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C     | With implicit diffusion: | 
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C     |   theta* = theta[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] ) | 
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C     |   salt* = salt[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] ) | 
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C     |   (1 + dt * K * d_zz) theta[n] = theta* | 
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C     |   (1 + dt * K * d_zz) salt[n] = salt* | 
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C     | | 
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C     *==========================================================* | 
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C     \ev | 
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C     !USES: | 
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      IMPLICIT NONE | 
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C     == Global variables === | 
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#include "SIZE.h" | 
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#include "EEPARAMS.h" | 
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#include "PARAMS.h" | 
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#include "DYNVARS.h" | 
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#include "GRID.h" | 
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#include "GAD.h" | 
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#ifdef ALLOW_PASSIVE_TRACER | 
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#include "TR1.h" | 
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#endif | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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# include "tamc.h" | 
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# include "tamc_keys.h" | 
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# include "FFIELDS.h" | 
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# ifdef ALLOW_KPP | 
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#  include "KPP.h" | 
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# endif | 
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# ifdef ALLOW_GMREDI | 
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#  include "GMREDI.h" | 
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# endif | 
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#endif /* ALLOW_AUTODIFF_TAMC */ | 
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#ifdef ALLOW_TIMEAVE | 
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#include "TIMEAVE_STATV.h" | 
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#endif | 
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C     !INPUT/OUTPUT PARAMETERS: | 
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C     == Routine arguments == | 
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C     myTime - Current time in simulation | 
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C     myIter - Current iteration number in simulation | 
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C     myThid - Thread number for this instance of the routine. | 
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      _RL myTime | 
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      INTEGER myIter | 
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      INTEGER myThid | 
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C     !LOCAL VARIABLES: | 
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C     == Local variables | 
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C     xA, yA                 - Per block temporaries holding face areas | 
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C     uTrans, vTrans, rTrans - Per block temporaries holding flow  | 
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C                              transport | 
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C                              o uTrans: Zonal transport | 
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C                              o vTrans: Meridional transport | 
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C                              o rTrans: Vertical transport | 
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C     maskUp                   o maskUp: land/water mask for W points | 
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C     fVer[STUV]               o fVer: Vertical flux term - note fVer | 
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C                                      is "pipelined" in the vertical | 
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C                                      so we need an fVer for each | 
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C                                      variable. | 
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C     rhoK, rhoKM1   - Density at current level, and level above  | 
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C     phiHyd         - Hydrostatic part of the potential phiHydi. | 
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C                      In z coords phiHydiHyd is the hydrostatic  | 
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C                      Potential (=pressure/rho0) anomaly | 
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C                      In p coords phiHydiHyd is the geopotential  | 
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C                      surface height anomaly. | 
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C     phiSurfX, - gradient of Surface potentiel (Pressure/rho, ocean) | 
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C     phiSurfY             or geopotentiel (atmos) in X and Y direction | 
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C     KappaRT,       - Total diffusion in vertical for T and S. | 
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C     KappaRS          (background + spatially varying, isopycnal term). | 
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C     iMin, iMax     - Ranges and sub-block indices on which calculations | 
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C     jMin, jMax       are applied. | 
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C     bi, bj | 
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C     k, kup,        - Index for layer above and below. kup and kDown | 
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C     kDown, km1       are switched with layer to be the appropriate  | 
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C                      index into fVerTerm. | 
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      _RS xA      (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RS yA      (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL uTrans  (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL vTrans  (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL rTrans  (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RS maskUp  (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL fVerT   (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2) | 
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      _RL fVerS   (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2) | 
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      _RL fVerTr1 (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2) | 
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      _RL phiHyd  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) | 
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      _RL rhokm1  (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL rhok    (1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL phiSurfX(1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL phiSurfY(1-OLx:sNx+OLx,1-OLy:sNy+OLy) | 
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      _RL KappaRT (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr) | 
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      _RL KappaRS (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr) | 
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      _RL sigmaX  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) | 
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      _RL sigmaY  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) | 
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      _RL sigmaR  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) | 
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C     This is currently used by IVDC and Diagnostics | 
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      _RL ConvectCount (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) | 
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      INTEGER iMin, iMax | 
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      INTEGER jMin, jMax | 
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      INTEGER bi, bj | 
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      INTEGER i, j | 
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      INTEGER k, km1, kup, kDown | 
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Cjmc : add for phiHyd output <- but not working if multi tile per CPU | 
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c     CHARACTER*(MAX_LEN_MBUF) suff  | 
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c     LOGICAL  DIFFERENT_MULTIPLE | 
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c     EXTERNAL DIFFERENT_MULTIPLE | 
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Cjmc(end) | 
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CEOP | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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C--   dummy statement to end declaration part | 
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      ikey = 1 | 
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#endif /* ALLOW_AUTODIFF_TAMC */ | 
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C--   Set up work arrays with valid (i.e. not NaN) values | 
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C     These inital values do not alter the numerical results. They | 
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C     just ensure that all memory references are to valid floating | 
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C     point numbers. This prevents spurious hardware signals due to | 
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C     uninitialised but inert locations. | 
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      DO j=1-OLy,sNy+OLy | 
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       DO i=1-OLx,sNx+OLx | 
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        xA(i,j)      = 0. _d 0 | 
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        yA(i,j)      = 0. _d 0 | 
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        uTrans(i,j)  = 0. _d 0 | 
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        vTrans(i,j)  = 0. _d 0 | 
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        DO k=1,Nr | 
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         phiHyd(i,j,k)  = 0. _d 0  | 
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         sigmaX(i,j,k) = 0. _d 0 | 
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         sigmaY(i,j,k) = 0. _d 0 | 
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         sigmaR(i,j,k) = 0. _d 0 | 
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        ENDDO | 
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        rhoKM1 (i,j) = 0. _d 0 | 
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        rhok   (i,j) = 0. _d 0 | 
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        phiSurfX(i,j) = 0. _d 0 | 
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        phiSurfY(i,j) = 0. _d 0 | 
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       ENDDO | 
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      ENDDO | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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C--   HPF directive to help TAMC | 
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CHPF$ INDEPENDENT | 
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#endif /* ALLOW_AUTODIFF_TAMC */ | 
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      DO bj=myByLo(myThid),myByHi(myThid) | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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C--    HPF directive to help TAMC | 
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CHPF$  INDEPENDENT, NEW (rTrans,fVerT,fVerS | 
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CHPF$&                  ,phiHyd,utrans,vtrans,xA,yA | 
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CHPF$&                  ,KappaRT,KappaRS | 
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CHPF$&                  ) | 
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#endif /* ALLOW_AUTODIFF_TAMC */ | 
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       DO bi=myBxLo(myThid),myBxHi(myThid) | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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          act1 = bi - myBxLo(myThid) | 
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          max1 = myBxHi(myThid) - myBxLo(myThid) + 1 | 
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          act2 = bj - myByLo(myThid) | 
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          max2 = myByHi(myThid) - myByLo(myThid) + 1 | 
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          act3 = myThid - 1 | 
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          max3 = nTx*nTy | 
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          act4 = ikey_dynamics - 1 | 
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          ikey = (act1 + 1) + act2*max1 | 
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     &                      + act3*max1*max2 | 
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     &                      + act4*max1*max2*max3 | 
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#endif /* ALLOW_AUTODIFF_TAMC */ | 
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C--     Set up work arrays that need valid initial values | 
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        DO j=1-OLy,sNy+OLy | 
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         DO i=1-OLx,sNx+OLx | 
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          rTrans (i,j)   = 0. _d 0 | 
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          fVerT  (i,j,1) = 0. _d 0 | 
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          fVerT  (i,j,2) = 0. _d 0 | 
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          fVerS  (i,j,1) = 0. _d 0 | 
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          fVerS  (i,j,2) = 0. _d 0 | 
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          fVerTr1(i,j,1) = 0. _d 0 | 
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          fVerTr1(i,j,2) = 0. _d 0 | 
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         ENDDO | 
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        ENDDO | 
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        DO k=1,Nr | 
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         DO j=1-OLy,sNy+OLy | 
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          DO i=1-OLx,sNx+OLx | 
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C This is currently also used by IVDC and Diagnostics | 
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           ConvectCount(i,j,k) = 0. | 
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           KappaRT(i,j,k) = 0. _d 0 | 
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           KappaRS(i,j,k) = 0. _d 0 | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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           gT(i,j,k,bi,bj) = 0. _d 0 | 
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           gS(i,j,k,bi,bj) = 0. _d 0 | 
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#ifdef ALLOW_PASSIVE_TRACER | 
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           gTr1(i,j,k,bi,bj) = 0. _d 0 | 
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#endif | 
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#endif | 
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          ENDDO | 
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         ENDDO | 
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        ENDDO | 
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        iMin = 1-OLx+1 | 
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        iMax = sNx+OLx | 
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        jMin = 1-OLy+1 | 
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        jMax = sNy+OLy | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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CADJ STORE theta(:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
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CADJ STORE salt (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
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#ifdef ALLOW_KPP | 
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CADJ STORE uvel (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
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CADJ STORE vvel (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
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#endif | 
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#endif /* ALLOW_AUTODIFF_TAMC */ | 
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C--     Start of diagnostic loop | 
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        DO k=Nr,1,-1 | 
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#ifdef ALLOW_AUTODIFF_TAMC | 
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C? Patrick, is this formula correct now that we change the loop range? | 
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C? Do we still need this? | 
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cph kkey formula corrected.  | 
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cph Needed for rhok, rhokm1, in the case useGMREDI. | 
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         kkey = (ikey-1)*Nr + k | 
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CADJ STORE rhokm1(:,:) = comlev1_bibj_k ,       key=kkey, byte=isbyte | 
| 277 | 
  | 
  | 
CADJ STORE rhok  (:,:) = comlev1_bibj_k ,       key=kkey, byte=isbyte | 
| 278 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 279 | 
  | 
  | 
 | 
| 280 | 
  | 
  | 
C--       Integrate continuity vertically for vertical velocity | 
| 281 | 
  | 
  | 
          CALL INTEGRATE_FOR_W( | 
| 282 | 
  | 
  | 
     I                         bi, bj, k, uVel, vVel, | 
| 283 | 
  | 
  | 
     O                         wVel, | 
| 284 | 
  | 
  | 
     I                         myThid ) | 
| 285 | 
  | 
  | 
 | 
| 286 | 
  | 
  | 
#ifdef    ALLOW_OBCS | 
| 287 | 
  | 
  | 
#ifdef    ALLOW_NONHYDROSTATIC | 
| 288 | 
  | 
  | 
C--       Apply OBC to W if in N-H mode | 
| 289 | 
  | 
  | 
          IF (useOBCS.AND.nonHydrostatic) THEN | 
| 290 | 
  | 
  | 
            CALL OBCS_APPLY_W( bi, bj, k, wVel, myThid ) | 
| 291 | 
  | 
  | 
          ENDIF | 
| 292 | 
  | 
  | 
#endif    /* ALLOW_NONHYDROSTATIC */ | 
| 293 | 
  | 
  | 
#endif    /* ALLOW_OBCS */ | 
| 294 | 
  | 
  | 
 | 
| 295 | 
  | 
  | 
C--       Calculate gradients of potential density for isoneutral | 
| 296 | 
  | 
  | 
C         slope terms (e.g. GM/Redi tensor or IVDC diffusivity) | 
| 297 | 
  | 
  | 
c         IF ( k.GT.1 .AND. (useGMRedi.OR.ivdc_kappa.NE.0.) ) THEN | 
| 298 | 
  | 
  | 
          IF ( useGMRedi .OR. (k.GT.1 .AND. ivdc_kappa.NE.0.) ) THEN | 
| 299 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 300 | 
  | 
  | 
CADJ STORE theta(:,:,k,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte | 
| 301 | 
  | 
  | 
CADJ STORE salt (:,:,k,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte | 
| 302 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 303 | 
  | 
  | 
            CALL FIND_RHO( | 
| 304 | 
  | 
  | 
     I        bi, bj, iMin, iMax, jMin, jMax, k, k, eosType, | 
| 305 | 
  | 
  | 
     I        theta, salt, | 
| 306 | 
  | 
  | 
     O        rhoK, | 
| 307 | 
  | 
  | 
     I        myThid ) | 
| 308 | 
  | 
  | 
            IF (k.GT.1) THEN | 
| 309 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 310 | 
  | 
  | 
CADJ STORE theta(:,:,k-1,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte | 
| 311 | 
  | 
  | 
CADJ STORE salt (:,:,k-1,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte | 
| 312 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 313 | 
  | 
  | 
             CALL FIND_RHO( | 
| 314 | 
  | 
  | 
     I        bi, bj, iMin, iMax, jMin, jMax, k-1, k, eosType, | 
| 315 | 
  | 
  | 
     I        theta, salt, | 
| 316 | 
  | 
  | 
     O        rhoKm1, | 
| 317 | 
  | 
  | 
     I        myThid ) | 
| 318 | 
  | 
  | 
            ENDIF | 
| 319 | 
  | 
  | 
            CALL GRAD_SIGMA( | 
| 320 | 
  | 
  | 
     I             bi, bj, iMin, iMax, jMin, jMax, k, | 
| 321 | 
  | 
  | 
     I             rhoK, rhoKm1, rhoK, | 
| 322 | 
  | 
  | 
     O             sigmaX, sigmaY, sigmaR, | 
| 323 | 
  | 
  | 
     I             myThid ) | 
| 324 | 
  | 
  | 
          ENDIF | 
| 325 | 
  | 
  | 
 | 
| 326 | 
  | 
  | 
C--       Implicit Vertical Diffusion for Convection | 
| 327 | 
  | 
  | 
c ==> should use sigmaR !!! | 
| 328 | 
  | 
  | 
          IF (k.GT.1 .AND. ivdc_kappa.NE.0.) THEN | 
| 329 | 
  | 
  | 
            CALL CALC_IVDC( | 
| 330 | 
  | 
  | 
     I        bi, bj, iMin, iMax, jMin, jMax, k, | 
| 331 | 
  | 
  | 
     I        rhoKm1, rhoK, | 
| 332 | 
  | 
  | 
     U        ConvectCount, KappaRT, KappaRS, | 
| 333 | 
  | 
  | 
     I        myTime, myIter, myThid) | 
| 334 | 
  | 
  | 
          ENDIF | 
| 335 | 
  | 
  | 
 | 
| 336 | 
  | 
  | 
C--     end of diagnostic k loop (Nr:1) | 
| 337 | 
  | 
  | 
        ENDDO | 
| 338 | 
  | 
  | 
 | 
| 339 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 340 | 
  | 
  | 
cph avoids recomputation of integrate_for_w | 
| 341 | 
  | 
  | 
CADJ STORE wvel (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
| 342 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 343 | 
  | 
  | 
 | 
| 344 | 
  | 
  | 
#ifdef  ALLOW_OBCS | 
| 345 | 
  | 
  | 
C--     Calculate future values on open boundaries | 
| 346 | 
  | 
  | 
        IF (useOBCS) THEN | 
| 347 | 
  | 
  | 
          CALL OBCS_CALC( bi, bj, myTime+deltaT, | 
| 348 | 
  | 
  | 
     I            uVel, vVel, wVel, theta, salt, | 
| 349 | 
  | 
  | 
     I            myThid ) | 
| 350 | 
  | 
  | 
        ENDIF | 
| 351 | 
  | 
  | 
#endif  /* ALLOW_OBCS */ | 
| 352 | 
  | 
  | 
 | 
| 353 | 
  | 
  | 
C--     Determines forcing terms based on external fields | 
| 354 | 
  | 
  | 
C       relaxation terms, etc. | 
| 355 | 
  | 
  | 
        CALL EXTERNAL_FORCING_SURF(  | 
| 356 | 
  | 
  | 
     I             bi, bj, iMin, iMax, jMin, jMax, | 
| 357 | 
  | 
  | 
     I             myThid ) | 
| 358 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 359 | 
  | 
  | 
cph needed for KPP | 
| 360 | 
  | 
  | 
CADJ STORE surfacetendencyU(:,:,bi,bj) | 
| 361 | 
  | 
  | 
CADJ &     = comlev1_bibj, key=ikey, byte=isbyte | 
| 362 | 
  | 
  | 
CADJ STORE surfacetendencyV(:,:,bi,bj) | 
| 363 | 
  | 
  | 
CADJ &     = comlev1_bibj, key=ikey, byte=isbyte | 
| 364 | 
  | 
  | 
CADJ STORE surfacetendencyS(:,:,bi,bj) | 
| 365 | 
  | 
  | 
CADJ &     = comlev1_bibj, key=ikey, byte=isbyte | 
| 366 | 
  | 
  | 
CADJ STORE surfacetendencyT(:,:,bi,bj) | 
| 367 | 
  | 
  | 
CADJ &     = comlev1_bibj, key=ikey, byte=isbyte | 
| 368 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 369 | 
  | 
  | 
 | 
| 370 | 
  | 
  | 
#ifdef  ALLOW_GMREDI | 
| 371 | 
  | 
  | 
 | 
| 372 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 373 | 
  | 
  | 
CADJ STORE sigmaX(:,:,:) = comlev1, key=ikey, byte=isbyte | 
| 374 | 
  | 
  | 
CADJ STORE sigmaY(:,:,:) = comlev1, key=ikey, byte=isbyte | 
| 375 | 
  | 
  | 
CADJ STORE sigmaR(:,:,:) = comlev1, key=ikey, byte=isbyte | 
| 376 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 377 | 
  | 
  | 
C--     Calculate iso-neutral slopes for the GM/Redi parameterisation | 
| 378 | 
  | 
  | 
        IF (useGMRedi) THEN | 
| 379 | 
  | 
  | 
          DO k=1,Nr | 
| 380 | 
  | 
  | 
            CALL GMREDI_CALC_TENSOR( | 
| 381 | 
  | 
  | 
     I             bi, bj, iMin, iMax, jMin, jMax, k, | 
| 382 | 
  | 
  | 
     I             sigmaX, sigmaY, sigmaR, | 
| 383 | 
  | 
  | 
     I             myThid ) | 
| 384 | 
  | 
  | 
          ENDDO | 
| 385 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 386 | 
  | 
  | 
        ELSE | 
| 387 | 
  | 
  | 
          DO k=1, Nr | 
| 388 | 
  | 
  | 
            CALL GMREDI_CALC_TENSOR_DUMMY( | 
| 389 | 
  | 
  | 
     I             bi, bj, iMin, iMax, jMin, jMax, k, | 
| 390 | 
  | 
  | 
     I             sigmaX, sigmaY, sigmaR, | 
| 391 | 
  | 
  | 
     I             myThid ) | 
| 392 | 
  | 
  | 
          ENDDO | 
| 393 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 394 | 
  | 
  | 
        ENDIF | 
| 395 | 
  | 
  | 
 | 
| 396 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 397 | 
  | 
  | 
CADJ STORE Kwx(:,:,:,bi,bj)   = comlev1_bibj, key=ikey, byte=isbyte | 
| 398 | 
  | 
  | 
CADJ STORE Kwy(:,:,:,bi,bj)   = comlev1_bibj, key=ikey, byte=isbyte | 
| 399 | 
  | 
  | 
CADJ STORE Kwz(:,:,:,bi,bj)   = comlev1_bibj, key=ikey, byte=isbyte | 
| 400 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 401 | 
  | 
  | 
 | 
| 402 | 
  | 
  | 
#endif  /* ALLOW_GMREDI */ | 
| 403 | 
  | 
  | 
 | 
| 404 | 
  | 
  | 
#ifdef  ALLOW_KPP | 
| 405 | 
  | 
  | 
C--     Compute KPP mixing coefficients | 
| 406 | 
  | 
  | 
        IF (useKPP) THEN | 
| 407 | 
  | 
  | 
          CALL KPP_CALC( | 
| 408 | 
  | 
  | 
     I                  bi, bj, myTime, myThid ) | 
| 409 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 410 | 
  | 
  | 
        ELSE | 
| 411 | 
  | 
  | 
          CALL KPP_CALC_DUMMY( | 
| 412 | 
  | 
  | 
     I                  bi, bj, myTime, myThid ) | 
| 413 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 414 | 
  | 
  | 
        ENDIF | 
| 415 | 
  | 
  | 
 | 
| 416 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 417 | 
  | 
  | 
CADJ STORE KPPghat   (:,:,:,bi,bj) | 
| 418 | 
  | 
  | 
CADJ &   , KPPdiffKzT(:,:,:,bi,bj) | 
| 419 | 
  | 
  | 
CADJ &   , KPPdiffKzS(:,:,:,bi,bj) | 
| 420 | 
  | 
  | 
CADJ &   , KPPfrac   (:,:  ,bi,bj) | 
| 421 | 
  | 
  | 
CADJ &                 = comlev1_bibj, key=ikey, byte=isbyte | 
| 422 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 423 | 
  | 
  | 
 | 
| 424 | 
  | 
  | 
#endif  /* ALLOW_KPP */ | 
| 425 | 
  | 
  | 
 | 
| 426 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 427 | 
  | 
  | 
CADJ STORE KappaRT(:,:,:)     = comlev1_bibj, key=ikey, byte=isbyte | 
| 428 | 
  | 
  | 
CADJ STORE KappaRS(:,:,:)     = comlev1_bibj, key=ikey, byte=isbyte | 
| 429 | 
  | 
  | 
CADJ STORE theta(:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
| 430 | 
  | 
  | 
CADJ STORE salt (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
| 431 | 
  | 
  | 
CADJ STORE uvel (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
| 432 | 
  | 
  | 
CADJ STORE vvel (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
| 433 | 
  | 
  | 
#ifdef ALLOW_PASSIVE_TRACER | 
| 434 | 
  | 
  | 
CADJ STORE tr1  (:,:,:,bi,bj) = comlev1_bibj, key=ikey, byte=isbyte | 
| 435 | 
  | 
  | 
#endif | 
| 436 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 437 | 
  | 
  | 
 | 
| 438 | 
  | 
  | 
#ifdef ALLOW_AIM | 
| 439 | 
  | 
  | 
C       AIM - atmospheric intermediate model, physics package code. | 
| 440 | 
  | 
  | 
C note(jmc) : phiHyd=0 at this point but is not really used in Molteni Physics | 
| 441 | 
  | 
  | 
        IF ( useAIM ) THEN | 
| 442 | 
  | 
  | 
         CALL TIMER_START('AIM_DO_ATMOS_PHYS      [DYNAMICS]', myThid) | 
| 443 | 
  | 
  | 
         CALL AIM_DO_ATMOS_PHYSICS( phiHyd, bi, bj, myTime, myThid ) | 
| 444 | 
  | 
  | 
         CALL TIMER_STOP ('AIM_DO_ATMOS_PHYS      [DYNAMICS]', myThid) | 
| 445 | 
  | 
  | 
        ENDIF | 
| 446 | 
  | 
  | 
#endif /* ALLOW_AIM */ | 
| 447 | 
  | 
  | 
 | 
| 448 | 
  | 
  | 
#ifdef ALLOW_MITPHYS | 
| 449 | 
  | 
  | 
C       MITPHYS - atmospheric model, MIT physics package code. (sb) | 
| 450 | 
  | 
  | 
        IF ( useMITPHYS ) THEN | 
| 451 | 
  | 
  | 
         CALL TIMER_START('MITPHYS_DO_ATMOS_PHYS  [DYNAMICS]', myThid) | 
| 452 | 
  | 
  | 
         CALL MITPHYS_DO_ATMOS_PHYSICS( phiHyd, myTime, myThid ) | 
| 453 | 
  | 
  | 
         CALL TIMER_STOP ('MITPHYS_DO_ATMOS_PHYS  [DYNAMICS]', myThid) | 
| 454 | 
  | 
  | 
        ENDIF | 
| 455 | 
  | 
  | 
#endif /* ALLOW_MITPHYS */ | 
| 456 | 
  | 
  | 
 | 
| 457 | 
  | 
  | 
#ifndef DISABLE_MULTIDIM_ADVECTION | 
| 458 | 
  | 
  | 
C--     Some advection schemes are better calculated using a multi-dimensional | 
| 459 | 
  | 
  | 
C       method in the absence of any other terms and, if used, is done here. | 
| 460 | 
  | 
  | 
C | 
| 461 | 
  | 
  | 
C The CPP flag DISABLE_MULTIDIM_ADVECTION is currently unset in GAD_OPTIONS.h | 
| 462 | 
  | 
  | 
C The default is to use multi-dimensinal advection for non-linear advection | 
| 463 | 
  | 
  | 
C schemes. However, for the sake of efficiency of the adjoint it is necessary | 
| 464 | 
  | 
  | 
C to be able to exclude this scheme to avoid excessive storage and | 
| 465 | 
  | 
  | 
C recomputation. It *is* differentiable, if you need it. | 
| 466 | 
  | 
  | 
C Edit GAD_OPTIONS.h and #define DISABLE_MULTIDIM_ADVECTION to | 
| 467 | 
  | 
  | 
C disable this section of code. | 
| 468 | 
  | 
  | 
        IF (multiDimAdvection) THEN | 
| 469 | 
  | 
  | 
         IF (tempStepping .AND. | 
| 470 | 
  | 
  | 
     &       tempAdvScheme.NE.ENUM_CENTERED_2ND .AND. | 
| 471 | 
  | 
  | 
     &       tempAdvScheme.NE.ENUM_UPWIND_3RD .AND. | 
| 472 | 
  | 
  | 
     &       tempAdvScheme.NE.ENUM_CENTERED_4TH ) THEN | 
| 473 | 
  | 
  | 
          CALL GAD_ADVECTION(bi,bj,tempAdvScheme,GAD_TEMPERATURE, | 
| 474 | 
  | 
  | 
     U                      theta,gT, | 
| 475 | 
  | 
  | 
     I                      myTime,myIter,myThid) | 
| 476 | 
  | 
  | 
         ENDIF | 
| 477 | 
  | 
  | 
         IF (saltStepping .AND. | 
| 478 | 
  | 
  | 
     &       saltAdvScheme.NE.ENUM_CENTERED_2ND .AND. | 
| 479 | 
  | 
  | 
     &       saltAdvScheme.NE.ENUM_UPWIND_3RD .AND. | 
| 480 | 
  | 
  | 
     &       saltAdvScheme.NE.ENUM_CENTERED_4TH ) THEN | 
| 481 | 
  | 
  | 
          CALL GAD_ADVECTION(bi,bj,saltAdvScheme,GAD_SALINITY, | 
| 482 | 
  | 
  | 
     U                      salt,gS, | 
| 483 | 
  | 
  | 
     I                      myTime,myIter,myThid) | 
| 484 | 
  | 
  | 
         ENDIF | 
| 485 | 
  | 
  | 
        ENDIF | 
| 486 | 
  | 
  | 
#endif /* DISABLE_MULTIDIM_ADVECTION */ | 
| 487 | 
  | 
  | 
 | 
| 488 | 
  | 
  | 
C--     Start of thermodynamics loop | 
| 489 | 
  | 
  | 
        DO k=Nr,1,-1 | 
| 490 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC  | 
| 491 | 
  | 
  | 
C? Patrick Is this formula correct? | 
| 492 | 
  | 
  | 
cph Yes, but I rewrote it. | 
| 493 | 
  | 
  | 
cph Also, the KappaR? need the index and subscript k! | 
| 494 | 
  | 
  | 
         kkey = (ikey-1)*Nr + k | 
| 495 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 496 | 
  | 
  | 
 | 
| 497 | 
  | 
  | 
C--       km1    Points to level above k (=k-1) | 
| 498 | 
  | 
  | 
C--       kup    Cycles through 1,2 to point to layer above | 
| 499 | 
  | 
  | 
C--       kDown  Cycles through 2,1 to point to current layer | 
| 500 | 
  | 
  | 
 | 
| 501 | 
  | 
  | 
          km1  = MAX(1,k-1) | 
| 502 | 
  | 
  | 
          kup  = 1+MOD(k+1,2) | 
| 503 | 
  | 
  | 
          kDown= 1+MOD(k,2) | 
| 504 | 
  | 
  | 
 | 
| 505 | 
  | 
  | 
          iMin = 1-OLx | 
| 506 | 
  | 
  | 
          iMax = sNx+OLx | 
| 507 | 
  | 
  | 
          jMin = 1-OLy | 
| 508 | 
  | 
  | 
          jMax = sNy+OLy | 
| 509 | 
  | 
  | 
 | 
| 510 | 
  | 
  | 
C--       Get temporary terms used by tendency routines | 
| 511 | 
  | 
  | 
          CALL CALC_COMMON_FACTORS ( | 
| 512 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax,k, | 
| 513 | 
  | 
  | 
     O         xA,yA,uTrans,vTrans,rTrans,maskUp, | 
| 514 | 
  | 
  | 
     I         myThid) | 
| 515 | 
  | 
  | 
 | 
| 516 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC  | 
| 517 | 
  | 
  | 
CADJ STORE KappaRT(:,:,k)    = comlev1_bibj_k, key=kkey, byte=isbyte | 
| 518 | 
  | 
  | 
CADJ STORE KappaRS(:,:,k)    = comlev1_bibj_k, key=kkey, byte=isbyte | 
| 519 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 520 | 
  | 
  | 
 | 
| 521 | 
  | 
  | 
#ifdef  INCLUDE_CALC_DIFFUSIVITY_CALL | 
| 522 | 
  | 
  | 
C--      Calculate the total vertical diffusivity | 
| 523 | 
  | 
  | 
         CALL CALC_DIFFUSIVITY( | 
| 524 | 
  | 
  | 
     I        bi,bj,iMin,iMax,jMin,jMax,k, | 
| 525 | 
  | 
  | 
     I        maskUp, | 
| 526 | 
  | 
  | 
     O        KappaRT,KappaRS, | 
| 527 | 
  | 
  | 
     I        myThid) | 
| 528 | 
  | 
  | 
#endif | 
| 529 | 
  | 
  | 
 | 
| 530 | 
  | 
  | 
          iMin = 1-OLx+2 | 
| 531 | 
  | 
  | 
          iMax = sNx+OLx-1 | 
| 532 | 
  | 
  | 
          jMin = 1-OLy+2 | 
| 533 | 
  | 
  | 
          jMax = sNy+OLy-1 | 
| 534 | 
  | 
  | 
 | 
| 535 | 
  | 
  | 
C--      Calculate active tracer tendencies (gT,gS,...) | 
| 536 | 
  | 
  | 
C        and step forward storing result in gTnm1, gSnm1, etc. | 
| 537 | 
  | 
  | 
         IF ( tempStepping ) THEN | 
| 538 | 
  | 
  | 
           CALL CALC_GT( | 
| 539 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax, k,km1,kup,kDown, | 
| 540 | 
  | 
  | 
     I         xA,yA,uTrans,vTrans,rTrans,maskUp, | 
| 541 | 
  | 
  | 
     I         KappaRT, | 
| 542 | 
  | 
  | 
     U         fVerT, | 
| 543 | 
  | 
  | 
     I         myTime,myIter,myThid) | 
| 544 | 
  | 
  | 
           CALL TIMESTEP_TRACER( | 
| 545 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax,k,tempAdvScheme, | 
| 546 | 
  | 
  | 
     I         theta, gT, | 
| 547 | 
  | 
  | 
     I         myIter, myThid) | 
| 548 | 
  | 
  | 
         ENDIF | 
| 549 | 
  | 
  | 
         IF ( saltStepping ) THEN | 
| 550 | 
  | 
  | 
           CALL CALC_GS( | 
| 551 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax, k,km1,kup,kDown, | 
| 552 | 
  | 
  | 
     I         xA,yA,uTrans,vTrans,rTrans,maskUp, | 
| 553 | 
  | 
  | 
     I         KappaRS, | 
| 554 | 
  | 
  | 
     U         fVerS, | 
| 555 | 
  | 
  | 
     I         myTime,myIter,myThid) | 
| 556 | 
  | 
  | 
           CALL TIMESTEP_TRACER( | 
| 557 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax,k,saltAdvScheme, | 
| 558 | 
  | 
  | 
     I         salt, gS, | 
| 559 | 
  | 
  | 
     I         myIter, myThid) | 
| 560 | 
  | 
  | 
         ENDIF | 
| 561 | 
  | 
  | 
#ifdef ALLOW_PASSIVE_TRACER | 
| 562 | 
  | 
  | 
         IF ( tr1Stepping ) THEN | 
| 563 | 
  | 
  | 
           CALL CALC_GTR1( | 
| 564 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax, k,km1,kup,kDown, | 
| 565 | 
  | 
  | 
     I         xA,yA,uTrans,vTrans,rTrans,maskUp, | 
| 566 | 
  | 
  | 
     I         KappaRT, | 
| 567 | 
  | 
  | 
     U         fVerTr1, | 
| 568 | 
  | 
  | 
     I         myTime,myIter,myThid) | 
| 569 | 
  | 
  | 
           CALL TIMESTEP_TRACER( | 
| 570 | 
  | 
  | 
     I         bi,bj,iMin,iMax,jMin,jMax,k,tracerAdvScheme, | 
| 571 | 
  | 
  | 
     I         Tr1, gTr1, | 
| 572 | 
  | 
  | 
     I         myIter,myThid) | 
| 573 | 
  | 
  | 
         ENDIF | 
| 574 | 
  | 
  | 
#endif | 
| 575 | 
  | 
  | 
 | 
| 576 | 
  | 
  | 
#ifdef   ALLOW_OBCS | 
| 577 | 
  | 
  | 
C--      Apply open boundary conditions | 
| 578 | 
  | 
  | 
         IF (useOBCS) THEN | 
| 579 | 
  | 
  | 
           CALL OBCS_APPLY_TS( bi, bj, k, gT, gS, myThid ) | 
| 580 | 
  | 
  | 
         END IF | 
| 581 | 
  | 
  | 
#endif   /* ALLOW_OBCS */ | 
| 582 | 
  | 
  | 
 | 
| 583 | 
  | 
  | 
C--      Freeze water | 
| 584 | 
  | 
  | 
         IF (allowFreezing) THEN | 
| 585 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 586 | 
  | 
  | 
CADJ STORE gT(:,:,k,bi,bj) = comlev1_bibj_k | 
| 587 | 
  | 
  | 
CADJ &   , key = kkey, byte = isbyte | 
| 588 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 589 | 
  | 
  | 
            CALL FREEZE( bi, bj, iMin, iMax, jMin, jMax, k, myThid ) | 
| 590 | 
  | 
  | 
         END IF | 
| 591 | 
  | 
  | 
 | 
| 592 | 
  | 
  | 
C--     end of thermodynamic k loop (Nr:1) | 
| 593 | 
  | 
  | 
        ENDDO | 
| 594 | 
  | 
  | 
 | 
| 595 | 
  | 
  | 
 | 
| 596 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 597 | 
  | 
  | 
C? Patrick? What about this one? | 
| 598 | 
  | 
  | 
cph Keys iikey and idkey dont seem to be needed | 
| 599 | 
  | 
  | 
cph since storing occurs on different tape for each | 
| 600 | 
  | 
  | 
cph impldiff call anyways. | 
| 601 | 
  | 
  | 
cph Thus, common block comlev1_impl isnt needed either. | 
| 602 | 
  | 
  | 
cph Storing below needed in the case useGMREDI. | 
| 603 | 
  | 
  | 
        iikey = (ikey-1)*maximpl | 
| 604 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 605 | 
  | 
  | 
 | 
| 606 | 
  | 
  | 
C--     Implicit diffusion | 
| 607 | 
  | 
  | 
        IF (implicitDiffusion) THEN | 
| 608 | 
  | 
  | 
 | 
| 609 | 
  | 
  | 
         IF (tempStepping) THEN | 
| 610 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 611 | 
  | 
  | 
            idkey = iikey + 1 | 
| 612 | 
  | 
  | 
CADJ STORE gT(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte | 
| 613 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 614 | 
  | 
  | 
            CALL IMPLDIFF( | 
| 615 | 
  | 
  | 
     I         bi, bj, iMin, iMax, jMin, jMax, | 
| 616 | 
  | 
  | 
     I         deltaTtracer, KappaRT, recip_HFacC, | 
| 617 | 
  | 
  | 
     U         gT, | 
| 618 | 
  | 
  | 
     I         myThid ) | 
| 619 | 
  | 
  | 
         ENDIF | 
| 620 | 
  | 
  | 
 | 
| 621 | 
  | 
  | 
         IF (saltStepping) THEN | 
| 622 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 623 | 
  | 
  | 
         idkey = iikey + 2 | 
| 624 | 
  | 
  | 
CADJ STORE gS(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte | 
| 625 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 626 | 
  | 
  | 
            CALL IMPLDIFF( | 
| 627 | 
  | 
  | 
     I         bi, bj, iMin, iMax, jMin, jMax, | 
| 628 | 
  | 
  | 
     I         deltaTtracer, KappaRS, recip_HFacC, | 
| 629 | 
  | 
  | 
     U         gS, | 
| 630 | 
  | 
  | 
     I         myThid ) | 
| 631 | 
  | 
  | 
         ENDIF | 
| 632 | 
  | 
  | 
 | 
| 633 | 
  | 
  | 
#ifdef ALLOW_PASSIVE_TRACER | 
| 634 | 
  | 
  | 
         IF (tr1Stepping) THEN | 
| 635 | 
  | 
  | 
#ifdef ALLOW_AUTODIFF_TAMC | 
| 636 | 
  | 
  | 
CADJ STORE gTr1(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte | 
| 637 | 
  | 
  | 
#endif /* ALLOW_AUTODIFF_TAMC */ | 
| 638 | 
  | 
  | 
          CALL IMPLDIFF( | 
| 639 | 
  | 
  | 
     I      bi, bj, iMin, iMax, jMin, jMax, | 
| 640 | 
  | 
  | 
     I      deltaTtracer, KappaRT, recip_HFacC, | 
| 641 | 
  | 
  | 
     U      gTr1, | 
| 642 | 
  | 
  | 
     I      myThid ) | 
| 643 | 
  | 
  | 
         ENDIF | 
| 644 | 
  | 
  | 
#endif | 
| 645 | 
  | 
  | 
 | 
| 646 | 
  | 
  | 
#ifdef   ALLOW_OBCS | 
| 647 | 
  | 
  | 
C--      Apply open boundary conditions | 
| 648 | 
  | 
  | 
         IF (useOBCS) THEN | 
| 649 | 
  | 
  | 
           DO K=1,Nr | 
| 650 | 
  | 
  | 
             CALL OBCS_APPLY_TS( bi, bj, k, gT, gS, myThid ) | 
| 651 | 
  | 
  | 
           ENDDO | 
| 652 | 
  | 
  | 
         END IF | 
| 653 | 
  | 
  | 
#endif   /* ALLOW_OBCS */ | 
| 654 | 
  | 
  | 
 | 
| 655 | 
  | 
  | 
C--     End If implicitDiffusion | 
| 656 | 
  | 
  | 
        ENDIF | 
| 657 | 
  | 
  | 
 | 
| 658 | 
  | 
  | 
Ccs- | 
| 659 | 
  | 
  | 
       ENDDO | 
| 660 | 
  | 
  | 
      ENDDO | 
| 661 | 
  | 
  | 
 | 
| 662 | 
  | 
  | 
#ifdef ALLOW_AIM | 
| 663 | 
  | 
  | 
      IF ( useAIM ) THEN | 
| 664 | 
  | 
  | 
       CALL AIM_AIM2DYN_EXCHANGES( myTime, myThid ) | 
| 665 | 
  | 
  | 
      ENDIF | 
| 666 | 
  | 
  | 
       _EXCH_XYZ_R8(gT,myThid) | 
| 667 | 
  | 
  | 
       _EXCH_XYZ_R8(gS,myThid) | 
| 668 | 
  | 
  | 
#else | 
| 669 | 
  | 
  | 
C modif omp | 
| 670 | 
  | 
  | 
C previous version | 
| 671 | 
  | 
  | 
C      IF (staggerTimeStep.AND.useCubedSphereExchange) THEN | 
| 672 | 
  | 
  | 
C changed version --> exchange after the timestep | 
| 673 | 
  | 
  | 
      IF (staggerTimeStep) THEN | 
| 674 | 
  | 
  | 
       _EXCH_XYZ_R8(gT,myThid) | 
| 675 | 
  | 
  | 
       _EXCH_XYZ_R8(gS,myThid) | 
| 676 | 
  | 
  | 
      ENDIF | 
| 677 | 
  | 
  | 
#endif /* ALLOW_AIM */ | 
| 678 | 
  | 
  | 
 | 
| 679 | 
  | 
  | 
      RETURN | 
| 680 | 
  | 
  | 
      END |