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Changeset 12340 for NEMO/branches/2019/dev_r11943_MERGE_2019/src/TOP/TRP/trdmxl_trc.F90 – NEMO

Ignore:
Timestamp:
2020-01-27T15:31:53+01:00 (4 years ago)
Author:
acc
Message:

Branch 2019/dev_r11943_MERGE_2019. This commit introduces basic do loop macro
substitution to the 2019 option 1, merge branch. These changes have been SETTE
tested. The only addition is the do_loop_substitute.h90 file in the OCE directory but
the macros defined therein are used throughout the code to replace identifiable, 2D-
and 3D- nested loop opening and closing statements with single-line alternatives. Code
indents are also adjusted accordingly.

The following explanation is taken from comments in the new header file:

This header file contains preprocessor definitions and macros used in the do-loop
substitutions introduced between version 4.0 and 4.2. The primary aim of these macros
is to assist in future applications of tiling to improve performance. This is expected
to be achieved by alternative versions of these macros in selected locations. The
initial introduction of these macros simply replaces all identifiable nested 2D- and
3D-loops with single line statements (and adjusts indenting accordingly). Do loops
are identifiable if they comform to either:

DO jk = ....

DO jj = .... DO jj = ...

DO ji = .... DO ji = ...
. OR .
. .

END DO END DO

END DO END DO

END DO

and white-space variants thereof.

Additionally, only loops with recognised jj and ji loops limits are treated; these are:
Lower limits of 1, 2 or fs_2
Upper limits of jpi, jpim1 or fs_jpim1 (for ji) or jpj, jpjm1 or fs_jpjm1 (for jj)

The macro naming convention takes the form: DO_2D_BT_LR where:

B is the Bottom offset from the PE's inner domain;
T is the Top offset from the PE's inner domain;
L is the Left offset from the PE's inner domain;
R is the Right offset from the PE's inner domain

So, given an inner domain of 2,jpim1 and 2,jpjm1, a typical example would replace:

DO jj = 2, jpj

DO ji = 1, jpim1
.
.

END DO

END DO

with:

DO_2D_01_10
.
.
END_2D

similar conventions apply to the 3D loops macros. jk loop limits are retained
through macro arguments and are not restricted. This includes the possibility of
strides for which an extra set of DO_3DS macros are defined.

In the example definition below the inner PE domain is defined by start indices of
(kIs, kJs) and end indices of (kIe, KJe)

#define DO_2D_00_00 DO jj = kJs, kJe ; DO ji = kIs, kIe
#define END_2D END DO ; END DO

TO DO:


Only conventional nested loops have been identified and replaced by this step. There are constructs such as:

DO jk = 2, jpkm1

z2d(:,:) = z2d(:,:) + e3w(:,:,jk,Kmm) * z3d(:,:,jk) * wmask(:,:,jk)

END DO

which may need to be considered.

File:
1 edited

Legend:

Unmodified
Added
Removed
  • NEMO/branches/2019/dev_r11943_MERGE_2019/src/TOP/TRP/trdmxl_trc.F90

    r11949 r12340  
    4949   REAL(wp), ALLOCATABLE, SAVE, DIMENSION(:,:,:,:) ::  ztmltrd2   ! 
    5050 
     51   !! * Substitutions 
     52#  include "do_loop_substitute.h90" 
    5153   !!---------------------------------------------------------------------- 
    5254   !! NEMO/TOP 4.0 , NEMO Consortium (2018) 
     
    122124 
    123125            IF( jpktrd_trc < jpk ) THEN                           ! description ??? 
    124                DO jj = 1, jpj 
    125                   DO ji = 1, jpi 
    126                      IF( nmld_trc(ji,jj) <= jpktrd_trc ) THEN 
    127                         zvlmsk(ji,jj) = tmask(ji,jj,1) 
    128                      ELSE 
    129                         isum = isum + 1 
    130                         zvlmsk(ji,jj) = 0.e0 
    131                      ENDIF 
    132                   END DO 
    133                END DO 
     126               DO_2D_11_11 
     127                  IF( nmld_trc(ji,jj) <= jpktrd_trc ) THEN 
     128                     zvlmsk(ji,jj) = tmask(ji,jj,1) 
     129                  ELSE 
     130                     isum = isum + 1 
     131                     zvlmsk(ji,jj) = 0.e0 
     132                  ENDIF 
     133               END_2D 
    134134            ENDIF 
    135135 
     
    147147         ! ... Weights for vertical averaging 
    148148         wkx_trc(:,:,:) = 0.e0 
    149          DO jk = 1, jpktrd_trc                                    ! initialize wkx_trc with vertical scale factor in mixed-layer 
    150             DO jj = 1, jpj 
    151                DO ji = 1, jpi 
    152                   IF( jk - nmld_trc(ji,jj) < 0 )   wkx_trc(ji,jj,jk) = e3t(ji,jj,jk,Kmm) * tmask(ji,jj,jk) 
    153                END DO 
    154             END DO 
    155          END DO 
     149         DO_3D_11_11( 1, jpktrd_trc ) 
     150            IF( jk - nmld_trc(ji,jj) < 0 )   wkx_trc(ji,jj,jk) = e3t(ji,jj,jk,Kmm) * tmask(ji,jj,jk) 
     151         END_3D 
    156152          
    157153         rmld_trc(:,:) = 0.e0 
     
    262258         ! 
    263259         DO jn = 1, jptra 
    264             DO jj = 1, jpj 
    265                DO ji = 1, jpi 
    266                   ik = nmld_trc(ji,jj) 
    267                   IF( ln_trdtrc(jn) )    & 
    268                   tmltrd_trc(ji,jj,jpmxl_trc_zdf,jn) = - avs(ji,jj,ik) / e3w(ji,jj,ik,Kmm) * tmask(ji,jj,ik)  & 
    269                        &                    * ( tr(ji,jj,ik-1,jn,Kmm) - tr(ji,jj,ik,jn,Kmm) )            & 
    270                        &                    / MAX( 1., rmld_trc(ji,jj) ) * tmask(ji,jj,1) 
    271                END DO 
    272             END DO 
     260            DO_2D_11_11 
     261               ik = nmld_trc(ji,jj) 
     262               IF( ln_trdtrc(jn) )    & 
     263               tmltrd_trc(ji,jj,jpmxl_trc_zdf,jn) = - avs(ji,jj,ik) / e3w(ji,jj,ik,Kmm) * tmask(ji,jj,ik)  & 
     264                    &                    * ( tr(ji,jj,ik-1,jn,Kmm) - tr(ji,jj,ik,jn,Kmm) )            & 
     265                    &                    / MAX( 1., rmld_trc(ji,jj) ) * tmask(ji,jj,1) 
     266            END_2D 
    273267         END DO 
    274268 
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