/[MITgcm]/MITgcm/eesupp/inc/CPP_EEOPTIONS.h
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revision 1.2 by cnh, Thu Apr 23 20:59:34 1998 UTC revision 1.33 by jmc, Thu Mar 4 22:01:35 2010 UTC
# Line 1  Line 1 
1  C $Header$  C $Header$
2    C $Name$
3    
4    CBOP
5    C     !ROUTINE: CPP_EEOPTIONS.h
6    C     !INTERFACE:
7    C     include "CPP_EEOPTIONS.h"
8  C  C
9  C     /==========================================================\  C     !DESCRIPTION:
10  C     | CPP_EEOPTIONS.h                                          |  C     *==========================================================*
11  C     |==========================================================|  C     | CPP\_EEOPTIONS.h                                         |
12    C     *==========================================================*
13  C     | C preprocessor "execution environment" supporting        |  C     | C preprocessor "execution environment" supporting        |
14  C     | flags. Use this file to set flags controlling the        |  C     | flags. Use this file to set flags controlling the        |
15  C     | execution environment in which a model runs - as opposed |  C     | execution environment in which a model runs - as opposed |
# Line 21  C     |       set all options as selecta Line 28  C     |       set all options as selecta
28  C     |       once an experimental configuration has been        |  C     |       once an experimental configuration has been        |
29  C     |       identified, rebuild the code with the appropriate  |  C     |       identified, rebuild the code with the appropriate  |
30  C     |       options set at compile time.                       |  C     |       options set at compile time.                       |
31  C     \==========================================================/  C     *==========================================================*
32    CEOP
33    
34    #ifndef _CPP_EEOPTIONS_H_
35    #define _CPP_EEOPTIONS_H_
36    
37  C     In general the following convention applies:  C     In general the following convention applies:
38  C     ALLOW  - indicates an feature will be included but it may  C     ALLOW  - indicates an feature will be included but it may
# Line 35  C Line 46  C
46  C     ALWAYS - indicates the choice will be fixed at compile time  C     ALWAYS - indicates the choice will be fixed at compile time
47  C              so no run-time option will be present  C              so no run-time option will be present
48    
49  C     Flag used to indicate whether Fortran formatted write  C=== Macro related options ===
50    C--   Control storage of floating point operands
51    C     On many systems it improves performance only to use
52    C     8-byte precision for time stepped variables.
53    C     Constant in time terms ( geometric factors etc.. )
54    C     can use 4-byte precision, reducing memory utilisation and
55    C     boosting performance because of a smaller working set size.
56    C     However, on vector CRAY systems this degrades performance.
57    C     Enable to switch REAL4_IS_SLOW from genmake2 (with LET_RS_BE_REAL4):
58    #ifdef LET_RS_BE_REAL4
59    #undef REAL4_IS_SLOW
60    #else /* LET_RS_BE_REAL4 */
61    #define REAL4_IS_SLOW
62    #endif /* LET_RS_BE_REAL4 */
63    
64    C--   Control use of "double" precision constants.
65    C     Use D0 where it means REAL*8 but not where it means REAL*16
66    #define D0 d0
67    
68    C--   Enable some old macro conventions for backward compatibility
69    #undef USE_OLD_MACROS_R4R8toRSRL
70    
71    C=== IO related options ===
72    C--   Flag used to indicate whether Fortran formatted write
73  C     and read are threadsafe. On SGI the routines can be thread  C     and read are threadsafe. On SGI the routines can be thread
74  C     safe, on Sun it is not possible - if you are unsure then  C     safe, on Sun it is not possible - if you are unsure then
75  C     undef this option.  C     undef this option.
76  #undef  FMTFTN_IO_THREADSAFE  #undef FMTFTN_IO_THREAD_SAFE
77    
78  C     Flag used to indicate which flavour of multi-threading  C--   Flag used to indicate whether Binary write to Local file (i.e.,
79  C     compiler directives to use. Only set one of these.  C     a different file for each tile) and read are thread-safe.
80  C     USE_SOLARIS_THREADING  - Takes directives for SUN Workshop  #undef LOCBIN_IO_THREAD_SAFE
81  C                              compiler.  
82  C     USE_KAP_THREADING      - Takes directives for Kuck and  C--   Flag to turn off the writing of error message to ioUnit zero
83  C                              Associates multi-threading compiler  #undef DISABLE_WRITE_TO_UNIT_ZERO
84  C                              ( used on Digital platforms ).  
85  C     USE_IRIX_THREADING     - Takes directives for SGI MIPS  C--   Alternative formulation of BYTESWAP, faster than
86  C                              Pro Fortran compiler.  C     compiler flag -byteswapio on the Altix.
87  C     USE_EXEMPLAR_THREADING - Takes directives for HP SPP series  #undef FAST_BYTESWAP
88  C                              compiler.  
89  C     USE_C90_THREADING      - Takes directives for CRAY/SGI C90  C=== MPI, EXCH and GLOBAL_SUM related options ===
90  C                              system F90 compiler.  C--   Flag turns off MPI_SEND ready_to_receive polling in the
91  #ifdef TARGET_SUN  C     gather_* subroutines to speed up integrations.
92  #define USE_SOLARIS_THREADING  #undef DISABLE_MPI_READY_TO_RECEIVE
 #endif  
   
 #ifdef TARGET_DEC  
 #define USE_KAP_THREADING  
 #endif  
   
 #ifdef TARGET_SGI  
 #define USE_IRIX_THREADING  
 #endif  
   
 #ifdef TARGET_HP  
 #define USE_EXEMPLAR_THREADING  
 #endif  
   
 #ifdef TARGET_CRAY_VECTOR  
 #define USE_C90_THREADING  
 #endif  
   
 C--   Define the mapping for the _BARRIER macro  
 C     On some systems low-level hardware support can be accessed through  
 C     compiler directives here.  
 #define _BARRIER CALL BARRIER(myThid)  
   
 C--   Define the mapping for the BEGIN_CRIT() and  END_CRIT() macros.  
 C     On some systems we simply execute this section only using the  
 C     master thread i.e. its not really a critical section. We can  
 C     do this because we don't use critical sections in any critical  
 C     sections of our code!  
 #define _BEGIN_CRIT(a) _BEGIN_MASTER(a)  
 #define _END_CRIT(a)   _END_MASTER(a)  
   
 C--   Define the mapping for the BEGIN_MASTER_SECTION() and  
 C     END_MASTER_SECTION() macros. These are generally implemented by  
 C     simply choosing a particular thread to be "the master" and have  
 C     it alone execute the BEGIN_MASTER..., END_MASTER.. sections.  
 #define _BEGIN_MASTER(a)  IF ( a .EQ. 1 ) THEN  
 #define _END_MASTER(a)    ENDIF  
93    
94  C--   Control MPI based parallel processing  C--   Control MPI based parallel processing
95  #undef  ALLOW_USE_MPI  CXXX We no longer select the use of MPI via this file (CPP_EEOPTIONS.h)
96  #undef  ALWAYS_USE_MPI  CXXX To use MPI, use an appropriate genmake2 options file or use
97    CXXX genmake2 -mpi .
98    CXXX #undef  ALLOW_USE_MPI
99    CXXX #undef  ALWAYS_USE_MPI
100    
101  C--   Control use of communication that might overlap computation.  C--   Control use of communication that might overlap computation.
102  C     Under MPI selects/deselects "non-blocking" sends and receives.  C     Under MPI selects/deselects "non-blocking" sends and receives.
103  #define ALLOW_ASYNC_COMMUNICATION  #define ALLOW_ASYNC_COMMUNICATION
# Line 108  C     Under MPI selects/deselects "block Line 108  C     Under MPI selects/deselects "block
108  #define ALLOW_SYNC_COMMUNICATION  #define ALLOW_SYNC_COMMUNICATION
109  #undef  ALWAYS_USE_SYNC_COMMUNICATION  #undef  ALWAYS_USE_SYNC_COMMUNICATION
110    
111  C--   Control storage of floating point operands  C--   Control use of JAM routines for Artic network
112  C     On many systems it improves performance only to use  C     These invoke optimized versions of "exchange" and "sum" that
113  C     8-byte precision for time stepped variables.  C     utilize the programmable aspect of Artic cards.
114  C     Constant in time terms ( geometric factors etc.. )  CXXX No longer supported ; started to remove JAM routines.
115  C     can use 4-byte precision, reducing memory utilisation and  CXXX #undef  LETS_MAKE_JAM
116  C     boosting performance because of a smaller working  CXXX #undef  JAM_WITH_TWO_PROCS_PER_NODE
 C     set size. However, on vector CRAY systems this degrades  
 C     performance.  
 #define REAL4_IS_SLOW  
   
 #ifdef REAL4_IS_SLOW  
 #define real Real*8  
 #define REAL Real*8  
 #define _RS  Real*8  
 #define _RL  Real*8  
 #define _EXCH_XY_R4(a,b)       CALL EXCH_XY_R8 ( a, b )  
 #define _EXCH_XYZ_R4(a,b)      CALL EXCH_XYZ_R8 ( a, b )  
 #define _GLOBAL_SUM_R4(a,b,c)  CALL GLOBAL_SUM_R8( a, b , c)  
 #define _GLOBAL_MAX_R4(a,b,c)  CALL GLOBAL_MAX_R8( a, b , c)  
 #endif  
   
 #ifndef REAL4_IS_SLOW  
 #define real Real*4  
 #define REAL Real*8  
 #define _RS  Real*4  
 #define _RL  Real*8  
 #define _EXCH_XY_R4(a,b)       CALL EXCH_XY_R4 ( a, b )  
 #define _EXCH_XYZ_R4(a,b)      CALL EXCH_XYZ_R4 ( a, b )  
 #define _GLOBAL_SUM_R4(a,b,c)  CALL GLOBAL_SUM_R4( a, b , c)  
 #define _GLOBAL_MAX_R4(a,b,c)  CALL GLOBAL_MAX_R4( a, b , c)  
 #endif  
   
 #define _EXCH_XY_R8(a,b)       CALL EXCH_XY_R8 ( a, b )  
 #define _EXCH_XYZ_R8(a,b)      CALL EXCH_XYZ_R8 ( a, b )  
 #define _GLOBAL_SUM_R8(a,b,c)  CALL GLOBAL_SUM_R8( a, b , c)  
 #define _GLOBAL_MAX_R8(a,b,c)  CALL GLOBAL_MAX_R8( a, b , c)  
   
 C--   Control use of "double" precision constants.  
 C     Use D0 where it means REAL*8 but not where it means REAL*16  
 #define D0 d0  
 #ifdef REAL_D0_IS_16BYTES  
 #define D0  
 #endif  
117    
118  C--   Control XY periodicity in processor to grid mappings  C--   Control XY periodicity in processor to grid mappings
119  C     Note: Model code does not need to know whether a domain is  C     Note: Model code does not need to know whether a domain is
120  C           periodic because it has overlap regions for every box.  C           periodic because it has overlap regions for every box.
121  C           Model's simply assume that these values have been  C           Model assume that these values have been
122  C           filled in some way.  C           filled in some way.
123  #undef  ALWAYS_PREVENT_X_PERIODICITY  #undef  ALWAYS_PREVENT_X_PERIODICITY
124  #undef  ALWAYS_PREVENT_Y_PERIODICITY  #undef  ALWAYS_PREVENT_Y_PERIODICITY
125  #define CAN_PREVENT_X_PERIODICITY  #define CAN_PREVENT_X_PERIODICITY
126  #define CAN_PREVENT_Y_PERIODICITY  #define CAN_PREVENT_Y_PERIODICITY
127    
128  C--   Substitue for 1.D variables  C--   Alternative way of doing global sum without MPI allreduce call
129  C     Sun compilers don't use 8-byte precision for literals  C     but instead, explicit MPI send & recv calls.
130  C     unless .Dnn is specified. CRAY vector machines use 16-byte  #undef GLOBAL_SUM_SEND_RECV
131  C     precision when they see .Dnn which runs very slowly!  
132  #ifdef REAL_D0_IS_16BYTES  C--   Alternative way of doing global sum on a single CPU
133  #define _d  C     to eliminate tiling-dependent roundoff errors.
134  #endif  C     Note: This is slow.
135  #ifndef REAL_D0_IS_16BYTES  #undef  CG2D_SINGLECPU_SUM
136  #define _d D  
137  #endif  C=== Other options (to add/remove pieces of code) ===
138    C--   Flag to turn on checking for errors from all threads and procs
139    C     (calling S/R STOP_IF_ERROR) before stopping.
140    #define USE_ERROR_STOP
141    
142    C--   Control use of communication with other component:
143    C     allow to import and export from/to Coupler interface.
144    #undef COMPONENT_MODULE
145    
146    #endif /* _CPP_EEOPTIONS_H_ */
147    
148    #include "CPP_EEMACROS.h"
149    

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