/[MITgcm]/MITgcm/verification/solid-body.cs-32x32x1/code/CPP_EEOPTIONS.h
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Annotation of /MITgcm/verification/solid-body.cs-32x32x1/code/CPP_EEOPTIONS.h

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Revision 1.4 - (hide annotations) (download)
Sun Apr 26 01:23:43 2009 UTC (15 years ago) by jmc
Branch: MAIN
Changes since 1.3: +5 -1 lines
File MIME type: text/plain
import changes from eesupp/inc version: add "#define USE_CHECK_FOR_ERROR"

1 jmc 1.4 C $Header: /u/gcmpack/MITgcm/eesupp/inc/CPP_EEOPTIONS.h,v 1.30 2009/04/26 00:32:23 jmc Exp $
2 adcroft 1.1 C $Name: $
3 jmc 1.3
4     CBOP
5     C !ROUTINE: CPP_EEOPTIONS.h
6     C !INTERFACE:
7     C include "CPP_EEOPTIONS.h"
8     C
9     C !DESCRIPTION:
10     C *==========================================================*
11     C | CPP\_EEOPTIONS.h |
12     C *==========================================================*
13 adcroft 1.1 C | C preprocessor "execution environment" supporting |
14     C | flags. Use this file to set flags controlling the |
15     C | execution environment in which a model runs - as opposed |
16     C | to the dynamical problem the model solves. |
17     C | Note: Many options are implemented with both compile time|
18     C | and run-time switches. This allows options to be |
19     C | removed altogether, made optional at run-time or |
20     C | to be permanently enabled. This convention helps |
21     C | with the data-dependence analysis performed by the |
22     C | adjoint model compiler. This data dependency |
23     C | analysis can be upset by runtime switches that it |
24     C | is unable to recoginise as being fixed for the |
25     C | duration of an integration. |
26     C | A reasonable way to use these flags is to |
27     C | set all options as selectable at runtime but then |
28     C | once an experimental configuration has been |
29     C | identified, rebuild the code with the appropriate |
30     C | options set at compile time. |
31 jmc 1.3 C *==========================================================*
32     CEOP
33 adcroft 1.1
34     #ifndef _CPP_EEOPTIONS_H_
35     #define _CPP_EEOPTIONS_H_
36    
37     C In general the following convention applies:
38     C ALLOW - indicates an feature will be included but it may
39     C CAN have a run-time flag to allow it to be switched
40     C on and off.
41     C If ALLOW or CAN directives are "undef'd" this generally
42     C means that the feature will not be available i.e. it
43     C will not be included in the compiled code and so no
44     C run-time option to use the feature will be available.
45     C
46     C ALWAYS - indicates the choice will be fixed at compile time
47     C so no run-time option will be present
48    
49 jmc 1.3 C-- Flag used to indicate whether Fortran formatted write
50 adcroft 1.1 C and read are threadsafe. On SGI the routines can be thread
51     C safe, on Sun it is not possible - if you are unsure then
52     C undef this option.
53 jmc 1.3 #undef FMTFTN_IO_THREAD_SAFE
54    
55     C-- Flag used to indicate whether Binary write to Local file (i.e.,
56     C a different file for each tile) and read are thread-safe.
57     #undef LOCBIN_IO_THREAD_SAFE
58    
59     C-- Flag to turn off the writing of error message to ioUnit zero
60     #undef DISABLE_WRITE_TO_UNIT_ZERO
61    
62 jmc 1.4 C-- Flag to turn on checking for errors from all threads and procs
63     C (calling S/R IF_ERROR_STOP) before stopping.
64     #define USE_CHECK_FOR_ERROR
65    
66 jmc 1.3 C-- Flag turns off MPI_SEND ready_to_receive polling in the
67     C gather_* subroutines to speed up integrations.
68     #undef DISABLE_MPI_READY_TO_RECEIVE
69 adcroft 1.1
70     C-- Control MPI based parallel processing
71 jmc 1.3 CXXX We no longer select the use of MPI via this file (CPP_EEOPTIONS.h)
72     CXXX To use MPI, use an appropriate genmake2 options file or use
73     CXXX genmake2 -mpi .
74     CXXX #undef ALLOW_USE_MPI
75     CXXX #undef ALWAYS_USE_MPI
76    
77 adcroft 1.1 C-- Control use of communication that might overlap computation.
78     C Under MPI selects/deselects "non-blocking" sends and receives.
79     #define ALLOW_ASYNC_COMMUNICATION
80     #undef ALLOW_ASYNC_COMMUNICATION
81     #undef ALWAYS_USE_ASYNC_COMMUNICATION
82     C-- Control use of communication that is atomic to computation.
83     C Under MPI selects/deselects "blocking" sends and receives.
84     #define ALLOW_SYNC_COMMUNICATION
85     #undef ALWAYS_USE_SYNC_COMMUNICATION
86    
87     C-- Control use of JAM routines for Artic network
88     C These invoke optimized versions of "exchange" and "sum" that
89     C utilize the programmable aspect of Artic cards.
90     #undef LETS_MAKE_JAM
91     #undef JAM_WITH_TWO_PROCS_PER_NODE
92    
93     C-- Control storage of floating point operands
94     C On many systems it improves performance only to use
95     C 8-byte precision for time stepped variables.
96     C Constant in time terms ( geometric factors etc.. )
97     C can use 4-byte precision, reducing memory utilisation and
98     C boosting performance because of a smaller working
99     C set size. However, on vector CRAY systems this degrades
100     C performance.
101 jmc 1.3 #undef REAL4_IS_SLOW
102    
103 adcroft 1.1 C-- Control use of "double" precision constants.
104     C Use D0 where it means REAL*8 but not where it means REAL*16
105     #define D0 d0
106    
107     C-- Control XY periodicity in processor to grid mappings
108 jmc 1.3 C Note: Model code does not need to know whether a domain is
109 adcroft 1.1 C periodic because it has overlap regions for every box.
110     C Model assume that these values have been
111     C filled in some way.
112     #undef ALWAYS_PREVENT_X_PERIODICITY
113     #undef ALWAYS_PREVENT_Y_PERIODICITY
114     #define CAN_PREVENT_X_PERIODICITY
115     #define CAN_PREVENT_Y_PERIODICITY
116    
117 jmc 1.3 C-- Alternative formulation of BYTESWAP, faster than
118     C compiler flag -byteswapio on the Altix.
119     #undef FAST_BYTESWAP
120    
121     C-- Alternative way of doing global sum without MPI allreduce call
122     C but instead, explicit MPI send & recv calls.
123     #undef GLOBAL_SUM_SEND_RECV
124    
125     C-- Alternative way of doing global sum on a single CPU
126     C to eliminate tiling-dependent roundoff errors.
127     C Note: This is slow.
128     #undef CG2D_SINGLECPU_SUM
129    
130 adcroft 1.1 #endif /* _CPP_EEOPTIONS_H_ */
131    
132     #include "CPP_EEMACROS.h"
133 jmc 1.3

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