46 |
C system F90 compiler. |
C system F90 compiler. |
47 |
#ifdef TARGET_SUN |
#ifdef TARGET_SUN |
48 |
#define USE_SOLARIS_THREADING |
#define USE_SOLARIS_THREADING |
49 |
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#define USING_THREADS |
50 |
#endif |
#endif |
51 |
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52 |
#ifdef TARGET_DEC |
#ifdef TARGET_DEC |
53 |
#define USE_KAP_THREADING |
#define USE_KAP_THREADING |
54 |
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#define USING_THREADS |
55 |
#endif |
#endif |
56 |
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57 |
#ifdef TARGET_SGI |
#ifdef TARGET_SGI |
58 |
#define USE_IRIX_THREADING |
#define USE_IRIX_THREADING |
59 |
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#define USING_THREADS |
60 |
#endif |
#endif |
61 |
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62 |
#ifdef TARGET_HP |
#ifdef TARGET_HP |
63 |
#define USE_EXEMPLAR_THREADING |
#define USE_EXEMPLAR_THREADING |
64 |
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#define USING_THREADS |
65 |
#endif |
#endif |
66 |
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67 |
#ifdef TARGET_CRAY_VECTOR |
#ifdef TARGET_CRAY_VECTOR |
68 |
#define USE_C90_THREADING |
#define USE_C90_THREADING |
69 |
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#define USING_THREADS |
70 |
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#endif |
71 |
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72 |
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#ifdef USE_OMP_THREADING |
73 |
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#define USING_THREADS |
74 |
#endif |
#endif |
75 |
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76 |
C-- Define the mapping for the _BARRIER macro |
C-- Define the mapping for the _BARRIER macro |
90 |
C END_MASTER_SECTION() macros. These are generally implemented by |
C END_MASTER_SECTION() macros. These are generally implemented by |
91 |
C simply choosing a particular thread to be "the master" and have |
C simply choosing a particular thread to be "the master" and have |
92 |
C it alone execute the BEGIN_MASTER..., END_MASTER.. sections. |
C it alone execute the BEGIN_MASTER..., END_MASTER.. sections. |
93 |
#define _BEGIN_MASTER(a) IF ( a .EQ. 1 ) THEN |
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94 |
#define _END_MASTER(a) ENDIF |
#define _BEGIN_MASTER(a) IF ( a .EQ. 1 ) THEN |
95 |
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#define _END_MASTER(a) ENDIF |
96 |
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CcnhDebugStarts |
97 |
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C Alternate form to the above macros that increments (decrements) a counter each |
98 |
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C time a MASTER section is entered (exited). This counter can then be checked in barrier |
99 |
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C to try and detect calls to BARRIER within single threaded sections. |
100 |
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C Using these macros requires two changes to Makefile - these changes are written |
101 |
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C below. |
102 |
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C 1 - add a filter to the CPP command to kill off commented _MASTER lines |
103 |
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C 2 - add a filter to the CPP output the converts the string N EWLINE to an actual newline. |
104 |
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C The N EWLINE needs to be changes to have no space when this macro and Makefile changes |
105 |
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C are used. Its in here with a space to stop it getting parsed by the CPP stage in these |
106 |
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C comments. |
107 |
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C #define _BEGIN_MASTER(a) IF ( a .EQ. 1 ) THEN N EWLINE CALL BARRIER_MS(a) |
108 |
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C #define _END_MASTER(a) CALL BARRIER_MU(a) N EWLINE ENDIF |
109 |
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C 'CPP = cat $< | $(TOOLSDIR)/set64bitConst.sh | grep -v '^[cC].*_MASTER' | cpp -traditional -P' |
110 |
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C .F.f: |
111 |
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C $(CPP) $(DEFINES) $(INCLUDES) | sed 's/N EWLINE/\n/' > $@ |
112 |
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CcnhDebugEnds |
113 |
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114 |
C-- Control storage of floating point operands |
C-- Control storage of floating point operands |
115 |
C On many systems it improves performance only to use |
C On many systems it improves performance only to use |
132 |
#define _GLOBAL_MAX_R4(a,b) CALL GLOBAL_MAX_R4 ( a, b ) |
#define _GLOBAL_MAX_R4(a,b) CALL GLOBAL_MAX_R4 ( a, b ) |
133 |
#define _MPI_TYPE_RS MPI_REAL |
#define _MPI_TYPE_RS MPI_REAL |
134 |
#endif |
#endif |
135 |
#define _EXCH_XY_R4(a,b) CALL EXCH_XY_RS ( a, b ) |
#define _EXCH_XY_R4(a,b) CALL EXCH_XY_RL ( a, b ) |
136 |
#define _EXCH_XYZ_R4(a,b) CALL EXCH_XYZ_RS ( a, b ) |
#define _EXCH_XYZ_R4(a,b) CALL EXCH_XYZ_RL ( a, b ) |
137 |
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138 |
#define _RL Real*8 |
#define _RL Real*8 |
139 |
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#define RL_IS_REAL8 |
140 |
#define _EXCH_XY_R8(a,b) CALL EXCH_XY_RL ( a, b ) |
#define _EXCH_XY_R8(a,b) CALL EXCH_XY_RL ( a, b ) |
141 |
#define _EXCH_XYZ_R8(a,b) CALL EXCH_XYZ_RL ( a, b ) |
#define _EXCH_XYZ_R8(a,b) CALL EXCH_XYZ_RL ( a, b ) |
142 |
#define _GLOBAL_SUM_R8(a,b) CALL GLOBAL_SUM_R8 ( a, b ) |
#define _GLOBAL_SUM_R8(a,b) CALL GLOBAL_SUM_R8 ( a, b ) |
143 |
#define _GLOBAL_MAX_R8(a,b) CALL GLOBAL_MAX_R8 ( a, b ) |
#define _GLOBAL_MAX_R8(a,b) CALL GLOBAL_MAX_R8 ( a, b ) |
144 |
#define _MPI_TYPE_RL MPI_DOUBLE_PRECISION |
#define _MPI_TYPE_RL MPI_DOUBLE_PRECISION |
145 |
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146 |
#define _EXCH_XY_RS(a,b) CALL EXCH_XY_RS ( a, b ) |
#define _EXCH_XY_RS(a,b) CALL EXCH_XY_RL ( a, b ) |
147 |
#define _EXCH_XYZ_RS(a,b) CALL EXCH_XYZ_RS ( a, b ) |
#define _EXCH_XYZ_RS(a,b) CALL EXCH_XYZ_RL ( a, b ) |
148 |
#define _EXCH_XY_RL(a,b) CALL EXCH_XY_RL ( a, b ) |
#define _EXCH_XY_RL(a,b) CALL EXCH_XY_RL ( a, b ) |
149 |
#define _EXCH_XYZ_RL(a,b) CALL EXCH_XYZ_RL ( a, b ) |
#define _EXCH_XYZ_RL(a,b) CALL EXCH_XYZ_RL ( a, b ) |
150 |
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151 |
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#define _MPI_TYPE_R4 MPI_REAL |
152 |
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#if (defined (TARGET_SGI) || defined (TARGET_AIX) || defined (TARGET_LAM)) |
153 |
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#define _MPI_TYPE_R8 MPI_DOUBLE_PRECISION |
154 |
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#else |
155 |
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#define _MPI_TYPE_R8 MPI_REAL8 |
156 |
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#endif |
157 |
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#define _R4 Real*4 |
158 |
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#define _R8 Real*8 |
159 |
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160 |
C-- Control use of JAM routines for Artic network |
C-- Control use of JAM routines for Artic network |
161 |
C These invoke optimized versions of "exchange" and "sum" that |
C These invoke optimized versions of "exchange" and "sum" that |
162 |
C utilize the programmable aspect of Artic cards. |
C utilize the programmable aspect of Artic cards. |