| [0f4ac10] | 1 | // These "-cfa" test cases run the dimexpr-match framework (see the hfa) on the CFA "new array."
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 | 2 | // The test is not runnable in gcc.
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 | 3 | // Essentially parallels dimexpr-match.cfa, but uses array(float, 17), of array.hfa, in place of `float[17]`.
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 | 4 | 
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 | 5 | #ifndef __cforall
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 | 6 | #error This test is CFA-only
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 | 7 | #endif
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 | 8 | 
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 | 9 | #ifdef INCLUDE_MINIMAL
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 | 10 | #define POUNDINCLUDE #include
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 | 11 | POUNDINCLUDE <containers/array.hfa>
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 | 12 | #else
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 | 13 | #include <containers/array.hfa>                           // part of SUT
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 | 14 | #endif
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 | 15 | 
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 | 16 | #include "dimexpr-match.hfa"                              // test framework
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 | 17 | 
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 | 18 | // CFA "classic" behaviour is inconsistent between "C array" and "new array."
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 | 19 | // The impelementation of "non classic" rules makes C arrays and new arrays work the same.
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 | 20 | #ifdef CFA_IS_CLASSIC
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 | 21 | 
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 | 22 |     // CFA "classic" allows mismatched static lengths on "new arrays," which is a bug.
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 | 23 |     // For cfacc-classic compiling C arrays, the (expected) rejection of mismatched static lenghts happens in gcc, not cfa-cpp.
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 | 24 |     // When the CFA input is a C array, the cfa-cc handling is passthrough, so GCC sees the error.
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 | 25 |     // When the CFA input is a new array, the cfa-cpp handling is nontrivial; this rewriting hides the error from GCC, causing the case to be accepted.
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 | 26 |     // This issue is fixed in the implementation of the "non classic" rules.
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 | 27 |     #undef  RULE_CF_NE_STA_STA
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 | 28 |     #define RULE_CF_NE_STA_STA  ACC
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 | 29 | 
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 | 30 |     // CFA "classic" rejects mismatched `[N]`s on "new arrays," which is the original signature featere of "new arrays."
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 | 31 |     // But it is unable to do the same with `n`s.  So CFA "classic" treats `n` and `[N]` differently.
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 | 32 |     // The impelementation of "non classic" rules extends this safety to `n`s, and to C arrays.
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 | 33 |     #undef  GRP_K_DIM                 // reclassify dim7/dim42 as group XXX, instead of group DYN
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 | 34 |     #define GRP_K_DIM  XXX
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 | 35 |     #define RULE_CF_EQ_XXX_XXX  ACC   // these rules correspond with non-"classic" DYN
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 | 36 |     #define RULE_CF_NE_XXX_XXX  REJ
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 | 37 |     #define RULE_CF_NE_XXX_STA  REJ
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 | 38 |     #define RULE_CF_NE_STA_XXX  REJ
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 | 39 |     #define RULE_CF_NE_XXX_DYN  REJ
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 | 40 |     #define RULE_CF_NE_DYN_XXX  REJ
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 | 41 |     #define RULE_CF_NE_XXX_UNS  REJ
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 | 42 |     #define RULE_CF_NE_UNS_XXX  REJ
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 | 43 | 
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 | 44 | #endif
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 | 45 | 
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 | 46 | 
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 | 47 | DECLN_runTests {
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 | 48 | 
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 | 49 |     enum { enu7 = 7, enu42 = 42 };
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 | 50 |     int mut7 = 7, mut42 = 42;
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 | 51 | 
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 | 52 |     
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 | 53 |     #define TRY_COMPAT( LV, RV )            \
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 | 54 |     {                                       \
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 | 55 |         void f( array(float, LV) * x ) {}   \
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 | 56 |         array(float, RV) a;                 \
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 | 57 |         f( & a );                           \
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 | 58 |     }
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 | 59 |     ARRANGEMENT( PTRPARM_CALL )
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 | 60 |     #undef TRY_COMPAT
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 | 61 | 
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 | 62 |     #define TRY_COMPAT( LV, RV )            \
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 | 63 |     {                                       \
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 | 64 |         array(float, RV) a;                 \
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 | 65 |         array(float, LV) * b = & a;         \
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 | 66 |     }
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 | 67 |     ARRANGEMENT( PTRVAR_INIT )
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 | 68 |     #undef TRY_COMPAT
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 | 69 | 
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 | 70 |     #define TRY_COMPAT( LV, RV )            \
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 | 71 |     {                                       \
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 | 72 |         array(float, RV) a;                 \
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 | 73 |         array(float, LV) * b = NULL;        \
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 | 74 |         b = & a;                            \
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 | 75 |     }
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 | 76 |     ARRANGEMENT( PTRVAR_ASGN )
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 | 77 |     #undef TRY_COMPAT
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 | 78 | 
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 | 79 |     #define TRY_COMPAT( LV, RV )            \
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 | 80 |     {                                       \
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 | 81 |         void f( array(float, LV) & x ) {}   \
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 | 82 |         array(float, RV) a;                 \
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 | 83 |         f( a );                             \
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 | 84 |     }
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 | 85 |     ARRANGEMENT( REFPARM_CALL )
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 | 86 |     #undef TRY_COMPAT
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 | 87 | 
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 | 88 |     #define TRY_COMPAT( LV, RV )            \
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 | 89 |     {                                       \
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 | 90 |         array(float, RV) a;                 \
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 | 91 |         array(float, LV) & b = a;           \
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 | 92 |     }
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 | 93 |     ARRANGEMENT( REFVAR_INIT )
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 | 94 |     #undef TRY_COMPAT
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 | 95 | 
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 | 96 |     #define TRY_COMPAT( LV, RV )            \
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 | 97 |     {                                       \
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 | 98 |         array(float, RV) a;                 \
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 | 99 |         array(float, LV) & b = *0p;         \
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 | 100 |         & b = & a;                          \
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 | 101 |     }
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 | 102 |     ARRANGEMENT( REFVAR_ASGN )
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 | 103 |     #undef TRY_COMPAT
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 | 104 | 
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 | 105 | 
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 | 106 |     forall( [N] )
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 | 107 |     void zip( array(float, N) & a, array(float, N) & b ) {}
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 | 108 | 
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 | 109 |     #define TRY_COMPAT( LV, RV )            \
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 | 110 |     {                                       \
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 | 111 |         array(float, LV) a;                 \
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 | 112 |         array(float, RV) b;                 \
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 | 113 |         zip( a, b );                        \
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 | 114 |     }
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 | 115 |     ARRANGEMENT( CALLZIP )
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 | 116 |     #undef TRY_COMPAT
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 | 117 | 
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 | 118 | }
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