| 1 | //
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
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| 3 | //
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| 4 | // The contents of this file are covered under the licence agreement in the
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| 5 | // file "LICENCE" distributed with Cforall.
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| 6 | //
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| 7 | // designations.c --
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| 8 | //
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| 9 | // Author           : Rob Schluntz
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| 10 | // Created On       : Thu Jun 29 15:26:36 2017
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| 11 | // Last Modified By : Peter A. Buhr
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| 12 | // Last Modified On : Mon Mar 28 22:41:55 2022
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| 13 | // Update Count     : 15
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| 14 | //
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| 15 | 
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| 16 | // Note: this test case has been crafted so that it compiles with both cfa and with gcc without any modifications.
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| 17 | // In particular, since the syntax for designations in Cforall differs from that of C, preprocessor substitution
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| 18 | // is used for the designation syntax
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| 19 | #ifdef __cforall
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| 20 | #define _ :
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| 21 | #define AT @
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| 22 | #else
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| 23 | int printf( const char *, ...);
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| 24 | #define _ =
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| 25 | #define AT
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| 26 | #endif
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| 27 | 
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| 28 | const int indentAmt = 2;
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| 29 | void indent( int level ) {
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| 30 |         for ( int i = 0; i < level; ++i ) {
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| 31 |                 printf( " " );
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| 32 |         }
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| 33 | }
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| 34 | 
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| 35 | // A contains fields with different types (int vs. int *)
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| 36 | struct A {
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| 37 |         int x, y;
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| 38 |         int * ptr;
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| 39 | };
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| 40 | void printA( struct A a, int level ) {
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| 41 |         indent( level );
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| 42 |         printf( "(A){ %d %d %p }\n", a.x, a.y, a.ptr );
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| 43 | }
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| 44 | 
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| 45 | // B contains struct members
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| 46 | struct B {
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| 47 |         struct A a0, a1;
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| 48 | };
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| 49 | void printB( struct B b, int level ) {
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| 50 |         indent( level );
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| 51 |         printf( "(B){\n" );
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| 52 |         printA( b.a0, level+indentAmt );
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| 53 |         printA( b.a1, level+indentAmt );
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| 54 |         indent( level );
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| 55 |         printf( "}\n" );
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| 56 | }
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| 57 | 
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| 58 | // C contains an array - tests that after 3 ints, the members of B are initialized.
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| 59 | struct C {
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| 60 |         int arr[3];
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| 61 |         struct B b;
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| 62 | };
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| 63 | void printC( struct C c, int level ) {
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| 64 |         indent( level );
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| 65 |         printf( "(C){\n" );
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| 66 |         indent( level+indentAmt );
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| 67 |         printf( "(int[]{ %d %d %d }\n", c.arr[0], c.arr[1], c.arr[2]);
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| 68 |         printB( c.b, level+indentAmt );
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| 69 |         indent( level );
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| 70 |         printf( "}\n" );
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| 71 | }
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| 72 | 
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| 73 | // D contains an unnamed aggregate - tests that this doesn't interfere with initialization.
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| 74 | struct D {
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| 75 |         struct {
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| 76 |                 int x;
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| 77 |         };
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| 78 | };
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| 79 | void printD( struct D d, int level ) {
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| 80 |         indent( level);
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| 81 |         printf( "(D ){ %d }\n", d.x );
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| 82 | }
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| 83 | 
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| 84 | // E tests unions
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| 85 | union E {
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| 86 |         struct A a;
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| 87 |         struct B b;
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| 88 |         struct C c;
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| 89 |         struct D d;
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| 90 |         int i;
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| 91 | };
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| 92 | 
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| 93 | struct Fred {
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| 94 |     double i[3];
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| 95 |     int j;
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| 96 |     struct Mary {
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| 97 |         struct Jane {
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| 98 |             double j;
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| 99 |         } j;
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| 100 |         double i;
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| 101 |     } m;
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| 102 | };
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| 103 | struct Fred s1 AT= { .m.j _ 3 };
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| 104 | struct Fred s2 AT= { .i _ { [2] _ 2 } };
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| 105 | 
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| 106 | int main() {
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| 107 |         // simple designation case - starting from beginning of structure, leaves ptr default-initialized (zero)
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| 108 |         struct A y0 = {
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| 109 |                 .x _ 2,
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| 110 |                 .y _ 3
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| 111 |         };
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| 112 | 
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| 113 |         // simple initializaiton case - initialize all elements explicitly with no designations
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| 114 |         struct A y1 = {
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| 115 |                 2, 3, 0
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| 116 |         };
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| 117 | 
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| 118 | 
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| 119 |         // use designation to move to member y, leaving x default-initialized (zero)
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| 120 |         struct A y2 = {
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| 121 |                 .y _ 3,
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| 122 |                 0
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| 123 |         };
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| 124 | 
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| 125 | #if ERROR
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| 126 |         struct A yErr0 = {
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| 127 |                 {} // error - empty scalar initializer is illegal
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| 128 |         };
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| 129 | #endif
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| 130 | 
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| 131 |         printf( "=====A=====\n" );
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| 132 |         printA( y0, 0 );
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| 133 |         printA( y1, 0 );
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| 134 |         printA( y2, 0 );
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| 135 |         printf( "=====A=====\n\n" );
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| 136 | 
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| 137 |         // initialize only first element (z0.a.x), leaving everything else default-initialized (zero), no nested curly-braces
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| 138 |         struct B z0 = { 5 };
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| 139 | 
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| 140 |         // some nested curly braces, use designation to 'jump around' within structure, leaving some members default-initialized
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| 141 |         struct B z1 = {
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| 142 |                 { 3 }, // z1.a0
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| 143 |                 { 4 }, // z1.a1
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| 144 |                 .a0 _ { 5 }, // z1.a0
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| 145 |                 { 6 }, // z1.a1
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| 146 |                 .a0.y _ 2, // z1.a0.y
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| 147 |                 0, // z1.a0.ptr
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| 148 |         };
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| 149 | 
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| 150 |         // z2.a0.y and z2.a0.ptr default-initialized, everything else explicit
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| 151 |         struct B z2 = {
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| 152 |                 { 1 },
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| 153 |                 { 2, 3, 0 }
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| 154 |         };
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| 155 | 
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| 156 |         // initialize every member, omitting nested curly braces
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| 157 |         struct B z3 = {
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| 158 |                 1, 2, 0, 4, 5, 0
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| 159 |         };
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| 160 | 
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| 161 |         // no initializer - legal C, but garbage values - don't print this one
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| 162 |         struct B z4;
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| 163 | 
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| 164 |         // no curly braces - initialize with object of same type
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| 165 |         struct B z5 = z2;
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| 166 | 
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| 167 |         // z6.a0.y and z6.a0.ptr default-initialized, everything else explicit.
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| 168 |         // no curly braces on z6.a1 initializers
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| 169 |         struct B z6 = {
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| 170 |                 { 1 },
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| 171 |                 2, 3, 0
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| 172 |         };
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| 173 | 
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| 174 |         printf( "=====B=====\n" );
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| 175 |         printB( z0, 0 );
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| 176 |         printB( z1, 0 );
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| 177 |         printB( z2, 0 );
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| 178 |         printB( z3, 0 );
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| 179 |         printB( z5, 0 );
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| 180 |         printB( z6, 0 );
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| 181 |         printf( "=====B=====\n\n" );
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| 182 | 
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| 183 |         // TODO: what about extra things in a nested init? are empty structs skipped??
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| 184 | 
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| 185 |         // test that initializing 'past array bound' correctly moves to next member.
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| 186 |         struct C c1 = {
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| 187 |                 2, 3, 4,  // arr
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| 188 |                 5, 6, 0,  // b.a0
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| 189 |                 7, 8, 0,  // b.a1
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| 190 |         };
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| 191 | 
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| 192 |         printf( "=====C=====\n" );
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| 193 |         printC( c1, 0 );
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| 194 |         printf( "=====C=====\n\n" );
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| 195 | 
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| 196 | #if ERROR
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| 197 |         // nested initializer can't refer to same type in C
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| 198 |         struct C cErr0 = { c1 };
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| 199 | 
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| 200 |         // must use curly braces to initialize members
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| 201 |         struct C cErr1 = 2;
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| 202 | 
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| 203 |         // can't initialize with array compound literal
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| 204 |         struct C cErr2 = {
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| 205 |                 (int[3]) { 1, 2, 3 }  // error: array initialized from non-constant array expression
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| 206 |         };
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| 207 | #endif
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| 208 | 
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| 209 | #if WARNING
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| 210 |         // can't initialize array with array - converts to int*
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| 211 |         int cWarn0_arr[3] = { 1, 2, 3 };
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| 212 |         struct C cWarn0 = {
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| 213 |                 cWarn0_arr  // warning: initialization makes integer from ptr without cast
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| 214 |         };
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| 215 | #endif
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| 216 |         // array designation
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| 217 |         int i[2] = { [1] _ 3 };
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| 218 |         // allowed to have 'too many' initialized lists - essentially they are ignored.
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| 219 |         int i1 = { 3 };
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| 220 | 
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| 221 |         // doesn't work yet.
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| 222 |         // designate unnamed object's members
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| 223 |         // struct D d = { .x _ 3 };
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| 224 | #if ERROR
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| 225 |         struct D d1 = { .y _ 3 };
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| 226 | #endif
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| 227 | 
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| 228 |         // simple union initialization - initialized first member (e0.a)
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| 229 |         union E e0 = {
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| 230 |                 y0
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| 231 |         };
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| 232 | 
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| 233 |         // simple union initialization - initializes first member (e1.a) - with nested initializer list
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| 234 |         union E e1 = {
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| 235 |                 { 2, 3, 0 }
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| 236 |         };
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| 237 | 
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| 238 |         // simple union initialization - initializes first member (e2.a) - without nested initializer list
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| 239 |         union E e2 = {
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| 240 |                 2, 3, 0
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| 241 |         };
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| 242 | 
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| 243 |         // move cursor to e4.b.a0.x and initialize until e3.b.a1.ptr inclusive
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| 244 |         union E e3 = {
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| 245 |                 .b.a0.x _ 2, 3, 0, 5, 6, 0
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| 246 |         };
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| 247 | 
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| 248 |         printf( "=====E=====\n" );
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| 249 |         printA( e0.a, 0 );
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| 250 |         printA( e1.a, 0 );
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| 251 |         printA( e2.a, 0 );
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| 252 |         printB( e3.b, 0 );
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| 253 |         printf( "=====E=====\n\n" );
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| 254 | 
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| 255 |         // special case of initialization: char[] can be initialized with a string literal
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| 256 |         const char * str0 = "hello";
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| 257 |         char str1[] = "hello";
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| 258 |         const char c2[] = "abc";
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| 259 |         const char c3[] = { 'a', 'b', 'c' };
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| 260 |         const char c4[][2] = { { 'a', 'b' }, { 'c', 'd'}, { 'c', 'd'} };
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| 261 | 
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| 262 |         // more cases
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| 263 | 
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| 264 | //      int widths[] = { [3 ... 9] _ 1, [10 ... 99] _ 2, [100] _ 3 };
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| 265 | //      int widths[] = { [3 ~ 9] _ 1, [10 ~ 99] _ 2, [100] _ 3 };
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| 266 |         struct point { int x, y; };
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| 267 |         struct point p = { .y _ 5, .x _ 7 };
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| 268 |         union foo { int i; double d; };
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| 269 |         union foo f = { .d _ 4 };
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| 270 |         int v1, v2, v4;
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| 271 |         int w[6] = { [1] _ v1, v2, [4] _ v4 };
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| 272 |         int whitespace[256] = { [' '] _ 1, ['\t'] _ 1, ['\v'] _ 1, ['\f'] _ 1, ['\n'] _ 1, ['\r'] _ 1 };
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| 273 |         struct point ptarray[10] = { [2].y _ 34, [2].x _ 35, [0].x _ 36 };
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| 274 | }
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| 275 | 
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| 276 | // Local Variables: //
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| 277 | // tab-width: 4 //
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| 278 | // End: //
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