| [b87a5ed] | 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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| [0caaa6a] | 7 | // ExpressionNode.cc --
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 | 8 | //
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| [b87a5ed] | 9 | // Author           : Rodolfo G. Esteves
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 | 10 | // Created On       : Sat May 16 13:17:07 2015
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| [097e2b0] | 11 | // Last Modified By : Peter A. Buhr
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| [a839867] | 12 | // Last Modified On : Thu Aug 25 21:39:40 2016
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 | 13 | // Update Count     : 503
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| [0caaa6a] | 14 | //
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| [b87a5ed] | 15 | 
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| [51b73452] | 16 | #include <cassert>
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 | 17 | #include <cctype>
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| [7bf7fb9] | 18 | #include <climits>
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 | 19 | #include <cstdio>
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| [51b73452] | 20 | #include <algorithm>
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| [59db689] | 21 | #include <sstream>
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| [51b73452] | 22 | 
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 | 23 | #include "ParseNode.h"
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| [630a82a] | 24 | #include "TypeData.h"
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| [51b73452] | 25 | #include "SynTree/Constant.h"
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 | 26 | #include "SynTree/Expression.h"
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| [630a82a] | 27 | #include "SynTree/Declaration.h"
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| [d3b7937] | 28 | #include "Common/UnimplementedError.h"
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| [51b73452] | 29 | #include "parseutility.h"
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| [d3b7937] | 30 | #include "Common/utility.h"
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| [51b73452] | 31 | 
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 | 32 | using namespace std;
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 | 33 | 
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| [7880579] | 34 | ExpressionNode::ExpressionNode( const ExpressionNode &other ) : ParseNode( other.get_name() ), extension( other.extension ) {}
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| [51b73452] | 35 | 
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| [cd623a4] | 36 | //##############################################################################
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 | 37 | 
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| [7bf7fb9] | 38 | // Difficult to separate extra parts of constants during lexing because actions are not allow in the middle of patterns:
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 | 39 | //
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 | 40 | //              prefix action constant action suffix
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 | 41 | //
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 | 42 | // Alternatively, breaking a pattern using BEGIN does not work if the following pattern can be empty:
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 | 43 | //
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 | 44 | //              constant BEGIN CONT ...
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 | 45 | //              <CONT>(...)? BEGIN 0 ... // possible empty suffix
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 | 46 | //
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 | 47 | // because the CONT rule is NOT triggered if the pattern is empty. Hence, constants are reparsed here to determine their
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 | 48 | // type.
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 | 49 | 
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 | 50 | static Type::Qualifiers emptyQualifiers;                                // no qualifiers on constants
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 | 51 | 
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 | 52 | static inline bool checkU( char c ) { return c == 'u' || c == 'U'; }
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 | 53 | static inline bool checkL( char c ) { return c == 'l' || c == 'L'; }
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 | 54 | static inline bool checkF( char c ) { return c == 'f' || c == 'F'; }
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 | 55 | static inline bool checkD( char c ) { return c == 'd' || c == 'D'; }
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 | 56 | static inline bool checkI( char c ) { return c == 'i' || c == 'I'; }
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 | 57 | static inline bool checkX( char c ) { return c == 'x' || c == 'X'; }
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 | 58 | 
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| [ac71a86] | 59 | Expression *build_constantInteger( const std::string & str ) {
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| [7bf7fb9] | 60 |         static const BasicType::Kind kind[2][3] = {
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 | 61 |                 { BasicType::SignedInt, BasicType::LongSignedInt, BasicType::LongLongSignedInt },
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 | 62 |                 { BasicType::UnsignedInt, BasicType::LongUnsignedInt, BasicType::LongLongUnsignedInt },
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 | 63 |         };
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 | 64 |         bool dec = true, Unsigned = false;                                      // decimal, unsigned constant
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 | 65 |         int size;                                                                                       // 0 => int, 1 => long, 2 => long long
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 | 66 |         unsigned long long v;                                                           // converted integral value
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 | 67 |         size_t last = str.length() - 1;                                         // last character of constant
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 | 68 | 
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 | 69 |         if ( str[0] == '0' ) {                                                          // octal/hex constant ?
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 | 70 |                 dec = false;
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 | 71 |                 if ( last != 0 && checkX( str[1] ) ) {                  // hex constant ?
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 | 72 |                         sscanf( (char *)str.c_str(), "%llx", &v );
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 | 73 |                         //printf( "%llx %llu\n", v, v );
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 | 74 |                 } else {                                                                                // octal constant
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 | 75 |                         sscanf( (char *)str.c_str(), "%llo", &v );
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 | 76 |                         //printf( "%llo %llu\n", v, v );
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 | 77 |                 } // if
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 | 78 |         } else {                                                                                        // decimal constant ?
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 | 79 |                 sscanf( (char *)str.c_str(), "%llu", &v );
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 | 80 |                 //printf( "%llu %llu\n", v, v );
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 | 81 |         } // if
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 | 82 | 
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 | 83 |         if ( v <= INT_MAX ) {                                                           // signed int
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 | 84 |                 size = 0;
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 | 85 |         } else if ( v <= UINT_MAX && ! dec ) {                          // unsigned int
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 | 86 |                 size = 0;
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 | 87 |                 Unsigned = true;                                                                // unsigned
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 | 88 |         } else if ( v <= LONG_MAX ) {                                           // signed long int
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 | 89 |                 size = 1;
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 | 90 |         } else if ( v <= ULONG_MAX && ( ! dec || LONG_MAX == LLONG_MAX ) ) { // signed long int
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 | 91 |                 size = 1;
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 | 92 |                 Unsigned = true;                                                                // unsigned long int
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 | 93 |         } else if ( v <= LLONG_MAX ) {                                          // signed long long int
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 | 94 |                 size = 2;
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 | 95 |         } else {                                                                                        // unsigned long long int
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 | 96 |                 size = 2;
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 | 97 |                 Unsigned = true;                                                                // unsigned long long int
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 | 98 |         } // if
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 | 99 | 
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 | 100 |         if ( checkU( str[last] ) ) {                                            // suffix 'u' ?
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 | 101 |                 Unsigned = true;
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 | 102 |                 if ( last > 0 && checkL( str[last - 1] ) ) {    // suffix 'l' ?
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 | 103 |                         size = 1;
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 | 104 |                         if ( last > 1 && checkL( str[last - 2] ) ) { // suffix 'll' ?
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 | 105 |                                 size = 2;
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 | 106 |                         } // if
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 | 107 |                 } // if
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 | 108 |         } else if ( checkL( str[ last ] ) ) {                           // suffix 'l' ?
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 | 109 |                 size = 1;
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 | 110 |                 if ( last > 0 && checkL( str[last - 1] ) ) {    // suffix 'll' ?
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 | 111 |                         size = 2;
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 | 112 |                         if ( last > 1 && checkU( str[last - 2] ) ) { // suffix 'u' ?
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 | 113 |                                 Unsigned = true;
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 | 114 |                         } // if
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 | 115 |                 } else {
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 | 116 |                         if ( last > 0 && checkU( str[last - 1] ) ) { // suffix 'u' ?
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 | 117 |                                 Unsigned = true;
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 | 118 |                         } // if
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 | 119 |                 } // if
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 | 120 |         } // if
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 | 121 | 
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| [ab57786] | 122 |         Expression * ret = new ConstantExpr( Constant( new BasicType( emptyQualifiers, kind[Unsigned][size] ), str ) );
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 | 123 |         delete &str;                                                                            // created by lex
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 | 124 |         return ret;
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| [7bf7fb9] | 125 | } // build_constantInteger
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| [51b73452] | 126 | 
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| [ac71a86] | 127 | Expression *build_constantFloat( const std::string & str ) {
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| [7bf7fb9] | 128 |         static const BasicType::Kind kind[2][3] = {
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 | 129 |                 { BasicType::Float, BasicType::Double, BasicType::LongDouble },
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 | 130 |                 { BasicType::FloatComplex, BasicType::DoubleComplex, BasicType::LongDoubleComplex },
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 | 131 |         };
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| [59c24b6] | 132 | 
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| [7bf7fb9] | 133 |         bool complx = false;                                                            // real, complex
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 | 134 |         int size = 1;                                                                           // 0 => float, 1 => double (default), 2 => long double
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 | 135 |         // floating-point constant has minimum of 2 characters: 1. or .1
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 | 136 |         size_t last = str.length() - 1;
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| [51b73452] | 137 | 
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| [7bf7fb9] | 138 |         if ( checkI( str[last] ) ) {                                            // imaginary ?
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 | 139 |                 complx = true;
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 | 140 |                 last -= 1;                                                                              // backup one character
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 | 141 |         } // if
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| [0caaa6a] | 142 | 
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| [7bf7fb9] | 143 |         if ( checkF( str[last] ) ) {                                            // float ?
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 | 144 |                 size = 0;
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 | 145 |         } else if ( checkD( str[last] ) ) {                                     // double ?
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 | 146 |                 size = 1;
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 | 147 |         } else if ( checkL( str[last] ) ) {                                     // long double ?
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 | 148 |                 size = 2;
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 | 149 |         } // if
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 | 150 |         if ( ! complx && checkI( str[last - 1] ) ) {            // imaginary ?
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 | 151 |                 complx = true;
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 | 152 |         } // if
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| [51b73452] | 153 | 
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| [ab57786] | 154 |         Expression * ret = new ConstantExpr( Constant( new BasicType( emptyQualifiers, kind[complx][size] ), str ) );
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 | 155 |         delete &str;                                                                            // created by lex
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 | 156 |         return ret;
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| [7bf7fb9] | 157 | } // build_constantFloat
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| [51b73452] | 158 | 
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| [ac71a86] | 159 | Expression *build_constantChar( const std::string & str ) {
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| [ab57786] | 160 |         Expression * ret = new ConstantExpr( Constant( new BasicType( emptyQualifiers, BasicType::Char ), str ) );
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 | 161 |         delete &str;                                                                            // created by lex
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 | 162 |         return ret;
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| [7bf7fb9] | 163 | } // build_constantChar
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| [51b73452] | 164 | 
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| [ac71a86] | 165 | ConstantExpr *build_constantStr( const std::string & str ) {
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| [7bf7fb9] | 166 |         // string should probably be a primitive type
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 | 167 |         ArrayType *at = new ArrayType( emptyQualifiers, new BasicType( emptyQualifiers, BasicType::Char ),
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 | 168 |                                 new ConstantExpr( Constant( new BasicType( emptyQualifiers, BasicType::UnsignedInt ),
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 | 169 |                                                                                         toString( str.size()+1-2 ) ) ),  // +1 for '\0' and -2 for '"'
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 | 170 |                                                                    false, false );
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| [ab57786] | 171 |         ConstantExpr * ret = new ConstantExpr( Constant( at, str ) );
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 | 172 |         delete &str;                                                                            // created by lex
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 | 173 |         return ret;
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| [7bf7fb9] | 174 | } // build_constantStr
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| [51b73452] | 175 | 
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| [d1625f8] | 176 | NameExpr * build_varref( const string *name, bool labelp ) {
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| [7ecbb7e] | 177 |         NameExpr *expr = new NameExpr( *name, nullptr );
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 | 178 |         delete name;
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 | 179 |         return expr;
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| [51b1202] | 180 | }
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 | 181 | 
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| [d9e2280] | 182 | static const char *OperName[] = {
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| [5721a6d] | 183 |         // diadic
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| [7bf7fb9] | 184 |         "SizeOf", "AlignOf", "OffsetOf", "?+?", "?-?", "?*?", "?/?", "?%?", "||", "&&",
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| [5721a6d] | 185 |         "?|?", "?&?", "?^?", "Cast", "?<<?", "?>>?", "?<?", "?>?", "?<=?", "?>=?", "?==?", "?!=?",
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| [a839867] | 186 |         "?=?", "?@=?", "?*=?", "?/=?", "?%=?", "?+=?", "?-=?", "?<<=?", "?>>=?", "?&=?", "?^=?", "?|=?",
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| [d9e2280] | 187 |         "?[?]", "...",
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| [5721a6d] | 188 |         // monadic
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 | 189 |         "+?", "-?", "AddressOf", "*?", "!?", "~?", "++?", "?++", "--?", "?--", "&&"
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 | 190 | };
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 | 191 | 
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| [d1625f8] | 192 | Expression *build_cast( DeclarationNode *decl_node, ExpressionNode *expr_node ) {
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| [4f147cc] | 193 |         Type *targetType = maybeMoveBuildType( decl_node );
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| [d1625f8] | 194 |         if ( dynamic_cast< VoidType * >( targetType ) ) {
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| [064e3ff] | 195 |                 delete targetType;
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| [7ecbb7e] | 196 |                 return new CastExpr( maybeMoveBuild< Expression >(expr_node) );
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| [064e3ff] | 197 |         } else {
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| [7ecbb7e] | 198 |                 return new CastExpr( maybeMoveBuild< Expression >(expr_node), targetType );
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| [064e3ff] | 199 |         } // if
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 | 200 | }
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 | 201 | 
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| [d1625f8] | 202 | Expression *build_fieldSel( ExpressionNode *expr_node, NameExpr *member ) {
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| [7ecbb7e] | 203 |         UntypedMemberExpr *ret = new UntypedMemberExpr( member->get_name(), maybeMoveBuild< Expression >(expr_node) );
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| [064e3ff] | 204 |         delete member;
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 | 205 |         return ret;
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 | 206 | }
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 | 207 | 
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| [d1625f8] | 208 | Expression *build_pfieldSel( ExpressionNode *expr_node, NameExpr *member ) {
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| [064e3ff] | 209 |         UntypedExpr *deref = new UntypedExpr( new NameExpr( "*?" ) );
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| [7ecbb7e] | 210 |         deref->get_args().push_back( maybeMoveBuild< Expression >(expr_node) );
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| [d1625f8] | 211 |         UntypedMemberExpr *ret = new UntypedMemberExpr( member->get_name(), deref );
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| [064e3ff] | 212 |         delete member;
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 | 213 |         return ret;
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 | 214 | }
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 | 215 | 
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 | 216 | Expression *build_addressOf( ExpressionNode *expr_node ) {
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| [7ecbb7e] | 217 |                 return new AddressExpr( maybeMoveBuild< Expression >(expr_node) );
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| [064e3ff] | 218 | }
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| [d1625f8] | 219 | Expression *build_sizeOfexpr( ExpressionNode *expr_node ) {
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| [7ecbb7e] | 220 |         return new SizeofExpr( maybeMoveBuild< Expression >(expr_node) );
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| [064e3ff] | 221 | }
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| [d1625f8] | 222 | Expression *build_sizeOftype( DeclarationNode *decl_node ) {
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| [4f147cc] | 223 |         return new SizeofExpr( maybeMoveBuildType( decl_node ) );
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| [d1625f8] | 224 | }
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 | 225 | Expression *build_alignOfexpr( ExpressionNode *expr_node ) {
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| [7ecbb7e] | 226 |         return new AlignofExpr( maybeMoveBuild< Expression >(expr_node) );
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| [d1625f8] | 227 | }
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 | 228 | Expression *build_alignOftype( DeclarationNode *decl_node ) {
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| [4f147cc] | 229 |         return new AlignofExpr( maybeMoveBuildType( decl_node) );
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| [064e3ff] | 230 | }
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| [d1625f8] | 231 | Expression *build_offsetOf( DeclarationNode *decl_node, NameExpr *member ) {
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| [4f147cc] | 232 |         Expression* ret = new UntypedOffsetofExpr( maybeMoveBuildType( decl_node ), member->get_name() );
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| [ac71a86] | 233 |         delete member;
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 | 234 |         return ret;
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| [064e3ff] | 235 | }
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 | 236 | 
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| [51e076e] | 237 | Expression *build_and_or( ExpressionNode *expr_node1, ExpressionNode *expr_node2, bool kind ) {
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| [7ecbb7e] | 238 |         return new LogicalExpr( notZeroExpr( maybeMoveBuild< Expression >(expr_node1) ), notZeroExpr( maybeMoveBuild< Expression >(expr_node2) ), kind );
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| [51e076e] | 239 | }
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 | 240 | 
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| [d9e2280] | 241 | Expression *build_unary_val( OperKinds op, ExpressionNode *expr_node ) {
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| [7880579] | 242 |         std::list< Expression * > args;
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| [7ecbb7e] | 243 |         args.push_back( maybeMoveBuild< Expression >(expr_node) );
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| [d9e2280] | 244 |         return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
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| [9706554] | 245 | }
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| [d9e2280] | 246 | Expression *build_unary_ptr( OperKinds op, ExpressionNode *expr_node ) {
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| [7880579] | 247 |         std::list< Expression * > args;
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| [7ecbb7e] | 248 |         args.push_back( new AddressExpr( maybeMoveBuild< Expression >(expr_node) ) );
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| [d9e2280] | 249 |         return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
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| [51e076e] | 250 | }
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| [d9e2280] | 251 | Expression *build_binary_val( OperKinds op, ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
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| [7880579] | 252 |         std::list< Expression * > args;
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| [7ecbb7e] | 253 |         args.push_back( maybeMoveBuild< Expression >(expr_node1) );
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 | 254 |         args.push_back( maybeMoveBuild< Expression >(expr_node2) );
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| [d9e2280] | 255 |         return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
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| [51e076e] | 256 | }
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| [d9e2280] | 257 | Expression *build_binary_ptr( OperKinds op, ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
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| [7880579] | 258 |         std::list< Expression * > args;
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| [7ecbb7e] | 259 |         args.push_back( new AddressExpr( maybeMoveBuild< Expression >(expr_node1) ) );
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 | 260 |         args.push_back( maybeMoveBuild< Expression >(expr_node2) );
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| [d9e2280] | 261 |         return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
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| [9706554] | 262 | }
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| [51e076e] | 263 | 
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 | 264 | Expression *build_cond( ExpressionNode *expr_node1, ExpressionNode *expr_node2, ExpressionNode *expr_node3 ) {
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| [7ecbb7e] | 265 |         return new ConditionalExpr( notZeroExpr( maybeMoveBuild< Expression >(expr_node1) ), maybeMoveBuild< Expression >(expr_node2), maybeMoveBuild< Expression >(expr_node3) );
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| [51e076e] | 266 | }
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 | 267 | 
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 | 268 | Expression *build_comma( ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
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| [7ecbb7e] | 269 |         return new CommaExpr( maybeMoveBuild< Expression >(expr_node1), maybeMoveBuild< Expression >(expr_node2) );
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| [51e076e] | 270 | }
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 | 271 | 
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| [d1625f8] | 272 | Expression *build_attrexpr( NameExpr *var, ExpressionNode * expr_node ) {
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| [7ecbb7e] | 273 |         return new AttrExpr( var, maybeMoveBuild< Expression >(expr_node) );
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| [d1625f8] | 274 | }
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 | 275 | Expression *build_attrtype( NameExpr *var, DeclarationNode * decl_node ) {
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| [4f147cc] | 276 |         return new AttrExpr( var, maybeMoveBuildType( decl_node ) );
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| [9706554] | 277 | }
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 | 278 | 
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| [d1625f8] | 279 | Expression *build_tuple( ExpressionNode * expr_node ) {
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| [9706554] | 280 |         TupleExpr *ret = new TupleExpr();
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| [7ecbb7e] | 281 |         buildMoveList( expr_node, ret->get_exprs() );
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| [9706554] | 282 |         return ret;
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 | 283 | }
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 | 284 | 
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| [d1625f8] | 285 | Expression *build_func( ExpressionNode * function, ExpressionNode * expr_node ) {
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| [7880579] | 286 |         std::list< Expression * > args;
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| [7ecbb7e] | 287 |         buildMoveList( expr_node, args );
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 | 288 |         return new UntypedExpr( maybeMoveBuild< Expression >(function), args, nullptr );
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| [9706554] | 289 | }
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 | 290 | 
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| [d9e2280] | 291 | Expression *build_range( ExpressionNode * low, ExpressionNode *high ) {
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| [7ecbb7e] | 292 |         return new RangeExpr( maybeMoveBuild< Expression >( low ), maybeMoveBuild< Expression >( high ) );
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| [51b73452] | 293 | }
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 | 294 | 
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| [e82aa9df] | 295 | Expression *build_asmexpr( ExpressionNode *inout, ConstantExpr *constraint, ExpressionNode *operand ) {
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| [7ecbb7e] | 296 |         return new AsmExpr( maybeMoveBuild< Expression >( inout ), constraint, maybeMoveBuild< Expression >(operand) );
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| [7f5566b] | 297 | }
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 | 298 | 
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| [d1625f8] | 299 | Expression *build_valexpr( StatementNode *s ) {
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| [7ecbb7e] | 300 |         return new UntypedValofExpr( maybeMoveBuild< Statement >(s), nullptr );
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| [3848e0e] | 301 | }
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| [d1625f8] | 302 | Expression *build_typevalue( DeclarationNode *decl ) {
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| [4f147cc] | 303 |         return new TypeExpr( maybeMoveBuildType( decl ) );
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| [630a82a] | 304 | }
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 | 305 | 
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| [d1625f8] | 306 | Expression *build_compoundLiteral( DeclarationNode *decl_node, InitializerNode *kids ) {
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| [7880579] | 307 |         Declaration * newDecl = maybeBuild< Declaration >(decl_node); // compound literal type
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| [630a82a] | 308 |         if ( DeclarationWithType * newDeclWithType = dynamic_cast< DeclarationWithType * >( newDecl ) ) { // non-sue compound-literal type
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| [7ecbb7e] | 309 |                 return new CompoundLiteralExpr( newDeclWithType->get_type(), maybeMoveBuild< Initializer >(kids) );
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| [630a82a] | 310 |         // these types do not have associated type information
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 | 311 |         } else if ( StructDecl * newDeclStructDecl = dynamic_cast< StructDecl * >( newDecl )  ) {
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| [7ecbb7e] | 312 |                 return new CompoundLiteralExpr( new StructInstType( Type::Qualifiers(), newDeclStructDecl->get_name() ), maybeMoveBuild< Initializer >(kids) );
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| [630a82a] | 313 |         } else if ( UnionDecl * newDeclUnionDecl = dynamic_cast< UnionDecl * >( newDecl )  ) {
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| [7ecbb7e] | 314 |                 return new CompoundLiteralExpr( new UnionInstType( Type::Qualifiers(), newDeclUnionDecl->get_name() ), maybeMoveBuild< Initializer >(kids) );
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| [630a82a] | 315 |         } else if ( EnumDecl * newDeclEnumDecl = dynamic_cast< EnumDecl * >( newDecl )  ) {
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| [7ecbb7e] | 316 |                 return new CompoundLiteralExpr( new EnumInstType( Type::Qualifiers(), newDeclEnumDecl->get_name() ), maybeMoveBuild< Initializer >(kids) );
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| [630a82a] | 317 |         } else {
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 | 318 |                 assert( false );
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 | 319 |         } // if
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 | 320 | }
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 | 321 | 
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| [b87a5ed] | 322 | // Local Variables: //
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 | 323 | // tab-width: 4 //
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 | 324 | // mode: c++ //
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 | 325 | // compile-command: "make install" //
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 | 326 | // End: //
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