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14 | pmbaty | 1 | //===--- Specifiers.h - Declaration and Type Specifiers ---------*- C++ -*-===// |
2 | // |
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3 | // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
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4 | // See https://llvm.org/LICENSE.txt for license information. |
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5 | // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception |
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6 | // |
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7 | //===----------------------------------------------------------------------===// |
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8 | /// |
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9 | /// \file |
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10 | /// Defines various enumerations that describe declaration and |
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11 | /// type specifiers. |
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12 | /// |
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13 | //===----------------------------------------------------------------------===// |
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14 | |||
15 | #ifndef LLVM_CLANG_BASIC_SPECIFIERS_H |
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16 | #define LLVM_CLANG_BASIC_SPECIFIERS_H |
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17 | |||
18 | #include "llvm/ADT/StringRef.h" |
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19 | #include "llvm/Support/DataTypes.h" |
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20 | #include "llvm/Support/ErrorHandling.h" |
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21 | |||
22 | namespace clang { |
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23 | |||
24 | /// Define the meaning of possible values of the kind in ExplicitSpecifier. |
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25 | enum class ExplicitSpecKind : unsigned { |
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26 | ResolvedFalse, |
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27 | ResolvedTrue, |
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28 | Unresolved, |
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29 | }; |
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30 | |||
31 | /// Define the kind of constexpr specifier. |
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32 | enum class ConstexprSpecKind { Unspecified, Constexpr, Consteval, Constinit }; |
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33 | |||
34 | /// In an if statement, this denotes whether the statement is |
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35 | /// a constexpr or consteval if statement. |
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36 | enum class IfStatementKind : unsigned { |
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37 | Ordinary, |
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38 | Constexpr, |
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39 | ConstevalNonNegated, |
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40 | ConstevalNegated |
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41 | }; |
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42 | |||
43 | /// Specifies the width of a type, e.g., short, long, or long long. |
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44 | enum class TypeSpecifierWidth { Unspecified, Short, Long, LongLong }; |
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45 | |||
46 | /// Specifies the signedness of a type, e.g., signed or unsigned. |
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47 | enum class TypeSpecifierSign { Unspecified, Signed, Unsigned }; |
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48 | |||
49 | enum class TypeSpecifiersPipe { Unspecified, Pipe }; |
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50 | |||
51 | /// Specifies the kind of type. |
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52 | enum TypeSpecifierType { |
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53 | TST_unspecified, |
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54 | TST_void, |
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55 | TST_char, |
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56 | TST_wchar, // C++ wchar_t |
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57 | TST_char8, // C++20 char8_t (proposed) |
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58 | TST_char16, // C++11 char16_t |
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59 | TST_char32, // C++11 char32_t |
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60 | TST_int, |
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61 | TST_int128, |
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62 | TST_bitint, // Bit-precise integer types. |
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63 | TST_half, // OpenCL half, ARM NEON __fp16 |
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64 | TST_Float16, // C11 extension ISO/IEC TS 18661-3 |
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65 | TST_Accum, // ISO/IEC JTC1 SC22 WG14 N1169 Extension |
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66 | TST_Fract, |
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67 | TST_BFloat16, |
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68 | TST_float, |
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69 | TST_double, |
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70 | TST_float128, |
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71 | TST_ibm128, |
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72 | TST_bool, // _Bool |
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73 | TST_decimal32, // _Decimal32 |
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74 | TST_decimal64, // _Decimal64 |
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75 | TST_decimal128, // _Decimal128 |
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76 | TST_enum, |
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77 | TST_union, |
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78 | TST_struct, |
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79 | TST_class, // C++ class type |
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80 | TST_interface, // C++ (Microsoft-specific) __interface type |
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81 | TST_typename, // Typedef, C++ class-name or enum name, etc. |
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82 | TST_typeofType, // C2x (and GNU extension) typeof(type-name) |
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83 | TST_typeofExpr, // C2x (and GNU extension) typeof(expression) |
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84 | TST_typeof_unqualType, // C2x typeof_unqual(type-name) |
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85 | TST_typeof_unqualExpr, // C2x typeof_unqual(expression) |
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86 | TST_decltype, // C++11 decltype |
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87 | #define TRANSFORM_TYPE_TRAIT_DEF(_, Trait) TST_##Trait, |
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88 | #include "clang/Basic/TransformTypeTraits.def" |
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89 | TST_auto, // C++11 auto |
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90 | TST_decltype_auto, // C++1y decltype(auto) |
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91 | TST_auto_type, // __auto_type extension |
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92 | TST_unknown_anytype, // __unknown_anytype extension |
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93 | TST_atomic, // C11 _Atomic |
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94 | #define GENERIC_IMAGE_TYPE(ImgType, Id) TST_##ImgType##_t, // OpenCL image types |
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95 | #include "clang/Basic/OpenCLImageTypes.def" |
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96 | TST_error // erroneous type |
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97 | }; |
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98 | |||
99 | /// Structure that packs information about the type specifiers that |
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100 | /// were written in a particular type specifier sequence. |
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101 | struct WrittenBuiltinSpecs { |
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102 | static_assert(TST_error < 1 << 7, "Type bitfield not wide enough for TST"); |
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103 | /*DeclSpec::TST*/ unsigned Type : 7; |
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104 | /*DeclSpec::TSS*/ unsigned Sign : 2; |
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105 | /*TypeSpecifierWidth*/ unsigned Width : 2; |
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106 | unsigned ModeAttr : 1; |
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107 | }; |
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108 | |||
109 | /// A C++ access specifier (public, private, protected), plus the |
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110 | /// special value "none" which means different things in different contexts. |
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111 | enum AccessSpecifier { |
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112 | AS_public, |
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113 | AS_protected, |
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114 | AS_private, |
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115 | AS_none |
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116 | }; |
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117 | |||
118 | /// The categorization of expression values, currently following the |
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119 | /// C++11 scheme. |
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120 | enum ExprValueKind { |
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121 | /// A pr-value expression (in the C++11 taxonomy) |
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122 | /// produces a temporary value. |
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123 | VK_PRValue, |
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124 | |||
125 | /// An l-value expression is a reference to an object with |
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126 | /// independent storage. |
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127 | VK_LValue, |
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128 | |||
129 | /// An x-value expression is a reference to an object with |
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130 | /// independent storage but which can be "moved", i.e. |
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131 | /// efficiently cannibalized for its resources. |
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132 | VK_XValue |
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133 | }; |
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134 | |||
135 | /// A further classification of the kind of object referenced by an |
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136 | /// l-value or x-value. |
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137 | enum ExprObjectKind { |
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138 | /// An ordinary object is located at an address in memory. |
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139 | OK_Ordinary, |
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140 | |||
141 | /// A bitfield object is a bitfield on a C or C++ record. |
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142 | OK_BitField, |
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143 | |||
144 | /// A vector component is an element or range of elements on a vector. |
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145 | OK_VectorComponent, |
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146 | |||
147 | /// An Objective-C property is a logical field of an Objective-C |
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148 | /// object which is read and written via Objective-C method calls. |
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149 | OK_ObjCProperty, |
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150 | |||
151 | /// An Objective-C array/dictionary subscripting which reads an |
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152 | /// object or writes at the subscripted array/dictionary element via |
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153 | /// Objective-C method calls. |
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154 | OK_ObjCSubscript, |
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155 | |||
156 | /// A matrix component is a single element of a matrix. |
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157 | OK_MatrixComponent |
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158 | }; |
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159 | |||
160 | /// The reason why a DeclRefExpr does not constitute an odr-use. |
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161 | enum NonOdrUseReason { |
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162 | /// This is an odr-use. |
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163 | NOUR_None = 0, |
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164 | /// This name appears in an unevaluated operand. |
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165 | NOUR_Unevaluated, |
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166 | /// This name appears as a potential result of an lvalue-to-rvalue |
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167 | /// conversion that is a constant expression. |
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168 | NOUR_Constant, |
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169 | /// This name appears as a potential result of a discarded value |
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170 | /// expression. |
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171 | NOUR_Discarded, |
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172 | }; |
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173 | |||
174 | /// Describes the kind of template specialization that a |
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175 | /// particular template specialization declaration represents. |
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176 | enum TemplateSpecializationKind { |
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177 | /// This template specialization was formed from a template-id but |
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178 | /// has not yet been declared, defined, or instantiated. |
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179 | TSK_Undeclared = 0, |
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180 | /// This template specialization was implicitly instantiated from a |
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181 | /// template. (C++ [temp.inst]). |
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182 | TSK_ImplicitInstantiation, |
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183 | /// This template specialization was declared or defined by an |
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184 | /// explicit specialization (C++ [temp.expl.spec]) or partial |
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185 | /// specialization (C++ [temp.class.spec]). |
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186 | TSK_ExplicitSpecialization, |
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187 | /// This template specialization was instantiated from a template |
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188 | /// due to an explicit instantiation declaration request |
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189 | /// (C++11 [temp.explicit]). |
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190 | TSK_ExplicitInstantiationDeclaration, |
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191 | /// This template specialization was instantiated from a template |
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192 | /// due to an explicit instantiation definition request |
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193 | /// (C++ [temp.explicit]). |
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194 | TSK_ExplicitInstantiationDefinition |
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195 | }; |
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196 | |||
197 | /// Determine whether this template specialization kind refers |
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198 | /// to an instantiation of an entity (as opposed to a non-template or |
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199 | /// an explicit specialization). |
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200 | inline bool isTemplateInstantiation(TemplateSpecializationKind Kind) { |
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201 | return Kind != TSK_Undeclared && Kind != TSK_ExplicitSpecialization; |
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202 | } |
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203 | |||
204 | /// True if this template specialization kind is an explicit |
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205 | /// specialization, explicit instantiation declaration, or explicit |
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206 | /// instantiation definition. |
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207 | inline bool isTemplateExplicitInstantiationOrSpecialization( |
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208 | TemplateSpecializationKind Kind) { |
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209 | switch (Kind) { |
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210 | case TSK_ExplicitSpecialization: |
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211 | case TSK_ExplicitInstantiationDeclaration: |
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212 | case TSK_ExplicitInstantiationDefinition: |
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213 | return true; |
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214 | |||
215 | case TSK_Undeclared: |
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216 | case TSK_ImplicitInstantiation: |
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217 | return false; |
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218 | } |
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219 | llvm_unreachable("bad template specialization kind"); |
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220 | } |
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221 | |||
222 | /// Thread storage-class-specifier. |
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223 | enum ThreadStorageClassSpecifier { |
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224 | TSCS_unspecified, |
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225 | /// GNU __thread. |
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226 | TSCS___thread, |
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227 | /// C++11 thread_local. Implies 'static' at block scope, but not at |
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228 | /// class scope. |
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229 | TSCS_thread_local, |
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230 | /// C11 _Thread_local. Must be combined with either 'static' or 'extern' |
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231 | /// if used at block scope. |
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232 | TSCS__Thread_local |
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233 | }; |
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234 | |||
235 | /// Storage classes. |
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236 | enum StorageClass { |
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237 | // These are legal on both functions and variables. |
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238 | SC_None, |
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239 | SC_Extern, |
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240 | SC_Static, |
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241 | SC_PrivateExtern, |
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242 | |||
243 | // These are only legal on variables. |
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244 | SC_Auto, |
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245 | SC_Register |
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246 | }; |
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247 | |||
248 | /// Checks whether the given storage class is legal for functions. |
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249 | inline bool isLegalForFunction(StorageClass SC) { |
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250 | return SC <= SC_PrivateExtern; |
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251 | } |
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252 | |||
253 | /// Checks whether the given storage class is legal for variables. |
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254 | inline bool isLegalForVariable(StorageClass SC) { |
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255 | return true; |
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256 | } |
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257 | |||
258 | /// In-class initialization styles for non-static data members. |
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259 | enum InClassInitStyle { |
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260 | ICIS_NoInit, ///< No in-class initializer. |
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261 | ICIS_CopyInit, ///< Copy initialization. |
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262 | ICIS_ListInit ///< Direct list-initialization. |
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263 | }; |
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264 | |||
265 | /// CallingConv - Specifies the calling convention that a function uses. |
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266 | enum CallingConv { |
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267 | CC_C, // __attribute__((cdecl)) |
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268 | CC_X86StdCall, // __attribute__((stdcall)) |
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269 | CC_X86FastCall, // __attribute__((fastcall)) |
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270 | CC_X86ThisCall, // __attribute__((thiscall)) |
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271 | CC_X86VectorCall, // __attribute__((vectorcall)) |
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272 | CC_X86Pascal, // __attribute__((pascal)) |
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273 | CC_Win64, // __attribute__((ms_abi)) |
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274 | CC_X86_64SysV, // __attribute__((sysv_abi)) |
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275 | CC_X86RegCall, // __attribute__((regcall)) |
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276 | CC_AAPCS, // __attribute__((pcs("aapcs"))) |
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277 | CC_AAPCS_VFP, // __attribute__((pcs("aapcs-vfp"))) |
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278 | CC_IntelOclBicc, // __attribute__((intel_ocl_bicc)) |
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279 | CC_SpirFunction, // default for OpenCL functions on SPIR target |
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280 | CC_OpenCLKernel, // inferred for OpenCL kernels |
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281 | CC_Swift, // __attribute__((swiftcall)) |
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282 | CC_SwiftAsync, // __attribute__((swiftasynccall)) |
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283 | CC_PreserveMost, // __attribute__((preserve_most)) |
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284 | CC_PreserveAll, // __attribute__((preserve_all)) |
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285 | CC_AArch64VectorCall, // __attribute__((aarch64_vector_pcs)) |
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286 | CC_AArch64SVEPCS, // __attribute__((aarch64_sve_pcs)) |
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287 | CC_AMDGPUKernelCall, // __attribute__((amdgpu_kernel)) |
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288 | }; |
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289 | |||
290 | /// Checks whether the given calling convention supports variadic |
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291 | /// calls. Unprototyped calls also use the variadic call rules. |
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292 | inline bool supportsVariadicCall(CallingConv CC) { |
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293 | switch (CC) { |
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294 | case CC_X86StdCall: |
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295 | case CC_X86FastCall: |
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296 | case CC_X86ThisCall: |
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297 | case CC_X86RegCall: |
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298 | case CC_X86Pascal: |
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299 | case CC_X86VectorCall: |
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300 | case CC_SpirFunction: |
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301 | case CC_OpenCLKernel: |
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302 | case CC_Swift: |
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303 | case CC_SwiftAsync: |
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304 | return false; |
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305 | default: |
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306 | return true; |
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307 | } |
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308 | } |
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309 | |||
310 | /// The storage duration for an object (per C++ [basic.stc]). |
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311 | enum StorageDuration { |
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312 | SD_FullExpression, ///< Full-expression storage duration (for temporaries). |
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313 | SD_Automatic, ///< Automatic storage duration (most local variables). |
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314 | SD_Thread, ///< Thread storage duration. |
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315 | SD_Static, ///< Static storage duration. |
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316 | SD_Dynamic ///< Dynamic storage duration. |
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317 | }; |
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318 | |||
319 | /// Describes the nullability of a particular type. |
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320 | enum class NullabilityKind : uint8_t { |
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321 | /// Values of this type can never be null. |
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322 | NonNull = 0, |
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323 | /// Values of this type can be null. |
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324 | Nullable, |
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325 | /// Whether values of this type can be null is (explicitly) |
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326 | /// unspecified. This captures a (fairly rare) case where we |
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327 | /// can't conclude anything about the nullability of the type even |
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328 | /// though it has been considered. |
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329 | Unspecified, |
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330 | // Generally behaves like Nullable, except when used in a block parameter |
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331 | // that was imported into a swift async method. There, swift will assume |
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332 | // that the parameter can get null even if no error occurred. _Nullable |
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333 | // parameters are assumed to only get null on error. |
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334 | NullableResult, |
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335 | }; |
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336 | |||
337 | /// Return true if \p L has a weaker nullability annotation than \p R. The |
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338 | /// ordering is: Unspecified < Nullable < NonNull. |
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339 | inline bool hasWeakerNullability(NullabilityKind L, NullabilityKind R) { |
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340 | return uint8_t(L) > uint8_t(R); |
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341 | } |
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342 | |||
343 | /// Retrieve the spelling of the given nullability kind. |
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344 | llvm::StringRef getNullabilitySpelling(NullabilityKind kind, |
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345 | bool isContextSensitive = false); |
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346 | |||
347 | /// Kinds of parameter ABI. |
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348 | enum class ParameterABI { |
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349 | /// This parameter uses ordinary ABI rules for its type. |
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350 | Ordinary, |
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351 | |||
352 | /// This parameter (which must have pointer type) is a Swift |
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353 | /// indirect result parameter. |
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354 | SwiftIndirectResult, |
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355 | |||
356 | /// This parameter (which must have pointer-to-pointer type) uses |
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357 | /// the special Swift error-result ABI treatment. There can be at |
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358 | /// most one parameter on a given function that uses this treatment. |
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359 | SwiftErrorResult, |
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360 | |||
361 | /// This parameter (which must have pointer type) uses the special |
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362 | /// Swift context-pointer ABI treatment. There can be at |
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363 | /// most one parameter on a given function that uses this treatment. |
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364 | SwiftContext, |
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365 | |||
366 | /// This parameter (which must have pointer type) uses the special |
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367 | /// Swift asynchronous context-pointer ABI treatment. There can be at |
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368 | /// most one parameter on a given function that uses this treatment. |
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369 | SwiftAsyncContext, |
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370 | }; |
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371 | |||
372 | /// Assigned inheritance model for a class in the MS C++ ABI. Must match order |
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373 | /// of spellings in MSInheritanceAttr. |
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374 | enum class MSInheritanceModel { |
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375 | Single = 0, |
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376 | Multiple = 1, |
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377 | Virtual = 2, |
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378 | Unspecified = 3, |
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379 | }; |
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380 | |||
381 | llvm::StringRef getParameterABISpelling(ParameterABI kind); |
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382 | |||
383 | inline llvm::StringRef getAccessSpelling(AccessSpecifier AS) { |
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384 | switch (AS) { |
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385 | case AccessSpecifier::AS_public: |
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386 | return "public"; |
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387 | case AccessSpecifier::AS_protected: |
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388 | return "protected"; |
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389 | case AccessSpecifier::AS_private: |
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390 | return "private"; |
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391 | case AccessSpecifier::AS_none: |
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392 | return {}; |
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393 | } |
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394 | llvm_unreachable("Unknown AccessSpecifier"); |
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395 | } |
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396 | } // end namespace clang |
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397 | |||
398 | #endif // LLVM_CLANG_BASIC_SPECIFIERS_H |