1 //===--- Types.cpp - Driver input & temporary type information ------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "clang/Driver/Types.h" 11 #include "llvm/ADT/STLExtras.h" 12 #include "llvm/ADT/StringSwitch.h" 13 #include <cassert> 14 #include <string.h> 15 16 using namespace clang::driver; 17 using namespace clang::driver::types; 18 19 struct TypeInfo { 20 const char *Name; 21 const char *Flags; 22 const char *TempSuffix; 23 ID PreprocessedType; 24 }; 25 26 static const TypeInfo TypeInfos[] = { 27 #define TYPE(NAME, ID, PP_TYPE, TEMP_SUFFIX, FLAGS) \ 28 { NAME, FLAGS, TEMP_SUFFIX, TY_##PP_TYPE, }, 29 #include "clang/Driver/Types.def" 30 #undef TYPE 31 }; 32 static const unsigned numTypes = llvm::array_lengthof(TypeInfos); 33 34 static const TypeInfo &getInfo(unsigned id) { 35 assert(id > 0 && id - 1 < numTypes && "Invalid Type ID."); 36 return TypeInfos[id - 1]; 37 } 38 39 const char *types::getTypeName(ID Id) { 40 return getInfo(Id).Name; 41 } 42 43 types::ID types::getPreprocessedType(ID Id) { 44 return getInfo(Id).PreprocessedType; 45 } 46 47 types::ID types::getPrecompiledType(ID Id) { 48 if (strchr(getInfo(Id).Flags, 'm')) 49 return TY_ModuleFile; 50 if (onlyPrecompileType(Id)) 51 return TY_PCH; 52 return TY_INVALID; 53 } 54 55 const char *types::getTypeTempSuffix(ID Id, bool CLMode) { 56 if (CLMode) { 57 switch (Id) { 58 case TY_Object: 59 case TY_LTO_BC: 60 return "obj"; 61 case TY_Image: 62 return "exe"; 63 case TY_PP_Asm: 64 return "asm"; 65 default: 66 break; 67 } 68 } 69 return getInfo(Id).TempSuffix; 70 } 71 72 bool types::onlyAssembleType(ID Id) { 73 return strchr(getInfo(Id).Flags, 'a'); 74 } 75 76 bool types::onlyPrecompileType(ID Id) { 77 return strchr(getInfo(Id).Flags, 'p'); 78 } 79 80 bool types::canTypeBeUserSpecified(ID Id) { 81 return strchr(getInfo(Id).Flags, 'u'); 82 } 83 84 bool types::appendSuffixForType(ID Id) { 85 return strchr(getInfo(Id).Flags, 'A'); 86 } 87 88 bool types::canLipoType(ID Id) { 89 return (Id == TY_Nothing || 90 Id == TY_Image || 91 Id == TY_Object || 92 Id == TY_LTO_BC); 93 } 94 95 bool types::isAcceptedByClang(ID Id) { 96 switch (Id) { 97 default: 98 return false; 99 100 case TY_Asm: 101 case TY_C: case TY_PP_C: 102 case TY_CL: 103 case TY_CUDA: case TY_PP_CUDA: 104 case TY_CUDA_DEVICE: 105 case TY_ObjC: case TY_PP_ObjC: case TY_PP_ObjC_Alias: 106 case TY_CXX: case TY_PP_CXX: 107 case TY_ObjCXX: case TY_PP_ObjCXX: case TY_PP_ObjCXX_Alias: 108 case TY_CHeader: case TY_PP_CHeader: 109 case TY_CLHeader: 110 case TY_ObjCHeader: case TY_PP_ObjCHeader: 111 case TY_CXXHeader: case TY_PP_CXXHeader: 112 case TY_ObjCXXHeader: case TY_PP_ObjCXXHeader: 113 case TY_CXXModule: case TY_PP_CXXModule: 114 case TY_AST: case TY_ModuleFile: 115 case TY_LLVM_IR: case TY_LLVM_BC: 116 return true; 117 } 118 } 119 120 bool types::isObjC(ID Id) { 121 switch (Id) { 122 default: 123 return false; 124 125 case TY_ObjC: case TY_PP_ObjC: case TY_PP_ObjC_Alias: 126 case TY_ObjCXX: case TY_PP_ObjCXX: 127 case TY_ObjCHeader: case TY_PP_ObjCHeader: 128 case TY_ObjCXXHeader: case TY_PP_ObjCXXHeader: case TY_PP_ObjCXX_Alias: 129 return true; 130 } 131 } 132 133 bool types::isCXX(ID Id) { 134 switch (Id) { 135 default: 136 return false; 137 138 case TY_CXX: case TY_PP_CXX: 139 case TY_ObjCXX: case TY_PP_ObjCXX: case TY_PP_ObjCXX_Alias: 140 case TY_CXXHeader: case TY_PP_CXXHeader: 141 case TY_ObjCXXHeader: case TY_PP_ObjCXXHeader: 142 case TY_CXXModule: case TY_PP_CXXModule: 143 case TY_CUDA: case TY_PP_CUDA: case TY_CUDA_DEVICE: 144 return true; 145 } 146 } 147 148 bool types::isLLVMIR(ID Id) { 149 switch (Id) { 150 default: 151 return false; 152 153 case TY_LLVM_IR: 154 case TY_LLVM_BC: 155 case TY_LTO_IR: 156 case TY_LTO_BC: 157 return true; 158 } 159 } 160 161 bool types::isCuda(ID Id) { 162 switch (Id) { 163 default: 164 return false; 165 166 case TY_CUDA: 167 case TY_PP_CUDA: 168 case TY_CUDA_DEVICE: 169 return true; 170 } 171 } 172 173 types::ID types::lookupTypeForExtension(llvm::StringRef Ext) { 174 return llvm::StringSwitch<types::ID>(Ext) 175 .Case("c", TY_C) 176 .Case("C", TY_CXX) 177 .Case("F", TY_Fortran) 178 .Case("f", TY_PP_Fortran) 179 .Case("h", TY_CHeader) 180 .Case("H", TY_CXXHeader) 181 .Case("i", TY_PP_C) 182 .Case("m", TY_ObjC) 183 .Case("M", TY_ObjCXX) 184 .Case("o", TY_Object) 185 .Case("S", TY_Asm) 186 .Case("s", TY_PP_Asm) 187 .Case("bc", TY_LLVM_BC) 188 .Case("cc", TY_CXX) 189 .Case("CC", TY_CXX) 190 .Case("cl", TY_CL) 191 .Case("cp", TY_CXX) 192 .Case("cu", TY_CUDA) 193 .Case("hh", TY_CXXHeader) 194 .Case("ii", TY_PP_CXX) 195 .Case("ll", TY_LLVM_IR) 196 .Case("mi", TY_PP_ObjC) 197 .Case("mm", TY_ObjCXX) 198 .Case("rs", TY_RenderScript) 199 .Case("adb", TY_Ada) 200 .Case("ads", TY_Ada) 201 .Case("asm", TY_PP_Asm) 202 .Case("ast", TY_AST) 203 .Case("ccm", TY_CXXModule) 204 .Case("cpp", TY_CXX) 205 .Case("CPP", TY_CXX) 206 .Case("c++", TY_CXX) 207 .Case("C++", TY_CXX) 208 .Case("cui", TY_PP_CUDA) 209 .Case("cxx", TY_CXX) 210 .Case("CXX", TY_CXX) 211 .Case("F90", TY_Fortran) 212 .Case("f90", TY_PP_Fortran) 213 .Case("F95", TY_Fortran) 214 .Case("f95", TY_PP_Fortran) 215 .Case("for", TY_PP_Fortran) 216 .Case("FOR", TY_PP_Fortran) 217 .Case("fpp", TY_Fortran) 218 .Case("FPP", TY_Fortran) 219 .Case("gch", TY_PCH) 220 .Case("hpp", TY_CXXHeader) 221 .Case("iim", TY_PP_CXXModule) 222 .Case("lib", TY_Object) 223 .Case("mii", TY_PP_ObjCXX) 224 .Case("obj", TY_Object) 225 .Case("pch", TY_PCH) 226 .Case("pcm", TY_ModuleFile) 227 .Case("c++m", TY_CXXModule) 228 .Case("cppm", TY_CXXModule) 229 .Case("cxxm", TY_CXXModule) 230 .Default(TY_INVALID); 231 } 232 233 types::ID types::lookupTypeForTypeSpecifier(const char *Name) { 234 for (unsigned i=0; i<numTypes; ++i) { 235 types::ID Id = (types::ID) (i + 1); 236 if (canTypeBeUserSpecified(Id) && 237 strcmp(Name, getInfo(Id).Name) == 0) 238 return Id; 239 } 240 241 return TY_INVALID; 242 } 243 244 // FIXME: Why don't we just put this list in the defs file, eh. 245 void types::getCompilationPhases(ID Id, llvm::SmallVectorImpl<phases::ID> &P) { 246 if (Id != TY_Object) { 247 if (getPreprocessedType(Id) != TY_INVALID) { 248 P.push_back(phases::Preprocess); 249 } 250 251 if (getPrecompiledType(Id) != TY_INVALID) { 252 P.push_back(phases::Precompile); 253 } 254 255 if (!onlyPrecompileType(Id)) { 256 if (!onlyAssembleType(Id)) { 257 P.push_back(phases::Compile); 258 P.push_back(phases::Backend); 259 } 260 P.push_back(phases::Assemble); 261 } 262 } 263 264 if (!onlyPrecompileType(Id)) { 265 P.push_back(phases::Link); 266 } 267 assert(0 < P.size() && "Not enough phases in list"); 268 assert(P.size() <= phases::MaxNumberOfPhases && "Too many phases in list"); 269 } 270 271 ID types::lookupCXXTypeForCType(ID Id) { 272 switch (Id) { 273 default: 274 return Id; 275 276 case types::TY_C: 277 return types::TY_CXX; 278 case types::TY_PP_C: 279 return types::TY_PP_CXX; 280 case types::TY_CHeader: 281 return types::TY_CXXHeader; 282 case types::TY_PP_CHeader: 283 return types::TY_PP_CXXHeader; 284 } 285 } 286 287 ID types::lookupHeaderTypeForSourceType(ID Id) { 288 switch (Id) { 289 default: 290 return Id; 291 292 case types::TY_C: 293 return types::TY_CHeader; 294 case types::TY_CXX: 295 return types::TY_CXXHeader; 296 case types::TY_ObjC: 297 return types::TY_ObjCHeader; 298 case types::TY_ObjCXX: 299 return types::TY_ObjCXXHeader; 300 case types::TY_CL: 301 return types::TY_CLHeader; 302 } 303 } 304