InitPreprocessor.cpp 32 KB

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  1. //===--- InitPreprocessor.cpp - PP initialization code. ---------*- C++ -*-===//
  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. // This file implements the clang::InitializePreprocessor function.
  11. //
  12. //===----------------------------------------------------------------------===//
  13. #include "clang/Basic/Version.h"
  14. #include "clang/Frontend/Utils.h"
  15. #include "clang/Basic/MacroBuilder.h"
  16. #include "clang/Basic/TargetInfo.h"
  17. #include "clang/Frontend/FrontendDiagnostic.h"
  18. #include "clang/Frontend/FrontendOptions.h"
  19. #include "clang/Lex/HeaderSearch.h"
  20. #include "clang/Lex/Preprocessor.h"
  21. #include "clang/Lex/PreprocessorOptions.h"
  22. #include "clang/Basic/FileManager.h"
  23. #include "clang/Basic/SourceManager.h"
  24. #include "clang/Serialization/ASTReader.h"
  25. #include "llvm/ADT/APFloat.h"
  26. #include "llvm/Support/FileSystem.h"
  27. #include "llvm/Support/MemoryBuffer.h"
  28. #include "llvm/Support/Path.h"
  29. using namespace clang;
  30. // Append a #define line to Buf for Macro. Macro should be of the form XXX,
  31. // in which case we emit "#define XXX 1" or "XXX=Y z W" in which case we emit
  32. // "#define XXX Y z W". To get a #define with no value, use "XXX=".
  33. static void DefineBuiltinMacro(MacroBuilder &Builder, StringRef Macro,
  34. DiagnosticsEngine &Diags) {
  35. std::pair<StringRef, StringRef> MacroPair = Macro.split('=');
  36. StringRef MacroName = MacroPair.first;
  37. StringRef MacroBody = MacroPair.second;
  38. if (MacroName.size() != Macro.size()) {
  39. // Per GCC -D semantics, the macro ends at \n if it exists.
  40. StringRef::size_type End = MacroBody.find_first_of("\n\r");
  41. if (End != StringRef::npos)
  42. Diags.Report(diag::warn_fe_macro_contains_embedded_newline)
  43. << MacroName;
  44. Builder.defineMacro(MacroName, MacroBody.substr(0, End));
  45. } else {
  46. // Push "macroname 1".
  47. Builder.defineMacro(Macro);
  48. }
  49. }
  50. /// AddImplicitInclude - Add an implicit \#include of the specified file to the
  51. /// predefines buffer.
  52. static void AddImplicitInclude(MacroBuilder &Builder, StringRef File,
  53. FileManager &FileMgr) {
  54. Builder.append(Twine("#include \"") +
  55. HeaderSearch::NormalizeDashIncludePath(File, FileMgr) + "\"");
  56. }
  57. static void AddImplicitIncludeMacros(MacroBuilder &Builder,
  58. StringRef File,
  59. FileManager &FileMgr) {
  60. Builder.append(Twine("#__include_macros \"") +
  61. HeaderSearch::NormalizeDashIncludePath(File, FileMgr) + "\"");
  62. // Marker token to stop the __include_macros fetch loop.
  63. Builder.append("##"); // ##?
  64. }
  65. /// AddImplicitIncludePTH - Add an implicit \#include using the original file
  66. /// used to generate a PTH cache.
  67. static void AddImplicitIncludePTH(MacroBuilder &Builder, Preprocessor &PP,
  68. StringRef ImplicitIncludePTH) {
  69. PTHManager *P = PP.getPTHManager();
  70. // Null check 'P' in the corner case where it couldn't be created.
  71. const char *OriginalFile = P ? P->getOriginalSourceFile() : 0;
  72. if (!OriginalFile) {
  73. PP.getDiagnostics().Report(diag::err_fe_pth_file_has_no_source_header)
  74. << ImplicitIncludePTH;
  75. return;
  76. }
  77. AddImplicitInclude(Builder, OriginalFile, PP.getFileManager());
  78. }
  79. /// \brief Add an implicit \#include using the original file used to generate
  80. /// a PCH file.
  81. static void AddImplicitIncludePCH(MacroBuilder &Builder, Preprocessor &PP,
  82. StringRef ImplicitIncludePCH) {
  83. std::string OriginalFile =
  84. ASTReader::getOriginalSourceFile(ImplicitIncludePCH, PP.getFileManager(),
  85. PP.getDiagnostics());
  86. if (OriginalFile.empty())
  87. return;
  88. AddImplicitInclude(Builder, OriginalFile, PP.getFileManager());
  89. }
  90. /// PickFP - This is used to pick a value based on the FP semantics of the
  91. /// specified FP model.
  92. template <typename T>
  93. static T PickFP(const llvm::fltSemantics *Sem, T IEEESingleVal,
  94. T IEEEDoubleVal, T X87DoubleExtendedVal, T PPCDoubleDoubleVal,
  95. T IEEEQuadVal) {
  96. if (Sem == (const llvm::fltSemantics*)&llvm::APFloat::IEEEsingle)
  97. return IEEESingleVal;
  98. if (Sem == (const llvm::fltSemantics*)&llvm::APFloat::IEEEdouble)
  99. return IEEEDoubleVal;
  100. if (Sem == (const llvm::fltSemantics*)&llvm::APFloat::x87DoubleExtended)
  101. return X87DoubleExtendedVal;
  102. if (Sem == (const llvm::fltSemantics*)&llvm::APFloat::PPCDoubleDouble)
  103. return PPCDoubleDoubleVal;
  104. assert(Sem == (const llvm::fltSemantics*)&llvm::APFloat::IEEEquad);
  105. return IEEEQuadVal;
  106. }
  107. static void DefineFloatMacros(MacroBuilder &Builder, StringRef Prefix,
  108. const llvm::fltSemantics *Sem) {
  109. const char *DenormMin, *Epsilon, *Max, *Min;
  110. DenormMin = PickFP(Sem, "1.40129846e-45F", "4.9406564584124654e-324",
  111. "3.64519953188247460253e-4951L",
  112. "4.94065645841246544176568792868221e-324L",
  113. "6.47517511943802511092443895822764655e-4966L");
  114. int Digits = PickFP(Sem, 6, 15, 18, 31, 33);
  115. Epsilon = PickFP(Sem, "1.19209290e-7F", "2.2204460492503131e-16",
  116. "1.08420217248550443401e-19L",
  117. "4.94065645841246544176568792868221e-324L",
  118. "1.92592994438723585305597794258492732e-34L");
  119. int MantissaDigits = PickFP(Sem, 24, 53, 64, 106, 113);
  120. int Min10Exp = PickFP(Sem, -37, -307, -4931, -291, -4931);
  121. int Max10Exp = PickFP(Sem, 38, 308, 4932, 308, 4932);
  122. int MinExp = PickFP(Sem, -125, -1021, -16381, -968, -16381);
  123. int MaxExp = PickFP(Sem, 128, 1024, 16384, 1024, 16384);
  124. Min = PickFP(Sem, "1.17549435e-38F", "2.2250738585072014e-308",
  125. "3.36210314311209350626e-4932L",
  126. "2.00416836000897277799610805135016e-292L",
  127. "3.36210314311209350626267781732175260e-4932L");
  128. Max = PickFP(Sem, "3.40282347e+38F", "1.7976931348623157e+308",
  129. "1.18973149535723176502e+4932L",
  130. "1.79769313486231580793728971405301e+308L",
  131. "1.18973149535723176508575932662800702e+4932L");
  132. SmallString<32> DefPrefix;
  133. DefPrefix = "__";
  134. DefPrefix += Prefix;
  135. DefPrefix += "_";
  136. Builder.defineMacro(DefPrefix + "DENORM_MIN__", DenormMin);
  137. Builder.defineMacro(DefPrefix + "HAS_DENORM__");
  138. Builder.defineMacro(DefPrefix + "DIG__", Twine(Digits));
  139. Builder.defineMacro(DefPrefix + "EPSILON__", Twine(Epsilon));
  140. Builder.defineMacro(DefPrefix + "HAS_INFINITY__");
  141. Builder.defineMacro(DefPrefix + "HAS_QUIET_NAN__");
  142. Builder.defineMacro(DefPrefix + "MANT_DIG__", Twine(MantissaDigits));
  143. Builder.defineMacro(DefPrefix + "MAX_10_EXP__", Twine(Max10Exp));
  144. Builder.defineMacro(DefPrefix + "MAX_EXP__", Twine(MaxExp));
  145. Builder.defineMacro(DefPrefix + "MAX__", Twine(Max));
  146. Builder.defineMacro(DefPrefix + "MIN_10_EXP__","("+Twine(Min10Exp)+")");
  147. Builder.defineMacro(DefPrefix + "MIN_EXP__", "("+Twine(MinExp)+")");
  148. Builder.defineMacro(DefPrefix + "MIN__", Twine(Min));
  149. }
  150. /// DefineTypeSize - Emit a macro to the predefines buffer that declares a macro
  151. /// named MacroName with the max value for a type with width 'TypeWidth' a
  152. /// signedness of 'isSigned' and with a value suffix of 'ValSuffix' (e.g. LL).
  153. static void DefineTypeSize(StringRef MacroName, unsigned TypeWidth,
  154. StringRef ValSuffix, bool isSigned,
  155. MacroBuilder &Builder) {
  156. llvm::APInt MaxVal = isSigned ? llvm::APInt::getSignedMaxValue(TypeWidth)
  157. : llvm::APInt::getMaxValue(TypeWidth);
  158. Builder.defineMacro(MacroName, MaxVal.toString(10, isSigned) + ValSuffix);
  159. }
  160. /// DefineTypeSize - An overloaded helper that uses TargetInfo to determine
  161. /// the width, suffix, and signedness of the given type
  162. static void DefineTypeSize(StringRef MacroName, TargetInfo::IntType Ty,
  163. const TargetInfo &TI, MacroBuilder &Builder) {
  164. DefineTypeSize(MacroName, TI.getTypeWidth(Ty), TI.getTypeConstantSuffix(Ty),
  165. TI.isTypeSigned(Ty), Builder);
  166. }
  167. static void DefineType(const Twine &MacroName, TargetInfo::IntType Ty,
  168. MacroBuilder &Builder) {
  169. Builder.defineMacro(MacroName, TargetInfo::getTypeName(Ty));
  170. }
  171. static void DefineTypeWidth(StringRef MacroName, TargetInfo::IntType Ty,
  172. const TargetInfo &TI, MacroBuilder &Builder) {
  173. Builder.defineMacro(MacroName, Twine(TI.getTypeWidth(Ty)));
  174. }
  175. static void DefineTypeSizeof(StringRef MacroName, unsigned BitWidth,
  176. const TargetInfo &TI, MacroBuilder &Builder) {
  177. Builder.defineMacro(MacroName,
  178. Twine(BitWidth / TI.getCharWidth()));
  179. }
  180. static void DefineExactWidthIntType(TargetInfo::IntType Ty,
  181. const TargetInfo &TI, MacroBuilder &Builder) {
  182. int TypeWidth = TI.getTypeWidth(Ty);
  183. // Use the target specified int64 type, when appropriate, so that [u]int64_t
  184. // ends up being defined in terms of the correct type.
  185. if (TypeWidth == 64)
  186. Ty = TI.getInt64Type();
  187. DefineType("__INT" + Twine(TypeWidth) + "_TYPE__", Ty, Builder);
  188. StringRef ConstSuffix(TargetInfo::getTypeConstantSuffix(Ty));
  189. if (!ConstSuffix.empty())
  190. Builder.defineMacro("__INT" + Twine(TypeWidth) + "_C_SUFFIX__",
  191. ConstSuffix);
  192. }
  193. /// Get the value the ATOMIC_*_LOCK_FREE macro should have for a type with
  194. /// the specified properties.
  195. static const char *getLockFreeValue(unsigned TypeWidth, unsigned TypeAlign,
  196. unsigned InlineWidth) {
  197. // Fully-aligned, power-of-2 sizes no larger than the inline
  198. // width will be inlined as lock-free operations.
  199. if (TypeWidth == TypeAlign && (TypeWidth & (TypeWidth - 1)) == 0 &&
  200. TypeWidth <= InlineWidth)
  201. return "2"; // "always lock free"
  202. // We cannot be certain what operations the lib calls might be
  203. // able to implement as lock-free on future processors.
  204. return "1"; // "sometimes lock free"
  205. }
  206. /// \brief Add definitions required for a smooth interaction between
  207. /// Objective-C++ automated reference counting and libstdc++ (4.2).
  208. static void AddObjCXXARCLibstdcxxDefines(const LangOptions &LangOpts,
  209. MacroBuilder &Builder) {
  210. Builder.defineMacro("_GLIBCXX_PREDEFINED_OBJC_ARC_IS_SCALAR");
  211. std::string Result;
  212. {
  213. // Provide specializations for the __is_scalar type trait so that
  214. // lifetime-qualified objects are not considered "scalar" types, which
  215. // libstdc++ uses as an indicator of the presence of trivial copy, assign,
  216. // default-construct, and destruct semantics (none of which hold for
  217. // lifetime-qualified objects in ARC).
  218. llvm::raw_string_ostream Out(Result);
  219. Out << "namespace std {\n"
  220. << "\n"
  221. << "struct __true_type;\n"
  222. << "struct __false_type;\n"
  223. << "\n";
  224. Out << "template<typename _Tp> struct __is_scalar;\n"
  225. << "\n";
  226. Out << "template<typename _Tp>\n"
  227. << "struct __is_scalar<__attribute__((objc_ownership(strong))) _Tp> {\n"
  228. << " enum { __value = 0 };\n"
  229. << " typedef __false_type __type;\n"
  230. << "};\n"
  231. << "\n";
  232. if (LangOpts.ObjCARCWeak) {
  233. Out << "template<typename _Tp>\n"
  234. << "struct __is_scalar<__attribute__((objc_ownership(weak))) _Tp> {\n"
  235. << " enum { __value = 0 };\n"
  236. << " typedef __false_type __type;\n"
  237. << "};\n"
  238. << "\n";
  239. }
  240. Out << "template<typename _Tp>\n"
  241. << "struct __is_scalar<__attribute__((objc_ownership(autoreleasing)))"
  242. << " _Tp> {\n"
  243. << " enum { __value = 0 };\n"
  244. << " typedef __false_type __type;\n"
  245. << "};\n"
  246. << "\n";
  247. Out << "}\n";
  248. }
  249. Builder.append(Result);
  250. }
  251. static void InitializeStandardPredefinedMacros(const TargetInfo &TI,
  252. const LangOptions &LangOpts,
  253. const FrontendOptions &FEOpts,
  254. MacroBuilder &Builder) {
  255. if (!LangOpts.MicrosoftMode && !LangOpts.TraditionalCPP)
  256. Builder.defineMacro("__STDC__");
  257. if (LangOpts.Freestanding)
  258. Builder.defineMacro("__STDC_HOSTED__", "0");
  259. else
  260. Builder.defineMacro("__STDC_HOSTED__");
  261. if (!LangOpts.CPlusPlus) {
  262. if (LangOpts.C11)
  263. Builder.defineMacro("__STDC_VERSION__", "201112L");
  264. else if (LangOpts.C99)
  265. Builder.defineMacro("__STDC_VERSION__", "199901L");
  266. else if (!LangOpts.GNUMode && LangOpts.Digraphs)
  267. Builder.defineMacro("__STDC_VERSION__", "199409L");
  268. } else {
  269. // FIXME: LangOpts.CPlusPlus1y
  270. // C++11 [cpp.predefined]p1:
  271. // The name __cplusplus is defined to the value 201103L when compiling a
  272. // C++ translation unit.
  273. if (LangOpts.CPlusPlus0x)
  274. Builder.defineMacro("__cplusplus", "201103L");
  275. // C++03 [cpp.predefined]p1:
  276. // The name __cplusplus is defined to the value 199711L when compiling a
  277. // C++ translation unit.
  278. else
  279. Builder.defineMacro("__cplusplus", "199711L");
  280. }
  281. if (LangOpts.ObjC1)
  282. Builder.defineMacro("__OBJC__");
  283. // Not "standard" per se, but available even with the -undef flag.
  284. if (LangOpts.AsmPreprocessor)
  285. Builder.defineMacro("__ASSEMBLER__");
  286. }
  287. static void InitializePredefinedMacros(const TargetInfo &TI,
  288. const LangOptions &LangOpts,
  289. const FrontendOptions &FEOpts,
  290. MacroBuilder &Builder) {
  291. // Compiler version introspection macros.
  292. Builder.defineMacro("__llvm__"); // LLVM Backend
  293. Builder.defineMacro("__clang__"); // Clang Frontend
  294. #define TOSTR2(X) #X
  295. #define TOSTR(X) TOSTR2(X)
  296. Builder.defineMacro("__clang_major__", TOSTR(CLANG_VERSION_MAJOR));
  297. Builder.defineMacro("__clang_minor__", TOSTR(CLANG_VERSION_MINOR));
  298. #ifdef CLANG_VERSION_PATCHLEVEL
  299. Builder.defineMacro("__clang_patchlevel__", TOSTR(CLANG_VERSION_PATCHLEVEL));
  300. #else
  301. Builder.defineMacro("__clang_patchlevel__", "0");
  302. #endif
  303. Builder.defineMacro("__clang_version__",
  304. "\"" CLANG_VERSION_STRING " "
  305. + getClangFullRepositoryVersion() + "\"");
  306. #undef TOSTR
  307. #undef TOSTR2
  308. if (!LangOpts.MicrosoftMode) {
  309. // Currently claim to be compatible with GCC 4.2.1-5621, but only if we're
  310. // not compiling for MSVC compatibility
  311. Builder.defineMacro("__GNUC_MINOR__", "2");
  312. Builder.defineMacro("__GNUC_PATCHLEVEL__", "1");
  313. Builder.defineMacro("__GNUC__", "4");
  314. Builder.defineMacro("__GXX_ABI_VERSION", "1002");
  315. }
  316. // Define macros for the C11 / C++11 memory orderings
  317. Builder.defineMacro("__ATOMIC_RELAXED", "0");
  318. Builder.defineMacro("__ATOMIC_CONSUME", "1");
  319. Builder.defineMacro("__ATOMIC_ACQUIRE", "2");
  320. Builder.defineMacro("__ATOMIC_RELEASE", "3");
  321. Builder.defineMacro("__ATOMIC_ACQ_REL", "4");
  322. Builder.defineMacro("__ATOMIC_SEQ_CST", "5");
  323. // Support for #pragma redefine_extname (Sun compatibility)
  324. Builder.defineMacro("__PRAGMA_REDEFINE_EXTNAME", "1");
  325. // As sad as it is, enough software depends on the __VERSION__ for version
  326. // checks that it is necessary to report 4.2.1 (the base GCC version we claim
  327. // compatibility with) first.
  328. Builder.defineMacro("__VERSION__", "\"4.2.1 Compatible " +
  329. Twine(getClangFullCPPVersion()) + "\"");
  330. // Initialize language-specific preprocessor defines.
  331. // Standard conforming mode?
  332. if (!LangOpts.GNUMode)
  333. Builder.defineMacro("__STRICT_ANSI__");
  334. if (LangOpts.CPlusPlus0x)
  335. Builder.defineMacro("__GXX_EXPERIMENTAL_CXX0X__");
  336. if (LangOpts.ObjC1) {
  337. if (LangOpts.ObjCRuntime.isNonFragile()) {
  338. Builder.defineMacro("__OBJC2__");
  339. if (LangOpts.ObjCExceptions)
  340. Builder.defineMacro("OBJC_ZEROCOST_EXCEPTIONS");
  341. }
  342. if (LangOpts.getGC() != LangOptions::NonGC)
  343. Builder.defineMacro("__OBJC_GC__");
  344. if (LangOpts.ObjCRuntime.isNeXTFamily())
  345. Builder.defineMacro("__NEXT_RUNTIME__");
  346. Builder.defineMacro("IBOutlet", "__attribute__((iboutlet))");
  347. Builder.defineMacro("IBOutletCollection(ClassName)",
  348. "__attribute__((iboutletcollection(ClassName)))");
  349. Builder.defineMacro("IBAction", "void)__attribute__((ibaction)");
  350. }
  351. // darwin_constant_cfstrings controls this. This is also dependent
  352. // on other things like the runtime I believe. This is set even for C code.
  353. if (!LangOpts.NoConstantCFStrings)
  354. Builder.defineMacro("__CONSTANT_CFSTRINGS__");
  355. if (LangOpts.ObjC2)
  356. Builder.defineMacro("OBJC_NEW_PROPERTIES");
  357. if (LangOpts.PascalStrings)
  358. Builder.defineMacro("__PASCAL_STRINGS__");
  359. if (LangOpts.Blocks) {
  360. Builder.defineMacro("__block", "__attribute__((__blocks__(byref)))");
  361. Builder.defineMacro("__BLOCKS__");
  362. }
  363. if (LangOpts.CXXExceptions)
  364. Builder.defineMacro("__EXCEPTIONS");
  365. if (LangOpts.RTTI)
  366. Builder.defineMacro("__GXX_RTTI");
  367. if (LangOpts.SjLjExceptions)
  368. Builder.defineMacro("__USING_SJLJ_EXCEPTIONS__");
  369. if (LangOpts.Deprecated)
  370. Builder.defineMacro("__DEPRECATED");
  371. if (LangOpts.CPlusPlus) {
  372. Builder.defineMacro("__GNUG__", "4");
  373. Builder.defineMacro("__GXX_WEAK__");
  374. Builder.defineMacro("__private_extern__", "extern");
  375. }
  376. if (LangOpts.MicrosoftExt) {
  377. // Both __PRETTY_FUNCTION__ and __FUNCTION__ are GCC extensions, however
  378. // VC++ appears to only like __FUNCTION__.
  379. Builder.defineMacro("__PRETTY_FUNCTION__", "__FUNCTION__");
  380. // Work around some issues with Visual C++ headers.
  381. if (LangOpts.WChar) {
  382. // wchar_t supported as a keyword.
  383. Builder.defineMacro("_WCHAR_T_DEFINED");
  384. Builder.defineMacro("_NATIVE_WCHAR_T_DEFINED");
  385. }
  386. if (LangOpts.CPlusPlus) {
  387. // FIXME: Support Microsoft's __identifier extension in the lexer.
  388. Builder.append("#define __identifier(x) x");
  389. Builder.append("class type_info;");
  390. }
  391. }
  392. if (LangOpts.Optimize)
  393. Builder.defineMacro("__OPTIMIZE__");
  394. if (LangOpts.OptimizeSize)
  395. Builder.defineMacro("__OPTIMIZE_SIZE__");
  396. if (LangOpts.FastMath)
  397. Builder.defineMacro("__FAST_MATH__");
  398. // Initialize target-specific preprocessor defines.
  399. // __BYTE_ORDER__ was added in GCC 4.6. It's analogous
  400. // to the macro __BYTE_ORDER (no trailing underscores)
  401. // from glibc's <endian.h> header.
  402. // We don't support the PDP-11 as a target, but include
  403. // the define so it can still be compared against.
  404. Builder.defineMacro("__ORDER_LITTLE_ENDIAN__", "1234");
  405. Builder.defineMacro("__ORDER_BIG_ENDIAN__", "4321");
  406. Builder.defineMacro("__ORDER_PDP_ENDIAN__", "3412");
  407. if (TI.isBigEndian())
  408. Builder.defineMacro("__BYTE_ORDER__", "__ORDER_BIG_ENDIAN__");
  409. else
  410. Builder.defineMacro("__BYTE_ORDER__", "__ORDER_LITTLE_ENDIAN__");
  411. if (TI.getPointerWidth(0) == 64 && TI.getLongWidth() == 64
  412. && TI.getIntWidth() == 32) {
  413. Builder.defineMacro("_LP64");
  414. Builder.defineMacro("__LP64__");
  415. }
  416. // Define type sizing macros based on the target properties.
  417. assert(TI.getCharWidth() == 8 && "Only support 8-bit char so far");
  418. Builder.defineMacro("__CHAR_BIT__", "8");
  419. DefineTypeSize("__SCHAR_MAX__", TI.getCharWidth(), "", true, Builder);
  420. DefineTypeSize("__SHRT_MAX__", TargetInfo::SignedShort, TI, Builder);
  421. DefineTypeSize("__INT_MAX__", TargetInfo::SignedInt, TI, Builder);
  422. DefineTypeSize("__LONG_MAX__", TargetInfo::SignedLong, TI, Builder);
  423. DefineTypeSize("__LONG_LONG_MAX__", TargetInfo::SignedLongLong, TI, Builder);
  424. DefineTypeSize("__WCHAR_MAX__", TI.getWCharType(), TI, Builder);
  425. DefineTypeSize("__INTMAX_MAX__", TI.getIntMaxType(), TI, Builder);
  426. DefineTypeSizeof("__SIZEOF_DOUBLE__", TI.getDoubleWidth(), TI, Builder);
  427. DefineTypeSizeof("__SIZEOF_FLOAT__", TI.getFloatWidth(), TI, Builder);
  428. DefineTypeSizeof("__SIZEOF_INT__", TI.getIntWidth(), TI, Builder);
  429. DefineTypeSizeof("__SIZEOF_LONG__", TI.getLongWidth(), TI, Builder);
  430. DefineTypeSizeof("__SIZEOF_LONG_DOUBLE__",TI.getLongDoubleWidth(),TI,Builder);
  431. DefineTypeSizeof("__SIZEOF_LONG_LONG__", TI.getLongLongWidth(), TI, Builder);
  432. DefineTypeSizeof("__SIZEOF_POINTER__", TI.getPointerWidth(0), TI, Builder);
  433. DefineTypeSizeof("__SIZEOF_SHORT__", TI.getShortWidth(), TI, Builder);
  434. DefineTypeSizeof("__SIZEOF_PTRDIFF_T__",
  435. TI.getTypeWidth(TI.getPtrDiffType(0)), TI, Builder);
  436. DefineTypeSizeof("__SIZEOF_SIZE_T__",
  437. TI.getTypeWidth(TI.getSizeType()), TI, Builder);
  438. DefineTypeSizeof("__SIZEOF_WCHAR_T__",
  439. TI.getTypeWidth(TI.getWCharType()), TI, Builder);
  440. DefineTypeSizeof("__SIZEOF_WINT_T__",
  441. TI.getTypeWidth(TI.getWIntType()), TI, Builder);
  442. DefineType("__INTMAX_TYPE__", TI.getIntMaxType(), Builder);
  443. DefineType("__UINTMAX_TYPE__", TI.getUIntMaxType(), Builder);
  444. DefineTypeWidth("__INTMAX_WIDTH__", TI.getIntMaxType(), TI, Builder);
  445. DefineType("__PTRDIFF_TYPE__", TI.getPtrDiffType(0), Builder);
  446. DefineTypeWidth("__PTRDIFF_WIDTH__", TI.getPtrDiffType(0), TI, Builder);
  447. DefineType("__INTPTR_TYPE__", TI.getIntPtrType(), Builder);
  448. DefineTypeWidth("__INTPTR_WIDTH__", TI.getIntPtrType(), TI, Builder);
  449. DefineType("__SIZE_TYPE__", TI.getSizeType(), Builder);
  450. DefineTypeWidth("__SIZE_WIDTH__", TI.getSizeType(), TI, Builder);
  451. DefineType("__WCHAR_TYPE__", TI.getWCharType(), Builder);
  452. DefineTypeWidth("__WCHAR_WIDTH__", TI.getWCharType(), TI, Builder);
  453. DefineType("__WINT_TYPE__", TI.getWIntType(), Builder);
  454. DefineTypeWidth("__WINT_WIDTH__", TI.getWIntType(), TI, Builder);
  455. DefineTypeWidth("__SIG_ATOMIC_WIDTH__", TI.getSigAtomicType(), TI, Builder);
  456. DefineType("__CHAR16_TYPE__", TI.getChar16Type(), Builder);
  457. DefineType("__CHAR32_TYPE__", TI.getChar32Type(), Builder);
  458. DefineFloatMacros(Builder, "FLT", &TI.getFloatFormat());
  459. DefineFloatMacros(Builder, "DBL", &TI.getDoubleFormat());
  460. DefineFloatMacros(Builder, "LDBL", &TI.getLongDoubleFormat());
  461. // Define a __POINTER_WIDTH__ macro for stdint.h.
  462. Builder.defineMacro("__POINTER_WIDTH__",
  463. Twine((int)TI.getPointerWidth(0)));
  464. if (!LangOpts.CharIsSigned)
  465. Builder.defineMacro("__CHAR_UNSIGNED__");
  466. if (!TargetInfo::isTypeSigned(TI.getWCharType()))
  467. Builder.defineMacro("__WCHAR_UNSIGNED__");
  468. if (!TargetInfo::isTypeSigned(TI.getWIntType()))
  469. Builder.defineMacro("__WINT_UNSIGNED__");
  470. // Define exact-width integer types for stdint.h
  471. Builder.defineMacro("__INT" + Twine(TI.getCharWidth()) + "_TYPE__",
  472. "char");
  473. if (TI.getShortWidth() > TI.getCharWidth())
  474. DefineExactWidthIntType(TargetInfo::SignedShort, TI, Builder);
  475. if (TI.getIntWidth() > TI.getShortWidth())
  476. DefineExactWidthIntType(TargetInfo::SignedInt, TI, Builder);
  477. if (TI.getLongWidth() > TI.getIntWidth())
  478. DefineExactWidthIntType(TargetInfo::SignedLong, TI, Builder);
  479. if (TI.getLongLongWidth() > TI.getLongWidth())
  480. DefineExactWidthIntType(TargetInfo::SignedLongLong, TI, Builder);
  481. if (const char *Prefix = TI.getUserLabelPrefix())
  482. Builder.defineMacro("__USER_LABEL_PREFIX__", Prefix);
  483. if (LangOpts.FastMath || LangOpts.FiniteMathOnly)
  484. Builder.defineMacro("__FINITE_MATH_ONLY__", "1");
  485. else
  486. Builder.defineMacro("__FINITE_MATH_ONLY__", "0");
  487. if (LangOpts.GNUInline)
  488. Builder.defineMacro("__GNUC_GNU_INLINE__");
  489. else
  490. Builder.defineMacro("__GNUC_STDC_INLINE__");
  491. // The value written by __atomic_test_and_set.
  492. // FIXME: This is target-dependent.
  493. Builder.defineMacro("__GCC_ATOMIC_TEST_AND_SET_TRUEVAL", "1");
  494. // Used by libstdc++ to implement ATOMIC_<foo>_LOCK_FREE.
  495. unsigned InlineWidthBits = TI.getMaxAtomicInlineWidth();
  496. #define DEFINE_LOCK_FREE_MACRO(TYPE, Type) \
  497. Builder.defineMacro("__GCC_ATOMIC_" #TYPE "_LOCK_FREE", \
  498. getLockFreeValue(TI.get##Type##Width(), \
  499. TI.get##Type##Align(), \
  500. InlineWidthBits));
  501. DEFINE_LOCK_FREE_MACRO(BOOL, Bool);
  502. DEFINE_LOCK_FREE_MACRO(CHAR, Char);
  503. DEFINE_LOCK_FREE_MACRO(CHAR16_T, Char16);
  504. DEFINE_LOCK_FREE_MACRO(CHAR32_T, Char32);
  505. DEFINE_LOCK_FREE_MACRO(WCHAR_T, WChar);
  506. DEFINE_LOCK_FREE_MACRO(SHORT, Short);
  507. DEFINE_LOCK_FREE_MACRO(INT, Int);
  508. DEFINE_LOCK_FREE_MACRO(LONG, Long);
  509. DEFINE_LOCK_FREE_MACRO(LLONG, LongLong);
  510. Builder.defineMacro("__GCC_ATOMIC_POINTER_LOCK_FREE",
  511. getLockFreeValue(TI.getPointerWidth(0),
  512. TI.getPointerAlign(0),
  513. InlineWidthBits));
  514. #undef DEFINE_LOCK_FREE_MACRO
  515. if (LangOpts.NoInlineDefine)
  516. Builder.defineMacro("__NO_INLINE__");
  517. if (unsigned PICLevel = LangOpts.PICLevel) {
  518. Builder.defineMacro("__PIC__", Twine(PICLevel));
  519. Builder.defineMacro("__pic__", Twine(PICLevel));
  520. }
  521. if (unsigned PIELevel = LangOpts.PIELevel) {
  522. Builder.defineMacro("__PIE__", Twine(PIELevel));
  523. Builder.defineMacro("__pie__", Twine(PIELevel));
  524. }
  525. // Macros to control C99 numerics and <float.h>
  526. Builder.defineMacro("__FLT_EVAL_METHOD__", Twine(TI.getFloatEvalMethod()));
  527. Builder.defineMacro("__FLT_RADIX__", "2");
  528. int Dig = PickFP(&TI.getLongDoubleFormat(), -1/*FIXME*/, 17, 21, 33, 36);
  529. Builder.defineMacro("__DECIMAL_DIG__", Twine(Dig));
  530. if (LangOpts.getStackProtector() == LangOptions::SSPOn)
  531. Builder.defineMacro("__SSP__");
  532. else if (LangOpts.getStackProtector() == LangOptions::SSPReq)
  533. Builder.defineMacro("__SSP_ALL__", "2");
  534. if (FEOpts.ProgramAction == frontend::RewriteObjC)
  535. Builder.defineMacro("__weak", "__attribute__((objc_gc(weak)))");
  536. // Define a macro that exists only when using the static analyzer.
  537. if (FEOpts.ProgramAction == frontend::RunAnalysis)
  538. Builder.defineMacro("__clang_analyzer__");
  539. if (LangOpts.FastRelaxedMath)
  540. Builder.defineMacro("__FAST_RELAXED_MATH__");
  541. if (LangOpts.ObjCAutoRefCount) {
  542. Builder.defineMacro("__weak", "__attribute__((objc_ownership(weak)))");
  543. Builder.defineMacro("__strong", "__attribute__((objc_ownership(strong)))");
  544. Builder.defineMacro("__autoreleasing",
  545. "__attribute__((objc_ownership(autoreleasing)))");
  546. Builder.defineMacro("__unsafe_unretained",
  547. "__attribute__((objc_ownership(none)))");
  548. }
  549. // Get other target #defines.
  550. TI.getTargetDefines(LangOpts, Builder);
  551. }
  552. // Initialize the remapping of files to alternative contents, e.g.,
  553. // those specified through other files.
  554. static void InitializeFileRemapping(DiagnosticsEngine &Diags,
  555. SourceManager &SourceMgr,
  556. FileManager &FileMgr,
  557. const PreprocessorOptions &InitOpts) {
  558. // Remap files in the source manager (with buffers).
  559. for (PreprocessorOptions::const_remapped_file_buffer_iterator
  560. Remap = InitOpts.remapped_file_buffer_begin(),
  561. RemapEnd = InitOpts.remapped_file_buffer_end();
  562. Remap != RemapEnd;
  563. ++Remap) {
  564. // Create the file entry for the file that we're mapping from.
  565. const FileEntry *FromFile = FileMgr.getVirtualFile(Remap->first,
  566. Remap->second->getBufferSize(),
  567. 0);
  568. if (!FromFile) {
  569. Diags.Report(diag::err_fe_remap_missing_from_file)
  570. << Remap->first;
  571. if (!InitOpts.RetainRemappedFileBuffers)
  572. delete Remap->second;
  573. continue;
  574. }
  575. // Override the contents of the "from" file with the contents of
  576. // the "to" file.
  577. SourceMgr.overrideFileContents(FromFile, Remap->second,
  578. InitOpts.RetainRemappedFileBuffers);
  579. }
  580. // Remap files in the source manager (with other files).
  581. for (PreprocessorOptions::const_remapped_file_iterator
  582. Remap = InitOpts.remapped_file_begin(),
  583. RemapEnd = InitOpts.remapped_file_end();
  584. Remap != RemapEnd;
  585. ++Remap) {
  586. // Find the file that we're mapping to.
  587. const FileEntry *ToFile = FileMgr.getFile(Remap->second);
  588. if (!ToFile) {
  589. Diags.Report(diag::err_fe_remap_missing_to_file)
  590. << Remap->first << Remap->second;
  591. continue;
  592. }
  593. // Create the file entry for the file that we're mapping from.
  594. const FileEntry *FromFile = FileMgr.getVirtualFile(Remap->first,
  595. ToFile->getSize(), 0);
  596. if (!FromFile) {
  597. Diags.Report(diag::err_fe_remap_missing_from_file)
  598. << Remap->first;
  599. continue;
  600. }
  601. // Override the contents of the "from" file with the contents of
  602. // the "to" file.
  603. SourceMgr.overrideFileContents(FromFile, ToFile);
  604. }
  605. SourceMgr.setOverridenFilesKeepOriginalName(
  606. InitOpts.RemappedFilesKeepOriginalName);
  607. }
  608. /// InitializePreprocessor - Initialize the preprocessor getting it and the
  609. /// environment ready to process a single file. This returns true on error.
  610. ///
  611. void clang::InitializePreprocessor(Preprocessor &PP,
  612. const PreprocessorOptions &InitOpts,
  613. const HeaderSearchOptions &HSOpts,
  614. const FrontendOptions &FEOpts) {
  615. const LangOptions &LangOpts = PP.getLangOpts();
  616. std::string PredefineBuffer;
  617. PredefineBuffer.reserve(4080);
  618. llvm::raw_string_ostream Predefines(PredefineBuffer);
  619. MacroBuilder Builder(Predefines);
  620. InitializeFileRemapping(PP.getDiagnostics(), PP.getSourceManager(),
  621. PP.getFileManager(), InitOpts);
  622. // Emit line markers for various builtin sections of the file. We don't do
  623. // this in asm preprocessor mode, because "# 4" is not a line marker directive
  624. // in this mode.
  625. if (!PP.getLangOpts().AsmPreprocessor)
  626. Builder.append("# 1 \"<built-in>\" 3");
  627. // Install things like __POWERPC__, __GNUC__, etc into the macro table.
  628. if (InitOpts.UsePredefines) {
  629. InitializePredefinedMacros(PP.getTargetInfo(), LangOpts, FEOpts, Builder);
  630. // Install definitions to make Objective-C++ ARC work well with various
  631. // C++ Standard Library implementations.
  632. if (LangOpts.ObjC1 && LangOpts.CPlusPlus && LangOpts.ObjCAutoRefCount) {
  633. switch (InitOpts.ObjCXXARCStandardLibrary) {
  634. case ARCXX_nolib:
  635. case ARCXX_libcxx:
  636. break;
  637. case ARCXX_libstdcxx:
  638. AddObjCXXARCLibstdcxxDefines(LangOpts, Builder);
  639. break;
  640. }
  641. }
  642. }
  643. // Even with predefines off, some macros are still predefined.
  644. // These should all be defined in the preprocessor according to the
  645. // current language configuration.
  646. InitializeStandardPredefinedMacros(PP.getTargetInfo(), PP.getLangOpts(),
  647. FEOpts, Builder);
  648. // Add on the predefines from the driver. Wrap in a #line directive to report
  649. // that they come from the command line.
  650. if (!PP.getLangOpts().AsmPreprocessor)
  651. Builder.append("# 1 \"<command line>\" 1");
  652. // Process #define's and #undef's in the order they are given.
  653. for (unsigned i = 0, e = InitOpts.Macros.size(); i != e; ++i) {
  654. if (InitOpts.Macros[i].second) // isUndef
  655. Builder.undefineMacro(InitOpts.Macros[i].first);
  656. else
  657. DefineBuiltinMacro(Builder, InitOpts.Macros[i].first,
  658. PP.getDiagnostics());
  659. }
  660. // If -imacros are specified, include them now. These are processed before
  661. // any -include directives.
  662. for (unsigned i = 0, e = InitOpts.MacroIncludes.size(); i != e; ++i)
  663. AddImplicitIncludeMacros(Builder, InitOpts.MacroIncludes[i],
  664. PP.getFileManager());
  665. // Process -include directives.
  666. for (unsigned i = 0, e = InitOpts.Includes.size(); i != e; ++i) {
  667. const std::string &Path = InitOpts.Includes[i];
  668. if (Path == InitOpts.ImplicitPTHInclude)
  669. AddImplicitIncludePTH(Builder, PP, Path);
  670. else if (Path == InitOpts.ImplicitPCHInclude)
  671. AddImplicitIncludePCH(Builder, PP, Path);
  672. else
  673. AddImplicitInclude(Builder, Path, PP.getFileManager());
  674. }
  675. // Exit the command line and go back to <built-in> (2 is LC_LEAVE).
  676. if (!PP.getLangOpts().AsmPreprocessor)
  677. Builder.append("# 1 \"<built-in>\" 2");
  678. // Instruct the preprocessor to skip the preamble.
  679. PP.setSkipMainFilePreamble(InitOpts.PrecompiledPreambleBytes.first,
  680. InitOpts.PrecompiledPreambleBytes.second);
  681. // Copy PredefinedBuffer into the Preprocessor.
  682. PP.setPredefines(Predefines.str());
  683. // Initialize the header search object.
  684. ApplyHeaderSearchOptions(PP.getHeaderSearchInfo(), HSOpts,
  685. PP.getLangOpts(),
  686. PP.getTargetInfo().getTriple());
  687. }