1 //===--- PPLexerChange.cpp - Handle changing lexers in the preprocessor ---===//
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 pieces of the Preprocessor interface that manage the
11 // current lexer stack.
12 //
13 //===----------------------------------------------------------------------===//
14 
15 #include "clang/Lex/Preprocessor.h"
16 #include "clang/Basic/FileManager.h"
17 #include "clang/Basic/SourceManager.h"
18 #include "clang/Lex/HeaderSearch.h"
19 #include "clang/Lex/LexDiagnostic.h"
20 #include "clang/Lex/MacroInfo.h"
21 #include "clang/Lex/PTHManager.h"
22 #include "llvm/ADT/StringSwitch.h"
23 #include "llvm/Support/FileSystem.h"
24 #include "llvm/Support/MemoryBuffer.h"
25 #include "llvm/Support/Path.h"
26 using namespace clang;
27 
28 PPCallbacks::~PPCallbacks() {}
29 
30 //===----------------------------------------------------------------------===//
31 // Miscellaneous Methods.
32 //===----------------------------------------------------------------------===//
33 
34 /// isInPrimaryFile - Return true if we're in the top-level file, not in a
35 /// \#include.  This looks through macro expansions and active _Pragma lexers.
36 bool Preprocessor::isInPrimaryFile() const {
37   if (IsFileLexer())
38     return IncludeMacroStack.empty();
39 
40   // If there are any stacked lexers, we're in a #include.
41   assert(IsFileLexer(IncludeMacroStack[0]) &&
42          "Top level include stack isn't our primary lexer?");
43   return std::none_of(
44       IncludeMacroStack.begin() + 1, IncludeMacroStack.end(),
45       [&](const IncludeStackInfo &ISI) -> bool { return IsFileLexer(ISI); });
46 }
47 
48 /// getCurrentLexer - Return the current file lexer being lexed from.  Note
49 /// that this ignores any potentially active macro expansions and _Pragma
50 /// expansions going on at the time.
51 PreprocessorLexer *Preprocessor::getCurrentFileLexer() const {
52   if (IsFileLexer())
53     return CurPPLexer;
54 
55   // Look for a stacked lexer.
56   for (const IncludeStackInfo &ISI : llvm::reverse(IncludeMacroStack)) {
57     if (IsFileLexer(ISI))
58       return ISI.ThePPLexer;
59   }
60   return nullptr;
61 }
62 
63 
64 //===----------------------------------------------------------------------===//
65 // Methods for Entering and Callbacks for leaving various contexts
66 //===----------------------------------------------------------------------===//
67 
68 /// EnterSourceFile - Add a source file to the top of the include stack and
69 /// start lexing tokens from it instead of the current buffer.
70 bool Preprocessor::EnterSourceFile(FileID FID, const DirectoryLookup *CurDir,
71                                    SourceLocation Loc) {
72   assert(!CurTokenLexer && "Cannot #include a file inside a macro!");
73   ++NumEnteredSourceFiles;
74 
75   if (MaxIncludeStackDepth < IncludeMacroStack.size())
76     MaxIncludeStackDepth = IncludeMacroStack.size();
77 
78   if (PTH) {
79     if (PTHLexer *PL = PTH->CreateLexer(FID)) {
80       EnterSourceFileWithPTH(PL, CurDir);
81       return false;
82     }
83   }
84 
85   // Get the MemoryBuffer for this FID, if it fails, we fail.
86   bool Invalid = false;
87   const llvm::MemoryBuffer *InputFile =
88     getSourceManager().getBuffer(FID, Loc, &Invalid);
89   if (Invalid) {
90     SourceLocation FileStart = SourceMgr.getLocForStartOfFile(FID);
91     Diag(Loc, diag::err_pp_error_opening_file)
92       << std::string(SourceMgr.getBufferName(FileStart)) << "";
93     return true;
94   }
95 
96   if (isCodeCompletionEnabled() &&
97       SourceMgr.getFileEntryForID(FID) == CodeCompletionFile) {
98     CodeCompletionFileLoc = SourceMgr.getLocForStartOfFile(FID);
99     CodeCompletionLoc =
100         CodeCompletionFileLoc.getLocWithOffset(CodeCompletionOffset);
101   }
102 
103   EnterSourceFileWithLexer(new Lexer(FID, InputFile, *this), CurDir);
104   return false;
105 }
106 
107 /// EnterSourceFileWithLexer - Add a source file to the top of the include stack
108 ///  and start lexing tokens from it instead of the current buffer.
109 void Preprocessor::EnterSourceFileWithLexer(Lexer *TheLexer,
110                                             const DirectoryLookup *CurDir) {
111 
112   // Add the current lexer to the include stack.
113   if (CurPPLexer || CurTokenLexer)
114     PushIncludeMacroStack();
115 
116   CurLexer.reset(TheLexer);
117   CurPPLexer = TheLexer;
118   CurDirLookup = CurDir;
119   CurLexerSubmodule = nullptr;
120   if (CurLexerKind != CLK_LexAfterModuleImport)
121     CurLexerKind = CLK_Lexer;
122 
123   // Notify the client, if desired, that we are in a new source file.
124   if (Callbacks && !CurLexer->Is_PragmaLexer) {
125     SrcMgr::CharacteristicKind FileType =
126        SourceMgr.getFileCharacteristic(CurLexer->getFileLoc());
127 
128     Callbacks->FileChanged(CurLexer->getFileLoc(),
129                            PPCallbacks::EnterFile, FileType);
130   }
131 }
132 
133 /// EnterSourceFileWithPTH - Add a source file to the top of the include stack
134 /// and start getting tokens from it using the PTH cache.
135 void Preprocessor::EnterSourceFileWithPTH(PTHLexer *PL,
136                                           const DirectoryLookup *CurDir) {
137 
138   if (CurPPLexer || CurTokenLexer)
139     PushIncludeMacroStack();
140 
141   CurDirLookup = CurDir;
142   CurPTHLexer.reset(PL);
143   CurPPLexer = CurPTHLexer.get();
144   CurLexerSubmodule = nullptr;
145   if (CurLexerKind != CLK_LexAfterModuleImport)
146     CurLexerKind = CLK_PTHLexer;
147 
148   // Notify the client, if desired, that we are in a new source file.
149   if (Callbacks) {
150     FileID FID = CurPPLexer->getFileID();
151     SourceLocation EnterLoc = SourceMgr.getLocForStartOfFile(FID);
152     SrcMgr::CharacteristicKind FileType =
153       SourceMgr.getFileCharacteristic(EnterLoc);
154     Callbacks->FileChanged(EnterLoc, PPCallbacks::EnterFile, FileType);
155   }
156 }
157 
158 /// EnterMacro - Add a Macro to the top of the include stack and start lexing
159 /// tokens from it instead of the current buffer.
160 void Preprocessor::EnterMacro(Token &Tok, SourceLocation ILEnd,
161                               MacroInfo *Macro, MacroArgs *Args) {
162   std::unique_ptr<TokenLexer> TokLexer;
163   if (NumCachedTokenLexers == 0) {
164     TokLexer = llvm::make_unique<TokenLexer>(Tok, ILEnd, Macro, Args, *this);
165   } else {
166     TokLexer = std::move(TokenLexerCache[--NumCachedTokenLexers]);
167     TokLexer->Init(Tok, ILEnd, Macro, Args);
168   }
169 
170   PushIncludeMacroStack();
171   CurDirLookup = nullptr;
172   CurTokenLexer = std::move(TokLexer);
173   if (CurLexerKind != CLK_LexAfterModuleImport)
174     CurLexerKind = CLK_TokenLexer;
175 }
176 
177 /// EnterTokenStream - Add a "macro" context to the top of the include stack,
178 /// which will cause the lexer to start returning the specified tokens.
179 ///
180 /// If DisableMacroExpansion is true, tokens lexed from the token stream will
181 /// not be subject to further macro expansion.  Otherwise, these tokens will
182 /// be re-macro-expanded when/if expansion is enabled.
183 ///
184 /// If OwnsTokens is false, this method assumes that the specified stream of
185 /// tokens has a permanent owner somewhere, so they do not need to be copied.
186 /// If it is true, it assumes the array of tokens is allocated with new[] and
187 /// must be freed.
188 ///
189 void Preprocessor::EnterTokenStream(const Token *Toks, unsigned NumToks,
190                                     bool DisableMacroExpansion,
191                                     bool OwnsTokens) {
192   if (CurLexerKind == CLK_CachingLexer) {
193     if (CachedLexPos < CachedTokens.size()) {
194       // We're entering tokens into the middle of our cached token stream. We
195       // can't represent that, so just insert the tokens into the buffer.
196       CachedTokens.insert(CachedTokens.begin() + CachedLexPos,
197                           Toks, Toks + NumToks);
198       if (OwnsTokens)
199         delete [] Toks;
200       return;
201     }
202 
203     // New tokens are at the end of the cached token sequnece; insert the
204     // token stream underneath the caching lexer.
205     ExitCachingLexMode();
206     EnterTokenStream(Toks, NumToks, DisableMacroExpansion, OwnsTokens);
207     EnterCachingLexMode();
208     return;
209   }
210 
211   // Create a macro expander to expand from the specified token stream.
212   std::unique_ptr<TokenLexer> TokLexer;
213   if (NumCachedTokenLexers == 0) {
214     TokLexer = llvm::make_unique<TokenLexer>(
215         Toks, NumToks, DisableMacroExpansion, OwnsTokens, *this);
216   } else {
217     TokLexer = std::move(TokenLexerCache[--NumCachedTokenLexers]);
218     TokLexer->Init(Toks, NumToks, DisableMacroExpansion, OwnsTokens);
219   }
220 
221   // Save our current state.
222   PushIncludeMacroStack();
223   CurDirLookup = nullptr;
224   CurTokenLexer = std::move(TokLexer);
225   if (CurLexerKind != CLK_LexAfterModuleImport)
226     CurLexerKind = CLK_TokenLexer;
227 }
228 
229 /// \brief Compute the relative path that names the given file relative to
230 /// the given directory.
231 static void computeRelativePath(FileManager &FM, const DirectoryEntry *Dir,
232                                 const FileEntry *File,
233                                 SmallString<128> &Result) {
234   Result.clear();
235 
236   StringRef FilePath = File->getDir()->getName();
237   StringRef Path = FilePath;
238   while (!Path.empty()) {
239     if (const DirectoryEntry *CurDir = FM.getDirectory(Path)) {
240       if (CurDir == Dir) {
241         Result = FilePath.substr(Path.size());
242         llvm::sys::path::append(Result,
243                                 llvm::sys::path::filename(File->getName()));
244         return;
245       }
246     }
247 
248     Path = llvm::sys::path::parent_path(Path);
249   }
250 
251   Result = File->getName();
252 }
253 
254 void Preprocessor::PropagateLineStartLeadingSpaceInfo(Token &Result) {
255   if (CurTokenLexer) {
256     CurTokenLexer->PropagateLineStartLeadingSpaceInfo(Result);
257     return;
258   }
259   if (CurLexer) {
260     CurLexer->PropagateLineStartLeadingSpaceInfo(Result);
261     return;
262   }
263   // FIXME: Handle other kinds of lexers?  It generally shouldn't matter,
264   // but it might if they're empty?
265 }
266 
267 /// \brief Determine the location to use as the end of the buffer for a lexer.
268 ///
269 /// If the file ends with a newline, form the EOF token on the newline itself,
270 /// rather than "on the line following it", which doesn't exist.  This makes
271 /// diagnostics relating to the end of file include the last file that the user
272 /// actually typed, which is goodness.
273 const char *Preprocessor::getCurLexerEndPos() {
274   const char *EndPos = CurLexer->BufferEnd;
275   if (EndPos != CurLexer->BufferStart &&
276       (EndPos[-1] == '\n' || EndPos[-1] == '\r')) {
277     --EndPos;
278 
279     // Handle \n\r and \r\n:
280     if (EndPos != CurLexer->BufferStart &&
281         (EndPos[-1] == '\n' || EndPos[-1] == '\r') &&
282         EndPos[-1] != EndPos[0])
283       --EndPos;
284   }
285 
286   return EndPos;
287 }
288 
289 static void collectAllSubModulesWithUmbrellaHeader(
290     const Module &Mod, SmallVectorImpl<const Module *> &SubMods) {
291   if (Mod.getUmbrellaHeader())
292     SubMods.push_back(&Mod);
293   for (auto *M : Mod.submodules())
294     collectAllSubModulesWithUmbrellaHeader(*M, SubMods);
295 }
296 
297 void Preprocessor::diagnoseMissingHeaderInUmbrellaDir(const Module &Mod) {
298   assert(Mod.getUmbrellaHeader() && "Module must use umbrella header");
299   SourceLocation StartLoc =
300       SourceMgr.getLocForStartOfFile(SourceMgr.getMainFileID());
301   if (getDiagnostics().isIgnored(diag::warn_uncovered_module_header, StartLoc))
302     return;
303 
304   ModuleMap &ModMap = getHeaderSearchInfo().getModuleMap();
305   const DirectoryEntry *Dir = Mod.getUmbrellaDir().Entry;
306   vfs::FileSystem &FS = *FileMgr.getVirtualFileSystem();
307   std::error_code EC;
308   for (vfs::recursive_directory_iterator Entry(FS, Dir->getName(), EC), End;
309        Entry != End && !EC; Entry.increment(EC)) {
310     using llvm::StringSwitch;
311 
312     // Check whether this entry has an extension typically associated with
313     // headers.
314     if (!StringSwitch<bool>(llvm::sys::path::extension(Entry->getName()))
315              .Cases(".h", ".H", ".hh", ".hpp", true)
316              .Default(false))
317       continue;
318 
319     if (const FileEntry *Header = getFileManager().getFile(Entry->getName()))
320       if (!getSourceManager().hasFileInfo(Header)) {
321         if (!ModMap.isHeaderInUnavailableModule(Header)) {
322           // Find the relative path that would access this header.
323           SmallString<128> RelativePath;
324           computeRelativePath(FileMgr, Dir, Header, RelativePath);
325           Diag(StartLoc, diag::warn_uncovered_module_header)
326               << Mod.getFullModuleName() << RelativePath;
327         }
328       }
329   }
330 }
331 
332 /// HandleEndOfFile - This callback is invoked when the lexer hits the end of
333 /// the current file.  This either returns the EOF token or pops a level off
334 /// the include stack and keeps going.
335 bool Preprocessor::HandleEndOfFile(Token &Result, bool isEndOfMacro) {
336   assert(!CurTokenLexer &&
337          "Ending a file when currently in a macro!");
338 
339   // If we have an unclosed module region from a pragma at the end of a
340   // module, complain and close it now.
341   // FIXME: This is not correct if we are building a module from PTH.
342   const bool LeavingSubmodule = CurLexer && CurLexerSubmodule;
343   if ((LeavingSubmodule || IncludeMacroStack.empty()) &&
344       !BuildingSubmoduleStack.empty() &&
345       BuildingSubmoduleStack.back().IsPragma) {
346     Diag(BuildingSubmoduleStack.back().ImportLoc,
347          diag::err_pp_module_begin_without_module_end);
348     Module *M = LeaveSubmodule(/*ForPragma*/true);
349 
350     Result.startToken();
351     const char *EndPos = getCurLexerEndPos();
352     CurLexer->BufferPtr = EndPos;
353     CurLexer->FormTokenWithChars(Result, EndPos, tok::annot_module_end);
354     Result.setAnnotationEndLoc(Result.getLocation());
355     Result.setAnnotationValue(M);
356     return true;
357   }
358 
359   // See if this file had a controlling macro.
360   if (CurPPLexer) {  // Not ending a macro, ignore it.
361     if (const IdentifierInfo *ControllingMacro =
362           CurPPLexer->MIOpt.GetControllingMacroAtEndOfFile()) {
363       // Okay, this has a controlling macro, remember in HeaderFileInfo.
364       if (const FileEntry *FE = CurPPLexer->getFileEntry()) {
365         HeaderInfo.SetFileControllingMacro(FE, ControllingMacro);
366         if (MacroInfo *MI =
367               getMacroInfo(const_cast<IdentifierInfo*>(ControllingMacro)))
368           MI->setUsedForHeaderGuard(true);
369         if (const IdentifierInfo *DefinedMacro =
370               CurPPLexer->MIOpt.GetDefinedMacro()) {
371           if (!isMacroDefined(ControllingMacro) &&
372               DefinedMacro != ControllingMacro &&
373               HeaderInfo.FirstTimeLexingFile(FE)) {
374 
375             // If the edit distance between the two macros is more than 50%,
376             // DefinedMacro may not be header guard, or can be header guard of
377             // another header file. Therefore, it maybe defining something
378             // completely different. This can be observed in the wild when
379             // handling feature macros or header guards in different files.
380 
381             const StringRef ControllingMacroName = ControllingMacro->getName();
382             const StringRef DefinedMacroName = DefinedMacro->getName();
383             const size_t MaxHalfLength = std::max(ControllingMacroName.size(),
384                                                   DefinedMacroName.size()) / 2;
385             const unsigned ED = ControllingMacroName.edit_distance(
386                 DefinedMacroName, true, MaxHalfLength);
387             if (ED <= MaxHalfLength) {
388               // Emit a warning for a bad header guard.
389               Diag(CurPPLexer->MIOpt.GetMacroLocation(),
390                    diag::warn_header_guard)
391                   << CurPPLexer->MIOpt.GetMacroLocation() << ControllingMacro;
392               Diag(CurPPLexer->MIOpt.GetDefinedLocation(),
393                    diag::note_header_guard)
394                   << CurPPLexer->MIOpt.GetDefinedLocation() << DefinedMacro
395                   << ControllingMacro
396                   << FixItHint::CreateReplacement(
397                          CurPPLexer->MIOpt.GetDefinedLocation(),
398                          ControllingMacro->getName());
399             }
400           }
401         }
402       }
403     }
404   }
405 
406   // Complain about reaching a true EOF within arc_cf_code_audited.
407   // We don't want to complain about reaching the end of a macro
408   // instantiation or a _Pragma.
409   if (PragmaARCCFCodeAuditedLoc.isValid() &&
410       !isEndOfMacro && !(CurLexer && CurLexer->Is_PragmaLexer)) {
411     Diag(PragmaARCCFCodeAuditedLoc, diag::err_pp_eof_in_arc_cf_code_audited);
412 
413     // Recover by leaving immediately.
414     PragmaARCCFCodeAuditedLoc = SourceLocation();
415   }
416 
417   // Complain about reaching a true EOF within assume_nonnull.
418   // We don't want to complain about reaching the end of a macro
419   // instantiation or a _Pragma.
420   if (PragmaAssumeNonNullLoc.isValid() &&
421       !isEndOfMacro && !(CurLexer && CurLexer->Is_PragmaLexer)) {
422     Diag(PragmaAssumeNonNullLoc, diag::err_pp_eof_in_assume_nonnull);
423 
424     // Recover by leaving immediately.
425     PragmaAssumeNonNullLoc = SourceLocation();
426   }
427 
428   // If this is a #include'd file, pop it off the include stack and continue
429   // lexing the #includer file.
430   if (!IncludeMacroStack.empty()) {
431 
432     // If we lexed the code-completion file, act as if we reached EOF.
433     if (isCodeCompletionEnabled() && CurPPLexer &&
434         SourceMgr.getLocForStartOfFile(CurPPLexer->getFileID()) ==
435             CodeCompletionFileLoc) {
436       if (CurLexer) {
437         Result.startToken();
438         CurLexer->FormTokenWithChars(Result, CurLexer->BufferEnd, tok::eof);
439         CurLexer.reset();
440       } else {
441         assert(CurPTHLexer && "Got EOF but no current lexer set!");
442         CurPTHLexer->getEOF(Result);
443         CurPTHLexer.reset();
444       }
445 
446       CurPPLexer = nullptr;
447       return true;
448     }
449 
450     if (!isEndOfMacro && CurPPLexer &&
451         SourceMgr.getIncludeLoc(CurPPLexer->getFileID()).isValid()) {
452       // Notify SourceManager to record the number of FileIDs that were created
453       // during lexing of the #include'd file.
454       unsigned NumFIDs =
455           SourceMgr.local_sloc_entry_size() -
456           CurPPLexer->getInitialNumSLocEntries() + 1/*#include'd file*/;
457       SourceMgr.setNumCreatedFIDsForFileID(CurPPLexer->getFileID(), NumFIDs);
458     }
459 
460     bool ExitedFromPredefinesFile = false;
461     FileID ExitedFID;
462     if (!isEndOfMacro && CurPPLexer) {
463       ExitedFID = CurPPLexer->getFileID();
464 
465       assert(PredefinesFileID.isValid() &&
466              "HandleEndOfFile is called before PredefinesFileId is set");
467       ExitedFromPredefinesFile = (PredefinesFileID == ExitedFID);
468     }
469 
470     if (LeavingSubmodule) {
471       // We're done with this submodule.
472       Module *M = LeaveSubmodule(/*ForPragma*/false);
473 
474       // Notify the parser that we've left the module.
475       const char *EndPos = getCurLexerEndPos();
476       Result.startToken();
477       CurLexer->BufferPtr = EndPos;
478       CurLexer->FormTokenWithChars(Result, EndPos, tok::annot_module_end);
479       Result.setAnnotationEndLoc(Result.getLocation());
480       Result.setAnnotationValue(M);
481     }
482 
483     // We're done with the #included file.
484     RemoveTopOfLexerStack();
485 
486     // Propagate info about start-of-line/leading white-space/etc.
487     PropagateLineStartLeadingSpaceInfo(Result);
488 
489     // Notify the client, if desired, that we are in a new source file.
490     if (Callbacks && !isEndOfMacro && CurPPLexer) {
491       SrcMgr::CharacteristicKind FileType =
492         SourceMgr.getFileCharacteristic(CurPPLexer->getSourceLocation());
493       Callbacks->FileChanged(CurPPLexer->getSourceLocation(),
494                              PPCallbacks::ExitFile, FileType, ExitedFID);
495     }
496 
497     // Restore conditional stack from the preamble right after exiting from the
498     // predefines file.
499     if (ExitedFromPredefinesFile)
500       replayPreambleConditionalStack();
501 
502     // Client should lex another token unless we generated an EOM.
503     return LeavingSubmodule;
504   }
505 
506   // If this is the end of the main file, form an EOF token.
507   if (CurLexer) {
508     const char *EndPos = getCurLexerEndPos();
509     Result.startToken();
510     CurLexer->BufferPtr = EndPos;
511     CurLexer->FormTokenWithChars(Result, EndPos, tok::eof);
512 
513     if (isCodeCompletionEnabled()) {
514       // Inserting the code-completion point increases the source buffer by 1,
515       // but the main FileID was created before inserting the point.
516       // Compensate by reducing the EOF location by 1, otherwise the location
517       // will point to the next FileID.
518       // FIXME: This is hacky, the code-completion point should probably be
519       // inserted before the main FileID is created.
520       if (CurLexer->getFileLoc() == CodeCompletionFileLoc)
521         Result.setLocation(Result.getLocation().getLocWithOffset(-1));
522     }
523 
524     if (!isIncrementalProcessingEnabled())
525       // We're done with lexing.
526       CurLexer.reset();
527   } else {
528     assert(CurPTHLexer && "Got EOF but no current lexer set!");
529     CurPTHLexer->getEOF(Result);
530     CurPTHLexer.reset();
531   }
532 
533   if (!isIncrementalProcessingEnabled())
534     CurPPLexer = nullptr;
535 
536   if (TUKind == TU_Complete) {
537     // This is the end of the top-level file. 'WarnUnusedMacroLocs' has
538     // collected all macro locations that we need to warn because they are not
539     // used.
540     for (WarnUnusedMacroLocsTy::iterator
541            I=WarnUnusedMacroLocs.begin(), E=WarnUnusedMacroLocs.end();
542            I!=E; ++I)
543       Diag(*I, diag::pp_macro_not_used);
544   }
545 
546   // If we are building a module that has an umbrella header, make sure that
547   // each of the headers within the directory, including all submodules, is
548   // covered by the umbrella header was actually included by the umbrella
549   // header.
550   if (Module *Mod = getCurrentModule()) {
551     llvm::SmallVector<const Module *, 4> AllMods;
552     collectAllSubModulesWithUmbrellaHeader(*Mod, AllMods);
553     for (auto *M : AllMods)
554       diagnoseMissingHeaderInUmbrellaDir(*M);
555   }
556 
557   return true;
558 }
559 
560 /// HandleEndOfTokenLexer - This callback is invoked when the current TokenLexer
561 /// hits the end of its token stream.
562 bool Preprocessor::HandleEndOfTokenLexer(Token &Result) {
563   assert(CurTokenLexer && !CurPPLexer &&
564          "Ending a macro when currently in a #include file!");
565 
566   if (!MacroExpandingLexersStack.empty() &&
567       MacroExpandingLexersStack.back().first == CurTokenLexer.get())
568     removeCachedMacroExpandedTokensOfLastLexer();
569 
570   // Delete or cache the now-dead macro expander.
571   if (NumCachedTokenLexers == TokenLexerCacheSize)
572     CurTokenLexer.reset();
573   else
574     TokenLexerCache[NumCachedTokenLexers++] = std::move(CurTokenLexer);
575 
576   // Handle this like a #include file being popped off the stack.
577   return HandleEndOfFile(Result, true);
578 }
579 
580 /// RemoveTopOfLexerStack - Pop the current lexer/macro exp off the top of the
581 /// lexer stack.  This should only be used in situations where the current
582 /// state of the top-of-stack lexer is unknown.
583 void Preprocessor::RemoveTopOfLexerStack() {
584   assert(!IncludeMacroStack.empty() && "Ran out of stack entries to load");
585 
586   if (CurTokenLexer) {
587     // Delete or cache the now-dead macro expander.
588     if (NumCachedTokenLexers == TokenLexerCacheSize)
589       CurTokenLexer.reset();
590     else
591       TokenLexerCache[NumCachedTokenLexers++] = std::move(CurTokenLexer);
592   }
593 
594   PopIncludeMacroStack();
595 }
596 
597 /// HandleMicrosoftCommentPaste - When the macro expander pastes together a
598 /// comment (/##/) in microsoft mode, this method handles updating the current
599 /// state, returning the token on the next source line.
600 void Preprocessor::HandleMicrosoftCommentPaste(Token &Tok) {
601   assert(CurTokenLexer && !CurPPLexer &&
602          "Pasted comment can only be formed from macro");
603   // We handle this by scanning for the closest real lexer, switching it to
604   // raw mode and preprocessor mode.  This will cause it to return \n as an
605   // explicit EOD token.
606   PreprocessorLexer *FoundLexer = nullptr;
607   bool LexerWasInPPMode = false;
608   for (const IncludeStackInfo &ISI : llvm::reverse(IncludeMacroStack)) {
609     if (ISI.ThePPLexer == nullptr) continue;  // Scan for a real lexer.
610 
611     // Once we find a real lexer, mark it as raw mode (disabling macro
612     // expansions) and preprocessor mode (return EOD).  We know that the lexer
613     // was *not* in raw mode before, because the macro that the comment came
614     // from was expanded.  However, it could have already been in preprocessor
615     // mode (#if COMMENT) in which case we have to return it to that mode and
616     // return EOD.
617     FoundLexer = ISI.ThePPLexer;
618     FoundLexer->LexingRawMode = true;
619     LexerWasInPPMode = FoundLexer->ParsingPreprocessorDirective;
620     FoundLexer->ParsingPreprocessorDirective = true;
621     break;
622   }
623 
624   // Okay, we either found and switched over the lexer, or we didn't find a
625   // lexer.  In either case, finish off the macro the comment came from, getting
626   // the next token.
627   if (!HandleEndOfTokenLexer(Tok)) Lex(Tok);
628 
629   // Discarding comments as long as we don't have EOF or EOD.  This 'comments
630   // out' the rest of the line, including any tokens that came from other macros
631   // that were active, as in:
632   //  #define submacro a COMMENT b
633   //    submacro c
634   // which should lex to 'a' only: 'b' and 'c' should be removed.
635   while (Tok.isNot(tok::eod) && Tok.isNot(tok::eof))
636     Lex(Tok);
637 
638   // If we got an eod token, then we successfully found the end of the line.
639   if (Tok.is(tok::eod)) {
640     assert(FoundLexer && "Can't get end of line without an active lexer");
641     // Restore the lexer back to normal mode instead of raw mode.
642     FoundLexer->LexingRawMode = false;
643 
644     // If the lexer was already in preprocessor mode, just return the EOD token
645     // to finish the preprocessor line.
646     if (LexerWasInPPMode) return;
647 
648     // Otherwise, switch out of PP mode and return the next lexed token.
649     FoundLexer->ParsingPreprocessorDirective = false;
650     return Lex(Tok);
651   }
652 
653   // If we got an EOF token, then we reached the end of the token stream but
654   // didn't find an explicit \n.  This can only happen if there was no lexer
655   // active (an active lexer would return EOD at EOF if there was no \n in
656   // preprocessor directive mode), so just return EOF as our token.
657   assert(!FoundLexer && "Lexer should return EOD before EOF in PP mode");
658 }
659 
660 void Preprocessor::EnterSubmodule(Module *M, SourceLocation ImportLoc,
661                                   bool ForPragma) {
662   if (!getLangOpts().ModulesLocalVisibility) {
663     // Just track that we entered this submodule.
664     BuildingSubmoduleStack.push_back(
665         BuildingSubmoduleInfo(M, ImportLoc, ForPragma, CurSubmoduleState,
666                               PendingModuleMacroNames.size()));
667     return;
668   }
669 
670   // Resolve as much of the module definition as we can now, before we enter
671   // one of its headers.
672   // FIXME: Can we enable Complain here?
673   // FIXME: Can we do this when local visibility is disabled?
674   ModuleMap &ModMap = getHeaderSearchInfo().getModuleMap();
675   ModMap.resolveExports(M, /*Complain=*/false);
676   ModMap.resolveUses(M, /*Complain=*/false);
677   ModMap.resolveConflicts(M, /*Complain=*/false);
678 
679   // If this is the first time we've entered this module, set up its state.
680   auto R = Submodules.insert(std::make_pair(M, SubmoduleState()));
681   auto &State = R.first->second;
682   bool FirstTime = R.second;
683   if (FirstTime) {
684     // Determine the set of starting macros for this submodule; take these
685     // from the "null" module (the predefines buffer).
686     //
687     // FIXME: If we have local visibility but not modules enabled, the
688     // NullSubmoduleState is polluted by #defines in the top-level source
689     // file.
690     auto &StartingMacros = NullSubmoduleState.Macros;
691 
692     // Restore to the starting state.
693     // FIXME: Do this lazily, when each macro name is first referenced.
694     for (auto &Macro : StartingMacros) {
695       // Skip uninteresting macros.
696       if (!Macro.second.getLatest() &&
697           Macro.second.getOverriddenMacros().empty())
698         continue;
699 
700       MacroState MS(Macro.second.getLatest());
701       MS.setOverriddenMacros(*this, Macro.second.getOverriddenMacros());
702       State.Macros.insert(std::make_pair(Macro.first, std::move(MS)));
703     }
704   }
705 
706   // Track that we entered this module.
707   BuildingSubmoduleStack.push_back(
708       BuildingSubmoduleInfo(M, ImportLoc, ForPragma, CurSubmoduleState,
709                             PendingModuleMacroNames.size()));
710 
711   // Switch to this submodule as the current submodule.
712   CurSubmoduleState = &State;
713 
714   // This module is visible to itself.
715   if (FirstTime)
716     makeModuleVisible(M, ImportLoc);
717 }
718 
719 bool Preprocessor::needModuleMacros() const {
720   // If we're not within a submodule, we never need to create ModuleMacros.
721   if (BuildingSubmoduleStack.empty())
722     return false;
723   // If we are tracking module macro visibility even for textually-included
724   // headers, we need ModuleMacros.
725   if (getLangOpts().ModulesLocalVisibility)
726     return true;
727   // Otherwise, we only need module macros if we're actually compiling a module
728   // interface.
729   return getLangOpts().isCompilingModule();
730 }
731 
732 Module *Preprocessor::LeaveSubmodule(bool ForPragma) {
733   if (BuildingSubmoduleStack.empty() ||
734       BuildingSubmoduleStack.back().IsPragma != ForPragma) {
735     assert(ForPragma && "non-pragma module enter/leave mismatch");
736     return nullptr;
737   }
738 
739   auto &Info = BuildingSubmoduleStack.back();
740 
741   Module *LeavingMod = Info.M;
742   SourceLocation ImportLoc = Info.ImportLoc;
743 
744   if (!needModuleMacros() ||
745       (!getLangOpts().ModulesLocalVisibility &&
746        LeavingMod->getTopLevelModuleName() != getLangOpts().CurrentModule)) {
747     // If we don't need module macros, or this is not a module for which we
748     // are tracking macro visibility, don't build any, and preserve the list
749     // of pending names for the surrounding submodule.
750     BuildingSubmoduleStack.pop_back();
751     makeModuleVisible(LeavingMod, ImportLoc);
752     return LeavingMod;
753   }
754 
755   // Create ModuleMacros for any macros defined in this submodule.
756   llvm::SmallPtrSet<const IdentifierInfo*, 8> VisitedMacros;
757   for (unsigned I = Info.OuterPendingModuleMacroNames;
758        I != PendingModuleMacroNames.size(); ++I) {
759     auto *II = const_cast<IdentifierInfo*>(PendingModuleMacroNames[I]);
760     if (!VisitedMacros.insert(II).second)
761       continue;
762 
763     auto MacroIt = CurSubmoduleState->Macros.find(II);
764     if (MacroIt == CurSubmoduleState->Macros.end())
765       continue;
766     auto &Macro = MacroIt->second;
767 
768     // Find the starting point for the MacroDirective chain in this submodule.
769     MacroDirective *OldMD = nullptr;
770     auto *OldState = Info.OuterSubmoduleState;
771     if (getLangOpts().ModulesLocalVisibility)
772       OldState = &NullSubmoduleState;
773     if (OldState && OldState != CurSubmoduleState) {
774       // FIXME: It'd be better to start at the state from when we most recently
775       // entered this submodule, but it doesn't really matter.
776       auto &OldMacros = OldState->Macros;
777       auto OldMacroIt = OldMacros.find(II);
778       if (OldMacroIt == OldMacros.end())
779         OldMD = nullptr;
780       else
781         OldMD = OldMacroIt->second.getLatest();
782     }
783 
784     // This module may have exported a new macro. If so, create a ModuleMacro
785     // representing that fact.
786     bool ExplicitlyPublic = false;
787     for (auto *MD = Macro.getLatest(); MD != OldMD; MD = MD->getPrevious()) {
788       assert(MD && "broken macro directive chain");
789 
790       if (auto *VisMD = dyn_cast<VisibilityMacroDirective>(MD)) {
791         // The latest visibility directive for a name in a submodule affects
792         // all the directives that come before it.
793         if (VisMD->isPublic())
794           ExplicitlyPublic = true;
795         else if (!ExplicitlyPublic)
796           // Private with no following public directive: not exported.
797           break;
798       } else {
799         MacroInfo *Def = nullptr;
800         if (DefMacroDirective *DefMD = dyn_cast<DefMacroDirective>(MD))
801           Def = DefMD->getInfo();
802 
803         // FIXME: Issue a warning if multiple headers for the same submodule
804         // define a macro, rather than silently ignoring all but the first.
805         bool IsNew;
806         // Don't bother creating a module macro if it would represent a #undef
807         // that doesn't override anything.
808         if (Def || !Macro.getOverriddenMacros().empty())
809           addModuleMacro(LeavingMod, II, Def,
810                          Macro.getOverriddenMacros(), IsNew);
811 
812         if (!getLangOpts().ModulesLocalVisibility) {
813           // This macro is exposed to the rest of this compilation as a
814           // ModuleMacro; we don't need to track its MacroDirective any more.
815           Macro.setLatest(nullptr);
816           Macro.setOverriddenMacros(*this, {});
817         }
818         break;
819       }
820     }
821   }
822   PendingModuleMacroNames.resize(Info.OuterPendingModuleMacroNames);
823 
824   // FIXME: Before we leave this submodule, we should parse all the other
825   // headers within it. Otherwise, we're left with an inconsistent state
826   // where we've made the module visible but don't yet have its complete
827   // contents.
828 
829   // Put back the outer module's state, if we're tracking it.
830   if (getLangOpts().ModulesLocalVisibility)
831     CurSubmoduleState = Info.OuterSubmoduleState;
832 
833   BuildingSubmoduleStack.pop_back();
834 
835   // A nested #include makes the included submodule visible.
836   makeModuleVisible(LeavingMod, ImportLoc);
837   return LeavingMod;
838 }
839