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John Thompson7c6e79f32013-07-29 19:07:00 +00001//===--- PreprocessorTracker.cpp - Preprocessor tracking -*- C++ -*------===//
John Thompson94faa4d2013-07-26 23:56:42 +00002//
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//
John Thompson7c6e79f32013-07-29 19:07:00 +00008//===--------------------------------------------------------------------===//
9//
John Thompson74083922013-09-18 18:19:43 +000010// The Basic Idea (Macro and Conditional Checking)
John Thompson94faa4d2013-07-26 23:56:42 +000011//
12// Basically we install a PPCallbacks-derived object to track preprocessor
13// activity, namely when a header file is entered/exited, when a macro
John Thompson7c6e79f32013-07-29 19:07:00 +000014// is expanded, when "defined" is used, and when #if, #elif, #ifdef,
15// and #ifndef are used. We save the state of macro and "defined"
John Thompson94faa4d2013-07-26 23:56:42 +000016// expressions in a map, keyed on a name/file/line/column quadruple.
John Thompson7c6e79f32013-07-29 19:07:00 +000017// The map entries store the different states (values) that a macro expansion,
18// "defined" expression, or condition expression has in the course of
John Thompson94faa4d2013-07-26 23:56:42 +000019// processing for the one location in the one header containing it,
20// plus a list of the nested include stacks for the states. When a macro
John Thompson7c6e79f32013-07-29 19:07:00 +000021// or "defined" expression evaluates to the same value, which is the
John Thompson94faa4d2013-07-26 23:56:42 +000022// desired case, only one state is stored. Similarly, for conditional
23// directives, we save the condition expression states in a separate map.
24//
25// This information is collected as modularize compiles all the headers
26// given to it to process. After all the compilations are performed,
John Thompson7c6e79f32013-07-29 19:07:00 +000027// a check is performed for any entries in the maps that contain more
28// than one different state, and for these an output message is generated.
29//
30// For example:
31//
32// (...)/SubHeader.h:11:5:
33// #if SYMBOL == 1
34// ^
35// error: Macro instance 'SYMBOL' has different values in this header,
36// depending on how it was included.
37// 'SYMBOL' expanded to: '1' with respect to these inclusion paths:
38// (...)/Header1.h
39// (...)/SubHeader.h
40// (...)/SubHeader.h:3:9:
41// #define SYMBOL 1
42// ^
43// Macro defined here.
44// 'SYMBOL' expanded to: '2' with respect to these inclusion paths:
45// (...)/Header2.h
46// (...)/SubHeader.h
47// (...)/SubHeader.h:7:9:
48// #define SYMBOL 2
49// ^
50// Macro defined here.
John Thompson94faa4d2013-07-26 23:56:42 +000051//
John Thompson74083922013-09-18 18:19:43 +000052// The Basic Idea ('Extern "C/C++" {}' Or 'namespace {}') With Nested
53// '#include' Checking)
54//
55// To check for '#include' directives nested inside 'Extern "C/C++" {}'
56// or 'namespace {}' blocks, we keep track of the '#include' directives
57// while running the preprocessor, and later during a walk of the AST
58// we call a function to check for any '#include' directies inside
59// an 'Extern "C/C++" {}' or 'namespace {}' block, given its source
60// range.
61//
62// Design and Implementation Details (Macro and Conditional Checking)
John Thompson94faa4d2013-07-26 23:56:42 +000063//
64// A PreprocessorTrackerImpl class implements the PreprocessorTracker
65// interface. It uses a PreprocessorCallbacks class derived from PPCallbacks
66// to track preprocessor activity, namely entering/exiting a header, macro
John Thompson7c6e79f32013-07-29 19:07:00 +000067// expansions, use of "defined" expressions, and #if, #elif, #ifdef, and
John Thompson94faa4d2013-07-26 23:56:42 +000068// #ifndef conditional directives. PreprocessorTrackerImpl stores a map
69// of MacroExpansionTracker objects keyed on a name/file/line/column
70// value represented by a light-weight PPItemKey value object. This
71// is the key top-level data structure tracking the values of macro
72// expansion instances. Similarly, it stores a map of ConditionalTracker
73// objects with the same kind of key, for tracking preprocessor conditional
74// directives.
75//
76// The MacroExpansionTracker object represents one macro reference or use
John Thompson7c6e79f32013-07-29 19:07:00 +000077// of a "defined" expression in a header file. It stores a handle to a
John Thompson94faa4d2013-07-26 23:56:42 +000078// string representing the unexpanded macro instance, a handle to a string
79// representing the unpreprocessed source line containing the unexpanded
80// macro instance, and a vector of one or more MacroExpansionInstance
81// objects.
82//
83// The MacroExpansionInstance object represents one or more expansions
84// of a macro reference, for the case where the macro expands to the same
85// value. MacroExpansionInstance stores a handle to a string representing
86// the expanded macro value, a PPItemKey representing the file/line/column
87// where the macro was defined, a handle to a string representing the source
88// line containing the macro definition, and a vector of InclusionPathHandle
John Thompsoncc2e2912013-09-03 18:44:11 +000089// values that represents the hierarchies of include files for each case
John Thompson94faa4d2013-07-26 23:56:42 +000090// where the particular header containing the macro reference was referenced
91// or included.
92
93// In the normal case where a macro instance always expands to the same
94// value, the MacroExpansionTracker object will only contain one
95// MacroExpansionInstance representing all the macro expansion instances.
96// If a case was encountered where a macro instance expands to a value
97// that is different from that seen before, or the macro was defined in
98// a different place, a new MacroExpansionInstance object representing
99// that case will be added to the vector in MacroExpansionTracker. If a
100// macro instance expands to a value already seen before, the
John Thompson7c6e79f32013-07-29 19:07:00 +0000101// InclusionPathHandle representing that case's include file hierarchy
John Thompson94faa4d2013-07-26 23:56:42 +0000102// will be added to the existing MacroExpansionInstance object.
103
104// For checking conditional directives, the ConditionalTracker class
105// functions similarly to MacroExpansionTracker, but tracks an #if,
106// #elif, #ifdef, or #ifndef directive in a header file. It stores
107// a vector of one or two ConditionalExpansionInstance objects,
108// representing the cases where the conditional expression evaluates
109// to true or false. This latter object stores the evaluated value
110// of the condition expression (a bool) and a vector of
111// InclusionPathHandles.
112//
113// To reduce the instances of string and object copying, the
114// PreprocessorTrackerImpl class uses a StringPool to save all stored
115// strings, and defines a StringHandle type to abstract the references
116// to the strings.
117//
118// PreprocessorTrackerImpl also maintains a list representing the unique
John Thompson7c6e79f32013-07-29 19:07:00 +0000119// headers, which is just a vector of StringHandle's for the header file
John Thompson94faa4d2013-07-26 23:56:42 +0000120// paths. A HeaderHandle abstracts a reference to a header, and is simply
121// the index of the stored header file path.
122//
John Thompson7c6e79f32013-07-29 19:07:00 +0000123// A HeaderInclusionPath class abstracts a unique hierarchy of header file
John Thompson94faa4d2013-07-26 23:56:42 +0000124// inclusions. It simply stores a vector of HeaderHandles ordered from the
125// top-most header (the one from the header list passed to modularize) down
126// to the header containing the macro reference. PreprocessorTrackerImpl
127// stores a vector of these objects. An InclusionPathHandle typedef
128// abstracts a reference to one of the HeaderInclusionPath objects, and is
129// simply the index of the stored HeaderInclusionPath object. The
John Thompson7c6e79f32013-07-29 19:07:00 +0000130// MacroExpansionInstance object stores a vector of these handles so that
John Thompson94faa4d2013-07-26 23:56:42 +0000131// the reporting function can display the include hierarchies for the macro
132// expansion instances represented by that object, to help the user
133// understand how the header was included. (A future enhancement might
134// be to associate a line number for the #include directives, but I
135// think not doing so is good enough for the present.)
136//
137// A key reason for using these opaque handles was to try to keep all the
138// internal objects light-weight value objects, in order to reduce string
139// and object copying overhead, and to abstract this implementation detail.
140//
141// The key data structures are built up while modularize runs the headers
142// through the compilation. A PreprocessorTracker instance is created and
143// passed down to the AST action and consumer objects in modularize. For
144// each new compilation instance, the consumer calls the
John Thompson7c6e79f32013-07-29 19:07:00 +0000145// PreprocessorTracker's handleNewPreprocessorEntry function, which sets
John Thompson94faa4d2013-07-26 23:56:42 +0000146// up a PreprocessorCallbacks object for the preprocessor. At the end of
John Thompson7c6e79f32013-07-29 19:07:00 +0000147// the compilation instance, the PreprocessorTracker's
John Thompson94faa4d2013-07-26 23:56:42 +0000148// handleNewPreprocessorExit function handles cleaning up with respect
149// to the preprocessing instance.
150//
151// The PreprocessorCallbacks object uses an overidden FileChanged callback
152// to determine when a header is entered and exited (including exiting the
John Thompson7c6e79f32013-07-29 19:07:00 +0000153// header during #include directives). It calls PreprocessorTracker's
John Thompson94faa4d2013-07-26 23:56:42 +0000154// handleHeaderEntry and handleHeaderExit functions upon entering and
155// exiting a header. These functions manage a stack of header handles
156// representing by a vector, pushing and popping header handles as headers
157// are entered and exited. When a HeaderInclusionPath object is created,
158// it simply copies this stack.
159//
160// The PreprocessorCallbacks object uses an overridden MacroExpands callback
161// to track when a macro expansion is performed. It calls a couple of helper
162// functions to get the unexpanded and expanded macro values as strings, but
John Thompson7c6e79f32013-07-29 19:07:00 +0000163// then calls PreprocessorTrackerImpl's addMacroExpansionInstance function to
John Thompson94faa4d2013-07-26 23:56:42 +0000164// do the rest of the work. The getMacroExpandedString function uses the
John Thompson7c6e79f32013-07-29 19:07:00 +0000165// preprocessor's getSpelling to convert tokens to strings using the
John Thompson94faa4d2013-07-26 23:56:42 +0000166// information passed to the MacroExpands callback, and simply concatenates
167// them. It makes recursive calls to itself to handle nested macro
168// definitions, and also handles function-style macros.
169//
John Thompson7c6e79f32013-07-29 19:07:00 +0000170// PreprocessorTrackerImpl's addMacroExpansionInstance function looks for
John Thompson94faa4d2013-07-26 23:56:42 +0000171// an existing MacroExpansionTracker entry in its map of MacroExampleTracker
172// objects. If none exists, it adds one with one MacroExpansionInstance and
173// returns. If a MacroExpansionTracker object already exists, it looks for
174// an existing MacroExpansionInstance object stored in the
175// MacroExpansionTracker object, one that matches the macro expanded value
176// and the macro definition location. If a matching MacroExpansionInstance
177// object is found, it just adds the current HeaderInclusionPath object to
178// it. If not found, it creates and stores a new MacroExpantionInstance
179// object. The addMacroExpansionInstance function calls a couple of helper
180// functions to get the pre-formatted location and source line strings for
181// the macro reference and the macro definition stored as string handles.
182// These helper functions use the current source manager from the
183// preprocessor. This is done in advance at this point in time because the
John Thompson7c6e79f32013-07-29 19:07:00 +0000184// source manager doesn't exist at the time of the reporting.
John Thompson94faa4d2013-07-26 23:56:42 +0000185//
186// For conditional check, the PreprocessorCallbacks class overrides the
187// PPCallbacks handlers for #if, #elif, #ifdef, and #ifndef. These handlers
188// call the addConditionalExpansionInstance method of
189// PreprocessorTrackerImpl. The process is similar to that of macros, but
190// with some different data and error messages. A lookup is performed for
John Thompson7c6e79f32013-07-29 19:07:00 +0000191// the conditional, and if a ConditionalTracker object doesn't yet exist for
John Thompson94faa4d2013-07-26 23:56:42 +0000192// the conditional, a new one is added, including adding a
193// ConditionalExpansionInstance object to it to represent the condition
194// expression state. If a ConditionalTracker for the conditional does
195// exist, a lookup is made for a ConditionalExpansionInstance object
196// matching the condition expression state. If one exists, a
197// HeaderInclusionPath is added to it. Otherwise a new
198// ConditionalExpansionInstance entry is made. If a ConditionalTracker
199// has two ConditionalExpansionInstance objects, it means there was a
200// conflict, meaning the conditional expression evaluated differently in
201// one or more cases.
John Thompsoncc2e2912013-09-03 18:44:11 +0000202//
John Thompson94faa4d2013-07-26 23:56:42 +0000203// After modularize has performed all the compilations, it enters a phase
204// of error reporting. This new feature adds to this reporting phase calls
John Thompson7c6e79f32013-07-29 19:07:00 +0000205// to the PreprocessorTracker's reportInconsistentMacros and
John Thompson94faa4d2013-07-26 23:56:42 +0000206// reportInconsistentConditionals functions. These functions walk the maps
John Thompson7c6e79f32013-07-29 19:07:00 +0000207// of MacroExpansionTracker's and ConditionalTracker's respectively. If
John Thompson94faa4d2013-07-26 23:56:42 +0000208// any of these objects have more than one MacroExpansionInstance or
209// ConditionalExpansionInstance objects, it formats and outputs an error
210// message like the example shown previously, using the stored data.
211//
212// A potential issue is that there is some overlap between the #if/#elif
213// conditional and macro reporting. I could disable the #if and #elif,
John Thompson7c6e79f32013-07-29 19:07:00 +0000214// leaving just the #ifdef and #ifndef, since these don't overlap. Or,
John Thompson94faa4d2013-07-26 23:56:42 +0000215// to make clearer the separate reporting phases, I could add an output
216// message marking the phases.
217//
John Thompson74083922013-09-18 18:19:43 +0000218// Design and Implementation Details ('Extern "C/C++" {}' Or
219// 'namespace {}') With Nested '#include' Checking)
220//
221// We override the InclusionDirective in PPCallbacks to record information
222// about each '#include' directive encountered during preprocessing.
223// We co-opt the PPItemKey class to store the information about each
224// '#include' directive, including the source file name containing the
225// directive, the name of the file being included, and the source line
226// and column of the directive. We store these object in a vector,
227// after first check to see if an entry already exists.
228//
229// Later, while the AST is being walked for other checks, we provide
230// visit handlers for 'extern "C/C++" {}' and 'namespace (name) {}'
231// blocks, checking to see if any '#include' directives occurred
232// within the blocks, reporting errors if any found.
233//
John Thompson94faa4d2013-07-26 23:56:42 +0000234// Future Directions
235//
236// We probably should add options to disable any of the checks, in case
237// there is some problem with them, or the messages get too verbose.
238//
239// With the map of all the macro and conditional expansion instances,
240// it might be possible to add to the existing modularize error messages
241// (the second part referring to definitions being different), attempting
242// to tie them to the last macro conflict encountered with respect to the
243// order of the code encountered.
244//
245//===--------------------------------------------------------------------===//
246
247#include "clang/Lex/LexDiagnostic.h"
248#include "clang/Lex/MacroArgs.h"
249#include "clang/Lex/PPCallbacks.h"
250#include "llvm/Support/raw_ostream.h"
251#include "llvm/Support/StringPool.h"
John Thompson4ed963a2013-08-07 18:49:47 +0000252#include "llvm/ADT/SmallSet.h"
John Thompson94faa4d2013-07-26 23:56:42 +0000253#include "PreprocessorTracker.h"
254
255namespace Modularize {
256
257// Forwards.
258class PreprocessorTrackerImpl;
259
260// Some handle types
261typedef llvm::PooledStringPtr StringHandle;
262
263typedef int HeaderHandle;
264const HeaderHandle HeaderHandleInvalid = -1;
265
266typedef int InclusionPathHandle;
267const InclusionPathHandle InclusionPathHandleInvalid = -1;
268
269// Some utility functions.
270
271// Get a "file:line:column" source location string.
272static std::string getSourceLocationString(clang::Preprocessor &PP,
273 clang::SourceLocation Loc) {
274 if (Loc.isInvalid())
275 return std::string("(none)");
276 else
277 return Loc.printToString(PP.getSourceManager());
278}
279
280// Get just the file name from a source location.
281static std::string getSourceLocationFile(clang::Preprocessor &PP,
282 clang::SourceLocation Loc) {
283 std::string Source(getSourceLocationString(PP, Loc));
284 size_t Offset = Source.find(':', 2);
285 if (Offset == std::string::npos)
286 return Source;
287 return Source.substr(0, Offset);
288}
289
290// Get just the line and column from a source location.
291static void getSourceLocationLineAndColumn(clang::Preprocessor &PP,
292 clang::SourceLocation Loc, int &Line,
293 int &Column) {
294 clang::PresumedLoc PLoc = PP.getSourceManager().getPresumedLoc(Loc);
295 if (PLoc.isInvalid()) {
296 Line = 0;
297 Column = 0;
298 return;
299 }
300 Line = PLoc.getLine();
301 Column = PLoc.getColumn();
302}
303
304// Retrieve source snippet from file image.
305std::string getSourceString(clang::Preprocessor &PP, clang::SourceRange Range) {
306 clang::SourceLocation BeginLoc = Range.getBegin();
307 clang::SourceLocation EndLoc = Range.getEnd();
308 const char *BeginPtr = PP.getSourceManager().getCharacterData(BeginLoc);
309 const char *EndPtr = PP.getSourceManager().getCharacterData(EndLoc);
310 size_t Length = EndPtr - BeginPtr;
311 return llvm::StringRef(BeginPtr, Length).trim().str();
312}
313
John Thompson74083922013-09-18 18:19:43 +0000314// Retrieve source line from file image given a location.
John Thompson94faa4d2013-07-26 23:56:42 +0000315std::string getSourceLine(clang::Preprocessor &PP, clang::SourceLocation Loc) {
316 const llvm::MemoryBuffer *MemBuffer =
317 PP.getSourceManager().getBuffer(PP.getSourceManager().getFileID(Loc));
318 const char *Buffer = MemBuffer->getBufferStart();
319 const char *BufferEnd = MemBuffer->getBufferEnd();
320 const char *BeginPtr = PP.getSourceManager().getCharacterData(Loc);
321 const char *EndPtr = BeginPtr;
322 while (BeginPtr > Buffer) {
323 if (*BeginPtr == '\n') {
324 BeginPtr++;
325 break;
326 }
327 BeginPtr--;
328 }
329 while (EndPtr < BufferEnd) {
330 if (*EndPtr == '\n') {
331 break;
332 }
333 EndPtr++;
334 }
335 size_t Length = EndPtr - BeginPtr;
336 return llvm::StringRef(BeginPtr, Length).str();
337}
338
John Thompson74083922013-09-18 18:19:43 +0000339// Retrieve source line from file image given a file ID and line number.
340std::string getSourceLine(clang::Preprocessor &PP, clang::FileID FileID,
341 int Line) {
342 const llvm::MemoryBuffer *MemBuffer = PP.getSourceManager().getBuffer(FileID);
343 const char *Buffer = MemBuffer->getBufferStart();
344 const char *BufferEnd = MemBuffer->getBufferEnd();
345 const char *BeginPtr = Buffer;
346 const char *EndPtr = BufferEnd;
347 int LineCounter = 1;
348 if (Line == 1)
349 BeginPtr = Buffer;
350 else {
351 while (Buffer < BufferEnd) {
352 if (*Buffer == '\n') {
353 if (++LineCounter == Line) {
354 BeginPtr = Buffer++ + 1;
355 break;
356 }
357 }
358 Buffer++;
359 }
360 }
361 while (Buffer < BufferEnd) {
362 if (*Buffer == '\n') {
363 EndPtr = Buffer;
364 break;
365 }
366 Buffer++;
367 }
368 size_t Length = EndPtr - BeginPtr;
369 return llvm::StringRef(BeginPtr, Length).str();
370}
371
John Thompson94faa4d2013-07-26 23:56:42 +0000372// Get the string for the Unexpanded macro instance.
373// The soureRange is expected to end at the last token
374// for the macro instance, which in the case of a function-style
375// macro will be a ')', but for an object-style macro, it
376// will be the macro name itself.
377std::string getMacroUnexpandedString(clang::SourceRange Range,
378 clang::Preprocessor &PP,
379 llvm::StringRef MacroName,
380 const clang::MacroInfo *MI) {
381 clang::SourceLocation BeginLoc(Range.getBegin());
382 const char *BeginPtr = PP.getSourceManager().getCharacterData(BeginLoc);
383 size_t Length;
384 std::string Unexpanded;
385 if (MI->isFunctionLike()) {
386 clang::SourceLocation EndLoc(Range.getEnd());
387 const char *EndPtr = PP.getSourceManager().getCharacterData(EndLoc) + 1;
388 Length = (EndPtr - BeginPtr) + 1; // +1 is ')' width.
389 } else
390 Length = MacroName.size();
391 return llvm::StringRef(BeginPtr, Length).trim().str();
392}
393
394// Get the expansion for a macro instance, given the information
395// provided by PPCallbacks.
John Thompson91555bd2013-08-09 00:22:20 +0000396// FIXME: This doesn't support function-style macro instances
397// passed as arguments to another function-style macro. However,
398// since it still expands the inner arguments, it still
399// allows modularize to effectively work with respect to macro
400// consistency checking, although it displays the incorrect
401// expansion in error messages.
John Thompson94faa4d2013-07-26 23:56:42 +0000402std::string getMacroExpandedString(clang::Preprocessor &PP,
403 llvm::StringRef MacroName,
404 const clang::MacroInfo *MI,
405 const clang::MacroArgs *Args) {
406 std::string Expanded;
407 // Walk over the macro Tokens.
408 typedef clang::MacroInfo::tokens_iterator Iter;
409 for (Iter I = MI->tokens_begin(), E = MI->tokens_end(); I != E; ++I) {
410 clang::IdentifierInfo *II = I->getIdentifierInfo();
411 int ArgNo = (II && Args ? MI->getArgumentNum(II) : -1);
412 if (ArgNo == -1) {
413 // This isn't an argument, just add it.
414 if (II == NULL)
415 Expanded += PP.getSpelling((*I)); // Not an identifier.
416 else {
417 // Token is for an identifier.
418 std::string Name = II->getName().str();
419 // Check for nexted macro references.
420 clang::MacroInfo *MacroInfo = PP.getMacroInfo(II);
421 if (MacroInfo != NULL)
422 Expanded += getMacroExpandedString(PP, Name, MacroInfo, NULL);
423 else
424 Expanded += Name;
425 }
426 continue;
427 }
428 // We get here if it's a function-style macro with arguments.
429 const clang::Token *ResultArgToks;
430 const clang::Token *ArgTok = Args->getUnexpArgument(ArgNo);
431 if (Args->ArgNeedsPreexpansion(ArgTok, PP))
432 ResultArgToks = &(const_cast<clang::MacroArgs *>(Args))
433 ->getPreExpArgument(ArgNo, MI, PP)[0];
434 else
435 ResultArgToks = ArgTok; // Use non-preexpanded Tokens.
436 // If the arg token didn't expand into anything, ignore it.
437 if (ResultArgToks->is(clang::tok::eof))
438 continue;
439 unsigned NumToks = clang::MacroArgs::getArgLength(ResultArgToks);
440 // Append the resulting argument expansions.
441 for (unsigned ArgumentIndex = 0; ArgumentIndex < NumToks; ++ArgumentIndex) {
442 const clang::Token &AT = ResultArgToks[ArgumentIndex];
443 clang::IdentifierInfo *II = AT.getIdentifierInfo();
444 if (II == NULL)
445 Expanded += PP.getSpelling(AT); // Not an identifier.
446 else {
447 // It's an identifier. Check for further expansion.
448 std::string Name = II->getName().str();
449 clang::MacroInfo *MacroInfo = PP.getMacroInfo(II);
450 if (MacroInfo != NULL)
451 Expanded += getMacroExpandedString(PP, Name, MacroInfo, NULL);
452 else
453 Expanded += Name;
454 }
455 }
456 }
457 return Expanded;
458}
459
460// Get the string representing a vector of Tokens.
461std::string
462getTokensSpellingString(clang::Preprocessor &PP,
463 llvm::SmallVectorImpl<clang::Token> &Tokens) {
464 std::string Expanded;
465 // Walk over the macro Tokens.
466 typedef llvm::SmallVectorImpl<clang::Token>::iterator Iter;
467 for (Iter I = Tokens.begin(), E = Tokens.end(); I != E; ++I)
468 Expanded += PP.getSpelling(*I); // Not an identifier.
469 return llvm::StringRef(Expanded).trim().str();
470}
471
472// Get the expansion for a macro instance, given the information
473// provided by PPCallbacks.
474std::string getExpandedString(clang::Preprocessor &PP,
475 llvm::StringRef MacroName,
476 const clang::MacroInfo *MI,
477 const clang::MacroArgs *Args) {
478 std::string Expanded;
479 // Walk over the macro Tokens.
480 typedef clang::MacroInfo::tokens_iterator Iter;
481 for (Iter I = MI->tokens_begin(), E = MI->tokens_end(); I != E; ++I) {
482 clang::IdentifierInfo *II = I->getIdentifierInfo();
483 int ArgNo = (II && Args ? MI->getArgumentNum(II) : -1);
484 if (ArgNo == -1) {
485 // This isn't an argument, just add it.
486 if (II == NULL)
487 Expanded += PP.getSpelling((*I)); // Not an identifier.
488 else {
489 // Token is for an identifier.
490 std::string Name = II->getName().str();
491 // Check for nexted macro references.
492 clang::MacroInfo *MacroInfo = PP.getMacroInfo(II);
493 if (MacroInfo != NULL)
494 Expanded += getMacroExpandedString(PP, Name, MacroInfo, NULL);
495 else
496 Expanded += Name;
497 }
498 continue;
499 }
500 // We get here if it's a function-style macro with arguments.
501 const clang::Token *ResultArgToks;
502 const clang::Token *ArgTok = Args->getUnexpArgument(ArgNo);
503 if (Args->ArgNeedsPreexpansion(ArgTok, PP))
504 ResultArgToks = &(const_cast<clang::MacroArgs *>(Args))
505 ->getPreExpArgument(ArgNo, MI, PP)[0];
506 else
507 ResultArgToks = ArgTok; // Use non-preexpanded Tokens.
508 // If the arg token didn't expand into anything, ignore it.
509 if (ResultArgToks->is(clang::tok::eof))
510 continue;
511 unsigned NumToks = clang::MacroArgs::getArgLength(ResultArgToks);
512 // Append the resulting argument expansions.
513 for (unsigned ArgumentIndex = 0; ArgumentIndex < NumToks; ++ArgumentIndex) {
514 const clang::Token &AT = ResultArgToks[ArgumentIndex];
515 clang::IdentifierInfo *II = AT.getIdentifierInfo();
516 if (II == NULL)
517 Expanded += PP.getSpelling(AT); // Not an identifier.
518 else {
519 // It's an identifier. Check for further expansion.
520 std::string Name = II->getName().str();
521 clang::MacroInfo *MacroInfo = PP.getMacroInfo(II);
522 if (MacroInfo != NULL)
523 Expanded += getMacroExpandedString(PP, Name, MacroInfo, NULL);
524 else
525 Expanded += Name;
526 }
527 }
528 }
529 return Expanded;
530}
531
John Thompson87f9fef2013-12-07 08:41:15 +0000532// ConditionValueKind strings.
533const char *
534ConditionValueKindStrings[] = {
535 "(not evaluated)", "false", "true"
536};
537
John Thompson94faa4d2013-07-26 23:56:42 +0000538// We need some operator overloads for string handles.
539bool operator==(const StringHandle &H1, const StringHandle &H2) {
540 const char *S1 = (H1 ? *H1 : "");
541 const char *S2 = (H2 ? *H2 : "");
542 int Diff = strcmp(S1, S2);
543 return Diff == 0;
544}
545bool operator!=(const StringHandle &H1, const StringHandle &H2) {
546 const char *S1 = (H1 ? *H1 : "");
547 const char *S2 = (H2 ? *H2 : "");
548 int Diff = strcmp(S1, S2);
549 return Diff != 0;
550}
551bool operator<(const StringHandle &H1, const StringHandle &H2) {
552 const char *S1 = (H1 ? *H1 : "");
553 const char *S2 = (H2 ? *H2 : "");
554 int Diff = strcmp(S1, S2);
555 return Diff < 0;
556}
557bool operator>(const StringHandle &H1, const StringHandle &H2) {
558 const char *S1 = (H1 ? *H1 : "");
559 const char *S2 = (H2 ? *H2 : "");
560 int Diff = strcmp(S1, S2);
561 return Diff > 0;
562}
563
564// Preprocessor item key.
565//
566// This class represents a location in a source file, for use
567// as a key representing a unique name/file/line/column quadruplet,
568// which in this case is used to identify a macro expansion instance,
569// but could be used for other things as well.
570// The file is a header file handle, the line is a line number,
571// and the column is a column number.
572class PPItemKey {
573public:
574 PPItemKey(clang::Preprocessor &PP, StringHandle Name, HeaderHandle File,
575 clang::SourceLocation Loc)
576 : Name(Name), File(File) {
577 getSourceLocationLineAndColumn(PP, Loc, Line, Column);
578 }
579 PPItemKey(StringHandle Name, HeaderHandle File, int Line, int Column)
580 : Name(Name), File(File), Line(Line), Column(Column) {}
581 PPItemKey(const PPItemKey &Other)
582 : Name(Other.Name), File(Other.File), Line(Other.Line),
583 Column(Other.Column) {}
584 PPItemKey() : File(HeaderHandleInvalid), Line(0), Column(0) {}
585 bool operator==(const PPItemKey &Other) const {
586 if (Name != Other.Name)
587 return false;
588 if (File != Other.File)
589 return false;
590 if (Line != Other.Line)
591 return false;
592 return Column == Other.Column;
593 }
594 bool operator<(const PPItemKey &Other) const {
595 if (Name < Other.Name)
596 return true;
597 else if (Name > Other.Name)
598 return false;
599 if (File < Other.File)
600 return true;
601 else if (File > Other.File)
602 return false;
603 if (Line < Other.Line)
604 return true;
605 else if (Line > Other.Line)
606 return false;
607 return Column < Other.Column;
608 }
609 StringHandle Name;
610 HeaderHandle File;
611 int Line;
612 int Column;
613};
614
615// Header inclusion path.
616class HeaderInclusionPath {
617public:
618 HeaderInclusionPath(std::vector<HeaderHandle> HeaderInclusionPath)
619 : Path(HeaderInclusionPath) {}
620 HeaderInclusionPath(const HeaderInclusionPath &Other) : Path(Other.Path) {}
621 HeaderInclusionPath() {}
622 std::vector<HeaderHandle> Path;
623};
624
625// Macro expansion instance.
626//
627// This class represents an instance of a macro expansion with a
628// unique value. It also stores the unique header inclusion paths
John Thompson7c6e79f32013-07-29 19:07:00 +0000629// for use in telling the user the nested include path to the header.
John Thompson94faa4d2013-07-26 23:56:42 +0000630class MacroExpansionInstance {
631public:
632 MacroExpansionInstance(StringHandle MacroExpanded,
633 PPItemKey &DefinitionLocation,
634 StringHandle DefinitionSourceLine,
635 InclusionPathHandle H)
636 : MacroExpanded(MacroExpanded), DefinitionLocation(DefinitionLocation),
637 DefinitionSourceLine(DefinitionSourceLine) {
638 InclusionPathHandles.push_back(H);
639 }
640 MacroExpansionInstance() {}
641
642 // Check for the presence of a header inclusion path handle entry.
643 // Return false if not found.
644 bool haveInclusionPathHandle(InclusionPathHandle H) {
645 for (std::vector<InclusionPathHandle>::iterator
646 I = InclusionPathHandles.begin(),
647 E = InclusionPathHandles.end();
648 I != E; ++I) {
649 if (*I == H)
650 return true;
651 }
652 return InclusionPathHandleInvalid;
653 }
654 // Add a new header inclusion path entry, if not already present.
655 void addInclusionPathHandle(InclusionPathHandle H) {
656 if (!haveInclusionPathHandle(H))
657 InclusionPathHandles.push_back(H);
658 }
659
660 // A string representing the macro instance after preprocessing.
661 StringHandle MacroExpanded;
662 // A file/line/column triplet representing the macro definition location.
663 PPItemKey DefinitionLocation;
664 // A place to save the macro definition line string.
665 StringHandle DefinitionSourceLine;
666 // The header inclusion path handles for all the instances.
667 std::vector<InclusionPathHandle> InclusionPathHandles;
668};
669
670// Macro expansion instance tracker.
671//
672// This class represents one macro expansion, keyed by a PPItemKey.
673// It stores a string representing the macro reference in the source,
674// and a list of ConditionalExpansionInstances objects representing
John Thompson7c6e79f32013-07-29 19:07:00 +0000675// the unique values the condition expands to in instances of the header.
John Thompson94faa4d2013-07-26 23:56:42 +0000676class MacroExpansionTracker {
677public:
678 MacroExpansionTracker(StringHandle MacroUnexpanded,
679 StringHandle MacroExpanded,
680 StringHandle InstanceSourceLine,
681 PPItemKey &DefinitionLocation,
682 StringHandle DefinitionSourceLine,
683 InclusionPathHandle InclusionPathHandle)
684 : MacroUnexpanded(MacroUnexpanded),
685 InstanceSourceLine(InstanceSourceLine) {
686 addMacroExpansionInstance(MacroExpanded, DefinitionLocation,
687 DefinitionSourceLine, InclusionPathHandle);
688 }
689 MacroExpansionTracker() {}
690
691 // Find a matching macro expansion instance.
692 MacroExpansionInstance *
693 findMacroExpansionInstance(StringHandle MacroExpanded,
694 PPItemKey &DefinitionLocation) {
695 for (std::vector<MacroExpansionInstance>::iterator
696 I = MacroExpansionInstances.begin(),
697 E = MacroExpansionInstances.end();
698 I != E; ++I) {
699 if ((I->MacroExpanded == MacroExpanded) &&
700 (I->DefinitionLocation == DefinitionLocation)) {
701 return &*I; // Found.
702 }
703 }
704 return NULL; // Not found.
705 }
706
707 // Add a macro expansion instance.
708 void addMacroExpansionInstance(StringHandle MacroExpanded,
709 PPItemKey &DefinitionLocation,
710 StringHandle DefinitionSourceLine,
711 InclusionPathHandle InclusionPathHandle) {
712 MacroExpansionInstances.push_back(
713 MacroExpansionInstance(MacroExpanded, DefinitionLocation,
714 DefinitionSourceLine, InclusionPathHandle));
715 }
716
717 // Return true if there is a mismatch.
718 bool hasMismatch() { return MacroExpansionInstances.size() > 1; }
719
720 // A string representing the macro instance without expansion.
721 StringHandle MacroUnexpanded;
722 // A place to save the macro instance source line string.
723 StringHandle InstanceSourceLine;
724 // The macro expansion instances.
725 // If all instances of the macro expansion expand to the same value,
726 // This vector will only have one instance.
727 std::vector<MacroExpansionInstance> MacroExpansionInstances;
728};
729
730// Conditional expansion instance.
731//
John Thompson7c6e79f32013-07-29 19:07:00 +0000732// This class represents an instance of a condition exoression result
733// with a unique value. It also stores the unique header inclusion paths
734// for use in telling the user the nested include path to the header.
John Thompson94faa4d2013-07-26 23:56:42 +0000735class ConditionalExpansionInstance {
736public:
John Thompson87f9fef2013-12-07 08:41:15 +0000737 ConditionalExpansionInstance(clang::PPCallbacks::ConditionValueKind ConditionValue, InclusionPathHandle H)
John Thompson94faa4d2013-07-26 23:56:42 +0000738 : ConditionValue(ConditionValue) {
739 InclusionPathHandles.push_back(H);
740 }
741 ConditionalExpansionInstance() {}
742
743 // Check for the presence of a header inclusion path handle entry.
744 // Return false if not found.
745 bool haveInclusionPathHandle(InclusionPathHandle H) {
746 for (std::vector<InclusionPathHandle>::iterator
747 I = InclusionPathHandles.begin(),
748 E = InclusionPathHandles.end();
749 I != E; ++I) {
750 if (*I == H)
751 return true;
752 }
753 return InclusionPathHandleInvalid;
754 }
755 // Add a new header inclusion path entry, if not already present.
756 void addInclusionPathHandle(InclusionPathHandle H) {
757 if (!haveInclusionPathHandle(H))
758 InclusionPathHandles.push_back(H);
759 }
760
761 // A flag representing the evaluated condition value.
John Thompson87f9fef2013-12-07 08:41:15 +0000762 clang::PPCallbacks::ConditionValueKind ConditionValue;
John Thompson94faa4d2013-07-26 23:56:42 +0000763 // The header inclusion path handles for all the instances.
764 std::vector<InclusionPathHandle> InclusionPathHandles;
765};
766
767// Conditional directive instance tracker.
768//
769// This class represents one conditional directive, keyed by a PPItemKey.
770// It stores a string representing the macro reference in the source,
John Thompson7c6e79f32013-07-29 19:07:00 +0000771// and a list of ConditionExpansionInstance objects representing
772// the unique value the condition expression expands to in instances of
773// the header.
John Thompson94faa4d2013-07-26 23:56:42 +0000774class ConditionalTracker {
775public:
776 ConditionalTracker(clang::tok::PPKeywordKind DirectiveKind,
John Thompson87f9fef2013-12-07 08:41:15 +0000777 clang::PPCallbacks::ConditionValueKind ConditionValue,
778 StringHandle ConditionUnexpanded,
John Thompson94faa4d2013-07-26 23:56:42 +0000779 InclusionPathHandle InclusionPathHandle)
780 : DirectiveKind(DirectiveKind), ConditionUnexpanded(ConditionUnexpanded) {
781 addConditionalExpansionInstance(ConditionValue, InclusionPathHandle);
782 }
783 ConditionalTracker() {}
784
785 // Find a matching condition expansion instance.
786 ConditionalExpansionInstance *
John Thompson87f9fef2013-12-07 08:41:15 +0000787 findConditionalExpansionInstance(clang::PPCallbacks::ConditionValueKind ConditionValue) {
John Thompson94faa4d2013-07-26 23:56:42 +0000788 for (std::vector<ConditionalExpansionInstance>::iterator
789 I = ConditionalExpansionInstances.begin(),
790 E = ConditionalExpansionInstances.end();
791 I != E; ++I) {
792 if (I->ConditionValue == ConditionValue) {
793 return &*I; // Found.
794 }
795 }
796 return NULL; // Not found.
797 }
798
799 // Add a conditional expansion instance.
800 void
John Thompson87f9fef2013-12-07 08:41:15 +0000801 addConditionalExpansionInstance(clang::PPCallbacks::ConditionValueKind ConditionValue,
John Thompson94faa4d2013-07-26 23:56:42 +0000802 InclusionPathHandle InclusionPathHandle) {
803 ConditionalExpansionInstances.push_back(
804 ConditionalExpansionInstance(ConditionValue, InclusionPathHandle));
805 }
806
807 // Return true if there is a mismatch.
808 bool hasMismatch() { return ConditionalExpansionInstances.size() > 1; }
809
810 // The kind of directive.
811 clang::tok::PPKeywordKind DirectiveKind;
812 // A string representing the macro instance without expansion.
813 StringHandle ConditionUnexpanded;
814 // The condition expansion instances.
815 // If all instances of the conditional expression expand to the same value,
816 // This vector will only have one instance.
817 std::vector<ConditionalExpansionInstance> ConditionalExpansionInstances;
818};
819
820// Preprocessor callbacks for modularize.
821//
822// This class derives from the Clang PPCallbacks class to track preprocessor
823// actions, such as changing files and handling preprocessor directives and
824// macro expansions. It has to figure out when a new header file is entered
825// and left, as the provided handler is not particularly clear about it.
826class PreprocessorCallbacks : public clang::PPCallbacks {
827public:
828 PreprocessorCallbacks(PreprocessorTrackerImpl &ppTracker,
829 clang::Preprocessor &PP, llvm::StringRef rootHeaderFile)
830 : PPTracker(ppTracker), PP(PP), RootHeaderFile(rootHeaderFile) {}
831 ~PreprocessorCallbacks() {}
832
833 // Overridden handlers.
John Thompson74083922013-09-18 18:19:43 +0000834 void InclusionDirective(clang::SourceLocation HashLoc,
835 const clang::Token &IncludeTok,
836 llvm::StringRef FileName, bool IsAngled,
837 clang::CharSourceRange FilenameRange,
838 const clang::FileEntry *File,
839 llvm::StringRef SearchPath,
840 llvm::StringRef RelativePath,
841 const clang::Module *Imported);
John Thompson94faa4d2013-07-26 23:56:42 +0000842 void FileChanged(clang::SourceLocation Loc,
843 clang::PPCallbacks::FileChangeReason Reason,
844 clang::SrcMgr::CharacteristicKind FileType,
845 clang::FileID PrevFID = clang::FileID());
846 void MacroExpands(const clang::Token &MacroNameTok,
847 const clang::MacroDirective *MD, clang::SourceRange Range,
848 const clang::MacroArgs *Args);
849 void Defined(const clang::Token &MacroNameTok,
850 const clang::MacroDirective *MD, clang::SourceRange Range);
851 void If(clang::SourceLocation Loc, clang::SourceRange ConditionRange,
John Thompson87f9fef2013-12-07 08:41:15 +0000852 clang::PPCallbacks::ConditionValueKind ConditionResult);
John Thompson94faa4d2013-07-26 23:56:42 +0000853 void Elif(clang::SourceLocation Loc, clang::SourceRange ConditionRange,
John Thompson87f9fef2013-12-07 08:41:15 +0000854 clang::PPCallbacks::ConditionValueKind ConditionResult, clang::SourceLocation IfLoc);
John Thompson94faa4d2013-07-26 23:56:42 +0000855 void Ifdef(clang::SourceLocation Loc, const clang::Token &MacroNameTok,
856 const clang::MacroDirective *MD);
857 void Ifndef(clang::SourceLocation Loc, const clang::Token &MacroNameTok,
858 const clang::MacroDirective *MD);
859
860private:
861 PreprocessorTrackerImpl &PPTracker;
862 clang::Preprocessor &PP;
863 std::string RootHeaderFile;
864};
865
866// Preprocessor macro expansion item map types.
867typedef std::map<PPItemKey, MacroExpansionTracker> MacroExpansionMap;
868typedef std::map<PPItemKey, MacroExpansionTracker>::iterator
869MacroExpansionMapIter;
870
871// Preprocessor conditional expansion item map types.
872typedef std::map<PPItemKey, ConditionalTracker> ConditionalExpansionMap;
873typedef std::map<PPItemKey, ConditionalTracker>::iterator
874ConditionalExpansionMapIter;
875
876// Preprocessor tracker for modularize.
877//
878// This class stores information about all the headers processed in the
879// course of running modularize.
880class PreprocessorTrackerImpl : public PreprocessorTracker {
881public:
882 PreprocessorTrackerImpl()
John Thompson48df0962013-08-05 23:55:14 +0000883 : CurrentInclusionPathHandle(InclusionPathHandleInvalid),
884 InNestedHeader(false) {}
John Thompson94faa4d2013-07-26 23:56:42 +0000885 ~PreprocessorTrackerImpl() {}
886
887 // Handle entering a preprocessing session.
888 void handlePreprocessorEntry(clang::Preprocessor &PP,
889 llvm::StringRef rootHeaderFile) {
John Thompson4ed963a2013-08-07 18:49:47 +0000890 HeadersInThisCompile.clear();
John Thompson94faa4d2013-07-26 23:56:42 +0000891 assert((HeaderStack.size() == 0) && "Header stack should be empty.");
892 pushHeaderHandle(addHeader(rootHeaderFile));
893 PP.addPPCallbacks(new PreprocessorCallbacks(*this, PP, rootHeaderFile));
894 }
895 // Handle exiting a preprocessing session.
896 void handlePreprocessorExit() { HeaderStack.clear(); }
897
John Thompson74083922013-09-18 18:19:43 +0000898 // Handle include directive.
899 // This function is called every time an include directive is seen by the
900 // preprocessor, for the purpose of later checking for 'extern "" {}' or
901 // "namespace {}" blocks containing #include directives.
902 void handleIncludeDirective(llvm::StringRef DirectivePath, int DirectiveLine,
903 int DirectiveColumn, llvm::StringRef TargetPath) {
904 HeaderHandle CurrentHeaderHandle = findHeaderHandle(DirectivePath);
905 StringHandle IncludeHeaderHandle = addString(TargetPath);
906 for (std::vector<PPItemKey>::const_iterator I = IncludeDirectives.begin(),
907 E = IncludeDirectives.end();
908 I != E; ++I) {
909 // If we already have an entry for this directive, return now.
910 if ((I->File == CurrentHeaderHandle) && (I->Line == DirectiveLine))
911 return;
912 }
913 PPItemKey IncludeDirectiveItem(IncludeHeaderHandle, CurrentHeaderHandle,
914 DirectiveLine, DirectiveColumn);
915 IncludeDirectives.push_back(IncludeDirectiveItem);
916 }
917
918 // Check for include directives within the given source line range.
919 // Report errors if any found. Returns true if no include directives
920 // found in block.
921 bool checkForIncludesInBlock(clang::Preprocessor &PP,
922 clang::SourceRange BlockSourceRange,
923 const char *BlockIdentifierMessage,
924 llvm::raw_ostream &OS) {
925 clang::SourceLocation BlockStartLoc = BlockSourceRange.getBegin();
926 clang::SourceLocation BlockEndLoc = BlockSourceRange.getEnd();
927 // Use block location to get FileID of both the include directive
928 // and block statement.
929 clang::FileID FileID = PP.getSourceManager().getFileID(BlockStartLoc);
930 std::string SourcePath = getSourceLocationFile(PP, BlockStartLoc);
931 HeaderHandle SourceHandle = findHeaderHandle(SourcePath);
932 int BlockStartLine, BlockStartColumn, BlockEndLine, BlockEndColumn;
933 bool returnValue = true;
934 getSourceLocationLineAndColumn(PP, BlockStartLoc, BlockStartLine,
935 BlockStartColumn);
936 getSourceLocationLineAndColumn(PP, BlockEndLoc, BlockEndLine,
937 BlockEndColumn);
938 for (std::vector<PPItemKey>::const_iterator I = IncludeDirectives.begin(),
939 E = IncludeDirectives.end();
940 I != E; ++I) {
941 // If we find an entry within the block, report an error.
942 if ((I->File == SourceHandle) && (I->Line >= BlockStartLine) &&
943 (I->Line < BlockEndLine)) {
944 returnValue = false;
John Thompsona2b66872013-09-20 14:44:20 +0000945 OS << SourcePath << ":" << I->Line << ":" << I->Column << ":\n";
John Thompson74083922013-09-18 18:19:43 +0000946 OS << getSourceLine(PP, FileID, I->Line) << "\n";
947 if (I->Column > 0)
948 OS << std::string(I->Column - 1, ' ') << "^\n";
949 OS << "error: Include directive within " << BlockIdentifierMessage
950 << ".\n";
951 OS << SourcePath << ":" << BlockStartLine << ":" << BlockStartColumn
John Thompsona2b66872013-09-20 14:44:20 +0000952 << ":\n";
John Thompson74083922013-09-18 18:19:43 +0000953 OS << getSourceLine(PP, BlockStartLoc) << "\n";
954 if (BlockStartColumn > 0)
955 OS << std::string(BlockStartColumn - 1, ' ') << "^\n";
956 OS << "The \"" << BlockIdentifierMessage << "\" block is here.\n";
957 }
958 }
959 return returnValue;
960 }
961
John Thompson94faa4d2013-07-26 23:56:42 +0000962 // Handle entering a header source file.
963 void handleHeaderEntry(clang::Preprocessor &PP, llvm::StringRef HeaderPath) {
964 // Ignore <built-in> and <command-line> to reduce message clutter.
965 if (HeaderPath.startswith("<"))
966 return;
967 HeaderHandle H = addHeader(HeaderPath);
John Thompson4ed963a2013-08-07 18:49:47 +0000968 if (H != getCurrentHeaderHandle())
John Thompson94faa4d2013-07-26 23:56:42 +0000969 pushHeaderHandle(H);
John Thompson4ed963a2013-08-07 18:49:47 +0000970 // Check for nested header.
971 if (!InNestedHeader)
972 InNestedHeader = !HeadersInThisCompile.insert(H);
John Thompson94faa4d2013-07-26 23:56:42 +0000973 }
974 // Handle exiting a header source file.
975 void handleHeaderExit(llvm::StringRef HeaderPath) {
976 // Ignore <built-in> and <command-line> to reduce message clutter.
977 if (HeaderPath.startswith("<"))
978 return;
979 HeaderHandle H = findHeaderHandle(HeaderPath);
980 if (isHeaderHandleInStack(H)) {
981 while ((H != getCurrentHeaderHandle()) && (HeaderStack.size() != 0))
982 popHeaderHandle();
983 }
John Thompson48df0962013-08-05 23:55:14 +0000984 InNestedHeader = false;
John Thompson94faa4d2013-07-26 23:56:42 +0000985 }
986
987 // Lookup/add string.
988 StringHandle addString(llvm::StringRef Str) { return Strings.intern(Str); }
989
990 // Get the handle of a header file entry.
991 // Return HeaderHandleInvalid if not found.
992 HeaderHandle findHeaderHandle(llvm::StringRef HeaderPath) const {
John Thompson48df0962013-08-05 23:55:14 +0000993 std::string CanonicalPath(HeaderPath);
994 std::replace(CanonicalPath.begin(), CanonicalPath.end(), '\\', '/');
John Thompson94faa4d2013-07-26 23:56:42 +0000995 HeaderHandle H = 0;
996 for (std::vector<StringHandle>::const_iterator I = HeaderPaths.begin(),
997 E = HeaderPaths.end();
998 I != E; ++I, ++H) {
John Thompson48df0962013-08-05 23:55:14 +0000999 if (**I == CanonicalPath)
John Thompson94faa4d2013-07-26 23:56:42 +00001000 return H;
1001 }
1002 return HeaderHandleInvalid;
1003 }
1004
1005 // Add a new header file entry, or return existing handle.
1006 // Return the header handle.
1007 HeaderHandle addHeader(llvm::StringRef HeaderPath) {
John Thompson48df0962013-08-05 23:55:14 +00001008 std::string CanonicalPath(HeaderPath);
1009 std::replace(CanonicalPath.begin(), CanonicalPath.end(), '\\', '/');
1010 HeaderHandle H = findHeaderHandle(CanonicalPath);
John Thompson94faa4d2013-07-26 23:56:42 +00001011 if (H == HeaderHandleInvalid) {
1012 H = HeaderPaths.size();
John Thompson48df0962013-08-05 23:55:14 +00001013 HeaderPaths.push_back(addString(CanonicalPath));
John Thompson94faa4d2013-07-26 23:56:42 +00001014 }
1015 return H;
1016 }
1017
1018 // Return a header file path string given its handle.
1019 StringHandle getHeaderFilePath(HeaderHandle H) const {
1020 if ((H >= 0) && (H < (HeaderHandle)HeaderPaths.size()))
1021 return HeaderPaths[H];
1022 return StringHandle();
1023 }
1024
1025 // Returns a handle to the inclusion path.
1026 InclusionPathHandle pushHeaderHandle(HeaderHandle H) {
1027 HeaderStack.push_back(H);
1028 return CurrentInclusionPathHandle = addInclusionPathHandle(HeaderStack);
1029 }
1030 // Pops the last header handle from the stack;
1031 void popHeaderHandle() {
1032 // assert((HeaderStack.size() != 0) && "Header stack already empty.");
1033 if (HeaderStack.size() != 0) {
1034 HeaderStack.pop_back();
1035 CurrentInclusionPathHandle = addInclusionPathHandle(HeaderStack);
1036 }
1037 }
1038 // Get the top handle on the header stack.
1039 HeaderHandle getCurrentHeaderHandle() const {
1040 if (HeaderStack.size() != 0)
1041 return HeaderStack.back();
1042 return HeaderHandleInvalid;
1043 }
1044
1045 // Check for presence of header handle in the header stack.
1046 bool isHeaderHandleInStack(HeaderHandle H) const {
1047 for (std::vector<HeaderHandle>::const_iterator I = HeaderStack.begin(),
1048 E = HeaderStack.end();
1049 I != E; ++I) {
1050 if (*I == H)
1051 return true;
1052 }
1053 return false;
1054 }
1055
1056 // Get the handle of a header inclusion path entry.
1057 // Return InclusionPathHandleInvalid if not found.
1058 InclusionPathHandle
1059 findInclusionPathHandle(const std::vector<HeaderHandle> &Path) const {
1060 InclusionPathHandle H = 0;
1061 for (std::vector<HeaderInclusionPath>::const_iterator
1062 I = InclusionPaths.begin(),
1063 E = InclusionPaths.end();
1064 I != E; ++I, ++H) {
1065 if (I->Path == Path)
1066 return H;
1067 }
1068 return HeaderHandleInvalid;
1069 }
1070 // Add a new header inclusion path entry, or return existing handle.
1071 // Return the header inclusion path entry handle.
1072 InclusionPathHandle
1073 addInclusionPathHandle(const std::vector<HeaderHandle> &Path) {
1074 InclusionPathHandle H = findInclusionPathHandle(Path);
1075 if (H == HeaderHandleInvalid) {
1076 H = InclusionPaths.size();
1077 InclusionPaths.push_back(HeaderInclusionPath(Path));
1078 }
1079 return H;
1080 }
1081 // Return the current inclusion path handle.
1082 InclusionPathHandle getCurrentInclusionPathHandle() const {
1083 return CurrentInclusionPathHandle;
1084 }
1085
1086 // Return an inclusion path given its handle.
1087 const std::vector<HeaderHandle> &
1088 getInclusionPath(InclusionPathHandle H) const {
1089 if ((H >= 0) && (H <= (InclusionPathHandle)InclusionPaths.size()))
1090 return InclusionPaths[H].Path;
1091 static std::vector<HeaderHandle> Empty;
1092 return Empty;
1093 }
1094
1095 // Add a macro expansion instance.
1096 void addMacroExpansionInstance(clang::Preprocessor &PP, HeaderHandle H,
1097 clang::SourceLocation InstanceLoc,
1098 clang::SourceLocation DefinitionLoc,
1099 clang::IdentifierInfo *II,
1100 llvm::StringRef MacroUnexpanded,
1101 llvm::StringRef MacroExpanded,
1102 InclusionPathHandle InclusionPathHandle) {
John Thompsonc8d710c2013-08-13 18:11:36 +00001103 if (InNestedHeader)
1104 return;
John Thompson94faa4d2013-07-26 23:56:42 +00001105 StringHandle MacroName = addString(II->getName());
1106 PPItemKey InstanceKey(PP, MacroName, H, InstanceLoc);
1107 PPItemKey DefinitionKey(PP, MacroName, H, DefinitionLoc);
1108 MacroExpansionMapIter I = MacroExpansions.find(InstanceKey);
John Thompson7c6e79f32013-07-29 19:07:00 +00001109 // If existing instance of expansion not found, add one.
John Thompson94faa4d2013-07-26 23:56:42 +00001110 if (I == MacroExpansions.end()) {
1111 std::string InstanceSourceLine =
1112 getSourceLocationString(PP, InstanceLoc) + ":\n" +
1113 getSourceLine(PP, InstanceLoc) + "\n";
1114 std::string DefinitionSourceLine =
1115 getSourceLocationString(PP, DefinitionLoc) + ":\n" +
1116 getSourceLine(PP, DefinitionLoc) + "\n";
1117 MacroExpansions[InstanceKey] = MacroExpansionTracker(
1118 addString(MacroUnexpanded), addString(MacroExpanded),
1119 addString(InstanceSourceLine), DefinitionKey,
1120 addString(DefinitionSourceLine), InclusionPathHandle);
1121 } else {
John Thompson7c6e79f32013-07-29 19:07:00 +00001122 // We've seen the macro before. Get its tracker.
John Thompson94faa4d2013-07-26 23:56:42 +00001123 MacroExpansionTracker &CondTracker = I->second;
John Thompson7c6e79f32013-07-29 19:07:00 +00001124 // Look up an existing instance value for the macro.
John Thompson94faa4d2013-07-26 23:56:42 +00001125 MacroExpansionInstance *MacroInfo =
1126 CondTracker.findMacroExpansionInstance(addString(MacroExpanded),
1127 DefinitionKey);
John Thompson7c6e79f32013-07-29 19:07:00 +00001128 // If found, just add the inclusion path to the instance.
John Thompson94faa4d2013-07-26 23:56:42 +00001129 if (MacroInfo != NULL)
1130 MacroInfo->addInclusionPathHandle(InclusionPathHandle);
1131 else {
John Thompson7c6e79f32013-07-29 19:07:00 +00001132 // Otherwise add a new instance with the unique value.
John Thompson94faa4d2013-07-26 23:56:42 +00001133 std::string DefinitionSourceLine =
1134 getSourceLocationString(PP, DefinitionLoc) + ":\n" +
1135 getSourceLine(PP, DefinitionLoc) + "\n";
1136 CondTracker.addMacroExpansionInstance(
1137 addString(MacroExpanded), DefinitionKey,
1138 addString(DefinitionSourceLine), InclusionPathHandle);
1139 }
1140 }
1141 }
1142
1143 // Add a conditional expansion instance.
1144 void
1145 addConditionalExpansionInstance(clang::Preprocessor &PP, HeaderHandle H,
1146 clang::SourceLocation InstanceLoc,
1147 clang::tok::PPKeywordKind DirectiveKind,
John Thompson87f9fef2013-12-07 08:41:15 +00001148 clang::PPCallbacks::ConditionValueKind ConditionValue,
John Thompson94faa4d2013-07-26 23:56:42 +00001149 llvm::StringRef ConditionUnexpanded,
1150 InclusionPathHandle InclusionPathHandle) {
John Thompson48df0962013-08-05 23:55:14 +00001151 // Ignore header guards, assuming the header guard is the only conditional.
1152 if (InNestedHeader)
1153 return;
John Thompson94faa4d2013-07-26 23:56:42 +00001154 StringHandle ConditionUnexpandedHandle(addString(ConditionUnexpanded));
1155 PPItemKey InstanceKey(PP, ConditionUnexpandedHandle, H, InstanceLoc);
1156 ConditionalExpansionMapIter I = ConditionalExpansions.find(InstanceKey);
John Thompson7c6e79f32013-07-29 19:07:00 +00001157 // If existing instance of condition not found, add one.
John Thompson94faa4d2013-07-26 23:56:42 +00001158 if (I == ConditionalExpansions.end()) {
1159 std::string InstanceSourceLine =
1160 getSourceLocationString(PP, InstanceLoc) + ":\n" +
1161 getSourceLine(PP, InstanceLoc) + "\n";
1162 ConditionalExpansions[InstanceKey] =
John Thompson48df0962013-08-05 23:55:14 +00001163 ConditionalTracker(DirectiveKind, ConditionValue,
John Thompsoncc2e2912013-09-03 18:44:11 +00001164 ConditionUnexpandedHandle, InclusionPathHandle);
John Thompson94faa4d2013-07-26 23:56:42 +00001165 } else {
John Thompson7c6e79f32013-07-29 19:07:00 +00001166 // We've seen the conditional before. Get its tracker.
John Thompson94faa4d2013-07-26 23:56:42 +00001167 ConditionalTracker &CondTracker = I->second;
John Thompson7c6e79f32013-07-29 19:07:00 +00001168 // Look up an existing instance value for the condition.
John Thompson94faa4d2013-07-26 23:56:42 +00001169 ConditionalExpansionInstance *MacroInfo =
1170 CondTracker.findConditionalExpansionInstance(ConditionValue);
John Thompson7c6e79f32013-07-29 19:07:00 +00001171 // If found, just add the inclusion path to the instance.
John Thompson94faa4d2013-07-26 23:56:42 +00001172 if (MacroInfo != NULL)
1173 MacroInfo->addInclusionPathHandle(InclusionPathHandle);
1174 else {
John Thompson7c6e79f32013-07-29 19:07:00 +00001175 // Otherwise add a new instance with the unique value.
John Thompson94faa4d2013-07-26 23:56:42 +00001176 CondTracker.addConditionalExpansionInstance(ConditionValue,
1177 InclusionPathHandle);
1178 }
1179 }
1180 }
1181
1182 // Report on inconsistent macro instances.
1183 // Returns true if any mismatches.
1184 bool reportInconsistentMacros(llvm::raw_ostream &OS) {
1185 bool ReturnValue = false;
John Thompson7c6e79f32013-07-29 19:07:00 +00001186 // Walk all the macro expansion trackers in the map.
John Thompson94faa4d2013-07-26 23:56:42 +00001187 for (MacroExpansionMapIter I = MacroExpansions.begin(),
1188 E = MacroExpansions.end();
1189 I != E; ++I) {
1190 const PPItemKey &ItemKey = I->first;
1191 MacroExpansionTracker &MacroExpTracker = I->second;
John Thompson7c6e79f32013-07-29 19:07:00 +00001192 // If no mismatch (only one instance value) continue.
John Thompson94faa4d2013-07-26 23:56:42 +00001193 if (!MacroExpTracker.hasMismatch())
1194 continue;
John Thompson7c6e79f32013-07-29 19:07:00 +00001195 // Tell caller we found one or more errors.
John Thompson94faa4d2013-07-26 23:56:42 +00001196 ReturnValue = true;
John Thompson7c6e79f32013-07-29 19:07:00 +00001197 // Start the error message.
John Thompson94faa4d2013-07-26 23:56:42 +00001198 OS << *MacroExpTracker.InstanceSourceLine;
1199 if (ItemKey.Column > 0)
1200 OS << std::string(ItemKey.Column - 1, ' ') << "^\n";
1201 OS << "error: Macro instance '" << *MacroExpTracker.MacroUnexpanded
1202 << "' has different values in this header, depending on how it was "
1203 "included.\n";
John Thompson7c6e79f32013-07-29 19:07:00 +00001204 // Walk all the instances.
John Thompson94faa4d2013-07-26 23:56:42 +00001205 for (std::vector<MacroExpansionInstance>::iterator
1206 IMT = MacroExpTracker.MacroExpansionInstances.begin(),
1207 EMT = MacroExpTracker.MacroExpansionInstances.end();
1208 IMT != EMT; ++IMT) {
1209 MacroExpansionInstance &MacroInfo = *IMT;
1210 OS << " '" << *MacroExpTracker.MacroUnexpanded << "' expanded to: '"
1211 << *MacroInfo.MacroExpanded
1212 << "' with respect to these inclusion paths:\n";
John Thompson7c6e79f32013-07-29 19:07:00 +00001213 // Walk all the inclusion path hierarchies.
John Thompson94faa4d2013-07-26 23:56:42 +00001214 for (std::vector<InclusionPathHandle>::iterator
1215 IIP = MacroInfo.InclusionPathHandles.begin(),
1216 EIP = MacroInfo.InclusionPathHandles.end();
1217 IIP != EIP; ++IIP) {
1218 const std::vector<HeaderHandle> &ip = getInclusionPath(*IIP);
1219 int Count = (int)ip.size();
1220 for (int Index = 0; Index < Count; ++Index) {
1221 HeaderHandle H = ip[Index];
1222 OS << std::string((Index * 2) + 4, ' ') << *getHeaderFilePath(H)
1223 << "\n";
1224 }
1225 }
1226 // For a macro that wasn't defined, we flag it by using the
1227 // instance location.
1228 // If there is a definition...
1229 if (MacroInfo.DefinitionLocation.Line != ItemKey.Line) {
1230 OS << *MacroInfo.DefinitionSourceLine;
1231 if (MacroInfo.DefinitionLocation.Column > 0)
1232 OS << std::string(MacroInfo.DefinitionLocation.Column - 1, ' ')
1233 << "^\n";
1234 OS << "Macro defined here.\n";
1235 } else
1236 OS << "(no macro definition)"
1237 << "\n";
1238 }
1239 }
1240 return ReturnValue;
1241 }
1242
1243 // Report on inconsistent conditional instances.
1244 // Returns true if any mismatches.
1245 bool reportInconsistentConditionals(llvm::raw_ostream &OS) {
1246 bool ReturnValue = false;
John Thompson7c6e79f32013-07-29 19:07:00 +00001247 // Walk all the conditional trackers in the map.
John Thompson94faa4d2013-07-26 23:56:42 +00001248 for (ConditionalExpansionMapIter I = ConditionalExpansions.begin(),
1249 E = ConditionalExpansions.end();
1250 I != E; ++I) {
1251 const PPItemKey &ItemKey = I->first;
1252 ConditionalTracker &CondTracker = I->second;
1253 if (!CondTracker.hasMismatch())
1254 continue;
John Thompson7c6e79f32013-07-29 19:07:00 +00001255 // Tell caller we found one or more errors.
John Thompson94faa4d2013-07-26 23:56:42 +00001256 ReturnValue = true;
John Thompson7c6e79f32013-07-29 19:07:00 +00001257 // Start the error message.
John Thompson94faa4d2013-07-26 23:56:42 +00001258 OS << *HeaderPaths[ItemKey.File] << ":" << ItemKey.Line << ":"
1259 << ItemKey.Column << "\n";
1260 OS << "#" << getDirectiveSpelling(CondTracker.DirectiveKind) << " "
1261 << *CondTracker.ConditionUnexpanded << "\n";
1262 OS << "^\n";
1263 OS << "error: Conditional expression instance '"
1264 << *CondTracker.ConditionUnexpanded
1265 << "' has different values in this header, depending on how it was "
1266 "included.\n";
John Thompson7c6e79f32013-07-29 19:07:00 +00001267 // Walk all the instances.
John Thompson94faa4d2013-07-26 23:56:42 +00001268 for (std::vector<ConditionalExpansionInstance>::iterator
1269 IMT = CondTracker.ConditionalExpansionInstances.begin(),
1270 EMT = CondTracker.ConditionalExpansionInstances.end();
1271 IMT != EMT; ++IMT) {
1272 ConditionalExpansionInstance &MacroInfo = *IMT;
1273 OS << " '" << *CondTracker.ConditionUnexpanded << "' expanded to: '"
John Thompson87f9fef2013-12-07 08:41:15 +00001274 << ConditionValueKindStrings[MacroInfo.ConditionValue]
John Thompson94faa4d2013-07-26 23:56:42 +00001275 << "' with respect to these inclusion paths:\n";
John Thompson7c6e79f32013-07-29 19:07:00 +00001276 // Walk all the inclusion path hierarchies.
John Thompson94faa4d2013-07-26 23:56:42 +00001277 for (std::vector<InclusionPathHandle>::iterator
1278 IIP = MacroInfo.InclusionPathHandles.begin(),
1279 EIP = MacroInfo.InclusionPathHandles.end();
1280 IIP != EIP; ++IIP) {
1281 const std::vector<HeaderHandle> &ip = getInclusionPath(*IIP);
1282 int Count = (int)ip.size();
1283 for (int Index = 0; Index < Count; ++Index) {
1284 HeaderHandle H = ip[Index];
1285 OS << std::string((Index * 2) + 4, ' ') << *getHeaderFilePath(H)
1286 << "\n";
1287 }
1288 }
1289 }
1290 }
1291 return ReturnValue;
1292 }
1293
1294 // Get directive spelling.
1295 static const char *getDirectiveSpelling(clang::tok::PPKeywordKind kind) {
1296 switch (kind) {
1297 case clang::tok::pp_if:
1298 return "if";
1299 case clang::tok::pp_elif:
1300 return "elif";
1301 case clang::tok::pp_ifdef:
1302 return "ifdef";
1303 case clang::tok::pp_ifndef:
1304 return "ifndef";
1305 default:
1306 return "(unknown)";
1307 }
1308 }
1309
1310private:
1311 llvm::StringPool Strings;
1312 std::vector<StringHandle> HeaderPaths;
1313 std::vector<HeaderHandle> HeaderStack;
1314 std::vector<HeaderInclusionPath> InclusionPaths;
1315 InclusionPathHandle CurrentInclusionPathHandle;
John Thompson4ed963a2013-08-07 18:49:47 +00001316 llvm::SmallSet<HeaderHandle, 128> HeadersInThisCompile;
John Thompson74083922013-09-18 18:19:43 +00001317 std::vector<PPItemKey> IncludeDirectives;
John Thompson94faa4d2013-07-26 23:56:42 +00001318 MacroExpansionMap MacroExpansions;
1319 ConditionalExpansionMap ConditionalExpansions;
John Thompson48df0962013-08-05 23:55:14 +00001320 bool InNestedHeader;
John Thompson94faa4d2013-07-26 23:56:42 +00001321};
1322
1323// PreprocessorTracker functions.
1324
1325// PreprocessorTracker desctructor.
1326PreprocessorTracker::~PreprocessorTracker() {}
1327
1328// Create instance of PreprocessorTracker.
1329PreprocessorTracker *PreprocessorTracker::create() {
1330 return new PreprocessorTrackerImpl();
1331}
1332
1333// Preprocessor callbacks for modularize.
1334
John Thompson74083922013-09-18 18:19:43 +00001335// Handle include directive.
1336void PreprocessorCallbacks::InclusionDirective(
1337 clang::SourceLocation HashLoc, const clang::Token &IncludeTok,
1338 llvm::StringRef FileName, bool IsAngled,
1339 clang::CharSourceRange FilenameRange, const clang::FileEntry *File,
1340 llvm::StringRef SearchPath, llvm::StringRef RelativePath,
1341 const clang::Module *Imported) {
1342 int DirectiveLine, DirectiveColumn;
1343 std::string HeaderPath = getSourceLocationFile(PP, HashLoc);
1344 getSourceLocationLineAndColumn(PP, HashLoc, DirectiveLine, DirectiveColumn);
1345 PPTracker.handleIncludeDirective(HeaderPath, DirectiveLine, DirectiveColumn,
1346 FileName);
1347}
1348
John Thompson94faa4d2013-07-26 23:56:42 +00001349// Handle file entry/exit.
1350void PreprocessorCallbacks::FileChanged(
1351 clang::SourceLocation Loc, clang::PPCallbacks::FileChangeReason Reason,
1352 clang::SrcMgr::CharacteristicKind FileType, clang::FileID PrevFID) {
1353 switch (Reason) {
1354 case EnterFile:
1355 PPTracker.handleHeaderEntry(PP, getSourceLocationFile(PP, Loc));
1356 break;
John Thompsoncc2e2912013-09-03 18:44:11 +00001357 case ExitFile: {
1358 const clang::FileEntry *F =
John Thompson48df0962013-08-05 23:55:14 +00001359 PP.getSourceManager().getFileEntryForID(PrevFID);
John Thompsoncc2e2912013-09-03 18:44:11 +00001360 if (F != NULL)
1361 PPTracker.handleHeaderExit(F->getName());
1362 } break;
John Thompson94faa4d2013-07-26 23:56:42 +00001363 case SystemHeaderPragma:
John Thompson94faa4d2013-07-26 23:56:42 +00001364 case RenameFile:
Benjamin Kramerf2576812013-07-27 15:57:46 +00001365 break;
John Thompson94faa4d2013-07-26 23:56:42 +00001366 }
1367}
1368
1369// Handle macro expansion.
1370void PreprocessorCallbacks::MacroExpands(const clang::Token &MacroNameTok,
1371 const clang::MacroDirective *MD,
1372 clang::SourceRange Range,
1373 const clang::MacroArgs *Args) {
1374 clang::SourceLocation Loc = Range.getBegin();
John Thompson91555bd2013-08-09 00:22:20 +00001375 // Ignore macro argument expansions.
1376 if (!Loc.isFileID())
1377 return;
John Thompson94faa4d2013-07-26 23:56:42 +00001378 clang::IdentifierInfo *II = MacroNameTok.getIdentifierInfo();
1379 const clang::MacroInfo *MI = PP.getMacroInfo(II);
1380 std::string MacroName = II->getName().str();
1381 std::string Unexpanded(getMacroUnexpandedString(Range, PP, MacroName, MI));
1382 std::string Expanded(getMacroExpandedString(PP, MacroName, MI, Args));
1383 PPTracker.addMacroExpansionInstance(
1384 PP, PPTracker.getCurrentHeaderHandle(), Loc, MI->getDefinitionLoc(), II,
1385 Unexpanded, Expanded, PPTracker.getCurrentInclusionPathHandle());
1386}
1387
1388void PreprocessorCallbacks::Defined(const clang::Token &MacroNameTok,
1389 const clang::MacroDirective *MD,
1390 clang::SourceRange Range) {
1391 clang::SourceLocation Loc(Range.getBegin());
1392 clang::IdentifierInfo *II = MacroNameTok.getIdentifierInfo();
1393 const clang::MacroInfo *MI = PP.getMacroInfo(II);
1394 std::string MacroName = II->getName().str();
1395 std::string Unexpanded(getSourceString(PP, Range));
1396 PPTracker.addMacroExpansionInstance(
1397 PP, PPTracker.getCurrentHeaderHandle(), Loc,
1398 (MI ? MI->getDefinitionLoc() : Loc), II, Unexpanded,
1399 (MI ? "true" : "false"), PPTracker.getCurrentInclusionPathHandle());
1400}
1401
1402void PreprocessorCallbacks::If(clang::SourceLocation Loc,
1403 clang::SourceRange ConditionRange,
John Thompson87f9fef2013-12-07 08:41:15 +00001404 clang::PPCallbacks::ConditionValueKind ConditionResult) {
John Thompson94faa4d2013-07-26 23:56:42 +00001405 std::string Unexpanded(getSourceString(PP, ConditionRange));
1406 PPTracker.addConditionalExpansionInstance(
1407 PP, PPTracker.getCurrentHeaderHandle(), Loc, clang::tok::pp_if,
1408 ConditionResult, Unexpanded, PPTracker.getCurrentInclusionPathHandle());
1409}
1410
1411void PreprocessorCallbacks::Elif(clang::SourceLocation Loc,
1412 clang::SourceRange ConditionRange,
John Thompson87f9fef2013-12-07 08:41:15 +00001413 clang::PPCallbacks::ConditionValueKind ConditionResult,
John Thompson94faa4d2013-07-26 23:56:42 +00001414 clang::SourceLocation IfLoc) {
1415 std::string Unexpanded(getSourceString(PP, ConditionRange));
1416 PPTracker.addConditionalExpansionInstance(
1417 PP, PPTracker.getCurrentHeaderHandle(), Loc, clang::tok::pp_elif,
1418 ConditionResult, Unexpanded, PPTracker.getCurrentInclusionPathHandle());
1419}
1420
1421void PreprocessorCallbacks::Ifdef(clang::SourceLocation Loc,
1422 const clang::Token &MacroNameTok,
1423 const clang::MacroDirective *MD) {
John Thompson87f9fef2013-12-07 08:41:15 +00001424 clang::PPCallbacks::ConditionValueKind IsDefined =
1425 (MD != 0 ? clang::PPCallbacks::CVK_True : clang::PPCallbacks::CVK_False );
John Thompson94faa4d2013-07-26 23:56:42 +00001426 PPTracker.addConditionalExpansionInstance(
1427 PP, PPTracker.getCurrentHeaderHandle(), Loc, clang::tok::pp_ifdef,
1428 IsDefined, PP.getSpelling(MacroNameTok),
1429 PPTracker.getCurrentInclusionPathHandle());
1430}
1431
1432void PreprocessorCallbacks::Ifndef(clang::SourceLocation Loc,
1433 const clang::Token &MacroNameTok,
1434 const clang::MacroDirective *MD) {
John Thompson87f9fef2013-12-07 08:41:15 +00001435 clang::PPCallbacks::ConditionValueKind IsNotDefined =
1436 (MD == 0 ? clang::PPCallbacks::CVK_True : clang::PPCallbacks::CVK_False );
John Thompson94faa4d2013-07-26 23:56:42 +00001437 PPTracker.addConditionalExpansionInstance(
1438 PP, PPTracker.getCurrentHeaderHandle(), Loc, clang::tok::pp_ifndef,
1439 IsNotDefined, PP.getSpelling(MacroNameTok),
1440 PPTracker.getCurrentInclusionPathHandle());
1441}
1442} // end namespace Modularize