1 #include "clang/AST/CommentLexer.h"
2 #include "clang/AST/CommentCommandTraits.h"
3 #include "clang/AST/CommentDiagnostic.h"
4 #include "clang/Basic/CharInfo.h"
5 #include "llvm/ADT/StringExtras.h"
6 #include "llvm/ADT/StringSwitch.h"
7 #include "llvm/Support/ConvertUTF.h"
8 #include "llvm/Support/ErrorHandling.h"
9
10 namespace clang {
11 namespace comments {
12
dump(const Lexer & L,const SourceManager & SM) const13 void Token::dump(const Lexer &L, const SourceManager &SM) const {
14 llvm::errs() << "comments::Token Kind=" << Kind << " ";
15 Loc.dump(SM);
16 llvm::errs() << " " << Length << " \"" << L.getSpelling(*this, SM) << "\"\n";
17 }
18
isHTMLNamedCharacterReferenceCharacter(char C)19 static inline bool isHTMLNamedCharacterReferenceCharacter(char C) {
20 return isLetter(C);
21 }
22
isHTMLDecimalCharacterReferenceCharacter(char C)23 static inline bool isHTMLDecimalCharacterReferenceCharacter(char C) {
24 return isDigit(C);
25 }
26
isHTMLHexCharacterReferenceCharacter(char C)27 static inline bool isHTMLHexCharacterReferenceCharacter(char C) {
28 return isHexDigit(C);
29 }
30
convertCodePointToUTF8(llvm::BumpPtrAllocator & Allocator,unsigned CodePoint)31 static inline StringRef convertCodePointToUTF8(
32 llvm::BumpPtrAllocator &Allocator,
33 unsigned CodePoint) {
34 char *Resolved = Allocator.Allocate<char>(UNI_MAX_UTF8_BYTES_PER_CODE_POINT);
35 char *ResolvedPtr = Resolved;
36 if (llvm::ConvertCodePointToUTF8(CodePoint, ResolvedPtr))
37 return StringRef(Resolved, ResolvedPtr - Resolved);
38 else
39 return StringRef();
40 }
41
42 namespace {
43
44 #include "clang/AST/CommentHTMLTags.inc"
45 #include "clang/AST/CommentHTMLNamedCharacterReferences.inc"
46
47 } // unnamed namespace
48
resolveHTMLNamedCharacterReference(StringRef Name) const49 StringRef Lexer::resolveHTMLNamedCharacterReference(StringRef Name) const {
50 // Fast path, first check a few most widely used named character references.
51 return llvm::StringSwitch<StringRef>(Name)
52 .Case("amp", "&")
53 .Case("lt", "<")
54 .Case("gt", ">")
55 .Case("quot", "\"")
56 .Case("apos", "\'")
57 // Slow path.
58 .Default(translateHTMLNamedCharacterReferenceToUTF8(Name));
59 }
60
resolveHTMLDecimalCharacterReference(StringRef Name) const61 StringRef Lexer::resolveHTMLDecimalCharacterReference(StringRef Name) const {
62 unsigned CodePoint = 0;
63 for (unsigned i = 0, e = Name.size(); i != e; ++i) {
64 assert(isHTMLDecimalCharacterReferenceCharacter(Name[i]));
65 CodePoint *= 10;
66 CodePoint += Name[i] - '0';
67 }
68 return convertCodePointToUTF8(Allocator, CodePoint);
69 }
70
resolveHTMLHexCharacterReference(StringRef Name) const71 StringRef Lexer::resolveHTMLHexCharacterReference(StringRef Name) const {
72 unsigned CodePoint = 0;
73 for (unsigned i = 0, e = Name.size(); i != e; ++i) {
74 CodePoint *= 16;
75 const char C = Name[i];
76 assert(isHTMLHexCharacterReferenceCharacter(C));
77 CodePoint += llvm::hexDigitValue(C);
78 }
79 return convertCodePointToUTF8(Allocator, CodePoint);
80 }
81
skipLineStartingDecorations()82 void Lexer::skipLineStartingDecorations() {
83 // This function should be called only for C comments
84 assert(CommentState == LCS_InsideCComment);
85
86 if (BufferPtr == CommentEnd)
87 return;
88
89 switch (*BufferPtr) {
90 case ' ':
91 case '\t':
92 case '\f':
93 case '\v': {
94 const char *NewBufferPtr = BufferPtr;
95 NewBufferPtr++;
96 if (NewBufferPtr == CommentEnd)
97 return;
98
99 char C = *NewBufferPtr;
100 while (isHorizontalWhitespace(C)) {
101 NewBufferPtr++;
102 if (NewBufferPtr == CommentEnd)
103 return;
104 C = *NewBufferPtr;
105 }
106 if (C == '*')
107 BufferPtr = NewBufferPtr + 1;
108 break;
109 }
110 case '*':
111 BufferPtr++;
112 break;
113 }
114 }
115
116 namespace {
117 /// Returns pointer to the first newline character in the string.
findNewline(const char * BufferPtr,const char * BufferEnd)118 const char *findNewline(const char *BufferPtr, const char *BufferEnd) {
119 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
120 if (isVerticalWhitespace(*BufferPtr))
121 return BufferPtr;
122 }
123 return BufferEnd;
124 }
125
skipNewline(const char * BufferPtr,const char * BufferEnd)126 const char *skipNewline(const char *BufferPtr, const char *BufferEnd) {
127 if (BufferPtr == BufferEnd)
128 return BufferPtr;
129
130 if (*BufferPtr == '\n')
131 BufferPtr++;
132 else {
133 assert(*BufferPtr == '\r');
134 BufferPtr++;
135 if (BufferPtr != BufferEnd && *BufferPtr == '\n')
136 BufferPtr++;
137 }
138 return BufferPtr;
139 }
140
skipNamedCharacterReference(const char * BufferPtr,const char * BufferEnd)141 const char *skipNamedCharacterReference(const char *BufferPtr,
142 const char *BufferEnd) {
143 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
144 if (!isHTMLNamedCharacterReferenceCharacter(*BufferPtr))
145 return BufferPtr;
146 }
147 return BufferEnd;
148 }
149
skipDecimalCharacterReference(const char * BufferPtr,const char * BufferEnd)150 const char *skipDecimalCharacterReference(const char *BufferPtr,
151 const char *BufferEnd) {
152 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
153 if (!isHTMLDecimalCharacterReferenceCharacter(*BufferPtr))
154 return BufferPtr;
155 }
156 return BufferEnd;
157 }
158
skipHexCharacterReference(const char * BufferPtr,const char * BufferEnd)159 const char *skipHexCharacterReference(const char *BufferPtr,
160 const char *BufferEnd) {
161 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
162 if (!isHTMLHexCharacterReferenceCharacter(*BufferPtr))
163 return BufferPtr;
164 }
165 return BufferEnd;
166 }
167
isHTMLIdentifierStartingCharacter(char C)168 bool isHTMLIdentifierStartingCharacter(char C) {
169 return isLetter(C);
170 }
171
isHTMLIdentifierCharacter(char C)172 bool isHTMLIdentifierCharacter(char C) {
173 return isAlphanumeric(C);
174 }
175
skipHTMLIdentifier(const char * BufferPtr,const char * BufferEnd)176 const char *skipHTMLIdentifier(const char *BufferPtr, const char *BufferEnd) {
177 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
178 if (!isHTMLIdentifierCharacter(*BufferPtr))
179 return BufferPtr;
180 }
181 return BufferEnd;
182 }
183
184 /// Skip HTML string quoted in single or double quotes. Escaping quotes inside
185 /// string allowed.
186 ///
187 /// Returns pointer to closing quote.
skipHTMLQuotedString(const char * BufferPtr,const char * BufferEnd)188 const char *skipHTMLQuotedString(const char *BufferPtr, const char *BufferEnd)
189 {
190 const char Quote = *BufferPtr;
191 assert(Quote == '\"' || Quote == '\'');
192
193 BufferPtr++;
194 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
195 const char C = *BufferPtr;
196 if (C == Quote && BufferPtr[-1] != '\\')
197 return BufferPtr;
198 }
199 return BufferEnd;
200 }
201
skipWhitespace(const char * BufferPtr,const char * BufferEnd)202 const char *skipWhitespace(const char *BufferPtr, const char *BufferEnd) {
203 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
204 if (!isWhitespace(*BufferPtr))
205 return BufferPtr;
206 }
207 return BufferEnd;
208 }
209
isWhitespace(const char * BufferPtr,const char * BufferEnd)210 bool isWhitespace(const char *BufferPtr, const char *BufferEnd) {
211 return skipWhitespace(BufferPtr, BufferEnd) == BufferEnd;
212 }
213
isCommandNameStartCharacter(char C)214 bool isCommandNameStartCharacter(char C) {
215 return isLetter(C);
216 }
217
isCommandNameCharacter(char C)218 bool isCommandNameCharacter(char C) {
219 return isAlphanumeric(C);
220 }
221
skipCommandName(const char * BufferPtr,const char * BufferEnd)222 const char *skipCommandName(const char *BufferPtr, const char *BufferEnd) {
223 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
224 if (!isCommandNameCharacter(*BufferPtr))
225 return BufferPtr;
226 }
227 return BufferEnd;
228 }
229
230 /// Return the one past end pointer for BCPL comments.
231 /// Handles newlines escaped with backslash or trigraph for backslahs.
findBCPLCommentEnd(const char * BufferPtr,const char * BufferEnd)232 const char *findBCPLCommentEnd(const char *BufferPtr, const char *BufferEnd) {
233 const char *CurPtr = BufferPtr;
234 while (CurPtr != BufferEnd) {
235 while (!isVerticalWhitespace(*CurPtr)) {
236 CurPtr++;
237 if (CurPtr == BufferEnd)
238 return BufferEnd;
239 }
240 // We found a newline, check if it is escaped.
241 const char *EscapePtr = CurPtr - 1;
242 while(isHorizontalWhitespace(*EscapePtr))
243 EscapePtr--;
244
245 if (*EscapePtr == '\\' ||
246 (EscapePtr - 2 >= BufferPtr && EscapePtr[0] == '/' &&
247 EscapePtr[-1] == '?' && EscapePtr[-2] == '?')) {
248 // We found an escaped newline.
249 CurPtr = skipNewline(CurPtr, BufferEnd);
250 } else
251 return CurPtr; // Not an escaped newline.
252 }
253 return BufferEnd;
254 }
255
256 /// Return the one past end pointer for C comments.
257 /// Very dumb, does not handle escaped newlines or trigraphs.
findCCommentEnd(const char * BufferPtr,const char * BufferEnd)258 const char *findCCommentEnd(const char *BufferPtr, const char *BufferEnd) {
259 for ( ; BufferPtr != BufferEnd; ++BufferPtr) {
260 if (*BufferPtr == '*') {
261 assert(BufferPtr + 1 != BufferEnd);
262 if (*(BufferPtr + 1) == '/')
263 return BufferPtr;
264 }
265 }
266 llvm_unreachable("buffer end hit before '*/' was seen");
267 }
268
269 } // unnamed namespace
270
lexCommentText(Token & T)271 void Lexer::lexCommentText(Token &T) {
272 assert(CommentState == LCS_InsideBCPLComment ||
273 CommentState == LCS_InsideCComment);
274
275 switch (State) {
276 case LS_Normal:
277 break;
278 case LS_VerbatimBlockFirstLine:
279 lexVerbatimBlockFirstLine(T);
280 return;
281 case LS_VerbatimBlockBody:
282 lexVerbatimBlockBody(T);
283 return;
284 case LS_VerbatimLineText:
285 lexVerbatimLineText(T);
286 return;
287 case LS_HTMLStartTag:
288 lexHTMLStartTag(T);
289 return;
290 case LS_HTMLEndTag:
291 lexHTMLEndTag(T);
292 return;
293 }
294
295 assert(State == LS_Normal);
296
297 const char *TokenPtr = BufferPtr;
298 assert(TokenPtr < CommentEnd);
299 while (TokenPtr != CommentEnd) {
300 switch(*TokenPtr) {
301 case '\\':
302 case '@': {
303 // Commands that start with a backslash and commands that start with
304 // 'at' have equivalent semantics. But we keep information about the
305 // exact syntax in AST for comments.
306 tok::TokenKind CommandKind =
307 (*TokenPtr == '@') ? tok::at_command : tok::backslash_command;
308 TokenPtr++;
309 if (TokenPtr == CommentEnd) {
310 formTextToken(T, TokenPtr);
311 return;
312 }
313 char C = *TokenPtr;
314 switch (C) {
315 default:
316 break;
317
318 case '\\': case '@': case '&': case '$':
319 case '#': case '<': case '>': case '%':
320 case '\"': case '.': case ':':
321 // This is one of \\ \@ \& \$ etc escape sequences.
322 TokenPtr++;
323 if (C == ':' && TokenPtr != CommentEnd && *TokenPtr == ':') {
324 // This is the \:: escape sequence.
325 TokenPtr++;
326 }
327 StringRef UnescapedText(BufferPtr + 1, TokenPtr - (BufferPtr + 1));
328 formTokenWithChars(T, TokenPtr, tok::text);
329 T.setText(UnescapedText);
330 return;
331 }
332
333 // Don't make zero-length commands.
334 if (!isCommandNameStartCharacter(*TokenPtr)) {
335 formTextToken(T, TokenPtr);
336 return;
337 }
338
339 TokenPtr = skipCommandName(TokenPtr, CommentEnd);
340 unsigned Length = TokenPtr - (BufferPtr + 1);
341
342 // Hardcoded support for lexing LaTeX formula commands
343 // \f$ \f[ \f] \f{ \f} as a single command.
344 if (Length == 1 && TokenPtr[-1] == 'f' && TokenPtr != CommentEnd) {
345 C = *TokenPtr;
346 if (C == '$' || C == '[' || C == ']' || C == '{' || C == '}') {
347 TokenPtr++;
348 Length++;
349 }
350 }
351
352 const StringRef CommandName(BufferPtr + 1, Length);
353
354 const CommandInfo *Info = Traits.getCommandInfoOrNULL(CommandName);
355 if (!Info) {
356 formTokenWithChars(T, TokenPtr, tok::unknown_command);
357 T.setUnknownCommandName(CommandName);
358 if ((Info = Traits.getTypoCorrectCommandInfo(CommandName))) {
359 StringRef CorrectedName = Info->Name;
360 SourceRange CommandRange(T.getLocation().getLocWithOffset(1),
361 T.getEndLocation());
362 Diag(T.getLocation(), diag::warn_correct_comment_command_name)
363 << CommandName << CorrectedName
364 << FixItHint::CreateReplacement(CommandRange, CorrectedName);
365 } else {
366 Diag(T.getLocation(), diag::warn_unknown_comment_command_name);
367 return;
368 }
369 }
370 if (Info->IsVerbatimBlockCommand) {
371 setupAndLexVerbatimBlock(T, TokenPtr, *BufferPtr, Info);
372 return;
373 }
374 if (Info->IsVerbatimLineCommand) {
375 setupAndLexVerbatimLine(T, TokenPtr, Info);
376 return;
377 }
378 formTokenWithChars(T, TokenPtr, CommandKind);
379 T.setCommandID(Info->getID());
380 return;
381 }
382
383 case '&':
384 lexHTMLCharacterReference(T);
385 return;
386
387 case '<': {
388 TokenPtr++;
389 if (TokenPtr == CommentEnd) {
390 formTextToken(T, TokenPtr);
391 return;
392 }
393 const char C = *TokenPtr;
394 if (isHTMLIdentifierStartingCharacter(C))
395 setupAndLexHTMLStartTag(T);
396 else if (C == '/')
397 setupAndLexHTMLEndTag(T);
398 else
399 formTextToken(T, TokenPtr);
400
401 return;
402 }
403
404 case '\n':
405 case '\r':
406 TokenPtr = skipNewline(TokenPtr, CommentEnd);
407 formTokenWithChars(T, TokenPtr, tok::newline);
408
409 if (CommentState == LCS_InsideCComment)
410 skipLineStartingDecorations();
411 return;
412
413 default: {
414 size_t End = StringRef(TokenPtr, CommentEnd - TokenPtr).
415 find_first_of("\n\r\\@&<");
416 if (End != StringRef::npos)
417 TokenPtr += End;
418 else
419 TokenPtr = CommentEnd;
420 formTextToken(T, TokenPtr);
421 return;
422 }
423 }
424 }
425 }
426
setupAndLexVerbatimBlock(Token & T,const char * TextBegin,char Marker,const CommandInfo * Info)427 void Lexer::setupAndLexVerbatimBlock(Token &T,
428 const char *TextBegin,
429 char Marker, const CommandInfo *Info) {
430 assert(Info->IsVerbatimBlockCommand);
431
432 VerbatimBlockEndCommandName.clear();
433 VerbatimBlockEndCommandName.append(Marker == '\\' ? "\\" : "@");
434 VerbatimBlockEndCommandName.append(Info->EndCommandName);
435
436 formTokenWithChars(T, TextBegin, tok::verbatim_block_begin);
437 T.setVerbatimBlockID(Info->getID());
438
439 // If there is a newline following the verbatim opening command, skip the
440 // newline so that we don't create an tok::verbatim_block_line with empty
441 // text content.
442 if (BufferPtr != CommentEnd &&
443 isVerticalWhitespace(*BufferPtr)) {
444 BufferPtr = skipNewline(BufferPtr, CommentEnd);
445 State = LS_VerbatimBlockBody;
446 return;
447 }
448
449 State = LS_VerbatimBlockFirstLine;
450 }
451
lexVerbatimBlockFirstLine(Token & T)452 void Lexer::lexVerbatimBlockFirstLine(Token &T) {
453 again:
454 assert(BufferPtr < CommentEnd);
455
456 // FIXME: It would be better to scan the text once, finding either the block
457 // end command or newline.
458 //
459 // Extract current line.
460 const char *Newline = findNewline(BufferPtr, CommentEnd);
461 StringRef Line(BufferPtr, Newline - BufferPtr);
462
463 // Look for end command in current line.
464 size_t Pos = Line.find(VerbatimBlockEndCommandName);
465 const char *TextEnd;
466 const char *NextLine;
467 if (Pos == StringRef::npos) {
468 // Current line is completely verbatim.
469 TextEnd = Newline;
470 NextLine = skipNewline(Newline, CommentEnd);
471 } else if (Pos == 0) {
472 // Current line contains just an end command.
473 const char *End = BufferPtr + VerbatimBlockEndCommandName.size();
474 StringRef Name(BufferPtr + 1, End - (BufferPtr + 1));
475 formTokenWithChars(T, End, tok::verbatim_block_end);
476 T.setVerbatimBlockID(Traits.getCommandInfo(Name)->getID());
477 State = LS_Normal;
478 return;
479 } else {
480 // There is some text, followed by end command. Extract text first.
481 TextEnd = BufferPtr + Pos;
482 NextLine = TextEnd;
483 // If there is only whitespace before end command, skip whitespace.
484 if (isWhitespace(BufferPtr, TextEnd)) {
485 BufferPtr = TextEnd;
486 goto again;
487 }
488 }
489
490 StringRef Text(BufferPtr, TextEnd - BufferPtr);
491 formTokenWithChars(T, NextLine, tok::verbatim_block_line);
492 T.setVerbatimBlockText(Text);
493
494 State = LS_VerbatimBlockBody;
495 }
496
lexVerbatimBlockBody(Token & T)497 void Lexer::lexVerbatimBlockBody(Token &T) {
498 assert(State == LS_VerbatimBlockBody);
499
500 if (CommentState == LCS_InsideCComment)
501 skipLineStartingDecorations();
502
503 lexVerbatimBlockFirstLine(T);
504 }
505
setupAndLexVerbatimLine(Token & T,const char * TextBegin,const CommandInfo * Info)506 void Lexer::setupAndLexVerbatimLine(Token &T, const char *TextBegin,
507 const CommandInfo *Info) {
508 assert(Info->IsVerbatimLineCommand);
509 formTokenWithChars(T, TextBegin, tok::verbatim_line_name);
510 T.setVerbatimLineID(Info->getID());
511
512 State = LS_VerbatimLineText;
513 }
514
lexVerbatimLineText(Token & T)515 void Lexer::lexVerbatimLineText(Token &T) {
516 assert(State == LS_VerbatimLineText);
517
518 // Extract current line.
519 const char *Newline = findNewline(BufferPtr, CommentEnd);
520 const StringRef Text(BufferPtr, Newline - BufferPtr);
521 formTokenWithChars(T, Newline, tok::verbatim_line_text);
522 T.setVerbatimLineText(Text);
523
524 State = LS_Normal;
525 }
526
lexHTMLCharacterReference(Token & T)527 void Lexer::lexHTMLCharacterReference(Token &T) {
528 const char *TokenPtr = BufferPtr;
529 assert(*TokenPtr == '&');
530 TokenPtr++;
531 if (TokenPtr == CommentEnd) {
532 formTextToken(T, TokenPtr);
533 return;
534 }
535 const char *NamePtr;
536 bool isNamed = false;
537 bool isDecimal = false;
538 char C = *TokenPtr;
539 if (isHTMLNamedCharacterReferenceCharacter(C)) {
540 NamePtr = TokenPtr;
541 TokenPtr = skipNamedCharacterReference(TokenPtr, CommentEnd);
542 isNamed = true;
543 } else if (C == '#') {
544 TokenPtr++;
545 if (TokenPtr == CommentEnd) {
546 formTextToken(T, TokenPtr);
547 return;
548 }
549 C = *TokenPtr;
550 if (isHTMLDecimalCharacterReferenceCharacter(C)) {
551 NamePtr = TokenPtr;
552 TokenPtr = skipDecimalCharacterReference(TokenPtr, CommentEnd);
553 isDecimal = true;
554 } else if (C == 'x' || C == 'X') {
555 TokenPtr++;
556 NamePtr = TokenPtr;
557 TokenPtr = skipHexCharacterReference(TokenPtr, CommentEnd);
558 } else {
559 formTextToken(T, TokenPtr);
560 return;
561 }
562 } else {
563 formTextToken(T, TokenPtr);
564 return;
565 }
566 if (NamePtr == TokenPtr || TokenPtr == CommentEnd ||
567 *TokenPtr != ';') {
568 formTextToken(T, TokenPtr);
569 return;
570 }
571 StringRef Name(NamePtr, TokenPtr - NamePtr);
572 TokenPtr++; // Skip semicolon.
573 StringRef Resolved;
574 if (isNamed)
575 Resolved = resolveHTMLNamedCharacterReference(Name);
576 else if (isDecimal)
577 Resolved = resolveHTMLDecimalCharacterReference(Name);
578 else
579 Resolved = resolveHTMLHexCharacterReference(Name);
580
581 if (Resolved.empty()) {
582 formTextToken(T, TokenPtr);
583 return;
584 }
585 formTokenWithChars(T, TokenPtr, tok::text);
586 T.setText(Resolved);
587 return;
588 }
589
setupAndLexHTMLStartTag(Token & T)590 void Lexer::setupAndLexHTMLStartTag(Token &T) {
591 assert(BufferPtr[0] == '<' &&
592 isHTMLIdentifierStartingCharacter(BufferPtr[1]));
593 const char *TagNameEnd = skipHTMLIdentifier(BufferPtr + 2, CommentEnd);
594 StringRef Name(BufferPtr + 1, TagNameEnd - (BufferPtr + 1));
595 if (!isHTMLTagName(Name)) {
596 formTextToken(T, TagNameEnd);
597 return;
598 }
599
600 formTokenWithChars(T, TagNameEnd, tok::html_start_tag);
601 T.setHTMLTagStartName(Name);
602
603 BufferPtr = skipWhitespace(BufferPtr, CommentEnd);
604
605 const char C = *BufferPtr;
606 if (BufferPtr != CommentEnd &&
607 (C == '>' || C == '/' || isHTMLIdentifierStartingCharacter(C)))
608 State = LS_HTMLStartTag;
609 }
610
lexHTMLStartTag(Token & T)611 void Lexer::lexHTMLStartTag(Token &T) {
612 assert(State == LS_HTMLStartTag);
613
614 const char *TokenPtr = BufferPtr;
615 char C = *TokenPtr;
616 if (isHTMLIdentifierCharacter(C)) {
617 TokenPtr = skipHTMLIdentifier(TokenPtr, CommentEnd);
618 StringRef Ident(BufferPtr, TokenPtr - BufferPtr);
619 formTokenWithChars(T, TokenPtr, tok::html_ident);
620 T.setHTMLIdent(Ident);
621 } else {
622 switch (C) {
623 case '=':
624 TokenPtr++;
625 formTokenWithChars(T, TokenPtr, tok::html_equals);
626 break;
627 case '\"':
628 case '\'': {
629 const char *OpenQuote = TokenPtr;
630 TokenPtr = skipHTMLQuotedString(TokenPtr, CommentEnd);
631 const char *ClosingQuote = TokenPtr;
632 if (TokenPtr != CommentEnd) // Skip closing quote.
633 TokenPtr++;
634 formTokenWithChars(T, TokenPtr, tok::html_quoted_string);
635 T.setHTMLQuotedString(StringRef(OpenQuote + 1,
636 ClosingQuote - (OpenQuote + 1)));
637 break;
638 }
639 case '>':
640 TokenPtr++;
641 formTokenWithChars(T, TokenPtr, tok::html_greater);
642 State = LS_Normal;
643 return;
644 case '/':
645 TokenPtr++;
646 if (TokenPtr != CommentEnd && *TokenPtr == '>') {
647 TokenPtr++;
648 formTokenWithChars(T, TokenPtr, tok::html_slash_greater);
649 } else
650 formTextToken(T, TokenPtr);
651
652 State = LS_Normal;
653 return;
654 }
655 }
656
657 // Now look ahead and return to normal state if we don't see any HTML tokens
658 // ahead.
659 BufferPtr = skipWhitespace(BufferPtr, CommentEnd);
660 if (BufferPtr == CommentEnd) {
661 State = LS_Normal;
662 return;
663 }
664
665 C = *BufferPtr;
666 if (!isHTMLIdentifierStartingCharacter(C) &&
667 C != '=' && C != '\"' && C != '\'' && C != '>') {
668 State = LS_Normal;
669 return;
670 }
671 }
672
setupAndLexHTMLEndTag(Token & T)673 void Lexer::setupAndLexHTMLEndTag(Token &T) {
674 assert(BufferPtr[0] == '<' && BufferPtr[1] == '/');
675
676 const char *TagNameBegin = skipWhitespace(BufferPtr + 2, CommentEnd);
677 const char *TagNameEnd = skipHTMLIdentifier(TagNameBegin, CommentEnd);
678 StringRef Name(TagNameBegin, TagNameEnd - TagNameBegin);
679 if (!isHTMLTagName(Name)) {
680 formTextToken(T, TagNameEnd);
681 return;
682 }
683
684 const char *End = skipWhitespace(TagNameEnd, CommentEnd);
685
686 formTokenWithChars(T, End, tok::html_end_tag);
687 T.setHTMLTagEndName(Name);
688
689 if (BufferPtr != CommentEnd && *BufferPtr == '>')
690 State = LS_HTMLEndTag;
691 }
692
lexHTMLEndTag(Token & T)693 void Lexer::lexHTMLEndTag(Token &T) {
694 assert(BufferPtr != CommentEnd && *BufferPtr == '>');
695
696 formTokenWithChars(T, BufferPtr + 1, tok::html_greater);
697 State = LS_Normal;
698 }
699
Lexer(llvm::BumpPtrAllocator & Allocator,DiagnosticsEngine & Diags,const CommandTraits & Traits,SourceLocation FileLoc,const char * BufferStart,const char * BufferEnd)700 Lexer::Lexer(llvm::BumpPtrAllocator &Allocator, DiagnosticsEngine &Diags,
701 const CommandTraits &Traits,
702 SourceLocation FileLoc,
703 const char *BufferStart, const char *BufferEnd):
704 Allocator(Allocator), Diags(Diags), Traits(Traits),
705 BufferStart(BufferStart), BufferEnd(BufferEnd),
706 FileLoc(FileLoc), BufferPtr(BufferStart),
707 CommentState(LCS_BeforeComment), State(LS_Normal) {
708 }
709
lex(Token & T)710 void Lexer::lex(Token &T) {
711 again:
712 switch (CommentState) {
713 case LCS_BeforeComment:
714 if (BufferPtr == BufferEnd) {
715 formTokenWithChars(T, BufferPtr, tok::eof);
716 return;
717 }
718
719 assert(*BufferPtr == '/');
720 BufferPtr++; // Skip first slash.
721 switch(*BufferPtr) {
722 case '/': { // BCPL comment.
723 BufferPtr++; // Skip second slash.
724
725 if (BufferPtr != BufferEnd) {
726 // Skip Doxygen magic marker, if it is present.
727 // It might be missing because of a typo //< or /*<, or because we
728 // merged this non-Doxygen comment into a bunch of Doxygen comments
729 // around it: /** ... */ /* ... */ /** ... */
730 const char C = *BufferPtr;
731 if (C == '/' || C == '!')
732 BufferPtr++;
733 }
734
735 // Skip less-than symbol that marks trailing comments.
736 // Skip it even if the comment is not a Doxygen one, because //< and /*<
737 // are frequent typos.
738 if (BufferPtr != BufferEnd && *BufferPtr == '<')
739 BufferPtr++;
740
741 CommentState = LCS_InsideBCPLComment;
742 if (State != LS_VerbatimBlockBody && State != LS_VerbatimBlockFirstLine)
743 State = LS_Normal;
744 CommentEnd = findBCPLCommentEnd(BufferPtr, BufferEnd);
745 goto again;
746 }
747 case '*': { // C comment.
748 BufferPtr++; // Skip star.
749
750 // Skip Doxygen magic marker.
751 const char C = *BufferPtr;
752 if ((C == '*' && *(BufferPtr + 1) != '/') || C == '!')
753 BufferPtr++;
754
755 // Skip less-than symbol that marks trailing comments.
756 if (BufferPtr != BufferEnd && *BufferPtr == '<')
757 BufferPtr++;
758
759 CommentState = LCS_InsideCComment;
760 State = LS_Normal;
761 CommentEnd = findCCommentEnd(BufferPtr, BufferEnd);
762 goto again;
763 }
764 default:
765 llvm_unreachable("second character of comment should be '/' or '*'");
766 }
767
768 case LCS_BetweenComments: {
769 // Consecutive comments are extracted only if there is only whitespace
770 // between them. So we can search for the start of the next comment.
771 const char *EndWhitespace = BufferPtr;
772 while(EndWhitespace != BufferEnd && *EndWhitespace != '/')
773 EndWhitespace++;
774
775 // Turn any whitespace between comments (and there is only whitespace
776 // between them -- guaranteed by comment extraction) into a newline. We
777 // have two newlines between C comments in total (first one was synthesized
778 // after a comment).
779 formTokenWithChars(T, EndWhitespace, tok::newline);
780
781 CommentState = LCS_BeforeComment;
782 break;
783 }
784
785 case LCS_InsideBCPLComment:
786 case LCS_InsideCComment:
787 if (BufferPtr != CommentEnd) {
788 lexCommentText(T);
789 break;
790 } else {
791 // Skip C comment closing sequence.
792 if (CommentState == LCS_InsideCComment) {
793 assert(BufferPtr[0] == '*' && BufferPtr[1] == '/');
794 BufferPtr += 2;
795 assert(BufferPtr <= BufferEnd);
796
797 // Synthenize newline just after the C comment, regardless if there is
798 // actually a newline.
799 formTokenWithChars(T, BufferPtr, tok::newline);
800
801 CommentState = LCS_BetweenComments;
802 break;
803 } else {
804 // Don't synthesized a newline after BCPL comment.
805 CommentState = LCS_BetweenComments;
806 goto again;
807 }
808 }
809 }
810 }
811
getSpelling(const Token & Tok,const SourceManager & SourceMgr,bool * Invalid) const812 StringRef Lexer::getSpelling(const Token &Tok,
813 const SourceManager &SourceMgr,
814 bool *Invalid) const {
815 SourceLocation Loc = Tok.getLocation();
816 std::pair<FileID, unsigned> LocInfo = SourceMgr.getDecomposedLoc(Loc);
817
818 bool InvalidTemp = false;
819 StringRef File = SourceMgr.getBufferData(LocInfo.first, &InvalidTemp);
820 if (InvalidTemp) {
821 *Invalid = true;
822 return StringRef();
823 }
824
825 const char *Begin = File.data() + LocInfo.second;
826 return StringRef(Begin, Tok.getLength());
827 }
828
829 } // end namespace comments
830 } // end namespace clang
831
832