1 //===- TGLexer.cpp - Lexer for TableGen -----------------------------------===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // Implement the Lexer for TableGen.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "TGLexer.h"
15 #include "llvm/ADT/StringSwitch.h"
16 #include "llvm/ADT/Twine.h"
17 #include "llvm/Config/config.h" // for strtoull()/strtoll() define
18 #include "llvm/Support/Compiler.h"
19 #include "llvm/Support/MemoryBuffer.h"
20 #include "llvm/Support/SourceMgr.h"
21 #include "llvm/TableGen/Error.h"
22 #include <algorithm>
23 #include <cctype>
24 #include <cerrno>
25 #include <cstdint>
26 #include <cstdio>
27 #include <cstdlib>
28 #include <cstring>
29
30 using namespace llvm;
31
32 namespace {
33 // A list of supported preprocessing directives with their
34 // internal token kinds and names.
35 struct {
36 tgtok::TokKind Kind;
37 const char *Word;
38 } PreprocessorDirs[] = {
39 { tgtok::Ifdef, "ifdef" },
40 { tgtok::Else, "else" },
41 { tgtok::Endif, "endif" },
42 { tgtok::Define, "define" }
43 };
44 } // end anonymous namespace
45
TGLexer(SourceMgr & SM,ArrayRef<std::string> Macros)46 TGLexer::TGLexer(SourceMgr &SM, ArrayRef<std::string> Macros) : SrcMgr(SM) {
47 CurBuffer = SrcMgr.getMainFileID();
48 CurBuf = SrcMgr.getMemoryBuffer(CurBuffer)->getBuffer();
49 CurPtr = CurBuf.begin();
50 TokStart = nullptr;
51
52 // Pretend that we enter the "top-level" include file.
53 PrepIncludeStack.push_back(
54 make_unique<std::vector<PreprocessorControlDesc>>());
55
56 // Put all macros defined in the command line into the DefinedMacros set.
57 std::for_each(Macros.begin(), Macros.end(),
58 [this](const std::string &MacroName) {
59 DefinedMacros.insert(MacroName);
60 });
61 }
62
getLoc() const63 SMLoc TGLexer::getLoc() const {
64 return SMLoc::getFromPointer(TokStart);
65 }
66
67 /// ReturnError - Set the error to the specified string at the specified
68 /// location. This is defined to always return tgtok::Error.
ReturnError(SMLoc Loc,const Twine & Msg)69 tgtok::TokKind TGLexer::ReturnError(SMLoc Loc, const Twine &Msg) {
70 PrintError(Loc, Msg);
71 return tgtok::Error;
72 }
73
ReturnError(const char * Loc,const Twine & Msg)74 tgtok::TokKind TGLexer::ReturnError(const char *Loc, const Twine &Msg) {
75 return ReturnError(SMLoc::getFromPointer(Loc), Msg);
76 }
77
processEOF()78 bool TGLexer::processEOF() {
79 SMLoc ParentIncludeLoc = SrcMgr.getParentIncludeLoc(CurBuffer);
80 if (ParentIncludeLoc != SMLoc()) {
81 // If prepExitInclude() detects a problem with the preprocessing
82 // control stack, it will return false. Pretend that we reached
83 // the final EOF and stop lexing more tokens by returning false
84 // to LexToken().
85 if (!prepExitInclude(false))
86 return false;
87
88 CurBuffer = SrcMgr.FindBufferContainingLoc(ParentIncludeLoc);
89 CurBuf = SrcMgr.getMemoryBuffer(CurBuffer)->getBuffer();
90 CurPtr = ParentIncludeLoc.getPointer();
91 // Make sure TokStart points into the parent file's buffer.
92 // LexToken() assigns to it before calling getNextChar(),
93 // so it is pointing into the included file now.
94 TokStart = CurPtr;
95 return true;
96 }
97
98 // Pretend that we exit the "top-level" include file.
99 // Note that in case of an error (e.g. control stack imbalance)
100 // the routine will issue a fatal error.
101 prepExitInclude(true);
102 return false;
103 }
104
getNextChar()105 int TGLexer::getNextChar() {
106 char CurChar = *CurPtr++;
107 switch (CurChar) {
108 default:
109 return (unsigned char)CurChar;
110 case 0: {
111 // A nul character in the stream is either the end of the current buffer or
112 // a random nul in the file. Disambiguate that here.
113 if (CurPtr-1 != CurBuf.end())
114 return 0; // Just whitespace.
115
116 // Otherwise, return end of file.
117 --CurPtr; // Another call to lex will return EOF again.
118 return EOF;
119 }
120 case '\n':
121 case '\r':
122 // Handle the newline character by ignoring it and incrementing the line
123 // count. However, be careful about 'dos style' files with \n\r in them.
124 // Only treat a \n\r or \r\n as a single line.
125 if ((*CurPtr == '\n' || (*CurPtr == '\r')) &&
126 *CurPtr != CurChar)
127 ++CurPtr; // Eat the two char newline sequence.
128 return '\n';
129 }
130 }
131
peekNextChar(int Index) const132 int TGLexer::peekNextChar(int Index) const {
133 return *(CurPtr + Index);
134 }
135
LexToken(bool FileOrLineStart)136 tgtok::TokKind TGLexer::LexToken(bool FileOrLineStart) {
137 TokStart = CurPtr;
138 // This always consumes at least one character.
139 int CurChar = getNextChar();
140
141 switch (CurChar) {
142 default:
143 // Handle letters: [a-zA-Z_]
144 if (isalpha(CurChar) || CurChar == '_')
145 return LexIdentifier();
146
147 // Unknown character, emit an error.
148 return ReturnError(TokStart, "Unexpected character");
149 case EOF:
150 // Lex next token, if we just left an include file.
151 // Note that leaving an include file means that the next
152 // symbol is located at the end of 'include "..."'
153 // construct, so LexToken() is called with default
154 // false parameter.
155 if (processEOF())
156 return LexToken();
157
158 // Return EOF denoting the end of lexing.
159 return tgtok::Eof;
160
161 case ':': return tgtok::colon;
162 case ';': return tgtok::semi;
163 case '.': return tgtok::period;
164 case ',': return tgtok::comma;
165 case '<': return tgtok::less;
166 case '>': return tgtok::greater;
167 case ']': return tgtok::r_square;
168 case '{': return tgtok::l_brace;
169 case '}': return tgtok::r_brace;
170 case '(': return tgtok::l_paren;
171 case ')': return tgtok::r_paren;
172 case '=': return tgtok::equal;
173 case '?': return tgtok::question;
174 case '#':
175 if (FileOrLineStart) {
176 tgtok::TokKind Kind = prepIsDirective();
177 if (Kind != tgtok::Error)
178 return lexPreprocessor(Kind);
179 }
180
181 return tgtok::paste;
182
183 case '\r':
184 PrintFatalError("getNextChar() must never return '\r'");
185 return tgtok::Error;
186
187 case 0:
188 case ' ':
189 case '\t':
190 // Ignore whitespace.
191 return LexToken(FileOrLineStart);
192 case '\n':
193 // Ignore whitespace, and identify the new line.
194 return LexToken(true);
195 case '/':
196 // If this is the start of a // comment, skip until the end of the line or
197 // the end of the buffer.
198 if (*CurPtr == '/')
199 SkipBCPLComment();
200 else if (*CurPtr == '*') {
201 if (SkipCComment())
202 return tgtok::Error;
203 } else // Otherwise, this is an error.
204 return ReturnError(TokStart, "Unexpected character");
205 return LexToken(FileOrLineStart);
206 case '-': case '+':
207 case '0': case '1': case '2': case '3': case '4': case '5': case '6':
208 case '7': case '8': case '9': {
209 int NextChar = 0;
210 if (isdigit(CurChar)) {
211 // Allow identifiers to start with a number if it is followed by
212 // an identifier. This can happen with paste operations like
213 // foo#8i.
214 int i = 0;
215 do {
216 NextChar = peekNextChar(i++);
217 } while (isdigit(NextChar));
218
219 if (NextChar == 'x' || NextChar == 'b') {
220 // If this is [0-9]b[01] or [0-9]x[0-9A-fa-f] this is most
221 // likely a number.
222 int NextNextChar = peekNextChar(i);
223 switch (NextNextChar) {
224 default:
225 break;
226 case '0': case '1':
227 if (NextChar == 'b')
228 return LexNumber();
229 LLVM_FALLTHROUGH;
230 case '2': case '3': case '4': case '5':
231 case '6': case '7': case '8': case '9':
232 case 'a': case 'b': case 'c': case 'd': case 'e': case 'f':
233 case 'A': case 'B': case 'C': case 'D': case 'E': case 'F':
234 if (NextChar == 'x')
235 return LexNumber();
236 break;
237 }
238 }
239 }
240
241 if (isalpha(NextChar) || NextChar == '_')
242 return LexIdentifier();
243
244 return LexNumber();
245 }
246 case '"': return LexString();
247 case '$': return LexVarName();
248 case '[': return LexBracket();
249 case '!': return LexExclaim();
250 }
251 }
252
253 /// LexString - Lex "[^"]*"
LexString()254 tgtok::TokKind TGLexer::LexString() {
255 const char *StrStart = CurPtr;
256
257 CurStrVal = "";
258
259 while (*CurPtr != '"') {
260 // If we hit the end of the buffer, report an error.
261 if (*CurPtr == 0 && CurPtr == CurBuf.end())
262 return ReturnError(StrStart, "End of file in string literal");
263
264 if (*CurPtr == '\n' || *CurPtr == '\r')
265 return ReturnError(StrStart, "End of line in string literal");
266
267 if (*CurPtr != '\\') {
268 CurStrVal += *CurPtr++;
269 continue;
270 }
271
272 ++CurPtr;
273
274 switch (*CurPtr) {
275 case '\\': case '\'': case '"':
276 // These turn into their literal character.
277 CurStrVal += *CurPtr++;
278 break;
279 case 't':
280 CurStrVal += '\t';
281 ++CurPtr;
282 break;
283 case 'n':
284 CurStrVal += '\n';
285 ++CurPtr;
286 break;
287
288 case '\n':
289 case '\r':
290 return ReturnError(CurPtr, "escaped newlines not supported in tblgen");
291
292 // If we hit the end of the buffer, report an error.
293 case '\0':
294 if (CurPtr == CurBuf.end())
295 return ReturnError(StrStart, "End of file in string literal");
296 LLVM_FALLTHROUGH;
297 default:
298 return ReturnError(CurPtr, "invalid escape in string literal");
299 }
300 }
301
302 ++CurPtr;
303 return tgtok::StrVal;
304 }
305
LexVarName()306 tgtok::TokKind TGLexer::LexVarName() {
307 if (!isalpha(CurPtr[0]) && CurPtr[0] != '_')
308 return ReturnError(TokStart, "Invalid variable name");
309
310 // Otherwise, we're ok, consume the rest of the characters.
311 const char *VarNameStart = CurPtr++;
312
313 while (isalpha(*CurPtr) || isdigit(*CurPtr) || *CurPtr == '_')
314 ++CurPtr;
315
316 CurStrVal.assign(VarNameStart, CurPtr);
317 return tgtok::VarName;
318 }
319
LexIdentifier()320 tgtok::TokKind TGLexer::LexIdentifier() {
321 // The first letter is [a-zA-Z_].
322 const char *IdentStart = TokStart;
323
324 // Match the rest of the identifier regex: [0-9a-zA-Z_]*
325 while (isalpha(*CurPtr) || isdigit(*CurPtr) || *CurPtr == '_')
326 ++CurPtr;
327
328 // Check to see if this identifier is a keyword.
329 StringRef Str(IdentStart, CurPtr-IdentStart);
330
331 if (Str == "include") {
332 if (LexInclude()) return tgtok::Error;
333 return Lex();
334 }
335
336 tgtok::TokKind Kind = StringSwitch<tgtok::TokKind>(Str)
337 .Case("int", tgtok::Int)
338 .Case("bit", tgtok::Bit)
339 .Case("bits", tgtok::Bits)
340 .Case("string", tgtok::String)
341 .Case("list", tgtok::List)
342 .Case("code", tgtok::Code)
343 .Case("dag", tgtok::Dag)
344 .Case("class", tgtok::Class)
345 .Case("def", tgtok::Def)
346 .Case("foreach", tgtok::Foreach)
347 .Case("defm", tgtok::Defm)
348 .Case("defset", tgtok::Defset)
349 .Case("multiclass", tgtok::MultiClass)
350 .Case("field", tgtok::Field)
351 .Case("let", tgtok::Let)
352 .Case("in", tgtok::In)
353 .Default(tgtok::Id);
354
355 if (Kind == tgtok::Id)
356 CurStrVal.assign(Str.begin(), Str.end());
357 return Kind;
358 }
359
360 /// LexInclude - We just read the "include" token. Get the string token that
361 /// comes next and enter the include.
LexInclude()362 bool TGLexer::LexInclude() {
363 // The token after the include must be a string.
364 tgtok::TokKind Tok = LexToken();
365 if (Tok == tgtok::Error) return true;
366 if (Tok != tgtok::StrVal) {
367 PrintError(getLoc(), "Expected filename after include");
368 return true;
369 }
370
371 // Get the string.
372 std::string Filename = CurStrVal;
373 std::string IncludedFile;
374
375 CurBuffer = SrcMgr.AddIncludeFile(Filename, SMLoc::getFromPointer(CurPtr),
376 IncludedFile);
377 if (!CurBuffer) {
378 PrintError(getLoc(), "Could not find include file '" + Filename + "'");
379 return true;
380 }
381
382 DependenciesMapTy::const_iterator Found = Dependencies.find(IncludedFile);
383 if (Found != Dependencies.end()) {
384 PrintError(getLoc(),
385 "File '" + IncludedFile + "' has already been included.");
386 SrcMgr.PrintMessage(Found->second, SourceMgr::DK_Note,
387 "previously included here");
388 return true;
389 }
390 Dependencies.insert(std::make_pair(IncludedFile, getLoc()));
391 // Save the line number and lex buffer of the includer.
392 CurBuf = SrcMgr.getMemoryBuffer(CurBuffer)->getBuffer();
393 CurPtr = CurBuf.begin();
394
395 PrepIncludeStack.push_back(
396 make_unique<std::vector<PreprocessorControlDesc>>());
397 return false;
398 }
399
SkipBCPLComment()400 void TGLexer::SkipBCPLComment() {
401 ++CurPtr; // skip the second slash.
402 while (true) {
403 switch (*CurPtr) {
404 case '\n':
405 case '\r':
406 return; // Newline is end of comment.
407 case 0:
408 // If this is the end of the buffer, end the comment.
409 if (CurPtr == CurBuf.end())
410 return;
411 break;
412 }
413 // Otherwise, skip the character.
414 ++CurPtr;
415 }
416 }
417
418 /// SkipCComment - This skips C-style /**/ comments. The only difference from C
419 /// is that we allow nesting.
SkipCComment()420 bool TGLexer::SkipCComment() {
421 ++CurPtr; // skip the star.
422 unsigned CommentDepth = 1;
423
424 while (true) {
425 int CurChar = getNextChar();
426 switch (CurChar) {
427 case EOF:
428 PrintError(TokStart, "Unterminated comment!");
429 return true;
430 case '*':
431 // End of the comment?
432 if (CurPtr[0] != '/') break;
433
434 ++CurPtr; // End the */.
435 if (--CommentDepth == 0)
436 return false;
437 break;
438 case '/':
439 // Start of a nested comment?
440 if (CurPtr[0] != '*') break;
441 ++CurPtr;
442 ++CommentDepth;
443 break;
444 }
445 }
446 }
447
448 /// LexNumber - Lex:
449 /// [-+]?[0-9]+
450 /// 0x[0-9a-fA-F]+
451 /// 0b[01]+
LexNumber()452 tgtok::TokKind TGLexer::LexNumber() {
453 if (CurPtr[-1] == '0') {
454 if (CurPtr[0] == 'x') {
455 ++CurPtr;
456 const char *NumStart = CurPtr;
457 while (isxdigit(CurPtr[0]))
458 ++CurPtr;
459
460 // Requires at least one hex digit.
461 if (CurPtr == NumStart)
462 return ReturnError(TokStart, "Invalid hexadecimal number");
463
464 errno = 0;
465 CurIntVal = strtoll(NumStart, nullptr, 16);
466 if (errno == EINVAL)
467 return ReturnError(TokStart, "Invalid hexadecimal number");
468 if (errno == ERANGE) {
469 errno = 0;
470 CurIntVal = (int64_t)strtoull(NumStart, nullptr, 16);
471 if (errno == EINVAL)
472 return ReturnError(TokStart, "Invalid hexadecimal number");
473 if (errno == ERANGE)
474 return ReturnError(TokStart, "Hexadecimal number out of range");
475 }
476 return tgtok::IntVal;
477 } else if (CurPtr[0] == 'b') {
478 ++CurPtr;
479 const char *NumStart = CurPtr;
480 while (CurPtr[0] == '0' || CurPtr[0] == '1')
481 ++CurPtr;
482
483 // Requires at least one binary digit.
484 if (CurPtr == NumStart)
485 return ReturnError(CurPtr-2, "Invalid binary number");
486 CurIntVal = strtoll(NumStart, nullptr, 2);
487 return tgtok::BinaryIntVal;
488 }
489 }
490
491 // Check for a sign without a digit.
492 if (!isdigit(CurPtr[0])) {
493 if (CurPtr[-1] == '-')
494 return tgtok::minus;
495 else if (CurPtr[-1] == '+')
496 return tgtok::plus;
497 }
498
499 while (isdigit(CurPtr[0]))
500 ++CurPtr;
501 CurIntVal = strtoll(TokStart, nullptr, 10);
502 return tgtok::IntVal;
503 }
504
505 /// LexBracket - We just read '['. If this is a code block, return it,
506 /// otherwise return the bracket. Match: '[' and '[{ ( [^}]+ | }[^]] )* }]'
LexBracket()507 tgtok::TokKind TGLexer::LexBracket() {
508 if (CurPtr[0] != '{')
509 return tgtok::l_square;
510 ++CurPtr;
511 const char *CodeStart = CurPtr;
512 while (true) {
513 int Char = getNextChar();
514 if (Char == EOF) break;
515
516 if (Char != '}') continue;
517
518 Char = getNextChar();
519 if (Char == EOF) break;
520 if (Char == ']') {
521 CurStrVal.assign(CodeStart, CurPtr-2);
522 return tgtok::CodeFragment;
523 }
524 }
525
526 return ReturnError(CodeStart-2, "Unterminated Code Block");
527 }
528
529 /// LexExclaim - Lex '!' and '![a-zA-Z]+'.
LexExclaim()530 tgtok::TokKind TGLexer::LexExclaim() {
531 if (!isalpha(*CurPtr))
532 return ReturnError(CurPtr - 1, "Invalid \"!operator\"");
533
534 const char *Start = CurPtr++;
535 while (isalpha(*CurPtr))
536 ++CurPtr;
537
538 // Check to see which operator this is.
539 tgtok::TokKind Kind =
540 StringSwitch<tgtok::TokKind>(StringRef(Start, CurPtr - Start))
541 .Case("eq", tgtok::XEq)
542 .Case("ne", tgtok::XNe)
543 .Case("le", tgtok::XLe)
544 .Case("lt", tgtok::XLt)
545 .Case("ge", tgtok::XGe)
546 .Case("gt", tgtok::XGt)
547 .Case("if", tgtok::XIf)
548 .Case("isa", tgtok::XIsA)
549 .Case("head", tgtok::XHead)
550 .Case("tail", tgtok::XTail)
551 .Case("size", tgtok::XSize)
552 .Case("con", tgtok::XConcat)
553 .Case("dag", tgtok::XDag)
554 .Case("add", tgtok::XADD)
555 .Case("and", tgtok::XAND)
556 .Case("or", tgtok::XOR)
557 .Case("shl", tgtok::XSHL)
558 .Case("sra", tgtok::XSRA)
559 .Case("srl", tgtok::XSRL)
560 .Case("cast", tgtok::XCast)
561 .Case("empty", tgtok::XEmpty)
562 .Case("subst", tgtok::XSubst)
563 .Case("foldl", tgtok::XFoldl)
564 .Case("foreach", tgtok::XForEach)
565 .Case("listconcat", tgtok::XListConcat)
566 .Case("strconcat", tgtok::XStrConcat)
567 .Default(tgtok::Error);
568
569 return Kind != tgtok::Error ? Kind : ReturnError(Start-1, "Unknown operator");
570 }
571
prepExitInclude(bool IncludeStackMustBeEmpty)572 bool TGLexer::prepExitInclude(bool IncludeStackMustBeEmpty) {
573 // Report an error, if preprocessor control stack for the current
574 // file is not empty.
575 if (!PrepIncludeStack.back()->empty()) {
576 prepReportPreprocessorStackError();
577
578 return false;
579 }
580
581 // Pop the preprocessing controls from the include stack.
582 if (PrepIncludeStack.empty()) {
583 PrintFatalError("Preprocessor include stack is empty");
584 }
585
586 PrepIncludeStack.pop_back();
587
588 if (IncludeStackMustBeEmpty) {
589 if (!PrepIncludeStack.empty())
590 PrintFatalError("Preprocessor include stack is not empty");
591 } else {
592 if (PrepIncludeStack.empty())
593 PrintFatalError("Preprocessor include stack is empty");
594 }
595
596 return true;
597 }
598
prepIsDirective() const599 tgtok::TokKind TGLexer::prepIsDirective() const {
600 for (unsigned ID = 0; ID < llvm::array_lengthof(PreprocessorDirs); ++ID) {
601 int NextChar = *CurPtr;
602 bool Match = true;
603 unsigned I = 0;
604 for (; I < strlen(PreprocessorDirs[ID].Word); ++I) {
605 if (NextChar != PreprocessorDirs[ID].Word[I]) {
606 Match = false;
607 break;
608 }
609
610 NextChar = peekNextChar(I + 1);
611 }
612
613 // Check for whitespace after the directive. If there is no whitespace,
614 // then we do not recognize it as a preprocessing directive.
615 if (Match) {
616 tgtok::TokKind Kind = PreprocessorDirs[ID].Kind;
617
618 // New line and EOF may follow only #else/#endif. It will be reported
619 // as an error for #ifdef/#define after the call to prepLexMacroName().
620 if (NextChar == ' ' || NextChar == '\t' || NextChar == EOF ||
621 NextChar == '\n' ||
622 // It looks like TableGen does not support '\r' as the actual
623 // carriage return, e.g. getNextChar() treats a single '\r'
624 // as '\n'. So we do the same here.
625 NextChar == '\r')
626 return Kind;
627
628 // Allow comments after some directives, e.g.:
629 // #else// OR #else/**/
630 // #endif// OR #endif/**/
631 //
632 // Note that we do allow comments after #ifdef/#define here, e.g.
633 // #ifdef/**/ AND #ifdef//
634 // #define/**/ AND #define//
635 //
636 // These cases will be reported as incorrect after calling
637 // prepLexMacroName(). We could have supported C-style comments
638 // after #ifdef/#define, but this would complicate the code
639 // for little benefit.
640 if (NextChar == '/') {
641 NextChar = peekNextChar(I + 1);
642
643 if (NextChar == '*' || NextChar == '/')
644 return Kind;
645
646 // Pretend that we do not recognize the directive.
647 }
648 }
649 }
650
651 return tgtok::Error;
652 }
653
prepEatPreprocessorDirective(tgtok::TokKind Kind)654 bool TGLexer::prepEatPreprocessorDirective(tgtok::TokKind Kind) {
655 TokStart = CurPtr;
656
657 for (unsigned ID = 0; ID < llvm::array_lengthof(PreprocessorDirs); ++ID)
658 if (PreprocessorDirs[ID].Kind == Kind) {
659 // Advance CurPtr to the end of the preprocessing word.
660 CurPtr += strlen(PreprocessorDirs[ID].Word);
661 return true;
662 }
663
664 PrintFatalError("Unsupported preprocessing token in "
665 "prepEatPreprocessorDirective()");
666 return false;
667 }
668
lexPreprocessor(tgtok::TokKind Kind,bool ReturnNextLiveToken)669 tgtok::TokKind TGLexer::lexPreprocessor(
670 tgtok::TokKind Kind, bool ReturnNextLiveToken) {
671
672 // We must be looking at a preprocessing directive. Eat it!
673 if (!prepEatPreprocessorDirective(Kind))
674 PrintFatalError("lexPreprocessor() called for unknown "
675 "preprocessor directive");
676
677 if (Kind == tgtok::Ifdef) {
678 StringRef MacroName = prepLexMacroName();
679 if (MacroName.empty())
680 return ReturnError(TokStart, "Expected macro name after #ifdef");
681
682 bool MacroIsDefined = DefinedMacros.count(MacroName) != 0;
683
684 // Regardless of whether we are processing tokens or not,
685 // we put the #ifdef control on stack.
686 PrepIncludeStack.back()->push_back(
687 {Kind, MacroIsDefined, SMLoc::getFromPointer(TokStart)});
688
689 if (!prepSkipDirectiveEnd())
690 return ReturnError(CurPtr,
691 "Only comments are supported after #ifdef NAME");
692
693 // If we were not processing tokens before this #ifdef,
694 // then just return back to the lines skipping code.
695 if (!ReturnNextLiveToken)
696 return Kind;
697
698 // If we were processing tokens before this #ifdef,
699 // and the macro is defined, then just return the next token.
700 if (MacroIsDefined)
701 return LexToken();
702
703 // We were processing tokens before this #ifdef, and the macro
704 // is not defined, so we have to start skipping the lines.
705 // If the skipping is successful, it will return the token following
706 // either #else or #endif corresponding to this #ifdef.
707 if (prepSkipRegion(ReturnNextLiveToken))
708 return LexToken();
709
710 return tgtok::Error;
711 } else if (Kind == tgtok::Else) {
712 // Check if this #else is correct before calling prepSkipDirectiveEnd(),
713 // which will move CurPtr away from the beginning of #else.
714 if (PrepIncludeStack.back()->empty())
715 return ReturnError(TokStart, "#else without #ifdef");
716
717 PreprocessorControlDesc IfdefEntry = PrepIncludeStack.back()->back();
718
719 if (IfdefEntry.Kind != tgtok::Ifdef) {
720 PrintError(TokStart, "double #else");
721 return ReturnError(IfdefEntry.SrcPos, "Previous #else is here");
722 }
723
724 // Replace the corresponding #ifdef's control with its negation
725 // on the control stack.
726 PrepIncludeStack.back()->pop_back();
727 PrepIncludeStack.back()->push_back(
728 {Kind, !IfdefEntry.IsDefined, SMLoc::getFromPointer(TokStart)});
729
730 if (!prepSkipDirectiveEnd())
731 return ReturnError(CurPtr, "Only comments are supported after #else");
732
733 // If we were processing tokens before this #else,
734 // we have to start skipping lines until the matching #endif.
735 if (ReturnNextLiveToken) {
736 if (prepSkipRegion(ReturnNextLiveToken))
737 return LexToken();
738
739 return tgtok::Error;
740 }
741
742 // Return to the lines skipping code.
743 return Kind;
744 } else if (Kind == tgtok::Endif) {
745 // Check if this #endif is correct before calling prepSkipDirectiveEnd(),
746 // which will move CurPtr away from the beginning of #endif.
747 if (PrepIncludeStack.back()->empty())
748 return ReturnError(TokStart, "#endif without #ifdef");
749
750 auto &IfdefOrElseEntry = PrepIncludeStack.back()->back();
751
752 if (IfdefOrElseEntry.Kind != tgtok::Ifdef &&
753 IfdefOrElseEntry.Kind != tgtok::Else) {
754 PrintFatalError("Invalid preprocessor control on the stack");
755 return tgtok::Error;
756 }
757
758 if (!prepSkipDirectiveEnd())
759 return ReturnError(CurPtr, "Only comments are supported after #endif");
760
761 PrepIncludeStack.back()->pop_back();
762
763 // If we were processing tokens before this #endif, then
764 // we should continue it.
765 if (ReturnNextLiveToken) {
766 return LexToken();
767 }
768
769 // Return to the lines skipping code.
770 return Kind;
771 } else if (Kind == tgtok::Define) {
772 StringRef MacroName = prepLexMacroName();
773 if (MacroName.empty())
774 return ReturnError(TokStart, "Expected macro name after #define");
775
776 if (!DefinedMacros.insert(MacroName).second)
777 PrintWarning(getLoc(),
778 "Duplicate definition of macro: " + Twine(MacroName));
779
780 if (!prepSkipDirectiveEnd())
781 return ReturnError(CurPtr,
782 "Only comments are supported after #define NAME");
783
784 if (!ReturnNextLiveToken) {
785 PrintFatalError("#define must be ignored during the lines skipping");
786 return tgtok::Error;
787 }
788
789 return LexToken();
790 }
791
792 PrintFatalError("Preprocessing directive is not supported");
793 return tgtok::Error;
794 }
795
prepSkipRegion(bool MustNeverBeFalse)796 bool TGLexer::prepSkipRegion(bool MustNeverBeFalse) {
797 if (!MustNeverBeFalse)
798 PrintFatalError("Invalid recursion.");
799
800 do {
801 // Skip all symbols to the line end.
802 prepSkipToLineEnd();
803
804 // Find the first non-whitespace symbol in the next line(s).
805 if (!prepSkipLineBegin())
806 return false;
807
808 // If the first non-blank/comment symbol on the line is '#',
809 // it may be a start of preprocessing directive.
810 //
811 // If it is not '#' just go to the next line.
812 if (*CurPtr == '#')
813 ++CurPtr;
814 else
815 continue;
816
817 tgtok::TokKind Kind = prepIsDirective();
818
819 // If we did not find a preprocessing directive or it is #define,
820 // then just skip to the next line. We do not have to do anything
821 // for #define in the line-skipping mode.
822 if (Kind == tgtok::Error || Kind == tgtok::Define)
823 continue;
824
825 tgtok::TokKind ProcessedKind = lexPreprocessor(Kind, false);
826
827 // If lexPreprocessor() encountered an error during lexing this
828 // preprocessor idiom, then return false to the calling lexPreprocessor().
829 // This will force tgtok::Error to be returned to the tokens processing.
830 if (ProcessedKind == tgtok::Error)
831 return false;
832
833 if (Kind != ProcessedKind)
834 PrintFatalError("prepIsDirective() and lexPreprocessor() "
835 "returned different token kinds");
836
837 // If this preprocessing directive enables tokens processing,
838 // then return to the lexPreprocessor() and get to the next token.
839 // We can move from line-skipping mode to processing tokens only
840 // due to #else or #endif.
841 if (prepIsProcessingEnabled()) {
842 if (Kind != tgtok::Else && Kind != tgtok::Endif) {
843 PrintFatalError("Tokens processing was enabled by an unexpected "
844 "preprocessing directive");
845 return false;
846 }
847
848 return true;
849 }
850 } while (CurPtr != CurBuf.end());
851
852 // We have reached the end of the file, but never left the lines-skipping
853 // mode. This means there is no matching #endif.
854 prepReportPreprocessorStackError();
855 return false;
856 }
857
prepLexMacroName()858 StringRef TGLexer::prepLexMacroName() {
859 // Skip whitespaces between the preprocessing directive and the macro name.
860 while (*CurPtr == ' ' || *CurPtr == '\t')
861 ++CurPtr;
862
863 TokStart = CurPtr;
864 // Macro names start with [a-zA-Z_].
865 if (*CurPtr != '_' && !isalpha(*CurPtr))
866 return "";
867
868 // Match the rest of the identifier regex: [0-9a-zA-Z_]*
869 while (isalpha(*CurPtr) || isdigit(*CurPtr) || *CurPtr == '_')
870 ++CurPtr;
871
872 return StringRef(TokStart, CurPtr - TokStart);
873 }
874
prepSkipLineBegin()875 bool TGLexer::prepSkipLineBegin() {
876 while (CurPtr != CurBuf.end()) {
877 switch (*CurPtr) {
878 case ' ':
879 case '\t':
880 case '\n':
881 case '\r':
882 break;
883
884 case '/': {
885 int NextChar = peekNextChar(1);
886 if (NextChar == '*') {
887 // Skip C-style comment.
888 // Note that we do not care about skipping the C++-style comments.
889 // If the line contains "//", it may not contain any processable
890 // preprocessing directive. Just return CurPtr pointing to
891 // the first '/' in this case. We also do not care about
892 // incorrect symbols after the first '/' - we are in lines-skipping
893 // mode, so incorrect code is allowed to some extent.
894
895 // Set TokStart to the beginning of the comment to enable proper
896 // diagnostic printing in case of error in SkipCComment().
897 TokStart = CurPtr;
898
899 // CurPtr must point to '*' before call to SkipCComment().
900 ++CurPtr;
901 if (SkipCComment())
902 return false;
903 } else {
904 // CurPtr points to the non-whitespace '/'.
905 return true;
906 }
907
908 // We must not increment CurPtr after the comment was lexed.
909 continue;
910 }
911
912 default:
913 return true;
914 }
915
916 ++CurPtr;
917 }
918
919 // We have reached the end of the file. Return to the lines skipping
920 // code, and allow it to handle the EOF as needed.
921 return true;
922 }
923
prepSkipDirectiveEnd()924 bool TGLexer::prepSkipDirectiveEnd() {
925 while (CurPtr != CurBuf.end()) {
926 switch (*CurPtr) {
927 case ' ':
928 case '\t':
929 break;
930
931 case '\n':
932 case '\r':
933 return true;
934
935 case '/': {
936 int NextChar = peekNextChar(1);
937 if (NextChar == '/') {
938 // Skip C++-style comment.
939 // We may just return true now, but let's skip to the line/buffer end
940 // to simplify the method specification.
941 ++CurPtr;
942 SkipBCPLComment();
943 } else if (NextChar == '*') {
944 // When we are skipping C-style comment at the end of a preprocessing
945 // directive, we can skip several lines. If any meaningful TD token
946 // follows the end of the C-style comment on the same line, it will
947 // be considered as an invalid usage of TD token.
948 // For example, we want to forbid usages like this one:
949 // #define MACRO class Class {}
950 // But with C-style comments we also disallow the following:
951 // #define MACRO /* This macro is used
952 // to ... */ class Class {}
953 // One can argue that this should be allowed, but it does not seem
954 // to be worth of the complication. Moreover, this matches
955 // the C preprocessor behavior.
956
957 // Set TokStart to the beginning of the comment to enable proper
958 // diagnostic printer in case of error in SkipCComment().
959 TokStart = CurPtr;
960 ++CurPtr;
961 if (SkipCComment())
962 return false;
963 } else {
964 TokStart = CurPtr;
965 PrintError(CurPtr, "Unexpected character");
966 return false;
967 }
968
969 // We must not increment CurPtr after the comment was lexed.
970 continue;
971 }
972
973 default:
974 // Do not allow any non-whitespaces after the directive.
975 TokStart = CurPtr;
976 return false;
977 }
978
979 ++CurPtr;
980 }
981
982 return true;
983 }
984
prepSkipToLineEnd()985 void TGLexer::prepSkipToLineEnd() {
986 while (*CurPtr != '\n' && *CurPtr != '\r' && CurPtr != CurBuf.end())
987 ++CurPtr;
988 }
989
prepIsProcessingEnabled()990 bool TGLexer::prepIsProcessingEnabled() {
991 for (auto I = PrepIncludeStack.back()->rbegin(),
992 E = PrepIncludeStack.back()->rend();
993 I != E; ++I) {
994 if (!I->IsDefined)
995 return false;
996 }
997
998 return true;
999 }
1000
prepReportPreprocessorStackError()1001 void TGLexer::prepReportPreprocessorStackError() {
1002 if (PrepIncludeStack.back()->empty())
1003 PrintFatalError("prepReportPreprocessorStackError() called with "
1004 "empty control stack");
1005
1006 auto &PrepControl = PrepIncludeStack.back()->back();
1007 PrintError(CurBuf.end(), "Reached EOF without matching #endif");
1008 PrintError(PrepControl.SrcPos, "The latest preprocessor control is here");
1009
1010 TokStart = CurPtr;
1011 }
1012