1 //===--- UnwrappedLineParser.cpp - Format C++ code ------------------------===//
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 /// \file
11 /// \brief This file contains the implementation of the UnwrappedLineParser,
12 /// which turns a stream of tokens into UnwrappedLines.
13 ///
14 //===----------------------------------------------------------------------===//
15 
16 #include "UnwrappedLineParser.h"
17 #include "llvm/ADT/STLExtras.h"
18 #include "llvm/Support/Debug.h"
19 #include "llvm/Support/raw_ostream.h"
20 
21 #define DEBUG_TYPE "format-parser"
22 
23 namespace clang {
24 namespace format {
25 
26 class FormatTokenSource {
27 public:
28   virtual ~FormatTokenSource() {}
29   virtual FormatToken *getNextToken() = 0;
30 
31   virtual unsigned getPosition() = 0;
32   virtual FormatToken *setPosition(unsigned Position) = 0;
33 };
34 
35 namespace {
36 
37 class ScopedDeclarationState {
38 public:
39   ScopedDeclarationState(UnwrappedLine &Line, std::vector<bool> &Stack,
40                          bool MustBeDeclaration)
41       : Line(Line), Stack(Stack) {
42     Line.MustBeDeclaration = MustBeDeclaration;
43     Stack.push_back(MustBeDeclaration);
44   }
45   ~ScopedDeclarationState() {
46     Stack.pop_back();
47     if (!Stack.empty())
48       Line.MustBeDeclaration = Stack.back();
49     else
50       Line.MustBeDeclaration = true;
51   }
52 
53 private:
54   UnwrappedLine &Line;
55   std::vector<bool> &Stack;
56 };
57 
58 class ScopedMacroState : public FormatTokenSource {
59 public:
60   ScopedMacroState(UnwrappedLine &Line, FormatTokenSource *&TokenSource,
61                    FormatToken *&ResetToken)
62       : Line(Line), TokenSource(TokenSource), ResetToken(ResetToken),
63         PreviousLineLevel(Line.Level), PreviousTokenSource(TokenSource),
64         Token(nullptr) {
65     TokenSource = this;
66     Line.Level = 0;
67     Line.InPPDirective = true;
68   }
69 
70   ~ScopedMacroState() override {
71     TokenSource = PreviousTokenSource;
72     ResetToken = Token;
73     Line.InPPDirective = false;
74     Line.Level = PreviousLineLevel;
75   }
76 
77   FormatToken *getNextToken() override {
78     // The \c UnwrappedLineParser guards against this by never calling
79     // \c getNextToken() after it has encountered the first eof token.
80     assert(!eof());
81     Token = PreviousTokenSource->getNextToken();
82     if (eof())
83       return getFakeEOF();
84     return Token;
85   }
86 
87   unsigned getPosition() override { return PreviousTokenSource->getPosition(); }
88 
89   FormatToken *setPosition(unsigned Position) override {
90     Token = PreviousTokenSource->setPosition(Position);
91     return Token;
92   }
93 
94 private:
95   bool eof() { return Token && Token->HasUnescapedNewline; }
96 
97   FormatToken *getFakeEOF() {
98     static bool EOFInitialized = false;
99     static FormatToken FormatTok;
100     if (!EOFInitialized) {
101       FormatTok.Tok.startToken();
102       FormatTok.Tok.setKind(tok::eof);
103       EOFInitialized = true;
104     }
105     return &FormatTok;
106   }
107 
108   UnwrappedLine &Line;
109   FormatTokenSource *&TokenSource;
110   FormatToken *&ResetToken;
111   unsigned PreviousLineLevel;
112   FormatTokenSource *PreviousTokenSource;
113 
114   FormatToken *Token;
115 };
116 
117 } // end anonymous namespace
118 
119 class ScopedLineState {
120 public:
121   ScopedLineState(UnwrappedLineParser &Parser,
122                   bool SwitchToPreprocessorLines = false)
123       : Parser(Parser), OriginalLines(Parser.CurrentLines) {
124     if (SwitchToPreprocessorLines)
125       Parser.CurrentLines = &Parser.PreprocessorDirectives;
126     else if (!Parser.Line->Tokens.empty())
127       Parser.CurrentLines = &Parser.Line->Tokens.back().Children;
128     PreBlockLine = std::move(Parser.Line);
129     Parser.Line = llvm::make_unique<UnwrappedLine>();
130     Parser.Line->Level = PreBlockLine->Level;
131     Parser.Line->InPPDirective = PreBlockLine->InPPDirective;
132   }
133 
134   ~ScopedLineState() {
135     if (!Parser.Line->Tokens.empty()) {
136       Parser.addUnwrappedLine();
137     }
138     assert(Parser.Line->Tokens.empty());
139     Parser.Line = std::move(PreBlockLine);
140     if (Parser.CurrentLines == &Parser.PreprocessorDirectives)
141       Parser.MustBreakBeforeNextToken = true;
142     Parser.CurrentLines = OriginalLines;
143   }
144 
145 private:
146   UnwrappedLineParser &Parser;
147 
148   std::unique_ptr<UnwrappedLine> PreBlockLine;
149   SmallVectorImpl<UnwrappedLine> *OriginalLines;
150 };
151 
152 class CompoundStatementIndenter {
153 public:
154   CompoundStatementIndenter(UnwrappedLineParser *Parser,
155                             const FormatStyle &Style, unsigned &LineLevel)
156       : LineLevel(LineLevel), OldLineLevel(LineLevel) {
157     if (Style.BreakBeforeBraces == FormatStyle::BS_Allman) {
158       Parser->addUnwrappedLine();
159     } else if (Style.BreakBeforeBraces == FormatStyle::BS_GNU) {
160       Parser->addUnwrappedLine();
161       ++LineLevel;
162     }
163   }
164   ~CompoundStatementIndenter() { LineLevel = OldLineLevel; }
165 
166 private:
167   unsigned &LineLevel;
168   unsigned OldLineLevel;
169 };
170 
171 namespace {
172 
173 class IndexedTokenSource : public FormatTokenSource {
174 public:
175   IndexedTokenSource(ArrayRef<FormatToken *> Tokens)
176       : Tokens(Tokens), Position(-1) {}
177 
178   FormatToken *getNextToken() override {
179     ++Position;
180     return Tokens[Position];
181   }
182 
183   unsigned getPosition() override {
184     assert(Position >= 0);
185     return Position;
186   }
187 
188   FormatToken *setPosition(unsigned P) override {
189     Position = P;
190     return Tokens[Position];
191   }
192 
193   void reset() { Position = -1; }
194 
195 private:
196   ArrayRef<FormatToken *> Tokens;
197   int Position;
198 };
199 
200 } // end anonymous namespace
201 
202 UnwrappedLineParser::UnwrappedLineParser(const FormatStyle &Style,
203                                          const AdditionalKeywords &Keywords,
204                                          ArrayRef<FormatToken *> Tokens,
205                                          UnwrappedLineConsumer &Callback)
206     : Line(new UnwrappedLine), MustBreakBeforeNextToken(false),
207       CurrentLines(&Lines), Style(Style), Keywords(Keywords), Tokens(nullptr),
208       Callback(Callback), AllTokens(Tokens), PPBranchLevel(-1) {}
209 
210 void UnwrappedLineParser::reset() {
211   PPBranchLevel = -1;
212   Line.reset(new UnwrappedLine);
213   CommentsBeforeNextToken.clear();
214   FormatTok = nullptr;
215   MustBreakBeforeNextToken = false;
216   PreprocessorDirectives.clear();
217   CurrentLines = &Lines;
218   DeclarationScopeStack.clear();
219   PPStack.clear();
220 }
221 
222 void UnwrappedLineParser::parse() {
223   IndexedTokenSource TokenSource(AllTokens);
224   do {
225     DEBUG(llvm::dbgs() << "----\n");
226     reset();
227     Tokens = &TokenSource;
228     TokenSource.reset();
229 
230     readToken();
231     parseFile();
232     // Create line with eof token.
233     pushToken(FormatTok);
234     addUnwrappedLine();
235 
236     for (SmallVectorImpl<UnwrappedLine>::iterator I = Lines.begin(),
237                                                   E = Lines.end();
238          I != E; ++I) {
239       Callback.consumeUnwrappedLine(*I);
240     }
241     Callback.finishRun();
242     Lines.clear();
243     while (!PPLevelBranchIndex.empty() &&
244            PPLevelBranchIndex.back() + 1 >= PPLevelBranchCount.back()) {
245       PPLevelBranchIndex.resize(PPLevelBranchIndex.size() - 1);
246       PPLevelBranchCount.resize(PPLevelBranchCount.size() - 1);
247     }
248     if (!PPLevelBranchIndex.empty()) {
249       ++PPLevelBranchIndex.back();
250       assert(PPLevelBranchIndex.size() == PPLevelBranchCount.size());
251       assert(PPLevelBranchIndex.back() <= PPLevelBranchCount.back());
252     }
253   } while (!PPLevelBranchIndex.empty());
254 
255 }
256 
257 void UnwrappedLineParser::parseFile() {
258   // The top-level context in a file always has declarations, except for pre-
259   // processor directives and JavaScript files.
260   bool MustBeDeclaration =
261       !Line->InPPDirective && Style.Language != FormatStyle::LK_JavaScript;
262   ScopedDeclarationState DeclarationState(*Line, DeclarationScopeStack,
263                                           MustBeDeclaration);
264   parseLevel(/*HasOpeningBrace=*/false);
265   // Make sure to format the remaining tokens.
266   flushComments(true);
267   addUnwrappedLine();
268 }
269 
270 void UnwrappedLineParser::parseLevel(bool HasOpeningBrace) {
271   bool SwitchLabelEncountered = false;
272   do {
273     switch (FormatTok->Tok.getKind()) {
274     case tok::comment:
275       nextToken();
276       addUnwrappedLine();
277       break;
278     case tok::l_brace:
279       // FIXME: Add parameter whether this can happen - if this happens, we must
280       // be in a non-declaration context.
281       parseBlock(/*MustBeDeclaration=*/false);
282       addUnwrappedLine();
283       break;
284     case tok::r_brace:
285       if (HasOpeningBrace)
286         return;
287       nextToken();
288       addUnwrappedLine();
289       break;
290     case tok::kw_default:
291     case tok::kw_case:
292       if (!SwitchLabelEncountered &&
293           (Style.IndentCaseLabels || (Line->InPPDirective && Line->Level == 1)))
294         ++Line->Level;
295       SwitchLabelEncountered = true;
296       parseStructuralElement();
297       break;
298     default:
299       parseStructuralElement();
300       break;
301     }
302   } while (!eof());
303 }
304 
305 void UnwrappedLineParser::calculateBraceTypes(bool ExpectClassBody) {
306   // We'll parse forward through the tokens until we hit
307   // a closing brace or eof - note that getNextToken() will
308   // parse macros, so this will magically work inside macro
309   // definitions, too.
310   unsigned StoredPosition = Tokens->getPosition();
311   FormatToken *Tok = FormatTok;
312   // Keep a stack of positions of lbrace tokens. We will
313   // update information about whether an lbrace starts a
314   // braced init list or a different block during the loop.
315   SmallVector<FormatToken *, 8> LBraceStack;
316   assert(Tok->Tok.is(tok::l_brace));
317   do {
318     // Get next none-comment token.
319     FormatToken *NextTok;
320     unsigned ReadTokens = 0;
321     do {
322       NextTok = Tokens->getNextToken();
323       ++ReadTokens;
324     } while (NextTok->is(tok::comment));
325 
326     switch (Tok->Tok.getKind()) {
327     case tok::l_brace:
328       Tok->BlockKind = BK_Unknown;
329       LBraceStack.push_back(Tok);
330       break;
331     case tok::r_brace:
332       if (!LBraceStack.empty()) {
333         if (LBraceStack.back()->BlockKind == BK_Unknown) {
334           bool ProbablyBracedList = false;
335           if (Style.Language == FormatStyle::LK_Proto) {
336             ProbablyBracedList = NextTok->isOneOf(tok::comma, tok::r_square);
337           } else {
338             // Using OriginalColumn to distinguish between ObjC methods and
339             // binary operators is a bit hacky.
340             bool NextIsObjCMethod = NextTok->isOneOf(tok::plus, tok::minus) &&
341                                     NextTok->OriginalColumn == 0;
342 
343             // If there is a comma, semicolon or right paren after the closing
344             // brace, we assume this is a braced initializer list.  Note that
345             // regardless how we mark inner braces here, we will overwrite the
346             // BlockKind later if we parse a braced list (where all blocks
347             // inside are by default braced lists), or when we explicitly detect
348             // blocks (for example while parsing lambdas).
349             //
350             // We exclude + and - as they can be ObjC visibility modifiers.
351             ProbablyBracedList =
352                 NextTok->isOneOf(tok::comma, tok::period, tok::colon,
353                                  tok::r_paren, tok::r_square, tok::l_brace,
354                                  tok::l_paren, tok::ellipsis) ||
355                 (NextTok->is(tok::semi) &&
356                  (!ExpectClassBody || LBraceStack.size() != 1)) ||
357                 (NextTok->isBinaryOperator() && !NextIsObjCMethod);
358           }
359           if (ProbablyBracedList) {
360             Tok->BlockKind = BK_BracedInit;
361             LBraceStack.back()->BlockKind = BK_BracedInit;
362           } else {
363             Tok->BlockKind = BK_Block;
364             LBraceStack.back()->BlockKind = BK_Block;
365           }
366         }
367         LBraceStack.pop_back();
368       }
369       break;
370     case tok::at:
371     case tok::semi:
372     case tok::kw_if:
373     case tok::kw_while:
374     case tok::kw_for:
375     case tok::kw_switch:
376     case tok::kw_try:
377     case tok::kw___try:
378       if (!LBraceStack.empty())
379         LBraceStack.back()->BlockKind = BK_Block;
380       break;
381     default:
382       break;
383     }
384     Tok = NextTok;
385   } while (Tok->Tok.isNot(tok::eof) && !LBraceStack.empty());
386   // Assume other blocks for all unclosed opening braces.
387   for (unsigned i = 0, e = LBraceStack.size(); i != e; ++i) {
388     if (LBraceStack[i]->BlockKind == BK_Unknown)
389       LBraceStack[i]->BlockKind = BK_Block;
390   }
391 
392   FormatTok = Tokens->setPosition(StoredPosition);
393 }
394 
395 void UnwrappedLineParser::parseBlock(bool MustBeDeclaration, bool AddLevel,
396                                      bool MunchSemi) {
397   assert(FormatTok->Tok.is(tok::l_brace) && "'{' expected");
398   unsigned InitialLevel = Line->Level;
399   nextToken();
400 
401   addUnwrappedLine();
402 
403   ScopedDeclarationState DeclarationState(*Line, DeclarationScopeStack,
404                                           MustBeDeclaration);
405   if (AddLevel)
406     ++Line->Level;
407   parseLevel(/*HasOpeningBrace=*/true);
408 
409   if (!FormatTok->Tok.is(tok::r_brace)) {
410     Line->Level = InitialLevel;
411     return;
412   }
413 
414   nextToken(); // Munch the closing brace.
415   if (MunchSemi && FormatTok->Tok.is(tok::semi))
416     nextToken();
417   Line->Level = InitialLevel;
418 }
419 
420 static bool isGoogScope(const UnwrappedLine &Line) {
421   // FIXME: Closure-library specific stuff should not be hard-coded but be
422   // configurable.
423   if (Line.Tokens.size() < 4)
424     return false;
425   auto I = Line.Tokens.begin();
426   if (I->Tok->TokenText != "goog")
427     return false;
428   ++I;
429   if (I->Tok->isNot(tok::period))
430     return false;
431   ++I;
432   if (I->Tok->TokenText != "scope")
433     return false;
434   ++I;
435   return I->Tok->is(tok::l_paren);
436 }
437 
438 static bool ShouldBreakBeforeBrace(const FormatStyle &Style,
439                                    const FormatToken &InitialToken) {
440   switch (Style.BreakBeforeBraces) {
441   case FormatStyle::BS_Linux:
442     return InitialToken.isOneOf(tok::kw_namespace, tok::kw_class);
443   case FormatStyle::BS_Allman:
444   case FormatStyle::BS_GNU:
445     return true;
446   default:
447     return false;
448   }
449 }
450 
451 void UnwrappedLineParser::parseChildBlock() {
452   FormatTok->BlockKind = BK_Block;
453   nextToken();
454   {
455     bool GoogScope =
456         Style.Language == FormatStyle::LK_JavaScript && isGoogScope(*Line);
457     ScopedLineState LineState(*this);
458     ScopedDeclarationState DeclarationState(*Line, DeclarationScopeStack,
459                                             /*MustBeDeclaration=*/false);
460     Line->Level += GoogScope ? 0 : 1;
461     parseLevel(/*HasOpeningBrace=*/true);
462     flushComments(isOnNewLine(*FormatTok));
463     Line->Level -= GoogScope ? 0 : 1;
464   }
465   nextToken();
466 }
467 
468 void UnwrappedLineParser::parsePPDirective() {
469   assert(FormatTok->Tok.is(tok::hash) && "'#' expected");
470   ScopedMacroState MacroState(*Line, Tokens, FormatTok);
471   nextToken();
472 
473   if (!FormatTok->Tok.getIdentifierInfo()) {
474     parsePPUnknown();
475     return;
476   }
477 
478   switch (FormatTok->Tok.getIdentifierInfo()->getPPKeywordID()) {
479   case tok::pp_define:
480     parsePPDefine();
481     return;
482   case tok::pp_if:
483     parsePPIf(/*IfDef=*/false);
484     break;
485   case tok::pp_ifdef:
486   case tok::pp_ifndef:
487     parsePPIf(/*IfDef=*/true);
488     break;
489   case tok::pp_else:
490     parsePPElse();
491     break;
492   case tok::pp_elif:
493     parsePPElIf();
494     break;
495   case tok::pp_endif:
496     parsePPEndIf();
497     break;
498   default:
499     parsePPUnknown();
500     break;
501   }
502 }
503 
504 void UnwrappedLineParser::conditionalCompilationCondition(bool Unreachable) {
505   if (Unreachable || (!PPStack.empty() && PPStack.back() == PP_Unreachable))
506     PPStack.push_back(PP_Unreachable);
507   else
508     PPStack.push_back(PP_Conditional);
509 }
510 
511 void UnwrappedLineParser::conditionalCompilationStart(bool Unreachable) {
512   ++PPBranchLevel;
513   assert(PPBranchLevel >= 0 && PPBranchLevel <= (int)PPLevelBranchIndex.size());
514   if (PPBranchLevel == (int)PPLevelBranchIndex.size()) {
515     PPLevelBranchIndex.push_back(0);
516     PPLevelBranchCount.push_back(0);
517   }
518   PPChainBranchIndex.push(0);
519   bool Skip = PPLevelBranchIndex[PPBranchLevel] > 0;
520   conditionalCompilationCondition(Unreachable || Skip);
521 }
522 
523 void UnwrappedLineParser::conditionalCompilationAlternative() {
524   if (!PPStack.empty())
525     PPStack.pop_back();
526   assert(PPBranchLevel < (int)PPLevelBranchIndex.size());
527   if (!PPChainBranchIndex.empty())
528     ++PPChainBranchIndex.top();
529   conditionalCompilationCondition(
530       PPBranchLevel >= 0 && !PPChainBranchIndex.empty() &&
531       PPLevelBranchIndex[PPBranchLevel] != PPChainBranchIndex.top());
532 }
533 
534 void UnwrappedLineParser::conditionalCompilationEnd() {
535   assert(PPBranchLevel < (int)PPLevelBranchIndex.size());
536   if (PPBranchLevel >= 0 && !PPChainBranchIndex.empty()) {
537     if (PPChainBranchIndex.top() + 1 > PPLevelBranchCount[PPBranchLevel]) {
538       PPLevelBranchCount[PPBranchLevel] = PPChainBranchIndex.top() + 1;
539     }
540   }
541   // Guard against #endif's without #if.
542   if (PPBranchLevel > 0)
543     --PPBranchLevel;
544   if (!PPChainBranchIndex.empty())
545     PPChainBranchIndex.pop();
546   if (!PPStack.empty())
547     PPStack.pop_back();
548 }
549 
550 void UnwrappedLineParser::parsePPIf(bool IfDef) {
551   nextToken();
552   bool IsLiteralFalse = (FormatTok->Tok.isLiteral() &&
553                          FormatTok->Tok.getLiteralData() != nullptr &&
554                          StringRef(FormatTok->Tok.getLiteralData(),
555                                    FormatTok->Tok.getLength()) == "0") ||
556                         FormatTok->Tok.is(tok::kw_false);
557   conditionalCompilationStart(!IfDef && IsLiteralFalse);
558   parsePPUnknown();
559 }
560 
561 void UnwrappedLineParser::parsePPElse() {
562   conditionalCompilationAlternative();
563   parsePPUnknown();
564 }
565 
566 void UnwrappedLineParser::parsePPElIf() { parsePPElse(); }
567 
568 void UnwrappedLineParser::parsePPEndIf() {
569   conditionalCompilationEnd();
570   parsePPUnknown();
571 }
572 
573 void UnwrappedLineParser::parsePPDefine() {
574   nextToken();
575 
576   if (FormatTok->Tok.getKind() != tok::identifier) {
577     parsePPUnknown();
578     return;
579   }
580   nextToken();
581   if (FormatTok->Tok.getKind() == tok::l_paren &&
582       FormatTok->WhitespaceRange.getBegin() ==
583           FormatTok->WhitespaceRange.getEnd()) {
584     parseParens();
585   }
586   addUnwrappedLine();
587   Line->Level = 1;
588 
589   // Errors during a preprocessor directive can only affect the layout of the
590   // preprocessor directive, and thus we ignore them. An alternative approach
591   // would be to use the same approach we use on the file level (no
592   // re-indentation if there was a structural error) within the macro
593   // definition.
594   parseFile();
595 }
596 
597 void UnwrappedLineParser::parsePPUnknown() {
598   do {
599     nextToken();
600   } while (!eof());
601   addUnwrappedLine();
602 }
603 
604 // Here we blacklist certain tokens that are not usually the first token in an
605 // unwrapped line. This is used in attempt to distinguish macro calls without
606 // trailing semicolons from other constructs split to several lines.
607 static bool tokenCanStartNewLine(const clang::Token &Tok) {
608   // Semicolon can be a null-statement, l_square can be a start of a macro or
609   // a C++11 attribute, but this doesn't seem to be common.
610   return Tok.isNot(tok::semi) && Tok.isNot(tok::l_brace) &&
611          Tok.isNot(tok::l_square) &&
612          // Tokens that can only be used as binary operators and a part of
613          // overloaded operator names.
614          Tok.isNot(tok::period) && Tok.isNot(tok::periodstar) &&
615          Tok.isNot(tok::arrow) && Tok.isNot(tok::arrowstar) &&
616          Tok.isNot(tok::less) && Tok.isNot(tok::greater) &&
617          Tok.isNot(tok::slash) && Tok.isNot(tok::percent) &&
618          Tok.isNot(tok::lessless) && Tok.isNot(tok::greatergreater) &&
619          Tok.isNot(tok::equal) && Tok.isNot(tok::plusequal) &&
620          Tok.isNot(tok::minusequal) && Tok.isNot(tok::starequal) &&
621          Tok.isNot(tok::slashequal) && Tok.isNot(tok::percentequal) &&
622          Tok.isNot(tok::ampequal) && Tok.isNot(tok::pipeequal) &&
623          Tok.isNot(tok::caretequal) && Tok.isNot(tok::greatergreaterequal) &&
624          Tok.isNot(tok::lesslessequal) &&
625          // Colon is used in labels, base class lists, initializer lists,
626          // range-based for loops, ternary operator, but should never be the
627          // first token in an unwrapped line.
628          Tok.isNot(tok::colon) &&
629          // 'noexcept' is a trailing annotation.
630          Tok.isNot(tok::kw_noexcept);
631 }
632 
633 void UnwrappedLineParser::parseStructuralElement() {
634   assert(!FormatTok->Tok.is(tok::l_brace));
635   switch (FormatTok->Tok.getKind()) {
636   case tok::at:
637     nextToken();
638     if (FormatTok->Tok.is(tok::l_brace)) {
639       parseBracedList();
640       break;
641     }
642     switch (FormatTok->Tok.getObjCKeywordID()) {
643     case tok::objc_public:
644     case tok::objc_protected:
645     case tok::objc_package:
646     case tok::objc_private:
647       return parseAccessSpecifier();
648     case tok::objc_interface:
649     case tok::objc_implementation:
650       return parseObjCInterfaceOrImplementation();
651     case tok::objc_protocol:
652       return parseObjCProtocol();
653     case tok::objc_end:
654       return; // Handled by the caller.
655     case tok::objc_optional:
656     case tok::objc_required:
657       nextToken();
658       addUnwrappedLine();
659       return;
660     case tok::objc_try:
661       // This branch isn't strictly necessary (the kw_try case below would
662       // do this too after the tok::at is parsed above).  But be explicit.
663       parseTryCatch();
664       return;
665     default:
666       break;
667     }
668     break;
669   case tok::kw_asm:
670     nextToken();
671     if (FormatTok->is(tok::l_brace)) {
672       FormatTok->Type = TT_InlineASMBrace;
673       nextToken();
674       while (FormatTok && FormatTok->isNot(tok::eof)) {
675         if (FormatTok->is(tok::r_brace)) {
676           FormatTok->Type = TT_InlineASMBrace;
677           nextToken();
678           addUnwrappedLine();
679           break;
680         }
681         FormatTok->Finalized = true;
682         nextToken();
683       }
684     }
685     break;
686   case tok::kw_namespace:
687     parseNamespace();
688     return;
689   case tok::kw_inline:
690     nextToken();
691     if (FormatTok->Tok.is(tok::kw_namespace)) {
692       parseNamespace();
693       return;
694     }
695     break;
696   case tok::kw_public:
697   case tok::kw_protected:
698   case tok::kw_private:
699     if (Style.Language == FormatStyle::LK_Java ||
700         Style.Language == FormatStyle::LK_JavaScript)
701       nextToken();
702     else
703       parseAccessSpecifier();
704     return;
705   case tok::kw_if:
706     parseIfThenElse();
707     return;
708   case tok::kw_for:
709   case tok::kw_while:
710     parseForOrWhileLoop();
711     return;
712   case tok::kw_do:
713     parseDoWhile();
714     return;
715   case tok::kw_switch:
716     parseSwitch();
717     return;
718   case tok::kw_default:
719     nextToken();
720     parseLabel();
721     return;
722   case tok::kw_case:
723     parseCaseLabel();
724     return;
725   case tok::kw_try:
726   case tok::kw___try:
727     parseTryCatch();
728     return;
729   case tok::kw_extern:
730     nextToken();
731     if (FormatTok->Tok.is(tok::string_literal)) {
732       nextToken();
733       if (FormatTok->Tok.is(tok::l_brace)) {
734         parseBlock(/*MustBeDeclaration=*/true, /*AddLevel=*/false);
735         addUnwrappedLine();
736         return;
737       }
738     }
739     break;
740   case tok::kw_export:
741     if (Style.Language == FormatStyle::LK_JavaScript) {
742       parseJavaScriptEs6ImportExport();
743       return;
744     }
745     break;
746   case tok::identifier:
747     if (FormatTok->is(TT_ForEachMacro)) {
748       parseForOrWhileLoop();
749       return;
750     }
751     if (Style.Language == FormatStyle::LK_JavaScript &&
752         FormatTok->is(Keywords.kw_import)) {
753       parseJavaScriptEs6ImportExport();
754       return;
755     }
756     if (FormatTok->is(Keywords.kw_signals)) {
757       nextToken();
758       if (FormatTok->is(tok::colon)) {
759         nextToken();
760         addUnwrappedLine();
761       }
762       return;
763     }
764     // In all other cases, parse the declaration.
765     break;
766   default:
767     break;
768   }
769   do {
770     switch (FormatTok->Tok.getKind()) {
771     case tok::at:
772       nextToken();
773       if (FormatTok->Tok.is(tok::l_brace))
774         parseBracedList();
775       break;
776     case tok::kw_enum:
777       parseEnum();
778       break;
779     case tok::kw_typedef:
780       nextToken();
781       if (FormatTok->isOneOf(Keywords.kw_NS_ENUM, Keywords.kw_NS_OPTIONS,
782                              Keywords.kw_CF_ENUM, Keywords.kw_CF_OPTIONS))
783         parseEnum();
784       break;
785     case tok::kw_struct:
786     case tok::kw_union:
787     case tok::kw_class:
788       parseRecord();
789       // A record declaration or definition is always the start of a structural
790       // element.
791       break;
792     case tok::period:
793       nextToken();
794       // In Java, classes have an implicit static member "class".
795       if (Style.Language == FormatStyle::LK_Java && FormatTok &&
796           FormatTok->is(tok::kw_class))
797         nextToken();
798       break;
799     case tok::semi:
800       nextToken();
801       addUnwrappedLine();
802       return;
803     case tok::r_brace:
804       addUnwrappedLine();
805       return;
806     case tok::l_paren:
807       parseParens();
808       break;
809     case tok::caret:
810       nextToken();
811       if (FormatTok->Tok.isAnyIdentifier() ||
812           FormatTok->isSimpleTypeSpecifier())
813         nextToken();
814       if (FormatTok->is(tok::l_paren))
815         parseParens();
816       if (FormatTok->is(tok::l_brace))
817         parseChildBlock();
818       break;
819     case tok::l_brace:
820       if (!tryToParseBracedList()) {
821         // A block outside of parentheses must be the last part of a
822         // structural element.
823         // FIXME: Figure out cases where this is not true, and add projections
824         // for them (the one we know is missing are lambdas).
825         if (Style.BreakBeforeBraces != FormatStyle::BS_Attach)
826           addUnwrappedLine();
827         FormatTok->Type = TT_FunctionLBrace;
828         parseBlock(/*MustBeDeclaration=*/false);
829         addUnwrappedLine();
830         return;
831       }
832       // Otherwise this was a braced init list, and the structural
833       // element continues.
834       break;
835     case tok::kw_try:
836       // We arrive here when parsing function-try blocks.
837       parseTryCatch();
838       return;
839     case tok::identifier: {
840       // Parse function literal unless 'function' is the first token in a line
841       // in which case this should be treated as a free-standing function.
842       if (Style.Language == FormatStyle::LK_JavaScript &&
843           FormatTok->is(Keywords.kw_function) && Line->Tokens.size() > 0) {
844         tryToParseJSFunction();
845         break;
846       }
847       if ((Style.Language == FormatStyle::LK_JavaScript ||
848            Style.Language == FormatStyle::LK_Java) &&
849           FormatTok->is(Keywords.kw_interface)) {
850         parseRecord();
851         break;
852       }
853 
854       StringRef Text = FormatTok->TokenText;
855       nextToken();
856       if (Line->Tokens.size() == 1 &&
857           // JS doesn't have macros, and within classes colons indicate fields,
858           // not labels.
859           Style.Language != FormatStyle::LK_JavaScript) {
860         if (FormatTok->Tok.is(tok::colon) && !Line->MustBeDeclaration) {
861           parseLabel();
862           return;
863         }
864         // Recognize function-like macro usages without trailing semicolon as
865         // well as free-standing macros like Q_OBJECT.
866         bool FunctionLike = FormatTok->is(tok::l_paren);
867         if (FunctionLike)
868           parseParens();
869 
870         bool FollowedByNewline =
871             CommentsBeforeNextToken.empty()
872                 ? FormatTok->NewlinesBefore > 0
873                 : CommentsBeforeNextToken.front()->NewlinesBefore > 0;
874 
875         if (FollowedByNewline &&
876             (Text.size() >= 5 || FunctionLike) &&
877             tokenCanStartNewLine(FormatTok->Tok) && Text == Text.upper()) {
878           addUnwrappedLine();
879           return;
880         }
881       }
882       break;
883     }
884     case tok::equal:
885       // Fat arrows (=>) have tok::TokenKind tok::equal but TokenType
886       // TT_JsFatArrow. The always start an expression or a child block if
887       // followed by a curly.
888       if (FormatTok->is(TT_JsFatArrow)) {
889         nextToken();
890         if (FormatTok->is(tok::l_brace))
891           parseChildBlock();
892         break;
893       }
894 
895       nextToken();
896       if (FormatTok->Tok.is(tok::l_brace)) {
897         parseBracedList();
898       }
899       break;
900     case tok::l_square:
901       parseSquare();
902       break;
903     case tok::kw_new:
904       parseNew();
905       break;
906     default:
907       nextToken();
908       break;
909     }
910   } while (!eof());
911 }
912 
913 bool UnwrappedLineParser::tryToParseLambda() {
914   if (Style.Language != FormatStyle::LK_Cpp) {
915     nextToken();
916     return false;
917   }
918   // FIXME: This is a dirty way to access the previous token. Find a better
919   // solution.
920   if (!Line->Tokens.empty() &&
921       (Line->Tokens.back().Tok->isOneOf(tok::identifier, tok::kw_operator,
922                                         tok::kw_new, tok::kw_delete) ||
923        Line->Tokens.back().Tok->closesScope() ||
924        Line->Tokens.back().Tok->isSimpleTypeSpecifier())) {
925     nextToken();
926     return false;
927   }
928   assert(FormatTok->is(tok::l_square));
929   FormatToken &LSquare = *FormatTok;
930   if (!tryToParseLambdaIntroducer())
931     return false;
932 
933   while (FormatTok->isNot(tok::l_brace)) {
934     if (FormatTok->isSimpleTypeSpecifier()) {
935       nextToken();
936       continue;
937     }
938     switch (FormatTok->Tok.getKind()) {
939     case tok::l_brace:
940       break;
941     case tok::l_paren:
942       parseParens();
943       break;
944     case tok::amp:
945     case tok::star:
946     case tok::kw_const:
947     case tok::comma:
948     case tok::less:
949     case tok::greater:
950     case tok::identifier:
951     case tok::coloncolon:
952     case tok::kw_mutable:
953       nextToken();
954       break;
955     case tok::arrow:
956       FormatTok->Type = TT_TrailingReturnArrow;
957       nextToken();
958       break;
959     default:
960       return true;
961     }
962   }
963   LSquare.Type = TT_LambdaLSquare;
964   parseChildBlock();
965   return true;
966 }
967 
968 bool UnwrappedLineParser::tryToParseLambdaIntroducer() {
969   nextToken();
970   if (FormatTok->is(tok::equal)) {
971     nextToken();
972     if (FormatTok->is(tok::r_square)) {
973       nextToken();
974       return true;
975     }
976     if (FormatTok->isNot(tok::comma))
977       return false;
978     nextToken();
979   } else if (FormatTok->is(tok::amp)) {
980     nextToken();
981     if (FormatTok->is(tok::r_square)) {
982       nextToken();
983       return true;
984     }
985     if (!FormatTok->isOneOf(tok::comma, tok::identifier)) {
986       return false;
987     }
988     if (FormatTok->is(tok::comma))
989       nextToken();
990   } else if (FormatTok->is(tok::r_square)) {
991     nextToken();
992     return true;
993   }
994   do {
995     if (FormatTok->is(tok::amp))
996       nextToken();
997     if (!FormatTok->isOneOf(tok::identifier, tok::kw_this))
998       return false;
999     nextToken();
1000     if (FormatTok->is(tok::ellipsis))
1001       nextToken();
1002     if (FormatTok->is(tok::comma)) {
1003       nextToken();
1004     } else if (FormatTok->is(tok::r_square)) {
1005       nextToken();
1006       return true;
1007     } else {
1008       return false;
1009     }
1010   } while (!eof());
1011   return false;
1012 }
1013 
1014 void UnwrappedLineParser::tryToParseJSFunction() {
1015   nextToken();
1016 
1017   // Consume function name.
1018   if (FormatTok->is(tok::identifier))
1019     nextToken();
1020 
1021   if (FormatTok->isNot(tok::l_paren))
1022     return;
1023 
1024   // Parse formal parameter list.
1025   parseParens();
1026 
1027   if (FormatTok->is(tok::colon)) {
1028     // Parse a type definition.
1029     nextToken();
1030 
1031     // Eat the type declaration. For braced inline object types, balance braces,
1032     // otherwise just parse until finding an l_brace for the function body.
1033     if (FormatTok->is(tok::l_brace))
1034       tryToParseBracedList();
1035     else
1036       while(FormatTok->isNot(tok::l_brace) && !eof())
1037         nextToken();
1038   }
1039 
1040   parseChildBlock();
1041 }
1042 
1043 bool UnwrappedLineParser::tryToParseBracedList() {
1044   if (FormatTok->BlockKind == BK_Unknown)
1045     calculateBraceTypes();
1046   assert(FormatTok->BlockKind != BK_Unknown);
1047   if (FormatTok->BlockKind == BK_Block)
1048     return false;
1049   parseBracedList();
1050   return true;
1051 }
1052 
1053 bool UnwrappedLineParser::parseBracedList(bool ContinueOnSemicolons) {
1054   bool HasError = false;
1055   nextToken();
1056 
1057   // FIXME: Once we have an expression parser in the UnwrappedLineParser,
1058   // replace this by using parseAssigmentExpression() inside.
1059   do {
1060     if (Style.Language == FormatStyle::LK_JavaScript) {
1061       if (FormatTok->is(Keywords.kw_function)) {
1062         tryToParseJSFunction();
1063         continue;
1064       }
1065       if (FormatTok->is(TT_JsFatArrow)) {
1066         nextToken();
1067         // Fat arrows can be followed by simple expressions or by child blocks
1068         // in curly braces.
1069         if (FormatTok->is(tok::l_brace)){
1070           parseChildBlock();
1071           continue;
1072         }
1073       }
1074     }
1075     switch (FormatTok->Tok.getKind()) {
1076     case tok::caret:
1077       nextToken();
1078       if (FormatTok->is(tok::l_brace)) {
1079         parseChildBlock();
1080       }
1081       break;
1082     case tok::l_square:
1083       tryToParseLambda();
1084       break;
1085     case tok::l_brace:
1086       // Assume there are no blocks inside a braced init list apart
1087       // from the ones we explicitly parse out (like lambdas).
1088       FormatTok->BlockKind = BK_BracedInit;
1089       parseBracedList();
1090       break;
1091     case tok::r_paren:
1092       // JavaScript can just have free standing methods and getters/setters in
1093       // object literals. Detect them by a "{" following ")".
1094       if (Style.Language == FormatStyle::LK_JavaScript) {
1095         nextToken();
1096         if (FormatTok->is(tok::l_brace))
1097           parseChildBlock();
1098         break;
1099       }
1100       nextToken();
1101       break;
1102     case tok::r_brace:
1103       nextToken();
1104       return !HasError;
1105     case tok::semi:
1106       HasError = true;
1107       if (!ContinueOnSemicolons)
1108         return !HasError;
1109       nextToken();
1110       break;
1111     case tok::comma:
1112       nextToken();
1113       break;
1114     default:
1115       nextToken();
1116       break;
1117     }
1118   } while (!eof());
1119   return false;
1120 }
1121 
1122 void UnwrappedLineParser::parseParens() {
1123   assert(FormatTok->Tok.is(tok::l_paren) && "'(' expected.");
1124   nextToken();
1125   do {
1126     switch (FormatTok->Tok.getKind()) {
1127     case tok::l_paren:
1128       parseParens();
1129       if (Style.Language == FormatStyle::LK_Java && FormatTok->is(tok::l_brace))
1130         parseChildBlock();
1131       break;
1132     case tok::r_paren:
1133       nextToken();
1134       return;
1135     case tok::r_brace:
1136       // A "}" inside parenthesis is an error if there wasn't a matching "{".
1137       return;
1138     case tok::l_square:
1139       tryToParseLambda();
1140       break;
1141     case tok::l_brace:
1142       if (!tryToParseBracedList())
1143         parseChildBlock();
1144       break;
1145     case tok::at:
1146       nextToken();
1147       if (FormatTok->Tok.is(tok::l_brace))
1148         parseBracedList();
1149       break;
1150     case tok::identifier:
1151       if (Style.Language == FormatStyle::LK_JavaScript &&
1152           FormatTok->is(Keywords.kw_function))
1153         tryToParseJSFunction();
1154       else
1155         nextToken();
1156       break;
1157     default:
1158       nextToken();
1159       break;
1160     }
1161   } while (!eof());
1162 }
1163 
1164 void UnwrappedLineParser::parseSquare() {
1165   assert(FormatTok->Tok.is(tok::l_square) && "'[' expected.");
1166   if (tryToParseLambda())
1167     return;
1168   do {
1169     switch (FormatTok->Tok.getKind()) {
1170     case tok::l_paren:
1171       parseParens();
1172       break;
1173     case tok::r_square:
1174       nextToken();
1175       return;
1176     case tok::r_brace:
1177       // A "}" inside parenthesis is an error if there wasn't a matching "{".
1178       return;
1179     case tok::l_square:
1180       parseSquare();
1181       break;
1182     case tok::l_brace: {
1183       if (!tryToParseBracedList())
1184         parseChildBlock();
1185       break;
1186     }
1187     case tok::at:
1188       nextToken();
1189       if (FormatTok->Tok.is(tok::l_brace))
1190         parseBracedList();
1191       break;
1192     default:
1193       nextToken();
1194       break;
1195     }
1196   } while (!eof());
1197 }
1198 
1199 void UnwrappedLineParser::parseIfThenElse() {
1200   assert(FormatTok->Tok.is(tok::kw_if) && "'if' expected");
1201   nextToken();
1202   if (FormatTok->Tok.is(tok::l_paren))
1203     parseParens();
1204   bool NeedsUnwrappedLine = false;
1205   if (FormatTok->Tok.is(tok::l_brace)) {
1206     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1207     parseBlock(/*MustBeDeclaration=*/false);
1208     if (Style.BreakBeforeBraces == FormatStyle::BS_Allman ||
1209         Style.BreakBeforeBraces == FormatStyle::BS_GNU) {
1210       addUnwrappedLine();
1211     } else {
1212       NeedsUnwrappedLine = true;
1213     }
1214   } else {
1215     addUnwrappedLine();
1216     ++Line->Level;
1217     parseStructuralElement();
1218     --Line->Level;
1219   }
1220   if (FormatTok->Tok.is(tok::kw_else)) {
1221     if (Style.BreakBeforeBraces == FormatStyle::BS_Stroustrup)
1222       addUnwrappedLine();
1223     nextToken();
1224     if (FormatTok->Tok.is(tok::l_brace)) {
1225       CompoundStatementIndenter Indenter(this, Style, Line->Level);
1226       parseBlock(/*MustBeDeclaration=*/false);
1227       addUnwrappedLine();
1228     } else if (FormatTok->Tok.is(tok::kw_if)) {
1229       parseIfThenElse();
1230     } else {
1231       addUnwrappedLine();
1232       ++Line->Level;
1233       parseStructuralElement();
1234       --Line->Level;
1235     }
1236   } else if (NeedsUnwrappedLine) {
1237     addUnwrappedLine();
1238   }
1239 }
1240 
1241 void UnwrappedLineParser::parseTryCatch() {
1242   assert(FormatTok->isOneOf(tok::kw_try, tok::kw___try) && "'try' expected");
1243   nextToken();
1244   bool NeedsUnwrappedLine = false;
1245   if (FormatTok->is(tok::colon)) {
1246     // We are in a function try block, what comes is an initializer list.
1247     nextToken();
1248     while (FormatTok->is(tok::identifier)) {
1249       nextToken();
1250       if (FormatTok->is(tok::l_paren))
1251         parseParens();
1252       if (FormatTok->is(tok::comma))
1253         nextToken();
1254     }
1255   }
1256   // Parse try with resource.
1257   if (Style.Language == FormatStyle::LK_Java && FormatTok->is(tok::l_paren)) {
1258     parseParens();
1259   }
1260   if (FormatTok->is(tok::l_brace)) {
1261     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1262     parseBlock(/*MustBeDeclaration=*/false);
1263     if (Style.BreakBeforeBraces == FormatStyle::BS_Allman ||
1264         Style.BreakBeforeBraces == FormatStyle::BS_GNU ||
1265         Style.BreakBeforeBraces == FormatStyle::BS_Stroustrup) {
1266       addUnwrappedLine();
1267     } else {
1268       NeedsUnwrappedLine = true;
1269     }
1270   } else if (!FormatTok->is(tok::kw_catch)) {
1271     // The C++ standard requires a compound-statement after a try.
1272     // If there's none, we try to assume there's a structuralElement
1273     // and try to continue.
1274     addUnwrappedLine();
1275     ++Line->Level;
1276     parseStructuralElement();
1277     --Line->Level;
1278   }
1279   while (1) {
1280     if (FormatTok->is(tok::at))
1281       nextToken();
1282     if (!(FormatTok->isOneOf(tok::kw_catch, Keywords.kw___except,
1283                              tok::kw___finally) ||
1284           ((Style.Language == FormatStyle::LK_Java ||
1285             Style.Language == FormatStyle::LK_JavaScript) &&
1286            FormatTok->is(Keywords.kw_finally)) ||
1287           (FormatTok->Tok.isObjCAtKeyword(tok::objc_catch) ||
1288            FormatTok->Tok.isObjCAtKeyword(tok::objc_finally))))
1289       break;
1290     nextToken();
1291     while (FormatTok->isNot(tok::l_brace)) {
1292       if (FormatTok->is(tok::l_paren)) {
1293         parseParens();
1294         continue;
1295       }
1296       if (FormatTok->isOneOf(tok::semi, tok::r_brace, tok::eof))
1297         return;
1298       nextToken();
1299     }
1300     NeedsUnwrappedLine = false;
1301     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1302     parseBlock(/*MustBeDeclaration=*/false);
1303     if (Style.BreakBeforeBraces == FormatStyle::BS_Allman ||
1304         Style.BreakBeforeBraces == FormatStyle::BS_GNU ||
1305         Style.BreakBeforeBraces == FormatStyle::BS_Stroustrup) {
1306       addUnwrappedLine();
1307     } else {
1308       NeedsUnwrappedLine = true;
1309     }
1310   }
1311   if (NeedsUnwrappedLine) {
1312     addUnwrappedLine();
1313   }
1314 }
1315 
1316 void UnwrappedLineParser::parseNamespace() {
1317   assert(FormatTok->Tok.is(tok::kw_namespace) && "'namespace' expected");
1318 
1319   const FormatToken &InitialToken = *FormatTok;
1320   nextToken();
1321   if (FormatTok->Tok.is(tok::identifier))
1322     nextToken();
1323   if (FormatTok->Tok.is(tok::l_brace)) {
1324     if (ShouldBreakBeforeBrace(Style, InitialToken))
1325       addUnwrappedLine();
1326 
1327     bool AddLevel = Style.NamespaceIndentation == FormatStyle::NI_All ||
1328                     (Style.NamespaceIndentation == FormatStyle::NI_Inner &&
1329                      DeclarationScopeStack.size() > 1);
1330     parseBlock(/*MustBeDeclaration=*/true, AddLevel);
1331     // Munch the semicolon after a namespace. This is more common than one would
1332     // think. Puttin the semicolon into its own line is very ugly.
1333     if (FormatTok->Tok.is(tok::semi))
1334       nextToken();
1335     addUnwrappedLine();
1336   }
1337   // FIXME: Add error handling.
1338 }
1339 
1340 void UnwrappedLineParser::parseNew() {
1341   assert(FormatTok->is(tok::kw_new) && "'new' expected");
1342   nextToken();
1343   if (Style.Language != FormatStyle::LK_Java)
1344     return;
1345 
1346   // In Java, we can parse everything up to the parens, which aren't optional.
1347   do {
1348     // There should not be a ;, { or } before the new's open paren.
1349     if (FormatTok->isOneOf(tok::semi, tok::l_brace, tok::r_brace))
1350       return;
1351 
1352     // Consume the parens.
1353     if (FormatTok->is(tok::l_paren)) {
1354       parseParens();
1355 
1356       // If there is a class body of an anonymous class, consume that as child.
1357       if (FormatTok->is(tok::l_brace))
1358         parseChildBlock();
1359       return;
1360     }
1361     nextToken();
1362   } while (!eof());
1363 }
1364 
1365 void UnwrappedLineParser::parseForOrWhileLoop() {
1366   assert(FormatTok->isOneOf(tok::kw_for, tok::kw_while, TT_ForEachMacro) &&
1367          "'for', 'while' or foreach macro expected");
1368   nextToken();
1369   if (FormatTok->Tok.is(tok::l_paren))
1370     parseParens();
1371   if (FormatTok->Tok.is(tok::l_brace)) {
1372     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1373     parseBlock(/*MustBeDeclaration=*/false);
1374     addUnwrappedLine();
1375   } else {
1376     addUnwrappedLine();
1377     ++Line->Level;
1378     parseStructuralElement();
1379     --Line->Level;
1380   }
1381 }
1382 
1383 void UnwrappedLineParser::parseDoWhile() {
1384   assert(FormatTok->Tok.is(tok::kw_do) && "'do' expected");
1385   nextToken();
1386   if (FormatTok->Tok.is(tok::l_brace)) {
1387     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1388     parseBlock(/*MustBeDeclaration=*/false);
1389     if (Style.BreakBeforeBraces == FormatStyle::BS_GNU)
1390       addUnwrappedLine();
1391   } else {
1392     addUnwrappedLine();
1393     ++Line->Level;
1394     parseStructuralElement();
1395     --Line->Level;
1396   }
1397 
1398   // FIXME: Add error handling.
1399   if (!FormatTok->Tok.is(tok::kw_while)) {
1400     addUnwrappedLine();
1401     return;
1402   }
1403 
1404   nextToken();
1405   parseStructuralElement();
1406 }
1407 
1408 void UnwrappedLineParser::parseLabel() {
1409   nextToken();
1410   unsigned OldLineLevel = Line->Level;
1411   if (Line->Level > 1 || (!Line->InPPDirective && Line->Level > 0))
1412     --Line->Level;
1413   if (CommentsBeforeNextToken.empty() && FormatTok->Tok.is(tok::l_brace)) {
1414     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1415     parseBlock(/*MustBeDeclaration=*/false);
1416     if (FormatTok->Tok.is(tok::kw_break)) {
1417       // "break;" after "}" on its own line only for BS_Allman and BS_GNU
1418       if (Style.BreakBeforeBraces == FormatStyle::BS_Allman ||
1419           Style.BreakBeforeBraces == FormatStyle::BS_GNU) {
1420         addUnwrappedLine();
1421       }
1422       parseStructuralElement();
1423     }
1424     addUnwrappedLine();
1425   } else {
1426     if (FormatTok->is(tok::semi))
1427       nextToken();
1428     addUnwrappedLine();
1429   }
1430   Line->Level = OldLineLevel;
1431 }
1432 
1433 void UnwrappedLineParser::parseCaseLabel() {
1434   assert(FormatTok->Tok.is(tok::kw_case) && "'case' expected");
1435   // FIXME: fix handling of complex expressions here.
1436   do {
1437     nextToken();
1438   } while (!eof() && !FormatTok->Tok.is(tok::colon));
1439   parseLabel();
1440 }
1441 
1442 void UnwrappedLineParser::parseSwitch() {
1443   assert(FormatTok->Tok.is(tok::kw_switch) && "'switch' expected");
1444   nextToken();
1445   if (FormatTok->Tok.is(tok::l_paren))
1446     parseParens();
1447   if (FormatTok->Tok.is(tok::l_brace)) {
1448     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1449     parseBlock(/*MustBeDeclaration=*/false);
1450     addUnwrappedLine();
1451   } else {
1452     addUnwrappedLine();
1453     ++Line->Level;
1454     parseStructuralElement();
1455     --Line->Level;
1456   }
1457 }
1458 
1459 void UnwrappedLineParser::parseAccessSpecifier() {
1460   nextToken();
1461   // Understand Qt's slots.
1462   if (FormatTok->isOneOf(Keywords.kw_slots, Keywords.kw_qslots))
1463     nextToken();
1464   // Otherwise, we don't know what it is, and we'd better keep the next token.
1465   if (FormatTok->Tok.is(tok::colon))
1466     nextToken();
1467   addUnwrappedLine();
1468 }
1469 
1470 void UnwrappedLineParser::parseEnum() {
1471   // Won't be 'enum' for NS_ENUMs.
1472   if (FormatTok->Tok.is(tok::kw_enum))
1473     nextToken();
1474 
1475   // Eat up enum class ...
1476   if (FormatTok->Tok.is(tok::kw_class) || FormatTok->Tok.is(tok::kw_struct))
1477     nextToken();
1478   while (FormatTok->Tok.getIdentifierInfo() ||
1479          FormatTok->isOneOf(tok::colon, tok::coloncolon, tok::less,
1480                             tok::greater, tok::comma, tok::question)) {
1481     nextToken();
1482     // We can have macros or attributes in between 'enum' and the enum name.
1483     if (FormatTok->is(tok::l_paren))
1484       parseParens();
1485     if (FormatTok->is(tok::identifier))
1486       nextToken();
1487   }
1488 
1489   // Just a declaration or something is wrong.
1490   if (FormatTok->isNot(tok::l_brace))
1491     return;
1492   FormatTok->BlockKind = BK_Block;
1493 
1494   if (Style.Language == FormatStyle::LK_Java) {
1495     // Java enums are different.
1496     parseJavaEnumBody();
1497     return;
1498   }
1499 
1500   // Parse enum body.
1501   bool HasError = !parseBracedList(/*ContinueOnSemicolons=*/true);
1502   if (HasError) {
1503     if (FormatTok->is(tok::semi))
1504       nextToken();
1505     addUnwrappedLine();
1506   }
1507 
1508   // We fall through to parsing a structural element afterwards, so that in
1509   // enum A {} n, m;
1510   // "} n, m;" will end up in one unwrapped line.
1511 }
1512 
1513 void UnwrappedLineParser::parseJavaEnumBody() {
1514   // Determine whether the enum is simple, i.e. does not have a semicolon or
1515   // constants with class bodies. Simple enums can be formatted like braced
1516   // lists, contracted to a single line, etc.
1517   unsigned StoredPosition = Tokens->getPosition();
1518   bool IsSimple = true;
1519   FormatToken *Tok = Tokens->getNextToken();
1520   while (Tok) {
1521     if (Tok->is(tok::r_brace))
1522       break;
1523     if (Tok->isOneOf(tok::l_brace, tok::semi)) {
1524       IsSimple = false;
1525       break;
1526     }
1527     // FIXME: This will also mark enums with braces in the arguments to enum
1528     // constants as "not simple". This is probably fine in practice, though.
1529     Tok = Tokens->getNextToken();
1530   }
1531   FormatTok = Tokens->setPosition(StoredPosition);
1532 
1533   if (IsSimple) {
1534     parseBracedList();
1535     addUnwrappedLine();
1536     return;
1537   }
1538 
1539   // Parse the body of a more complex enum.
1540   // First add a line for everything up to the "{".
1541   nextToken();
1542   addUnwrappedLine();
1543   ++Line->Level;
1544 
1545   // Parse the enum constants.
1546   while (FormatTok) {
1547     if (FormatTok->is(tok::l_brace)) {
1548       // Parse the constant's class body.
1549       parseBlock(/*MustBeDeclaration=*/true, /*AddLevel=*/true,
1550                  /*MunchSemi=*/false);
1551     } else if (FormatTok->is(tok::l_paren)) {
1552       parseParens();
1553     } else if (FormatTok->is(tok::comma)) {
1554       nextToken();
1555       addUnwrappedLine();
1556     } else if (FormatTok->is(tok::semi)) {
1557       nextToken();
1558       addUnwrappedLine();
1559       break;
1560     } else if (FormatTok->is(tok::r_brace)) {
1561       addUnwrappedLine();
1562       break;
1563     } else {
1564       nextToken();
1565     }
1566   }
1567 
1568   // Parse the class body after the enum's ";" if any.
1569   parseLevel(/*HasOpeningBrace=*/true);
1570   nextToken();
1571   --Line->Level;
1572   addUnwrappedLine();
1573 }
1574 
1575 void UnwrappedLineParser::parseRecord() {
1576   const FormatToken &InitialToken = *FormatTok;
1577   nextToken();
1578 
1579 
1580   // The actual identifier can be a nested name specifier, and in macros
1581   // it is often token-pasted.
1582   while (FormatTok->isOneOf(tok::identifier, tok::coloncolon, tok::hashhash,
1583                             tok::kw___attribute, tok::kw___declspec,
1584                             tok::kw_alignas) ||
1585          ((Style.Language == FormatStyle::LK_Java ||
1586            Style.Language == FormatStyle::LK_JavaScript) &&
1587           FormatTok->isOneOf(tok::period, tok::comma))) {
1588     bool IsNonMacroIdentifier =
1589         FormatTok->is(tok::identifier) &&
1590         FormatTok->TokenText != FormatTok->TokenText.upper();
1591     nextToken();
1592     // We can have macros or attributes in between 'class' and the class name.
1593     if (!IsNonMacroIdentifier && FormatTok->Tok.is(tok::l_paren))
1594       parseParens();
1595   }
1596 
1597   // Note that parsing away template declarations here leads to incorrectly
1598   // accepting function declarations as record declarations.
1599   // In general, we cannot solve this problem. Consider:
1600   // class A<int> B() {}
1601   // which can be a function definition or a class definition when B() is a
1602   // macro. If we find enough real-world cases where this is a problem, we
1603   // can parse for the 'template' keyword in the beginning of the statement,
1604   // and thus rule out the record production in case there is no template
1605   // (this would still leave us with an ambiguity between template function
1606   // and class declarations).
1607   if (FormatTok->isOneOf(tok::colon, tok::less)) {
1608     while (!eof()) {
1609       if (FormatTok->is(tok::l_brace)) {
1610         calculateBraceTypes(/*ExpectClassBody=*/true);
1611         if (!tryToParseBracedList())
1612           break;
1613       }
1614       if (FormatTok->Tok.is(tok::semi))
1615         return;
1616       nextToken();
1617     }
1618   }
1619   if (FormatTok->Tok.is(tok::l_brace)) {
1620     if (ShouldBreakBeforeBrace(Style, InitialToken))
1621       addUnwrappedLine();
1622 
1623     parseBlock(/*MustBeDeclaration=*/true, /*AddLevel=*/true,
1624                /*MunchSemi=*/false);
1625   }
1626   // We fall through to parsing a structural element afterwards, so
1627   // class A {} n, m;
1628   // will end up in one unwrapped line.
1629   // This does not apply for Java and JavaScript.
1630   if (Style.Language == FormatStyle::LK_Java ||
1631       Style.Language == FormatStyle::LK_JavaScript)
1632     addUnwrappedLine();
1633 }
1634 
1635 void UnwrappedLineParser::parseObjCProtocolList() {
1636   assert(FormatTok->Tok.is(tok::less) && "'<' expected.");
1637   do
1638     nextToken();
1639   while (!eof() && FormatTok->Tok.isNot(tok::greater));
1640   nextToken(); // Skip '>'.
1641 }
1642 
1643 void UnwrappedLineParser::parseObjCUntilAtEnd() {
1644   do {
1645     if (FormatTok->Tok.isObjCAtKeyword(tok::objc_end)) {
1646       nextToken();
1647       addUnwrappedLine();
1648       break;
1649     }
1650     if (FormatTok->is(tok::l_brace)) {
1651       parseBlock(/*MustBeDeclaration=*/false);
1652       // In ObjC interfaces, nothing should be following the "}".
1653       addUnwrappedLine();
1654     } else if (FormatTok->is(tok::r_brace)) {
1655       // Ignore stray "}". parseStructuralElement doesn't consume them.
1656       nextToken();
1657       addUnwrappedLine();
1658     } else {
1659       parseStructuralElement();
1660     }
1661   } while (!eof());
1662 }
1663 
1664 void UnwrappedLineParser::parseObjCInterfaceOrImplementation() {
1665   nextToken();
1666   nextToken(); // interface name
1667 
1668   // @interface can be followed by either a base class, or a category.
1669   if (FormatTok->Tok.is(tok::colon)) {
1670     nextToken();
1671     nextToken(); // base class name
1672   } else if (FormatTok->Tok.is(tok::l_paren))
1673     // Skip category, if present.
1674     parseParens();
1675 
1676   if (FormatTok->Tok.is(tok::less))
1677     parseObjCProtocolList();
1678 
1679   if (FormatTok->Tok.is(tok::l_brace)) {
1680     if (Style.BreakBeforeBraces == FormatStyle::BS_Allman ||
1681         Style.BreakBeforeBraces == FormatStyle::BS_GNU)
1682       addUnwrappedLine();
1683     parseBlock(/*MustBeDeclaration=*/true);
1684   }
1685 
1686   // With instance variables, this puts '}' on its own line.  Without instance
1687   // variables, this ends the @interface line.
1688   addUnwrappedLine();
1689 
1690   parseObjCUntilAtEnd();
1691 }
1692 
1693 void UnwrappedLineParser::parseObjCProtocol() {
1694   nextToken();
1695   nextToken(); // protocol name
1696 
1697   if (FormatTok->Tok.is(tok::less))
1698     parseObjCProtocolList();
1699 
1700   // Check for protocol declaration.
1701   if (FormatTok->Tok.is(tok::semi)) {
1702     nextToken();
1703     return addUnwrappedLine();
1704   }
1705 
1706   addUnwrappedLine();
1707   parseObjCUntilAtEnd();
1708 }
1709 
1710 void UnwrappedLineParser::parseJavaScriptEs6ImportExport() {
1711   assert(FormatTok->isOneOf(Keywords.kw_import, tok::kw_export));
1712   nextToken();
1713 
1714   // Consume the "default" in "export default class/function".
1715   if (FormatTok->is(tok::kw_default))
1716     nextToken();
1717 
1718   // Consume "function" and "default function", so that these get parsed as
1719   // free-standing JS functions, i.e. do not require a trailing semicolon.
1720   if (FormatTok->is(Keywords.kw_function)) {
1721     nextToken();
1722     return;
1723   }
1724 
1725   if (FormatTok->isOneOf(tok::kw_const, tok::kw_class, Keywords.kw_var))
1726     return; // Fall through to parsing the corresponding structure.
1727 
1728   if (FormatTok->is(tok::l_brace)) {
1729     FormatTok->BlockKind = BK_Block;
1730     parseBracedList();
1731   }
1732 
1733   while (!eof() && FormatTok->isNot(tok::semi) &&
1734          FormatTok->isNot(tok::l_brace)) {
1735     nextToken();
1736   }
1737 }
1738 
1739 LLVM_ATTRIBUTE_UNUSED static void printDebugInfo(const UnwrappedLine &Line,
1740                                                  StringRef Prefix = "") {
1741   llvm::dbgs() << Prefix << "Line(" << Line.Level << ")"
1742                << (Line.InPPDirective ? " MACRO" : "") << ": ";
1743   for (std::list<UnwrappedLineNode>::const_iterator I = Line.Tokens.begin(),
1744                                                     E = Line.Tokens.end();
1745        I != E; ++I) {
1746     llvm::dbgs() << I->Tok->Tok.getName() << "[" << I->Tok->Type << "] ";
1747   }
1748   for (std::list<UnwrappedLineNode>::const_iterator I = Line.Tokens.begin(),
1749                                                     E = Line.Tokens.end();
1750        I != E; ++I) {
1751     const UnwrappedLineNode &Node = *I;
1752     for (SmallVectorImpl<UnwrappedLine>::const_iterator
1753              I = Node.Children.begin(),
1754              E = Node.Children.end();
1755          I != E; ++I) {
1756       printDebugInfo(*I, "\nChild: ");
1757     }
1758   }
1759   llvm::dbgs() << "\n";
1760 }
1761 
1762 void UnwrappedLineParser::addUnwrappedLine() {
1763   if (Line->Tokens.empty())
1764     return;
1765   DEBUG({
1766     if (CurrentLines == &Lines)
1767       printDebugInfo(*Line);
1768   });
1769   CurrentLines->push_back(std::move(*Line));
1770   Line->Tokens.clear();
1771   if (CurrentLines == &Lines && !PreprocessorDirectives.empty()) {
1772     CurrentLines->append(
1773         std::make_move_iterator(PreprocessorDirectives.begin()),
1774         std::make_move_iterator(PreprocessorDirectives.end()));
1775     PreprocessorDirectives.clear();
1776   }
1777 }
1778 
1779 bool UnwrappedLineParser::eof() const { return FormatTok->Tok.is(tok::eof); }
1780 
1781 bool UnwrappedLineParser::isOnNewLine(const FormatToken &FormatTok) {
1782   return (Line->InPPDirective || FormatTok.HasUnescapedNewline) &&
1783          FormatTok.NewlinesBefore > 0;
1784 }
1785 
1786 void UnwrappedLineParser::flushComments(bool NewlineBeforeNext) {
1787   bool JustComments = Line->Tokens.empty();
1788   for (SmallVectorImpl<FormatToken *>::const_iterator
1789            I = CommentsBeforeNextToken.begin(),
1790            E = CommentsBeforeNextToken.end();
1791        I != E; ++I) {
1792     if (isOnNewLine(**I) && JustComments)
1793       addUnwrappedLine();
1794     pushToken(*I);
1795   }
1796   if (NewlineBeforeNext && JustComments)
1797     addUnwrappedLine();
1798   CommentsBeforeNextToken.clear();
1799 }
1800 
1801 void UnwrappedLineParser::nextToken() {
1802   if (eof())
1803     return;
1804   flushComments(isOnNewLine(*FormatTok));
1805   pushToken(FormatTok);
1806   readToken();
1807 }
1808 
1809 void UnwrappedLineParser::readToken() {
1810   bool CommentsInCurrentLine = true;
1811   do {
1812     FormatTok = Tokens->getNextToken();
1813     assert(FormatTok);
1814     while (!Line->InPPDirective && FormatTok->Tok.is(tok::hash) &&
1815            (FormatTok->HasUnescapedNewline || FormatTok->IsFirst)) {
1816       // If there is an unfinished unwrapped line, we flush the preprocessor
1817       // directives only after that unwrapped line was finished later.
1818       bool SwitchToPreprocessorLines = !Line->Tokens.empty();
1819       ScopedLineState BlockState(*this, SwitchToPreprocessorLines);
1820       // Comments stored before the preprocessor directive need to be output
1821       // before the preprocessor directive, at the same level as the
1822       // preprocessor directive, as we consider them to apply to the directive.
1823       flushComments(isOnNewLine(*FormatTok));
1824       parsePPDirective();
1825     }
1826     while (FormatTok->Type == TT_ConflictStart ||
1827            FormatTok->Type == TT_ConflictEnd ||
1828            FormatTok->Type == TT_ConflictAlternative) {
1829       if (FormatTok->Type == TT_ConflictStart) {
1830         conditionalCompilationStart(/*Unreachable=*/false);
1831       } else if (FormatTok->Type == TT_ConflictAlternative) {
1832         conditionalCompilationAlternative();
1833       } else if (FormatTok->Type == TT_ConflictEnd) {
1834         conditionalCompilationEnd();
1835       }
1836       FormatTok = Tokens->getNextToken();
1837       FormatTok->MustBreakBefore = true;
1838     }
1839 
1840     if (!PPStack.empty() && (PPStack.back() == PP_Unreachable) &&
1841         !Line->InPPDirective) {
1842       continue;
1843     }
1844 
1845     if (!FormatTok->Tok.is(tok::comment))
1846       return;
1847     if (isOnNewLine(*FormatTok) || FormatTok->IsFirst) {
1848       CommentsInCurrentLine = false;
1849     }
1850     if (CommentsInCurrentLine) {
1851       pushToken(FormatTok);
1852     } else {
1853       CommentsBeforeNextToken.push_back(FormatTok);
1854     }
1855   } while (!eof());
1856 }
1857 
1858 void UnwrappedLineParser::pushToken(FormatToken *Tok) {
1859   Line->Tokens.push_back(UnwrappedLineNode(Tok));
1860   if (MustBreakBeforeNextToken) {
1861     Line->Tokens.back().Tok->MustBreakBefore = true;
1862     MustBreakBeforeNextToken = false;
1863   }
1864 }
1865 
1866 } // end namespace format
1867 } // end namespace clang
1868