1 //===--- UnwrappedLineParser.cpp - Format C++ code ------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 ///
9 /// \file
10 /// This file contains the implementation of the UnwrappedLineParser,
11 /// which turns a stream of tokens into UnwrappedLines.
12 ///
13 //===----------------------------------------------------------------------===//
14 
15 #include "UnwrappedLineParser.h"
16 #include "llvm/ADT/STLExtras.h"
17 #include "llvm/Support/Debug.h"
18 #include "llvm/Support/raw_ostream.h"
19 
20 #include <algorithm>
21 
22 #define DEBUG_TYPE "format-parser"
23 
24 namespace clang {
25 namespace format {
26 
27 class FormatTokenSource {
28 public:
29   virtual ~FormatTokenSource() {}
30   virtual FormatToken *getNextToken() = 0;
31 
32   virtual unsigned getPosition() = 0;
33   virtual FormatToken *setPosition(unsigned Position) = 0;
34 };
35 
36 namespace {
37 
38 class ScopedDeclarationState {
39 public:
40   ScopedDeclarationState(UnwrappedLine &Line, std::vector<bool> &Stack,
41                          bool MustBeDeclaration)
42       : Line(Line), Stack(Stack) {
43     Line.MustBeDeclaration = MustBeDeclaration;
44     Stack.push_back(MustBeDeclaration);
45   }
46   ~ScopedDeclarationState() {
47     Stack.pop_back();
48     if (!Stack.empty())
49       Line.MustBeDeclaration = Stack.back();
50     else
51       Line.MustBeDeclaration = true;
52   }
53 
54 private:
55   UnwrappedLine &Line;
56   std::vector<bool> &Stack;
57 };
58 
59 static bool isLineComment(const FormatToken &FormatTok) {
60   return FormatTok.is(tok::comment) && !FormatTok.TokenText.startswith("/*");
61 }
62 
63 // Checks if \p FormatTok is a line comment that continues the line comment
64 // \p Previous. The original column of \p MinColumnToken is used to determine
65 // whether \p FormatTok is indented enough to the right to continue \p Previous.
66 static bool continuesLineComment(const FormatToken &FormatTok,
67                                  const FormatToken *Previous,
68                                  const FormatToken *MinColumnToken) {
69   if (!Previous || !MinColumnToken)
70     return false;
71   unsigned MinContinueColumn =
72       MinColumnToken->OriginalColumn + (isLineComment(*MinColumnToken) ? 0 : 1);
73   return isLineComment(FormatTok) && FormatTok.NewlinesBefore == 1 &&
74          isLineComment(*Previous) &&
75          FormatTok.OriginalColumn >= MinContinueColumn;
76 }
77 
78 class ScopedMacroState : public FormatTokenSource {
79 public:
80   ScopedMacroState(UnwrappedLine &Line, FormatTokenSource *&TokenSource,
81                    FormatToken *&ResetToken)
82       : Line(Line), TokenSource(TokenSource), ResetToken(ResetToken),
83         PreviousLineLevel(Line.Level), PreviousTokenSource(TokenSource),
84         Token(nullptr), PreviousToken(nullptr) {
85     FakeEOF.Tok.startToken();
86     FakeEOF.Tok.setKind(tok::eof);
87     TokenSource = this;
88     Line.Level = 0;
89     Line.InPPDirective = true;
90   }
91 
92   ~ScopedMacroState() override {
93     TokenSource = PreviousTokenSource;
94     ResetToken = Token;
95     Line.InPPDirective = false;
96     Line.Level = PreviousLineLevel;
97   }
98 
99   FormatToken *getNextToken() override {
100     // The \c UnwrappedLineParser guards against this by never calling
101     // \c getNextToken() after it has encountered the first eof token.
102     assert(!eof());
103     PreviousToken = Token;
104     Token = PreviousTokenSource->getNextToken();
105     if (eof())
106       return &FakeEOF;
107     return Token;
108   }
109 
110   unsigned getPosition() override { return PreviousTokenSource->getPosition(); }
111 
112   FormatToken *setPosition(unsigned Position) override {
113     PreviousToken = nullptr;
114     Token = PreviousTokenSource->setPosition(Position);
115     return Token;
116   }
117 
118 private:
119   bool eof() {
120     return Token && Token->HasUnescapedNewline &&
121            !continuesLineComment(*Token, PreviousToken,
122                                  /*MinColumnToken=*/PreviousToken);
123   }
124 
125   FormatToken FakeEOF;
126   UnwrappedLine &Line;
127   FormatTokenSource *&TokenSource;
128   FormatToken *&ResetToken;
129   unsigned PreviousLineLevel;
130   FormatTokenSource *PreviousTokenSource;
131 
132   FormatToken *Token;
133   FormatToken *PreviousToken;
134 };
135 
136 } // end anonymous namespace
137 
138 class ScopedLineState {
139 public:
140   ScopedLineState(UnwrappedLineParser &Parser,
141                   bool SwitchToPreprocessorLines = false)
142       : Parser(Parser), OriginalLines(Parser.CurrentLines) {
143     if (SwitchToPreprocessorLines)
144       Parser.CurrentLines = &Parser.PreprocessorDirectives;
145     else if (!Parser.Line->Tokens.empty())
146       Parser.CurrentLines = &Parser.Line->Tokens.back().Children;
147     PreBlockLine = std::move(Parser.Line);
148     Parser.Line = llvm::make_unique<UnwrappedLine>();
149     Parser.Line->Level = PreBlockLine->Level;
150     Parser.Line->InPPDirective = PreBlockLine->InPPDirective;
151   }
152 
153   ~ScopedLineState() {
154     if (!Parser.Line->Tokens.empty()) {
155       Parser.addUnwrappedLine();
156     }
157     assert(Parser.Line->Tokens.empty());
158     Parser.Line = std::move(PreBlockLine);
159     if (Parser.CurrentLines == &Parser.PreprocessorDirectives)
160       Parser.MustBreakBeforeNextToken = true;
161     Parser.CurrentLines = OriginalLines;
162   }
163 
164 private:
165   UnwrappedLineParser &Parser;
166 
167   std::unique_ptr<UnwrappedLine> PreBlockLine;
168   SmallVectorImpl<UnwrappedLine> *OriginalLines;
169 };
170 
171 class CompoundStatementIndenter {
172 public:
173   CompoundStatementIndenter(UnwrappedLineParser *Parser,
174                             const FormatStyle &Style, unsigned &LineLevel)
175       : CompoundStatementIndenter(Parser, LineLevel,
176                                   Style.BraceWrapping.AfterControlStatement,
177                                   Style.BraceWrapping.IndentBraces) {
178   }
179   CompoundStatementIndenter(UnwrappedLineParser *Parser, unsigned &LineLevel,
180                             bool WrapBrace, bool IndentBrace)
181       : LineLevel(LineLevel), OldLineLevel(LineLevel) {
182     if (WrapBrace)
183       Parser->addUnwrappedLine();
184     if (IndentBrace)
185       ++LineLevel;
186   }
187   ~CompoundStatementIndenter() { LineLevel = OldLineLevel; }
188 
189 private:
190   unsigned &LineLevel;
191   unsigned OldLineLevel;
192 };
193 
194 namespace {
195 
196 class IndexedTokenSource : public FormatTokenSource {
197 public:
198   IndexedTokenSource(ArrayRef<FormatToken *> Tokens)
199       : Tokens(Tokens), Position(-1) {}
200 
201   FormatToken *getNextToken() override {
202     ++Position;
203     return Tokens[Position];
204   }
205 
206   unsigned getPosition() override {
207     assert(Position >= 0);
208     return Position;
209   }
210 
211   FormatToken *setPosition(unsigned P) override {
212     Position = P;
213     return Tokens[Position];
214   }
215 
216   void reset() { Position = -1; }
217 
218 private:
219   ArrayRef<FormatToken *> Tokens;
220   int Position;
221 };
222 
223 } // end anonymous namespace
224 
225 UnwrappedLineParser::UnwrappedLineParser(const FormatStyle &Style,
226                                          const AdditionalKeywords &Keywords,
227                                          unsigned FirstStartColumn,
228                                          ArrayRef<FormatToken *> Tokens,
229                                          UnwrappedLineConsumer &Callback)
230     : Line(new UnwrappedLine), MustBreakBeforeNextToken(false),
231       CurrentLines(&Lines), Style(Style), Keywords(Keywords),
232       CommentPragmasRegex(Style.CommentPragmas), Tokens(nullptr),
233       Callback(Callback), AllTokens(Tokens), PPBranchLevel(-1),
234       IncludeGuard(Style.IndentPPDirectives == FormatStyle::PPDIS_None
235                        ? IG_Rejected
236                        : IG_Inited),
237       IncludeGuardToken(nullptr), FirstStartColumn(FirstStartColumn) {}
238 
239 void UnwrappedLineParser::reset() {
240   PPBranchLevel = -1;
241   IncludeGuard = Style.IndentPPDirectives == FormatStyle::PPDIS_None
242                      ? IG_Rejected
243                      : IG_Inited;
244   IncludeGuardToken = nullptr;
245   Line.reset(new UnwrappedLine);
246   CommentsBeforeNextToken.clear();
247   FormatTok = nullptr;
248   MustBreakBeforeNextToken = false;
249   PreprocessorDirectives.clear();
250   CurrentLines = &Lines;
251   DeclarationScopeStack.clear();
252   PPStack.clear();
253   Line->FirstStartColumn = FirstStartColumn;
254 }
255 
256 void UnwrappedLineParser::parse() {
257   IndexedTokenSource TokenSource(AllTokens);
258   Line->FirstStartColumn = FirstStartColumn;
259   do {
260     LLVM_DEBUG(llvm::dbgs() << "----\n");
261     reset();
262     Tokens = &TokenSource;
263     TokenSource.reset();
264 
265     readToken();
266     parseFile();
267 
268     // If we found an include guard then all preprocessor directives (other than
269     // the guard) are over-indented by one.
270     if (IncludeGuard == IG_Found)
271       for (auto &Line : Lines)
272         if (Line.InPPDirective && Line.Level > 0)
273           --Line.Level;
274 
275     // Create line with eof token.
276     pushToken(FormatTok);
277     addUnwrappedLine();
278 
279     for (SmallVectorImpl<UnwrappedLine>::iterator I = Lines.begin(),
280                                                   E = Lines.end();
281          I != E; ++I) {
282       Callback.consumeUnwrappedLine(*I);
283     }
284     Callback.finishRun();
285     Lines.clear();
286     while (!PPLevelBranchIndex.empty() &&
287            PPLevelBranchIndex.back() + 1 >= PPLevelBranchCount.back()) {
288       PPLevelBranchIndex.resize(PPLevelBranchIndex.size() - 1);
289       PPLevelBranchCount.resize(PPLevelBranchCount.size() - 1);
290     }
291     if (!PPLevelBranchIndex.empty()) {
292       ++PPLevelBranchIndex.back();
293       assert(PPLevelBranchIndex.size() == PPLevelBranchCount.size());
294       assert(PPLevelBranchIndex.back() <= PPLevelBranchCount.back());
295     }
296   } while (!PPLevelBranchIndex.empty());
297 }
298 
299 void UnwrappedLineParser::parseFile() {
300   // The top-level context in a file always has declarations, except for pre-
301   // processor directives and JavaScript files.
302   bool MustBeDeclaration =
303       !Line->InPPDirective && Style.Language != FormatStyle::LK_JavaScript;
304   ScopedDeclarationState DeclarationState(*Line, DeclarationScopeStack,
305                                           MustBeDeclaration);
306   if (Style.Language == FormatStyle::LK_TextProto)
307     parseBracedList();
308   else
309     parseLevel(/*HasOpeningBrace=*/false);
310   // Make sure to format the remaining tokens.
311   //
312   // LK_TextProto is special since its top-level is parsed as the body of a
313   // braced list, which does not necessarily have natural line separators such
314   // as a semicolon. Comments after the last entry that have been determined to
315   // not belong to that line, as in:
316   //   key: value
317   //   // endfile comment
318   // do not have a chance to be put on a line of their own until this point.
319   // Here we add this newline before end-of-file comments.
320   if (Style.Language == FormatStyle::LK_TextProto &&
321       !CommentsBeforeNextToken.empty())
322     addUnwrappedLine();
323   flushComments(true);
324   addUnwrappedLine();
325 }
326 
327 void UnwrappedLineParser::parseLevel(bool HasOpeningBrace) {
328   bool SwitchLabelEncountered = false;
329   do {
330     tok::TokenKind kind = FormatTok->Tok.getKind();
331     if (FormatTok->Type == TT_MacroBlockBegin) {
332       kind = tok::l_brace;
333     } else if (FormatTok->Type == TT_MacroBlockEnd) {
334       kind = tok::r_brace;
335     }
336 
337     switch (kind) {
338     case tok::comment:
339       nextToken();
340       addUnwrappedLine();
341       break;
342     case tok::l_brace:
343       // FIXME: Add parameter whether this can happen - if this happens, we must
344       // be in a non-declaration context.
345       if (!FormatTok->is(TT_MacroBlockBegin) && tryToParseBracedList())
346         continue;
347       parseBlock(/*MustBeDeclaration=*/false);
348       addUnwrappedLine();
349       break;
350     case tok::r_brace:
351       if (HasOpeningBrace)
352         return;
353       nextToken();
354       addUnwrappedLine();
355       break;
356     case tok::kw_default: {
357       unsigned StoredPosition = Tokens->getPosition();
358       FormatToken *Next;
359       do {
360         Next = Tokens->getNextToken();
361       } while (Next && Next->is(tok::comment));
362       FormatTok = Tokens->setPosition(StoredPosition);
363       if (Next && Next->isNot(tok::colon)) {
364         // default not followed by ':' is not a case label; treat it like
365         // an identifier.
366         parseStructuralElement();
367         break;
368       }
369       // Else, if it is 'default:', fall through to the case handling.
370       LLVM_FALLTHROUGH;
371     }
372     case tok::kw_case:
373       if (Style.Language == FormatStyle::LK_JavaScript &&
374           Line->MustBeDeclaration) {
375         // A 'case: string' style field declaration.
376         parseStructuralElement();
377         break;
378       }
379       if (!SwitchLabelEncountered &&
380           (Style.IndentCaseLabels || (Line->InPPDirective && Line->Level == 1)))
381         ++Line->Level;
382       SwitchLabelEncountered = true;
383       parseStructuralElement();
384       break;
385     default:
386       parseStructuralElement();
387       break;
388     }
389   } while (!eof());
390 }
391 
392 void UnwrappedLineParser::calculateBraceTypes(bool ExpectClassBody) {
393   // We'll parse forward through the tokens until we hit
394   // a closing brace or eof - note that getNextToken() will
395   // parse macros, so this will magically work inside macro
396   // definitions, too.
397   unsigned StoredPosition = Tokens->getPosition();
398   FormatToken *Tok = FormatTok;
399   const FormatToken *PrevTok = Tok->Previous;
400   // Keep a stack of positions of lbrace tokens. We will
401   // update information about whether an lbrace starts a
402   // braced init list or a different block during the loop.
403   SmallVector<FormatToken *, 8> LBraceStack;
404   assert(Tok->Tok.is(tok::l_brace));
405   do {
406     // Get next non-comment token.
407     FormatToken *NextTok;
408     unsigned ReadTokens = 0;
409     do {
410       NextTok = Tokens->getNextToken();
411       ++ReadTokens;
412     } while (NextTok->is(tok::comment));
413 
414     switch (Tok->Tok.getKind()) {
415     case tok::l_brace:
416       if (Style.Language == FormatStyle::LK_JavaScript && PrevTok) {
417         if (PrevTok->isOneOf(tok::colon, tok::less))
418           // A ':' indicates this code is in a type, or a braced list
419           // following a label in an object literal ({a: {b: 1}}).
420           // A '<' could be an object used in a comparison, but that is nonsense
421           // code (can never return true), so more likely it is a generic type
422           // argument (`X<{a: string; b: number}>`).
423           // The code below could be confused by semicolons between the
424           // individual members in a type member list, which would normally
425           // trigger BK_Block. In both cases, this must be parsed as an inline
426           // braced init.
427           Tok->BlockKind = BK_BracedInit;
428         else if (PrevTok->is(tok::r_paren))
429           // `) { }` can only occur in function or method declarations in JS.
430           Tok->BlockKind = BK_Block;
431       } else {
432         Tok->BlockKind = BK_Unknown;
433       }
434       LBraceStack.push_back(Tok);
435       break;
436     case tok::r_brace:
437       if (LBraceStack.empty())
438         break;
439       if (LBraceStack.back()->BlockKind == BK_Unknown) {
440         bool ProbablyBracedList = false;
441         if (Style.Language == FormatStyle::LK_Proto) {
442           ProbablyBracedList = NextTok->isOneOf(tok::comma, tok::r_square);
443         } else {
444           // Using OriginalColumn to distinguish between ObjC methods and
445           // binary operators is a bit hacky.
446           bool NextIsObjCMethod = NextTok->isOneOf(tok::plus, tok::minus) &&
447                                   NextTok->OriginalColumn == 0;
448 
449           // If there is a comma, semicolon or right paren after the closing
450           // brace, we assume this is a braced initializer list.  Note that
451           // regardless how we mark inner braces here, we will overwrite the
452           // BlockKind later if we parse a braced list (where all blocks
453           // inside are by default braced lists), or when we explicitly detect
454           // blocks (for example while parsing lambdas).
455           // FIXME: Some of these do not apply to JS, e.g. "} {" can never be a
456           // braced list in JS.
457           ProbablyBracedList =
458               (Style.Language == FormatStyle::LK_JavaScript &&
459                NextTok->isOneOf(Keywords.kw_of, Keywords.kw_in,
460                                 Keywords.kw_as)) ||
461               (Style.isCpp() && NextTok->is(tok::l_paren)) ||
462               NextTok->isOneOf(tok::comma, tok::period, tok::colon,
463                                tok::r_paren, tok::r_square, tok::l_brace,
464                                tok::ellipsis) ||
465               (NextTok->is(tok::identifier) &&
466                !PrevTok->isOneOf(tok::semi, tok::r_brace, tok::l_brace)) ||
467               (NextTok->is(tok::semi) &&
468                (!ExpectClassBody || LBraceStack.size() != 1)) ||
469               (NextTok->isBinaryOperator() && !NextIsObjCMethod);
470           if (NextTok->is(tok::l_square)) {
471             // We can have an array subscript after a braced init
472             // list, but C++11 attributes are expected after blocks.
473             NextTok = Tokens->getNextToken();
474             ++ReadTokens;
475             ProbablyBracedList = NextTok->isNot(tok::l_square);
476           }
477         }
478         if (ProbablyBracedList) {
479           Tok->BlockKind = BK_BracedInit;
480           LBraceStack.back()->BlockKind = BK_BracedInit;
481         } else {
482           Tok->BlockKind = BK_Block;
483           LBraceStack.back()->BlockKind = BK_Block;
484         }
485       }
486       LBraceStack.pop_back();
487       break;
488     case tok::identifier:
489       if (!Tok->is(TT_StatementMacro))
490         break;
491       LLVM_FALLTHROUGH;
492     case tok::at:
493     case tok::semi:
494     case tok::kw_if:
495     case tok::kw_while:
496     case tok::kw_for:
497     case tok::kw_switch:
498     case tok::kw_try:
499     case tok::kw___try:
500       if (!LBraceStack.empty() && LBraceStack.back()->BlockKind == BK_Unknown)
501         LBraceStack.back()->BlockKind = BK_Block;
502       break;
503     default:
504       break;
505     }
506     PrevTok = Tok;
507     Tok = NextTok;
508   } while (Tok->Tok.isNot(tok::eof) && !LBraceStack.empty());
509 
510   // Assume other blocks for all unclosed opening braces.
511   for (unsigned i = 0, e = LBraceStack.size(); i != e; ++i) {
512     if (LBraceStack[i]->BlockKind == BK_Unknown)
513       LBraceStack[i]->BlockKind = BK_Block;
514   }
515 
516   FormatTok = Tokens->setPosition(StoredPosition);
517 }
518 
519 template <class T>
520 static inline void hash_combine(std::size_t &seed, const T &v) {
521   std::hash<T> hasher;
522   seed ^= hasher(v) + 0x9e3779b9 + (seed << 6) + (seed >> 2);
523 }
524 
525 size_t UnwrappedLineParser::computePPHash() const {
526   size_t h = 0;
527   for (const auto &i : PPStack) {
528     hash_combine(h, size_t(i.Kind));
529     hash_combine(h, i.Line);
530   }
531   return h;
532 }
533 
534 void UnwrappedLineParser::parseBlock(bool MustBeDeclaration, bool AddLevel,
535                                      bool MunchSemi) {
536   assert(FormatTok->isOneOf(tok::l_brace, TT_MacroBlockBegin) &&
537          "'{' or macro block token expected");
538   const bool MacroBlock = FormatTok->is(TT_MacroBlockBegin);
539   FormatTok->BlockKind = BK_Block;
540 
541   size_t PPStartHash = computePPHash();
542 
543   unsigned InitialLevel = Line->Level;
544   nextToken(/*LevelDifference=*/AddLevel ? 1 : 0);
545 
546   if (MacroBlock && FormatTok->is(tok::l_paren))
547     parseParens();
548 
549   size_t NbPreprocessorDirectives =
550       CurrentLines == &Lines ? PreprocessorDirectives.size() : 0;
551   addUnwrappedLine();
552   size_t OpeningLineIndex =
553       CurrentLines->empty()
554           ? (UnwrappedLine::kInvalidIndex)
555           : (CurrentLines->size() - 1 - NbPreprocessorDirectives);
556 
557   ScopedDeclarationState DeclarationState(*Line, DeclarationScopeStack,
558                                           MustBeDeclaration);
559   if (AddLevel)
560     ++Line->Level;
561   parseLevel(/*HasOpeningBrace=*/true);
562 
563   if (eof())
564     return;
565 
566   if (MacroBlock ? !FormatTok->is(TT_MacroBlockEnd)
567                  : !FormatTok->is(tok::r_brace)) {
568     Line->Level = InitialLevel;
569     FormatTok->BlockKind = BK_Block;
570     return;
571   }
572 
573   size_t PPEndHash = computePPHash();
574 
575   // Munch the closing brace.
576   nextToken(/*LevelDifference=*/AddLevel ? -1 : 0);
577 
578   if (MacroBlock && FormatTok->is(tok::l_paren))
579     parseParens();
580 
581   if (MunchSemi && FormatTok->Tok.is(tok::semi))
582     nextToken();
583   Line->Level = InitialLevel;
584 
585   if (PPStartHash == PPEndHash) {
586     Line->MatchingOpeningBlockLineIndex = OpeningLineIndex;
587     if (OpeningLineIndex != UnwrappedLine::kInvalidIndex) {
588       // Update the opening line to add the forward reference as well
589       (*CurrentLines)[OpeningLineIndex].MatchingClosingBlockLineIndex =
590           CurrentLines->size() - 1;
591     }
592   }
593 }
594 
595 static bool isGoogScope(const UnwrappedLine &Line) {
596   // FIXME: Closure-library specific stuff should not be hard-coded but be
597   // configurable.
598   if (Line.Tokens.size() < 4)
599     return false;
600   auto I = Line.Tokens.begin();
601   if (I->Tok->TokenText != "goog")
602     return false;
603   ++I;
604   if (I->Tok->isNot(tok::period))
605     return false;
606   ++I;
607   if (I->Tok->TokenText != "scope")
608     return false;
609   ++I;
610   return I->Tok->is(tok::l_paren);
611 }
612 
613 static bool isIIFE(const UnwrappedLine &Line,
614                    const AdditionalKeywords &Keywords) {
615   // Look for the start of an immediately invoked anonymous function.
616   // https://en.wikipedia.org/wiki/Immediately-invoked_function_expression
617   // This is commonly done in JavaScript to create a new, anonymous scope.
618   // Example: (function() { ... })()
619   if (Line.Tokens.size() < 3)
620     return false;
621   auto I = Line.Tokens.begin();
622   if (I->Tok->isNot(tok::l_paren))
623     return false;
624   ++I;
625   if (I->Tok->isNot(Keywords.kw_function))
626     return false;
627   ++I;
628   return I->Tok->is(tok::l_paren);
629 }
630 
631 static bool ShouldBreakBeforeBrace(const FormatStyle &Style,
632                                    const FormatToken &InitialToken) {
633   if (InitialToken.isOneOf(tok::kw_namespace, TT_NamespaceMacro))
634     return Style.BraceWrapping.AfterNamespace;
635   if (InitialToken.is(tok::kw_class))
636     return Style.BraceWrapping.AfterClass;
637   if (InitialToken.is(tok::kw_union))
638     return Style.BraceWrapping.AfterUnion;
639   if (InitialToken.is(tok::kw_struct))
640     return Style.BraceWrapping.AfterStruct;
641   return false;
642 }
643 
644 void UnwrappedLineParser::parseChildBlock() {
645   FormatTok->BlockKind = BK_Block;
646   nextToken();
647   {
648     bool SkipIndent = (Style.Language == FormatStyle::LK_JavaScript &&
649                        (isGoogScope(*Line) || isIIFE(*Line, Keywords)));
650     ScopedLineState LineState(*this);
651     ScopedDeclarationState DeclarationState(*Line, DeclarationScopeStack,
652                                             /*MustBeDeclaration=*/false);
653     Line->Level += SkipIndent ? 0 : 1;
654     parseLevel(/*HasOpeningBrace=*/true);
655     flushComments(isOnNewLine(*FormatTok));
656     Line->Level -= SkipIndent ? 0 : 1;
657   }
658   nextToken();
659 }
660 
661 void UnwrappedLineParser::parsePPDirective() {
662   assert(FormatTok->Tok.is(tok::hash) && "'#' expected");
663   ScopedMacroState MacroState(*Line, Tokens, FormatTok);
664 
665   nextToken();
666 
667   if (!FormatTok->Tok.getIdentifierInfo()) {
668     parsePPUnknown();
669     return;
670   }
671 
672   switch (FormatTok->Tok.getIdentifierInfo()->getPPKeywordID()) {
673   case tok::pp_define:
674     parsePPDefine();
675     return;
676   case tok::pp_if:
677     parsePPIf(/*IfDef=*/false);
678     break;
679   case tok::pp_ifdef:
680   case tok::pp_ifndef:
681     parsePPIf(/*IfDef=*/true);
682     break;
683   case tok::pp_else:
684     parsePPElse();
685     break;
686   case tok::pp_elif:
687     parsePPElIf();
688     break;
689   case tok::pp_endif:
690     parsePPEndIf();
691     break;
692   default:
693     parsePPUnknown();
694     break;
695   }
696 }
697 
698 void UnwrappedLineParser::conditionalCompilationCondition(bool Unreachable) {
699   size_t Line = CurrentLines->size();
700   if (CurrentLines == &PreprocessorDirectives)
701     Line += Lines.size();
702 
703   if (Unreachable ||
704       (!PPStack.empty() && PPStack.back().Kind == PP_Unreachable))
705     PPStack.push_back({PP_Unreachable, Line});
706   else
707     PPStack.push_back({PP_Conditional, Line});
708 }
709 
710 void UnwrappedLineParser::conditionalCompilationStart(bool Unreachable) {
711   ++PPBranchLevel;
712   assert(PPBranchLevel >= 0 && PPBranchLevel <= (int)PPLevelBranchIndex.size());
713   if (PPBranchLevel == (int)PPLevelBranchIndex.size()) {
714     PPLevelBranchIndex.push_back(0);
715     PPLevelBranchCount.push_back(0);
716   }
717   PPChainBranchIndex.push(0);
718   bool Skip = PPLevelBranchIndex[PPBranchLevel] > 0;
719   conditionalCompilationCondition(Unreachable || Skip);
720 }
721 
722 void UnwrappedLineParser::conditionalCompilationAlternative() {
723   if (!PPStack.empty())
724     PPStack.pop_back();
725   assert(PPBranchLevel < (int)PPLevelBranchIndex.size());
726   if (!PPChainBranchIndex.empty())
727     ++PPChainBranchIndex.top();
728   conditionalCompilationCondition(
729       PPBranchLevel >= 0 && !PPChainBranchIndex.empty() &&
730       PPLevelBranchIndex[PPBranchLevel] != PPChainBranchIndex.top());
731 }
732 
733 void UnwrappedLineParser::conditionalCompilationEnd() {
734   assert(PPBranchLevel < (int)PPLevelBranchIndex.size());
735   if (PPBranchLevel >= 0 && !PPChainBranchIndex.empty()) {
736     if (PPChainBranchIndex.top() + 1 > PPLevelBranchCount[PPBranchLevel]) {
737       PPLevelBranchCount[PPBranchLevel] = PPChainBranchIndex.top() + 1;
738     }
739   }
740   // Guard against #endif's without #if.
741   if (PPBranchLevel > -1)
742     --PPBranchLevel;
743   if (!PPChainBranchIndex.empty())
744     PPChainBranchIndex.pop();
745   if (!PPStack.empty())
746     PPStack.pop_back();
747 }
748 
749 void UnwrappedLineParser::parsePPIf(bool IfDef) {
750   bool IfNDef = FormatTok->is(tok::pp_ifndef);
751   nextToken();
752   bool Unreachable = false;
753   if (!IfDef && (FormatTok->is(tok::kw_false) || FormatTok->TokenText == "0"))
754     Unreachable = true;
755   if (IfDef && !IfNDef && FormatTok->TokenText == "SWIG")
756     Unreachable = true;
757   conditionalCompilationStart(Unreachable);
758   FormatToken *IfCondition = FormatTok;
759   // If there's a #ifndef on the first line, and the only lines before it are
760   // comments, it could be an include guard.
761   bool MaybeIncludeGuard = IfNDef;
762   if (IncludeGuard == IG_Inited && MaybeIncludeGuard)
763     for (auto &Line : Lines) {
764       if (!Line.Tokens.front().Tok->is(tok::comment)) {
765         MaybeIncludeGuard = false;
766         IncludeGuard = IG_Rejected;
767         break;
768       }
769     }
770   --PPBranchLevel;
771   parsePPUnknown();
772   ++PPBranchLevel;
773   if (IncludeGuard == IG_Inited && MaybeIncludeGuard) {
774     IncludeGuard = IG_IfNdefed;
775     IncludeGuardToken = IfCondition;
776   }
777 }
778 
779 void UnwrappedLineParser::parsePPElse() {
780   // If a potential include guard has an #else, it's not an include guard.
781   if (IncludeGuard == IG_Defined && PPBranchLevel == 0)
782     IncludeGuard = IG_Rejected;
783   conditionalCompilationAlternative();
784   if (PPBranchLevel > -1)
785     --PPBranchLevel;
786   parsePPUnknown();
787   ++PPBranchLevel;
788 }
789 
790 void UnwrappedLineParser::parsePPElIf() { parsePPElse(); }
791 
792 void UnwrappedLineParser::parsePPEndIf() {
793   conditionalCompilationEnd();
794   parsePPUnknown();
795   // If the #endif of a potential include guard is the last thing in the file,
796   // then we found an include guard.
797   unsigned TokenPosition = Tokens->getPosition();
798   FormatToken *PeekNext = AllTokens[TokenPosition];
799   if (IncludeGuard == IG_Defined && PPBranchLevel == -1 &&
800       PeekNext->is(tok::eof) &&
801       Style.IndentPPDirectives != FormatStyle::PPDIS_None)
802     IncludeGuard = IG_Found;
803 }
804 
805 void UnwrappedLineParser::parsePPDefine() {
806   nextToken();
807 
808   if (!FormatTok->Tok.getIdentifierInfo()) {
809     IncludeGuard = IG_Rejected;
810     IncludeGuardToken = nullptr;
811     parsePPUnknown();
812     return;
813   }
814 
815   if (IncludeGuard == IG_IfNdefed &&
816       IncludeGuardToken->TokenText == FormatTok->TokenText) {
817     IncludeGuard = IG_Defined;
818     IncludeGuardToken = nullptr;
819     for (auto &Line : Lines) {
820       if (!Line.Tokens.front().Tok->isOneOf(tok::comment, tok::hash)) {
821         IncludeGuard = IG_Rejected;
822         break;
823       }
824     }
825   }
826 
827   nextToken();
828   if (FormatTok->Tok.getKind() == tok::l_paren &&
829       FormatTok->WhitespaceRange.getBegin() ==
830           FormatTok->WhitespaceRange.getEnd()) {
831     parseParens();
832   }
833   if (Style.IndentPPDirectives != FormatStyle::PPDIS_None)
834     Line->Level += PPBranchLevel + 1;
835   addUnwrappedLine();
836   ++Line->Level;
837 
838   // Errors during a preprocessor directive can only affect the layout of the
839   // preprocessor directive, and thus we ignore them. An alternative approach
840   // would be to use the same approach we use on the file level (no
841   // re-indentation if there was a structural error) within the macro
842   // definition.
843   parseFile();
844 }
845 
846 void UnwrappedLineParser::parsePPUnknown() {
847   do {
848     nextToken();
849   } while (!eof());
850   if (Style.IndentPPDirectives != FormatStyle::PPDIS_None)
851     Line->Level += PPBranchLevel + 1;
852   addUnwrappedLine();
853 }
854 
855 // Here we blacklist certain tokens that are not usually the first token in an
856 // unwrapped line. This is used in attempt to distinguish macro calls without
857 // trailing semicolons from other constructs split to several lines.
858 static bool tokenCanStartNewLine(const clang::Token &Tok) {
859   // Semicolon can be a null-statement, l_square can be a start of a macro or
860   // a C++11 attribute, but this doesn't seem to be common.
861   return Tok.isNot(tok::semi) && Tok.isNot(tok::l_brace) &&
862          Tok.isNot(tok::l_square) &&
863          // Tokens that can only be used as binary operators and a part of
864          // overloaded operator names.
865          Tok.isNot(tok::period) && Tok.isNot(tok::periodstar) &&
866          Tok.isNot(tok::arrow) && Tok.isNot(tok::arrowstar) &&
867          Tok.isNot(tok::less) && Tok.isNot(tok::greater) &&
868          Tok.isNot(tok::slash) && Tok.isNot(tok::percent) &&
869          Tok.isNot(tok::lessless) && Tok.isNot(tok::greatergreater) &&
870          Tok.isNot(tok::equal) && Tok.isNot(tok::plusequal) &&
871          Tok.isNot(tok::minusequal) && Tok.isNot(tok::starequal) &&
872          Tok.isNot(tok::slashequal) && Tok.isNot(tok::percentequal) &&
873          Tok.isNot(tok::ampequal) && Tok.isNot(tok::pipeequal) &&
874          Tok.isNot(tok::caretequal) && Tok.isNot(tok::greatergreaterequal) &&
875          Tok.isNot(tok::lesslessequal) &&
876          // Colon is used in labels, base class lists, initializer lists,
877          // range-based for loops, ternary operator, but should never be the
878          // first token in an unwrapped line.
879          Tok.isNot(tok::colon) &&
880          // 'noexcept' is a trailing annotation.
881          Tok.isNot(tok::kw_noexcept);
882 }
883 
884 static bool mustBeJSIdent(const AdditionalKeywords &Keywords,
885                           const FormatToken *FormatTok) {
886   // FIXME: This returns true for C/C++ keywords like 'struct'.
887   return FormatTok->is(tok::identifier) &&
888          (FormatTok->Tok.getIdentifierInfo() == nullptr ||
889           !FormatTok->isOneOf(
890               Keywords.kw_in, Keywords.kw_of, Keywords.kw_as, Keywords.kw_async,
891               Keywords.kw_await, Keywords.kw_yield, Keywords.kw_finally,
892               Keywords.kw_function, Keywords.kw_import, Keywords.kw_is,
893               Keywords.kw_let, Keywords.kw_var, tok::kw_const,
894               Keywords.kw_abstract, Keywords.kw_extends, Keywords.kw_implements,
895               Keywords.kw_instanceof, Keywords.kw_interface, Keywords.kw_throws,
896               Keywords.kw_from));
897 }
898 
899 static bool mustBeJSIdentOrValue(const AdditionalKeywords &Keywords,
900                                  const FormatToken *FormatTok) {
901   return FormatTok->Tok.isLiteral() ||
902          FormatTok->isOneOf(tok::kw_true, tok::kw_false) ||
903          mustBeJSIdent(Keywords, FormatTok);
904 }
905 
906 // isJSDeclOrStmt returns true if |FormatTok| starts a declaration or statement
907 // when encountered after a value (see mustBeJSIdentOrValue).
908 static bool isJSDeclOrStmt(const AdditionalKeywords &Keywords,
909                            const FormatToken *FormatTok) {
910   return FormatTok->isOneOf(
911       tok::kw_return, Keywords.kw_yield,
912       // conditionals
913       tok::kw_if, tok::kw_else,
914       // loops
915       tok::kw_for, tok::kw_while, tok::kw_do, tok::kw_continue, tok::kw_break,
916       // switch/case
917       tok::kw_switch, tok::kw_case,
918       // exceptions
919       tok::kw_throw, tok::kw_try, tok::kw_catch, Keywords.kw_finally,
920       // declaration
921       tok::kw_const, tok::kw_class, Keywords.kw_var, Keywords.kw_let,
922       Keywords.kw_async, Keywords.kw_function,
923       // import/export
924       Keywords.kw_import, tok::kw_export);
925 }
926 
927 // readTokenWithJavaScriptASI reads the next token and terminates the current
928 // line if JavaScript Automatic Semicolon Insertion must
929 // happen between the current token and the next token.
930 //
931 // This method is conservative - it cannot cover all edge cases of JavaScript,
932 // but only aims to correctly handle certain well known cases. It *must not*
933 // return true in speculative cases.
934 void UnwrappedLineParser::readTokenWithJavaScriptASI() {
935   FormatToken *Previous = FormatTok;
936   readToken();
937   FormatToken *Next = FormatTok;
938 
939   bool IsOnSameLine =
940       CommentsBeforeNextToken.empty()
941           ? Next->NewlinesBefore == 0
942           : CommentsBeforeNextToken.front()->NewlinesBefore == 0;
943   if (IsOnSameLine)
944     return;
945 
946   bool PreviousMustBeValue = mustBeJSIdentOrValue(Keywords, Previous);
947   bool PreviousStartsTemplateExpr =
948       Previous->is(TT_TemplateString) && Previous->TokenText.endswith("${");
949   if (PreviousMustBeValue || Previous->is(tok::r_paren)) {
950     // If the line contains an '@' sign, the previous token might be an
951     // annotation, which can precede another identifier/value.
952     bool HasAt = std::find_if(Line->Tokens.begin(), Line->Tokens.end(),
953                               [](UnwrappedLineNode &LineNode) {
954                                 return LineNode.Tok->is(tok::at);
955                               }) != Line->Tokens.end();
956     if (HasAt)
957       return;
958   }
959   if (Next->is(tok::exclaim) && PreviousMustBeValue)
960     return addUnwrappedLine();
961   bool NextMustBeValue = mustBeJSIdentOrValue(Keywords, Next);
962   bool NextEndsTemplateExpr =
963       Next->is(TT_TemplateString) && Next->TokenText.startswith("}");
964   if (NextMustBeValue && !NextEndsTemplateExpr && !PreviousStartsTemplateExpr &&
965       (PreviousMustBeValue ||
966        Previous->isOneOf(tok::r_square, tok::r_paren, tok::plusplus,
967                          tok::minusminus)))
968     return addUnwrappedLine();
969   if ((PreviousMustBeValue || Previous->is(tok::r_paren)) &&
970       isJSDeclOrStmt(Keywords, Next))
971     return addUnwrappedLine();
972 }
973 
974 void UnwrappedLineParser::parseStructuralElement() {
975   assert(!FormatTok->is(tok::l_brace));
976   if (Style.Language == FormatStyle::LK_TableGen &&
977       FormatTok->is(tok::pp_include)) {
978     nextToken();
979     if (FormatTok->is(tok::string_literal))
980       nextToken();
981     addUnwrappedLine();
982     return;
983   }
984   switch (FormatTok->Tok.getKind()) {
985   case tok::kw_asm:
986     nextToken();
987     if (FormatTok->is(tok::l_brace)) {
988       FormatTok->Type = TT_InlineASMBrace;
989       nextToken();
990       while (FormatTok && FormatTok->isNot(tok::eof)) {
991         if (FormatTok->is(tok::r_brace)) {
992           FormatTok->Type = TT_InlineASMBrace;
993           nextToken();
994           addUnwrappedLine();
995           break;
996         }
997         FormatTok->Finalized = true;
998         nextToken();
999       }
1000     }
1001     break;
1002   case tok::kw_namespace:
1003     parseNamespace();
1004     return;
1005   case tok::kw_public:
1006   case tok::kw_protected:
1007   case tok::kw_private:
1008     if (Style.Language == FormatStyle::LK_Java ||
1009         Style.Language == FormatStyle::LK_JavaScript || Style.isCSharp())
1010       nextToken();
1011     else
1012       parseAccessSpecifier();
1013     return;
1014   case tok::kw_if:
1015     parseIfThenElse();
1016     return;
1017   case tok::kw_for:
1018   case tok::kw_while:
1019     parseForOrWhileLoop();
1020     return;
1021   case tok::kw_do:
1022     parseDoWhile();
1023     return;
1024   case tok::kw_switch:
1025     if (Style.Language == FormatStyle::LK_JavaScript && Line->MustBeDeclaration)
1026       // 'switch: string' field declaration.
1027       break;
1028     parseSwitch();
1029     return;
1030   case tok::kw_default:
1031     if (Style.Language == FormatStyle::LK_JavaScript && Line->MustBeDeclaration)
1032       // 'default: string' field declaration.
1033       break;
1034     nextToken();
1035     if (FormatTok->is(tok::colon)) {
1036       parseLabel();
1037       return;
1038     }
1039     // e.g. "default void f() {}" in a Java interface.
1040     break;
1041   case tok::kw_case:
1042     if (Style.Language == FormatStyle::LK_JavaScript && Line->MustBeDeclaration)
1043       // 'case: string' field declaration.
1044       break;
1045     parseCaseLabel();
1046     return;
1047   case tok::kw_try:
1048   case tok::kw___try:
1049     parseTryCatch();
1050     return;
1051   case tok::kw_extern:
1052     nextToken();
1053     if (FormatTok->Tok.is(tok::string_literal)) {
1054       nextToken();
1055       if (FormatTok->Tok.is(tok::l_brace)) {
1056         if (Style.BraceWrapping.AfterExternBlock) {
1057           addUnwrappedLine();
1058           parseBlock(/*MustBeDeclaration=*/true);
1059         } else {
1060           parseBlock(/*MustBeDeclaration=*/true, /*AddLevel=*/false);
1061         }
1062         addUnwrappedLine();
1063         return;
1064       }
1065     }
1066     break;
1067   case tok::kw_export:
1068     if (Style.Language == FormatStyle::LK_JavaScript) {
1069       parseJavaScriptEs6ImportExport();
1070       return;
1071     }
1072     if (!Style.isCpp())
1073       break;
1074     // Handle C++ "(inline|export) namespace".
1075     LLVM_FALLTHROUGH;
1076   case tok::kw_inline:
1077     nextToken();
1078     if (FormatTok->Tok.is(tok::kw_namespace)) {
1079       parseNamespace();
1080       return;
1081     }
1082     break;
1083   case tok::identifier:
1084     if (FormatTok->is(TT_ForEachMacro)) {
1085       parseForOrWhileLoop();
1086       return;
1087     }
1088     if (FormatTok->is(TT_MacroBlockBegin)) {
1089       parseBlock(/*MustBeDeclaration=*/false, /*AddLevel=*/true,
1090                  /*MunchSemi=*/false);
1091       return;
1092     }
1093     if (FormatTok->is(Keywords.kw_import)) {
1094       if (Style.Language == FormatStyle::LK_JavaScript) {
1095         parseJavaScriptEs6ImportExport();
1096         return;
1097       }
1098       if (Style.Language == FormatStyle::LK_Proto) {
1099         nextToken();
1100         if (FormatTok->is(tok::kw_public))
1101           nextToken();
1102         if (!FormatTok->is(tok::string_literal))
1103           return;
1104         nextToken();
1105         if (FormatTok->is(tok::semi))
1106           nextToken();
1107         addUnwrappedLine();
1108         return;
1109       }
1110     }
1111     if (Style.isCpp() &&
1112         FormatTok->isOneOf(Keywords.kw_signals, Keywords.kw_qsignals,
1113                            Keywords.kw_slots, Keywords.kw_qslots)) {
1114       nextToken();
1115       if (FormatTok->is(tok::colon)) {
1116         nextToken();
1117         addUnwrappedLine();
1118         return;
1119       }
1120     }
1121     if (Style.isCpp() && FormatTok->is(TT_StatementMacro)) {
1122       parseStatementMacro();
1123       return;
1124     }
1125     if (Style.isCpp() && FormatTok->is(TT_NamespaceMacro)) {
1126       parseNamespace();
1127       return;
1128     }
1129     // In all other cases, parse the declaration.
1130     break;
1131   default:
1132     break;
1133   }
1134   do {
1135     const FormatToken *Previous = FormatTok->Previous;
1136     switch (FormatTok->Tok.getKind()) {
1137     case tok::at:
1138       nextToken();
1139       if (FormatTok->Tok.is(tok::l_brace)) {
1140         nextToken();
1141         parseBracedList();
1142         break;
1143       } else if (Style.Language == FormatStyle::LK_Java &&
1144                  FormatTok->is(Keywords.kw_interface)) {
1145         nextToken();
1146         break;
1147       }
1148       switch (FormatTok->Tok.getObjCKeywordID()) {
1149       case tok::objc_public:
1150       case tok::objc_protected:
1151       case tok::objc_package:
1152       case tok::objc_private:
1153         return parseAccessSpecifier();
1154       case tok::objc_interface:
1155       case tok::objc_implementation:
1156         return parseObjCInterfaceOrImplementation();
1157       case tok::objc_protocol:
1158         if (parseObjCProtocol())
1159           return;
1160         break;
1161       case tok::objc_end:
1162         return; // Handled by the caller.
1163       case tok::objc_optional:
1164       case tok::objc_required:
1165         nextToken();
1166         addUnwrappedLine();
1167         return;
1168       case tok::objc_autoreleasepool:
1169         nextToken();
1170         if (FormatTok->Tok.is(tok::l_brace)) {
1171           if (Style.BraceWrapping.AfterControlStatement)
1172             addUnwrappedLine();
1173           parseBlock(/*MustBeDeclaration=*/false);
1174         }
1175         addUnwrappedLine();
1176         return;
1177       case tok::objc_synchronized:
1178         nextToken();
1179         if (FormatTok->Tok.is(tok::l_paren))
1180           // Skip synchronization object
1181           parseParens();
1182         if (FormatTok->Tok.is(tok::l_brace)) {
1183           if (Style.BraceWrapping.AfterControlStatement)
1184             addUnwrappedLine();
1185           parseBlock(/*MustBeDeclaration=*/false);
1186         }
1187         addUnwrappedLine();
1188         return;
1189       case tok::objc_try:
1190         // This branch isn't strictly necessary (the kw_try case below would
1191         // do this too after the tok::at is parsed above).  But be explicit.
1192         parseTryCatch();
1193         return;
1194       default:
1195         break;
1196       }
1197       break;
1198     case tok::kw_enum:
1199       // Ignore if this is part of "template <enum ...".
1200       if (Previous && Previous->is(tok::less)) {
1201         nextToken();
1202         break;
1203       }
1204 
1205       // parseEnum falls through and does not yet add an unwrapped line as an
1206       // enum definition can start a structural element.
1207       if (!parseEnum())
1208         break;
1209       // This only applies for C++.
1210       if (!Style.isCpp()) {
1211         addUnwrappedLine();
1212         return;
1213       }
1214       break;
1215     case tok::kw_typedef:
1216       nextToken();
1217       if (FormatTok->isOneOf(Keywords.kw_NS_ENUM, Keywords.kw_NS_OPTIONS,
1218                              Keywords.kw_CF_ENUM, Keywords.kw_CF_OPTIONS,
1219                              Keywords.kw_CF_CLOSED_ENUM, Keywords.kw_NS_CLOSED_ENUM))
1220         parseEnum();
1221       break;
1222     case tok::kw_struct:
1223     case tok::kw_union:
1224     case tok::kw_class:
1225       // parseRecord falls through and does not yet add an unwrapped line as a
1226       // record declaration or definition can start a structural element.
1227       parseRecord();
1228       // This does not apply for Java, JavaScript and C#.
1229       if (Style.Language == FormatStyle::LK_Java ||
1230           Style.Language == FormatStyle::LK_JavaScript || Style.isCSharp()) {
1231         if (FormatTok->is(tok::semi))
1232           nextToken();
1233         addUnwrappedLine();
1234         return;
1235       }
1236       break;
1237     case tok::period:
1238       nextToken();
1239       // In Java, classes have an implicit static member "class".
1240       if (Style.Language == FormatStyle::LK_Java && FormatTok &&
1241           FormatTok->is(tok::kw_class))
1242         nextToken();
1243       if (Style.Language == FormatStyle::LK_JavaScript && FormatTok &&
1244           FormatTok->Tok.getIdentifierInfo())
1245         // JavaScript only has pseudo keywords, all keywords are allowed to
1246         // appear in "IdentifierName" positions. See http://es5.github.io/#x7.6
1247         nextToken();
1248       break;
1249     case tok::semi:
1250       nextToken();
1251       addUnwrappedLine();
1252       return;
1253     case tok::r_brace:
1254       addUnwrappedLine();
1255       return;
1256     case tok::l_paren:
1257       parseParens();
1258       break;
1259     case tok::kw_operator:
1260       nextToken();
1261       if (FormatTok->isBinaryOperator())
1262         nextToken();
1263       break;
1264     case tok::caret:
1265       nextToken();
1266       if (FormatTok->Tok.isAnyIdentifier() ||
1267           FormatTok->isSimpleTypeSpecifier())
1268         nextToken();
1269       if (FormatTok->is(tok::l_paren))
1270         parseParens();
1271       if (FormatTok->is(tok::l_brace))
1272         parseChildBlock();
1273       break;
1274     case tok::l_brace:
1275       if (!tryToParseBracedList()) {
1276         // A block outside of parentheses must be the last part of a
1277         // structural element.
1278         // FIXME: Figure out cases where this is not true, and add projections
1279         // for them (the one we know is missing are lambdas).
1280         if (Style.BraceWrapping.AfterFunction)
1281           addUnwrappedLine();
1282         FormatTok->Type = TT_FunctionLBrace;
1283         parseBlock(/*MustBeDeclaration=*/false);
1284         addUnwrappedLine();
1285         return;
1286       }
1287       // Otherwise this was a braced init list, and the structural
1288       // element continues.
1289       break;
1290     case tok::kw_try:
1291       // We arrive here when parsing function-try blocks.
1292       if (Style.BraceWrapping.AfterFunction)
1293         addUnwrappedLine();
1294       parseTryCatch();
1295       return;
1296     case tok::identifier: {
1297       if (FormatTok->is(TT_MacroBlockEnd)) {
1298         addUnwrappedLine();
1299         return;
1300       }
1301 
1302       // Function declarations (as opposed to function expressions) are parsed
1303       // on their own unwrapped line by continuing this loop. Function
1304       // expressions (functions that are not on their own line) must not create
1305       // a new unwrapped line, so they are special cased below.
1306       size_t TokenCount = Line->Tokens.size();
1307       if (Style.Language == FormatStyle::LK_JavaScript &&
1308           FormatTok->is(Keywords.kw_function) &&
1309           (TokenCount > 1 || (TokenCount == 1 && !Line->Tokens.front().Tok->is(
1310                                                      Keywords.kw_async)))) {
1311         tryToParseJSFunction();
1312         break;
1313       }
1314       if ((Style.Language == FormatStyle::LK_JavaScript ||
1315            Style.Language == FormatStyle::LK_Java) &&
1316           FormatTok->is(Keywords.kw_interface)) {
1317         if (Style.Language == FormatStyle::LK_JavaScript) {
1318           // In JavaScript/TypeScript, "interface" can be used as a standalone
1319           // identifier, e.g. in `var interface = 1;`. If "interface" is
1320           // followed by another identifier, it is very like to be an actual
1321           // interface declaration.
1322           unsigned StoredPosition = Tokens->getPosition();
1323           FormatToken *Next = Tokens->getNextToken();
1324           FormatTok = Tokens->setPosition(StoredPosition);
1325           if (Next && !mustBeJSIdent(Keywords, Next)) {
1326             nextToken();
1327             break;
1328           }
1329         }
1330         parseRecord();
1331         addUnwrappedLine();
1332         return;
1333       }
1334 
1335       if (Style.isCpp() && FormatTok->is(TT_StatementMacro)) {
1336         parseStatementMacro();
1337         return;
1338       }
1339 
1340       // See if the following token should start a new unwrapped line.
1341       StringRef Text = FormatTok->TokenText;
1342       nextToken();
1343 
1344       // JS doesn't have macros, and within classes colons indicate fields, not
1345       // labels.
1346       if (Style.Language == FormatStyle::LK_JavaScript)
1347         break;
1348 
1349       TokenCount = Line->Tokens.size();
1350       if (TokenCount == 1 ||
1351           (TokenCount == 2 && Line->Tokens.front().Tok->is(tok::comment))) {
1352         if (FormatTok->Tok.is(tok::colon) && !Line->MustBeDeclaration) {
1353           Line->Tokens.begin()->Tok->MustBreakBefore = true;
1354           parseLabel();
1355           return;
1356         }
1357         // Recognize function-like macro usages without trailing semicolon as
1358         // well as free-standing macros like Q_OBJECT.
1359         bool FunctionLike = FormatTok->is(tok::l_paren);
1360         if (FunctionLike)
1361           parseParens();
1362 
1363         bool FollowedByNewline =
1364             CommentsBeforeNextToken.empty()
1365                 ? FormatTok->NewlinesBefore > 0
1366                 : CommentsBeforeNextToken.front()->NewlinesBefore > 0;
1367 
1368         if (FollowedByNewline && (Text.size() >= 5 || FunctionLike) &&
1369             tokenCanStartNewLine(FormatTok->Tok) && Text == Text.upper()) {
1370           addUnwrappedLine();
1371           return;
1372         }
1373       }
1374       break;
1375     }
1376     case tok::equal:
1377       // Fat arrows (=>) have tok::TokenKind tok::equal but TokenType
1378       // TT_JsFatArrow. The always start an expression or a child block if
1379       // followed by a curly.
1380       if (FormatTok->is(TT_JsFatArrow)) {
1381         nextToken();
1382         if (FormatTok->is(tok::l_brace))
1383           parseChildBlock();
1384         break;
1385       }
1386 
1387       nextToken();
1388       if (FormatTok->Tok.is(tok::l_brace)) {
1389         nextToken();
1390         parseBracedList();
1391       } else if (Style.Language == FormatStyle::LK_Proto &&
1392                  FormatTok->Tok.is(tok::less)) {
1393         nextToken();
1394         parseBracedList(/*ContinueOnSemicolons=*/false,
1395                         /*ClosingBraceKind=*/tok::greater);
1396       }
1397       break;
1398     case tok::l_square:
1399       parseSquare();
1400       break;
1401     case tok::kw_new:
1402       parseNew();
1403       break;
1404     default:
1405       nextToken();
1406       break;
1407     }
1408   } while (!eof());
1409 }
1410 
1411 bool UnwrappedLineParser::tryToParseLambda() {
1412   if (!Style.isCpp()) {
1413     nextToken();
1414     return false;
1415   }
1416   assert(FormatTok->is(tok::l_square));
1417   FormatToken &LSquare = *FormatTok;
1418   if (!tryToParseLambdaIntroducer())
1419     return false;
1420 
1421   bool SeenArrow = false;
1422 
1423   while (FormatTok->isNot(tok::l_brace)) {
1424     if (FormatTok->isSimpleTypeSpecifier()) {
1425       nextToken();
1426       continue;
1427     }
1428     switch (FormatTok->Tok.getKind()) {
1429     case tok::l_brace:
1430       break;
1431     case tok::l_paren:
1432       parseParens();
1433       break;
1434     case tok::amp:
1435     case tok::star:
1436     case tok::kw_const:
1437     case tok::comma:
1438     case tok::less:
1439     case tok::greater:
1440     case tok::identifier:
1441     case tok::numeric_constant:
1442     case tok::coloncolon:
1443     case tok::kw_mutable:
1444     case tok::kw_noexcept:
1445       nextToken();
1446       break;
1447     // Specialization of a template with an integer parameter can contain
1448     // arithmetic, logical, comparison and ternary operators.
1449     //
1450     // FIXME: This also accepts sequences of operators that are not in the scope
1451     // of a template argument list.
1452     //
1453     // In a C++ lambda a template type can only occur after an arrow. We use
1454     // this as an heuristic to distinguish between Objective-C expressions
1455     // followed by an `a->b` expression, such as:
1456     // ([obj func:arg] + a->b)
1457     // Otherwise the code below would parse as a lambda.
1458     case tok::plus:
1459     case tok::minus:
1460     case tok::exclaim:
1461     case tok::tilde:
1462     case tok::slash:
1463     case tok::percent:
1464     case tok::lessless:
1465     case tok::pipe:
1466     case tok::pipepipe:
1467     case tok::ampamp:
1468     case tok::caret:
1469     case tok::equalequal:
1470     case tok::exclaimequal:
1471     case tok::greaterequal:
1472     case tok::lessequal:
1473     case tok::question:
1474     case tok::colon:
1475     case tok::kw_true:
1476     case tok::kw_false:
1477       if (SeenArrow) {
1478         nextToken();
1479         break;
1480       }
1481       return true;
1482     case tok::arrow:
1483       // This might or might not actually be a lambda arrow (this could be an
1484       // ObjC method invocation followed by a dereferencing arrow). We might
1485       // reset this back to TT_Unknown in TokenAnnotator.
1486       FormatTok->Type = TT_LambdaArrow;
1487       SeenArrow = true;
1488       nextToken();
1489       break;
1490     default:
1491       return true;
1492     }
1493   }
1494   FormatTok->Type = TT_LambdaLBrace;
1495   LSquare.Type = TT_LambdaLSquare;
1496   parseChildBlock();
1497   return true;
1498 }
1499 
1500 bool UnwrappedLineParser::tryToParseLambdaIntroducer() {
1501   const FormatToken *Previous = FormatTok->Previous;
1502   if (Previous &&
1503       (Previous->isOneOf(tok::identifier, tok::kw_operator, tok::kw_new,
1504                          tok::kw_delete, tok::l_square) ||
1505        FormatTok->isCppStructuredBinding(Style) || Previous->closesScope() ||
1506        Previous->isSimpleTypeSpecifier())) {
1507     nextToken();
1508     return false;
1509   }
1510   nextToken();
1511   if (FormatTok->is(tok::l_square)) {
1512     return false;
1513   }
1514   parseSquare(/*LambdaIntroducer=*/true);
1515   return true;
1516 }
1517 
1518 void UnwrappedLineParser::tryToParseJSFunction() {
1519   assert(FormatTok->is(Keywords.kw_function) ||
1520          FormatTok->startsSequence(Keywords.kw_async, Keywords.kw_function));
1521   if (FormatTok->is(Keywords.kw_async))
1522     nextToken();
1523   // Consume "function".
1524   nextToken();
1525 
1526   // Consume * (generator function). Treat it like C++'s overloaded operators.
1527   if (FormatTok->is(tok::star)) {
1528     FormatTok->Type = TT_OverloadedOperator;
1529     nextToken();
1530   }
1531 
1532   // Consume function name.
1533   if (FormatTok->is(tok::identifier))
1534     nextToken();
1535 
1536   if (FormatTok->isNot(tok::l_paren))
1537     return;
1538 
1539   // Parse formal parameter list.
1540   parseParens();
1541 
1542   if (FormatTok->is(tok::colon)) {
1543     // Parse a type definition.
1544     nextToken();
1545 
1546     // Eat the type declaration. For braced inline object types, balance braces,
1547     // otherwise just parse until finding an l_brace for the function body.
1548     if (FormatTok->is(tok::l_brace))
1549       tryToParseBracedList();
1550     else
1551       while (!FormatTok->isOneOf(tok::l_brace, tok::semi) && !eof())
1552         nextToken();
1553   }
1554 
1555   if (FormatTok->is(tok::semi))
1556     return;
1557 
1558   parseChildBlock();
1559 }
1560 
1561 bool UnwrappedLineParser::tryToParseBracedList() {
1562   if (FormatTok->BlockKind == BK_Unknown)
1563     calculateBraceTypes();
1564   assert(FormatTok->BlockKind != BK_Unknown);
1565   if (FormatTok->BlockKind == BK_Block)
1566     return false;
1567   nextToken();
1568   parseBracedList();
1569   return true;
1570 }
1571 
1572 bool UnwrappedLineParser::parseBracedList(bool ContinueOnSemicolons,
1573                                           tok::TokenKind ClosingBraceKind) {
1574   bool HasError = false;
1575 
1576   // FIXME: Once we have an expression parser in the UnwrappedLineParser,
1577   // replace this by using parseAssigmentExpression() inside.
1578   do {
1579     if (Style.Language == FormatStyle::LK_JavaScript) {
1580       if (FormatTok->is(Keywords.kw_function) ||
1581           FormatTok->startsSequence(Keywords.kw_async, Keywords.kw_function)) {
1582         tryToParseJSFunction();
1583         continue;
1584       }
1585       if (FormatTok->is(TT_JsFatArrow)) {
1586         nextToken();
1587         // Fat arrows can be followed by simple expressions or by child blocks
1588         // in curly braces.
1589         if (FormatTok->is(tok::l_brace)) {
1590           parseChildBlock();
1591           continue;
1592         }
1593       }
1594       if (FormatTok->is(tok::l_brace)) {
1595         // Could be a method inside of a braced list `{a() { return 1; }}`.
1596         if (tryToParseBracedList())
1597           continue;
1598         parseChildBlock();
1599       }
1600     }
1601     if (FormatTok->Tok.getKind() == ClosingBraceKind) {
1602       nextToken();
1603       return !HasError;
1604     }
1605     switch (FormatTok->Tok.getKind()) {
1606     case tok::caret:
1607       nextToken();
1608       if (FormatTok->is(tok::l_brace)) {
1609         parseChildBlock();
1610       }
1611       break;
1612     case tok::l_square:
1613       tryToParseLambda();
1614       break;
1615     case tok::l_paren:
1616       parseParens();
1617       // JavaScript can just have free standing methods and getters/setters in
1618       // object literals. Detect them by a "{" following ")".
1619       if (Style.Language == FormatStyle::LK_JavaScript) {
1620         if (FormatTok->is(tok::l_brace))
1621           parseChildBlock();
1622         break;
1623       }
1624       break;
1625     case tok::l_brace:
1626       // Assume there are no blocks inside a braced init list apart
1627       // from the ones we explicitly parse out (like lambdas).
1628       FormatTok->BlockKind = BK_BracedInit;
1629       nextToken();
1630       parseBracedList();
1631       break;
1632     case tok::less:
1633       if (Style.Language == FormatStyle::LK_Proto) {
1634         nextToken();
1635         parseBracedList(/*ContinueOnSemicolons=*/false,
1636                         /*ClosingBraceKind=*/tok::greater);
1637       } else {
1638         nextToken();
1639       }
1640       break;
1641     case tok::semi:
1642       // JavaScript (or more precisely TypeScript) can have semicolons in braced
1643       // lists (in so-called TypeMemberLists). Thus, the semicolon cannot be
1644       // used for error recovery if we have otherwise determined that this is
1645       // a braced list.
1646       if (Style.Language == FormatStyle::LK_JavaScript) {
1647         nextToken();
1648         break;
1649       }
1650       HasError = true;
1651       if (!ContinueOnSemicolons)
1652         return !HasError;
1653       nextToken();
1654       break;
1655     case tok::comma:
1656       nextToken();
1657       break;
1658     default:
1659       nextToken();
1660       break;
1661     }
1662   } while (!eof());
1663   return false;
1664 }
1665 
1666 void UnwrappedLineParser::parseParens() {
1667   assert(FormatTok->Tok.is(tok::l_paren) && "'(' expected.");
1668   nextToken();
1669   do {
1670     switch (FormatTok->Tok.getKind()) {
1671     case tok::l_paren:
1672       parseParens();
1673       if (Style.Language == FormatStyle::LK_Java && FormatTok->is(tok::l_brace))
1674         parseChildBlock();
1675       break;
1676     case tok::r_paren:
1677       nextToken();
1678       return;
1679     case tok::r_brace:
1680       // A "}" inside parenthesis is an error if there wasn't a matching "{".
1681       return;
1682     case tok::l_square:
1683       tryToParseLambda();
1684       break;
1685     case tok::l_brace:
1686       if (!tryToParseBracedList())
1687         parseChildBlock();
1688       break;
1689     case tok::at:
1690       nextToken();
1691       if (FormatTok->Tok.is(tok::l_brace)) {
1692         nextToken();
1693         parseBracedList();
1694       }
1695       break;
1696     case tok::kw_class:
1697       if (Style.Language == FormatStyle::LK_JavaScript)
1698         parseRecord(/*ParseAsExpr=*/true);
1699       else
1700         nextToken();
1701       break;
1702     case tok::identifier:
1703       if (Style.Language == FormatStyle::LK_JavaScript &&
1704           (FormatTok->is(Keywords.kw_function) ||
1705            FormatTok->startsSequence(Keywords.kw_async, Keywords.kw_function)))
1706         tryToParseJSFunction();
1707       else
1708         nextToken();
1709       break;
1710     default:
1711       nextToken();
1712       break;
1713     }
1714   } while (!eof());
1715 }
1716 
1717 void UnwrappedLineParser::parseSquare(bool LambdaIntroducer) {
1718   if (!LambdaIntroducer) {
1719     assert(FormatTok->Tok.is(tok::l_square) && "'[' expected.");
1720     if (tryToParseLambda())
1721       return;
1722   }
1723   do {
1724     switch (FormatTok->Tok.getKind()) {
1725     case tok::l_paren:
1726       parseParens();
1727       break;
1728     case tok::r_square:
1729       nextToken();
1730       return;
1731     case tok::r_brace:
1732       // A "}" inside parenthesis is an error if there wasn't a matching "{".
1733       return;
1734     case tok::l_square:
1735       parseSquare();
1736       break;
1737     case tok::l_brace: {
1738       if (!tryToParseBracedList())
1739         parseChildBlock();
1740       break;
1741     }
1742     case tok::at:
1743       nextToken();
1744       if (FormatTok->Tok.is(tok::l_brace)) {
1745         nextToken();
1746         parseBracedList();
1747       }
1748       break;
1749     default:
1750       nextToken();
1751       break;
1752     }
1753   } while (!eof());
1754 }
1755 
1756 void UnwrappedLineParser::parseIfThenElse() {
1757   assert(FormatTok->Tok.is(tok::kw_if) && "'if' expected");
1758   nextToken();
1759   if (FormatTok->Tok.isOneOf(tok::kw_constexpr, tok::identifier))
1760     nextToken();
1761   if (FormatTok->Tok.is(tok::l_paren))
1762     parseParens();
1763   bool NeedsUnwrappedLine = false;
1764   if (FormatTok->Tok.is(tok::l_brace)) {
1765     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1766     parseBlock(/*MustBeDeclaration=*/false);
1767     if (Style.BraceWrapping.BeforeElse)
1768       addUnwrappedLine();
1769     else
1770       NeedsUnwrappedLine = true;
1771   } else {
1772     addUnwrappedLine();
1773     ++Line->Level;
1774     parseStructuralElement();
1775     --Line->Level;
1776   }
1777   if (FormatTok->Tok.is(tok::kw_else)) {
1778     nextToken();
1779     if (FormatTok->Tok.is(tok::l_brace)) {
1780       CompoundStatementIndenter Indenter(this, Style, Line->Level);
1781       parseBlock(/*MustBeDeclaration=*/false);
1782       addUnwrappedLine();
1783     } else if (FormatTok->Tok.is(tok::kw_if)) {
1784       parseIfThenElse();
1785     } else {
1786       addUnwrappedLine();
1787       ++Line->Level;
1788       parseStructuralElement();
1789       if (FormatTok->is(tok::eof))
1790         addUnwrappedLine();
1791       --Line->Level;
1792     }
1793   } else if (NeedsUnwrappedLine) {
1794     addUnwrappedLine();
1795   }
1796 }
1797 
1798 void UnwrappedLineParser::parseTryCatch() {
1799   assert(FormatTok->isOneOf(tok::kw_try, tok::kw___try) && "'try' expected");
1800   nextToken();
1801   bool NeedsUnwrappedLine = false;
1802   if (FormatTok->is(tok::colon)) {
1803     // We are in a function try block, what comes is an initializer list.
1804     nextToken();
1805     while (FormatTok->is(tok::identifier)) {
1806       nextToken();
1807       if (FormatTok->is(tok::l_paren))
1808         parseParens();
1809       if (FormatTok->is(tok::comma))
1810         nextToken();
1811     }
1812   }
1813   // Parse try with resource.
1814   if (Style.Language == FormatStyle::LK_Java && FormatTok->is(tok::l_paren)) {
1815     parseParens();
1816   }
1817   if (FormatTok->is(tok::l_brace)) {
1818     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1819     parseBlock(/*MustBeDeclaration=*/false);
1820     if (Style.BraceWrapping.BeforeCatch) {
1821       addUnwrappedLine();
1822     } else {
1823       NeedsUnwrappedLine = true;
1824     }
1825   } else if (!FormatTok->is(tok::kw_catch)) {
1826     // The C++ standard requires a compound-statement after a try.
1827     // If there's none, we try to assume there's a structuralElement
1828     // and try to continue.
1829     addUnwrappedLine();
1830     ++Line->Level;
1831     parseStructuralElement();
1832     --Line->Level;
1833   }
1834   while (1) {
1835     if (FormatTok->is(tok::at))
1836       nextToken();
1837     if (!(FormatTok->isOneOf(tok::kw_catch, Keywords.kw___except,
1838                              tok::kw___finally) ||
1839           ((Style.Language == FormatStyle::LK_Java ||
1840             Style.Language == FormatStyle::LK_JavaScript) &&
1841            FormatTok->is(Keywords.kw_finally)) ||
1842           (FormatTok->Tok.isObjCAtKeyword(tok::objc_catch) ||
1843            FormatTok->Tok.isObjCAtKeyword(tok::objc_finally))))
1844       break;
1845     nextToken();
1846     while (FormatTok->isNot(tok::l_brace)) {
1847       if (FormatTok->is(tok::l_paren)) {
1848         parseParens();
1849         continue;
1850       }
1851       if (FormatTok->isOneOf(tok::semi, tok::r_brace, tok::eof))
1852         return;
1853       nextToken();
1854     }
1855     NeedsUnwrappedLine = false;
1856     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1857     parseBlock(/*MustBeDeclaration=*/false);
1858     if (Style.BraceWrapping.BeforeCatch)
1859       addUnwrappedLine();
1860     else
1861       NeedsUnwrappedLine = true;
1862   }
1863   if (NeedsUnwrappedLine)
1864     addUnwrappedLine();
1865 }
1866 
1867 void UnwrappedLineParser::parseNamespace() {
1868   assert(FormatTok->isOneOf(tok::kw_namespace, TT_NamespaceMacro) &&
1869          "'namespace' expected");
1870 
1871   const FormatToken &InitialToken = *FormatTok;
1872   nextToken();
1873   if (InitialToken.is(TT_NamespaceMacro)) {
1874     parseParens();
1875   } else {
1876     while (FormatTok->isOneOf(tok::identifier, tok::coloncolon, tok::kw_inline,
1877                               tok::l_square)) {
1878       if (FormatTok->is(tok::l_square))
1879         parseSquare();
1880       else
1881         nextToken();
1882     }
1883   }
1884   if (FormatTok->Tok.is(tok::l_brace)) {
1885     if (ShouldBreakBeforeBrace(Style, InitialToken))
1886       addUnwrappedLine();
1887 
1888     bool AddLevel = Style.NamespaceIndentation == FormatStyle::NI_All ||
1889                     (Style.NamespaceIndentation == FormatStyle::NI_Inner &&
1890                      DeclarationScopeStack.size() > 1);
1891     parseBlock(/*MustBeDeclaration=*/true, AddLevel);
1892     // Munch the semicolon after a namespace. This is more common than one would
1893     // think. Puttin the semicolon into its own line is very ugly.
1894     if (FormatTok->Tok.is(tok::semi))
1895       nextToken();
1896     addUnwrappedLine();
1897   }
1898   // FIXME: Add error handling.
1899 }
1900 
1901 void UnwrappedLineParser::parseNew() {
1902   assert(FormatTok->is(tok::kw_new) && "'new' expected");
1903   nextToken();
1904   if (Style.Language != FormatStyle::LK_Java)
1905     return;
1906 
1907   // In Java, we can parse everything up to the parens, which aren't optional.
1908   do {
1909     // There should not be a ;, { or } before the new's open paren.
1910     if (FormatTok->isOneOf(tok::semi, tok::l_brace, tok::r_brace))
1911       return;
1912 
1913     // Consume the parens.
1914     if (FormatTok->is(tok::l_paren)) {
1915       parseParens();
1916 
1917       // If there is a class body of an anonymous class, consume that as child.
1918       if (FormatTok->is(tok::l_brace))
1919         parseChildBlock();
1920       return;
1921     }
1922     nextToken();
1923   } while (!eof());
1924 }
1925 
1926 void UnwrappedLineParser::parseForOrWhileLoop() {
1927   assert(FormatTok->isOneOf(tok::kw_for, tok::kw_while, TT_ForEachMacro) &&
1928          "'for', 'while' or foreach macro expected");
1929   nextToken();
1930   // JS' for await ( ...
1931   if (Style.Language == FormatStyle::LK_JavaScript &&
1932       FormatTok->is(Keywords.kw_await))
1933     nextToken();
1934   if (FormatTok->Tok.is(tok::l_paren))
1935     parseParens();
1936   if (FormatTok->Tok.is(tok::l_brace)) {
1937     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1938     parseBlock(/*MustBeDeclaration=*/false);
1939     addUnwrappedLine();
1940   } else {
1941     addUnwrappedLine();
1942     ++Line->Level;
1943     parseStructuralElement();
1944     --Line->Level;
1945   }
1946 }
1947 
1948 void UnwrappedLineParser::parseDoWhile() {
1949   assert(FormatTok->Tok.is(tok::kw_do) && "'do' expected");
1950   nextToken();
1951   if (FormatTok->Tok.is(tok::l_brace)) {
1952     CompoundStatementIndenter Indenter(this, Style, Line->Level);
1953     parseBlock(/*MustBeDeclaration=*/false);
1954     if (Style.BraceWrapping.IndentBraces)
1955       addUnwrappedLine();
1956   } else {
1957     addUnwrappedLine();
1958     ++Line->Level;
1959     parseStructuralElement();
1960     --Line->Level;
1961   }
1962 
1963   // FIXME: Add error handling.
1964   if (!FormatTok->Tok.is(tok::kw_while)) {
1965     addUnwrappedLine();
1966     return;
1967   }
1968 
1969   nextToken();
1970   parseStructuralElement();
1971 }
1972 
1973 void UnwrappedLineParser::parseLabel() {
1974   nextToken();
1975   unsigned OldLineLevel = Line->Level;
1976   if (Line->Level > 1 || (!Line->InPPDirective && Line->Level > 0))
1977     --Line->Level;
1978   if (CommentsBeforeNextToken.empty() && FormatTok->Tok.is(tok::l_brace)) {
1979     CompoundStatementIndenter Indenter(this, Line->Level,
1980                                        Style.BraceWrapping.AfterCaseLabel,
1981                                        Style.BraceWrapping.IndentBraces);
1982     parseBlock(/*MustBeDeclaration=*/false);
1983     if (FormatTok->Tok.is(tok::kw_break)) {
1984       if (Style.BraceWrapping.AfterControlStatement)
1985         addUnwrappedLine();
1986       parseStructuralElement();
1987     }
1988     addUnwrappedLine();
1989   } else {
1990     if (FormatTok->is(tok::semi))
1991       nextToken();
1992     addUnwrappedLine();
1993   }
1994   Line->Level = OldLineLevel;
1995   if (FormatTok->isNot(tok::l_brace)) {
1996     parseStructuralElement();
1997     addUnwrappedLine();
1998   }
1999 }
2000 
2001 void UnwrappedLineParser::parseCaseLabel() {
2002   assert(FormatTok->Tok.is(tok::kw_case) && "'case' expected");
2003   // FIXME: fix handling of complex expressions here.
2004   do {
2005     nextToken();
2006   } while (!eof() && !FormatTok->Tok.is(tok::colon));
2007   parseLabel();
2008 }
2009 
2010 void UnwrappedLineParser::parseSwitch() {
2011   assert(FormatTok->Tok.is(tok::kw_switch) && "'switch' expected");
2012   nextToken();
2013   if (FormatTok->Tok.is(tok::l_paren))
2014     parseParens();
2015   if (FormatTok->Tok.is(tok::l_brace)) {
2016     CompoundStatementIndenter Indenter(this, Style, Line->Level);
2017     parseBlock(/*MustBeDeclaration=*/false);
2018     addUnwrappedLine();
2019   } else {
2020     addUnwrappedLine();
2021     ++Line->Level;
2022     parseStructuralElement();
2023     --Line->Level;
2024   }
2025 }
2026 
2027 void UnwrappedLineParser::parseAccessSpecifier() {
2028   nextToken();
2029   // Understand Qt's slots.
2030   if (FormatTok->isOneOf(Keywords.kw_slots, Keywords.kw_qslots))
2031     nextToken();
2032   // Otherwise, we don't know what it is, and we'd better keep the next token.
2033   if (FormatTok->Tok.is(tok::colon))
2034     nextToken();
2035   addUnwrappedLine();
2036 }
2037 
2038 bool UnwrappedLineParser::parseEnum() {
2039   // Won't be 'enum' for NS_ENUMs.
2040   if (FormatTok->Tok.is(tok::kw_enum))
2041     nextToken();
2042 
2043   // In TypeScript, "enum" can also be used as property name, e.g. in interface
2044   // declarations. An "enum" keyword followed by a colon would be a syntax
2045   // error and thus assume it is just an identifier.
2046   if (Style.Language == FormatStyle::LK_JavaScript &&
2047       FormatTok->isOneOf(tok::colon, tok::question))
2048     return false;
2049 
2050   // In protobuf, "enum" can be used as a field name.
2051   if (Style.Language == FormatStyle::LK_Proto && FormatTok->is(tok::equal))
2052     return false;
2053 
2054   // Eat up enum class ...
2055   if (FormatTok->Tok.is(tok::kw_class) || FormatTok->Tok.is(tok::kw_struct))
2056     nextToken();
2057 
2058   while (FormatTok->Tok.getIdentifierInfo() ||
2059          FormatTok->isOneOf(tok::colon, tok::coloncolon, tok::less,
2060                             tok::greater, tok::comma, tok::question)) {
2061     nextToken();
2062     // We can have macros or attributes in between 'enum' and the enum name.
2063     if (FormatTok->is(tok::l_paren))
2064       parseParens();
2065     if (FormatTok->is(tok::identifier)) {
2066       nextToken();
2067       // If there are two identifiers in a row, this is likely an elaborate
2068       // return type. In Java, this can be "implements", etc.
2069       if (Style.isCpp() && FormatTok->is(tok::identifier))
2070         return false;
2071     }
2072   }
2073 
2074   // Just a declaration or something is wrong.
2075   if (FormatTok->isNot(tok::l_brace))
2076     return true;
2077   FormatTok->BlockKind = BK_Block;
2078 
2079   if (Style.Language == FormatStyle::LK_Java) {
2080     // Java enums are different.
2081     parseJavaEnumBody();
2082     return true;
2083   }
2084   if (Style.Language == FormatStyle::LK_Proto) {
2085     parseBlock(/*MustBeDeclaration=*/true);
2086     return true;
2087   }
2088 
2089   // Parse enum body.
2090   nextToken();
2091   bool HasError = !parseBracedList(/*ContinueOnSemicolons=*/true);
2092   if (HasError) {
2093     if (FormatTok->is(tok::semi))
2094       nextToken();
2095     addUnwrappedLine();
2096   }
2097   return true;
2098 
2099   // There is no addUnwrappedLine() here so that we fall through to parsing a
2100   // structural element afterwards. Thus, in "enum A {} n, m;",
2101   // "} n, m;" will end up in one unwrapped line.
2102 }
2103 
2104 void UnwrappedLineParser::parseJavaEnumBody() {
2105   // Determine whether the enum is simple, i.e. does not have a semicolon or
2106   // constants with class bodies. Simple enums can be formatted like braced
2107   // lists, contracted to a single line, etc.
2108   unsigned StoredPosition = Tokens->getPosition();
2109   bool IsSimple = true;
2110   FormatToken *Tok = Tokens->getNextToken();
2111   while (Tok) {
2112     if (Tok->is(tok::r_brace))
2113       break;
2114     if (Tok->isOneOf(tok::l_brace, tok::semi)) {
2115       IsSimple = false;
2116       break;
2117     }
2118     // FIXME: This will also mark enums with braces in the arguments to enum
2119     // constants as "not simple". This is probably fine in practice, though.
2120     Tok = Tokens->getNextToken();
2121   }
2122   FormatTok = Tokens->setPosition(StoredPosition);
2123 
2124   if (IsSimple) {
2125     nextToken();
2126     parseBracedList();
2127     addUnwrappedLine();
2128     return;
2129   }
2130 
2131   // Parse the body of a more complex enum.
2132   // First add a line for everything up to the "{".
2133   nextToken();
2134   addUnwrappedLine();
2135   ++Line->Level;
2136 
2137   // Parse the enum constants.
2138   while (FormatTok) {
2139     if (FormatTok->is(tok::l_brace)) {
2140       // Parse the constant's class body.
2141       parseBlock(/*MustBeDeclaration=*/true, /*AddLevel=*/true,
2142                  /*MunchSemi=*/false);
2143     } else if (FormatTok->is(tok::l_paren)) {
2144       parseParens();
2145     } else if (FormatTok->is(tok::comma)) {
2146       nextToken();
2147       addUnwrappedLine();
2148     } else if (FormatTok->is(tok::semi)) {
2149       nextToken();
2150       addUnwrappedLine();
2151       break;
2152     } else if (FormatTok->is(tok::r_brace)) {
2153       addUnwrappedLine();
2154       break;
2155     } else {
2156       nextToken();
2157     }
2158   }
2159 
2160   // Parse the class body after the enum's ";" if any.
2161   parseLevel(/*HasOpeningBrace=*/true);
2162   nextToken();
2163   --Line->Level;
2164   addUnwrappedLine();
2165 }
2166 
2167 void UnwrappedLineParser::parseRecord(bool ParseAsExpr) {
2168   const FormatToken &InitialToken = *FormatTok;
2169   nextToken();
2170 
2171   // The actual identifier can be a nested name specifier, and in macros
2172   // it is often token-pasted.
2173   while (FormatTok->isOneOf(tok::identifier, tok::coloncolon, tok::hashhash,
2174                             tok::kw___attribute, tok::kw___declspec,
2175                             tok::kw_alignas) ||
2176          ((Style.Language == FormatStyle::LK_Java ||
2177            Style.Language == FormatStyle::LK_JavaScript) &&
2178           FormatTok->isOneOf(tok::period, tok::comma))) {
2179     if (Style.Language == FormatStyle::LK_JavaScript &&
2180         FormatTok->isOneOf(Keywords.kw_extends, Keywords.kw_implements)) {
2181       // JavaScript/TypeScript supports inline object types in
2182       // extends/implements positions:
2183       //     class Foo implements {bar: number} { }
2184       nextToken();
2185       if (FormatTok->is(tok::l_brace)) {
2186         tryToParseBracedList();
2187         continue;
2188       }
2189     }
2190     bool IsNonMacroIdentifier =
2191         FormatTok->is(tok::identifier) &&
2192         FormatTok->TokenText != FormatTok->TokenText.upper();
2193     nextToken();
2194     // We can have macros or attributes in between 'class' and the class name.
2195     if (!IsNonMacroIdentifier && FormatTok->Tok.is(tok::l_paren))
2196       parseParens();
2197   }
2198 
2199   // Note that parsing away template declarations here leads to incorrectly
2200   // accepting function declarations as record declarations.
2201   // In general, we cannot solve this problem. Consider:
2202   // class A<int> B() {}
2203   // which can be a function definition or a class definition when B() is a
2204   // macro. If we find enough real-world cases where this is a problem, we
2205   // can parse for the 'template' keyword in the beginning of the statement,
2206   // and thus rule out the record production in case there is no template
2207   // (this would still leave us with an ambiguity between template function
2208   // and class declarations).
2209   if (FormatTok->isOneOf(tok::colon, tok::less)) {
2210     while (!eof()) {
2211       if (FormatTok->is(tok::l_brace)) {
2212         calculateBraceTypes(/*ExpectClassBody=*/true);
2213         if (!tryToParseBracedList())
2214           break;
2215       }
2216       if (FormatTok->Tok.is(tok::semi))
2217         return;
2218       nextToken();
2219     }
2220   }
2221   if (FormatTok->Tok.is(tok::l_brace)) {
2222     if (ParseAsExpr) {
2223       parseChildBlock();
2224     } else {
2225       if (ShouldBreakBeforeBrace(Style, InitialToken))
2226         addUnwrappedLine();
2227 
2228       parseBlock(/*MustBeDeclaration=*/true, /*AddLevel=*/true,
2229                  /*MunchSemi=*/false);
2230     }
2231   }
2232   // There is no addUnwrappedLine() here so that we fall through to parsing a
2233   // structural element afterwards. Thus, in "class A {} n, m;",
2234   // "} n, m;" will end up in one unwrapped line.
2235 }
2236 
2237 void UnwrappedLineParser::parseObjCMethod() {
2238   assert(FormatTok->Tok.isOneOf(tok::l_paren, tok::identifier) &&
2239          "'(' or identifier expected.");
2240   do {
2241     if (FormatTok->Tok.is(tok::semi)) {
2242       nextToken();
2243       addUnwrappedLine();
2244       return;
2245     } else if (FormatTok->Tok.is(tok::l_brace)) {
2246       if (Style.BraceWrapping.AfterFunction)
2247         addUnwrappedLine();
2248       parseBlock(/*MustBeDeclaration=*/false);
2249       addUnwrappedLine();
2250       return;
2251     } else {
2252       nextToken();
2253     }
2254   } while (!eof());
2255 }
2256 
2257 void UnwrappedLineParser::parseObjCProtocolList() {
2258   assert(FormatTok->Tok.is(tok::less) && "'<' expected.");
2259   do {
2260     nextToken();
2261     // Early exit in case someone forgot a close angle.
2262     if (FormatTok->isOneOf(tok::semi, tok::l_brace) ||
2263         FormatTok->Tok.isObjCAtKeyword(tok::objc_end))
2264       return;
2265   } while (!eof() && FormatTok->Tok.isNot(tok::greater));
2266   nextToken(); // Skip '>'.
2267 }
2268 
2269 void UnwrappedLineParser::parseObjCUntilAtEnd() {
2270   do {
2271     if (FormatTok->Tok.isObjCAtKeyword(tok::objc_end)) {
2272       nextToken();
2273       addUnwrappedLine();
2274       break;
2275     }
2276     if (FormatTok->is(tok::l_brace)) {
2277       parseBlock(/*MustBeDeclaration=*/false);
2278       // In ObjC interfaces, nothing should be following the "}".
2279       addUnwrappedLine();
2280     } else if (FormatTok->is(tok::r_brace)) {
2281       // Ignore stray "}". parseStructuralElement doesn't consume them.
2282       nextToken();
2283       addUnwrappedLine();
2284     } else if (FormatTok->isOneOf(tok::minus, tok::plus)) {
2285       nextToken();
2286       parseObjCMethod();
2287     } else {
2288       parseStructuralElement();
2289     }
2290   } while (!eof());
2291 }
2292 
2293 void UnwrappedLineParser::parseObjCInterfaceOrImplementation() {
2294   assert(FormatTok->Tok.getObjCKeywordID() == tok::objc_interface ||
2295          FormatTok->Tok.getObjCKeywordID() == tok::objc_implementation);
2296   nextToken();
2297   nextToken(); // interface name
2298 
2299   // @interface can be followed by a lightweight generic
2300   // specialization list, then either a base class or a category.
2301   if (FormatTok->Tok.is(tok::less)) {
2302     // Unlike protocol lists, generic parameterizations support
2303     // nested angles:
2304     //
2305     // @interface Foo<ValueType : id <NSCopying, NSSecureCoding>> :
2306     //     NSObject <NSCopying, NSSecureCoding>
2307     //
2308     // so we need to count how many open angles we have left.
2309     unsigned NumOpenAngles = 1;
2310     do {
2311       nextToken();
2312       // Early exit in case someone forgot a close angle.
2313       if (FormatTok->isOneOf(tok::semi, tok::l_brace) ||
2314           FormatTok->Tok.isObjCAtKeyword(tok::objc_end))
2315         break;
2316       if (FormatTok->Tok.is(tok::less))
2317         ++NumOpenAngles;
2318       else if (FormatTok->Tok.is(tok::greater)) {
2319         assert(NumOpenAngles > 0 && "'>' makes NumOpenAngles negative");
2320         --NumOpenAngles;
2321       }
2322     } while (!eof() && NumOpenAngles != 0);
2323     nextToken(); // Skip '>'.
2324   }
2325   if (FormatTok->Tok.is(tok::colon)) {
2326     nextToken();
2327     nextToken(); // base class name
2328   } else if (FormatTok->Tok.is(tok::l_paren))
2329     // Skip category, if present.
2330     parseParens();
2331 
2332   if (FormatTok->Tok.is(tok::less))
2333     parseObjCProtocolList();
2334 
2335   if (FormatTok->Tok.is(tok::l_brace)) {
2336     if (Style.BraceWrapping.AfterObjCDeclaration)
2337       addUnwrappedLine();
2338     parseBlock(/*MustBeDeclaration=*/true);
2339   }
2340 
2341   // With instance variables, this puts '}' on its own line.  Without instance
2342   // variables, this ends the @interface line.
2343   addUnwrappedLine();
2344 
2345   parseObjCUntilAtEnd();
2346 }
2347 
2348 // Returns true for the declaration/definition form of @protocol,
2349 // false for the expression form.
2350 bool UnwrappedLineParser::parseObjCProtocol() {
2351   assert(FormatTok->Tok.getObjCKeywordID() == tok::objc_protocol);
2352   nextToken();
2353 
2354   if (FormatTok->is(tok::l_paren))
2355     // The expression form of @protocol, e.g. "Protocol* p = @protocol(foo);".
2356     return false;
2357 
2358   // The definition/declaration form,
2359   // @protocol Foo
2360   // - (int)someMethod;
2361   // @end
2362 
2363   nextToken(); // protocol name
2364 
2365   if (FormatTok->Tok.is(tok::less))
2366     parseObjCProtocolList();
2367 
2368   // Check for protocol declaration.
2369   if (FormatTok->Tok.is(tok::semi)) {
2370     nextToken();
2371     addUnwrappedLine();
2372     return true;
2373   }
2374 
2375   addUnwrappedLine();
2376   parseObjCUntilAtEnd();
2377   return true;
2378 }
2379 
2380 void UnwrappedLineParser::parseJavaScriptEs6ImportExport() {
2381   bool IsImport = FormatTok->is(Keywords.kw_import);
2382   assert(IsImport || FormatTok->is(tok::kw_export));
2383   nextToken();
2384 
2385   // Consume the "default" in "export default class/function".
2386   if (FormatTok->is(tok::kw_default))
2387     nextToken();
2388 
2389   // Consume "async function", "function" and "default function", so that these
2390   // get parsed as free-standing JS functions, i.e. do not require a trailing
2391   // semicolon.
2392   if (FormatTok->is(Keywords.kw_async))
2393     nextToken();
2394   if (FormatTok->is(Keywords.kw_function)) {
2395     nextToken();
2396     return;
2397   }
2398 
2399   // For imports, `export *`, `export {...}`, consume the rest of the line up
2400   // to the terminating `;`. For everything else, just return and continue
2401   // parsing the structural element, i.e. the declaration or expression for
2402   // `export default`.
2403   if (!IsImport && !FormatTok->isOneOf(tok::l_brace, tok::star) &&
2404       !FormatTok->isStringLiteral())
2405     return;
2406 
2407   while (!eof()) {
2408     if (FormatTok->is(tok::semi))
2409       return;
2410     if (Line->Tokens.empty()) {
2411       // Common issue: Automatic Semicolon Insertion wrapped the line, so the
2412       // import statement should terminate.
2413       return;
2414     }
2415     if (FormatTok->is(tok::l_brace)) {
2416       FormatTok->BlockKind = BK_Block;
2417       nextToken();
2418       parseBracedList();
2419     } else {
2420       nextToken();
2421     }
2422   }
2423 }
2424 
2425 void UnwrappedLineParser::parseStatementMacro() {
2426   nextToken();
2427   if (FormatTok->is(tok::l_paren))
2428     parseParens();
2429   if (FormatTok->is(tok::semi))
2430     nextToken();
2431   addUnwrappedLine();
2432 }
2433 
2434 LLVM_ATTRIBUTE_UNUSED static void printDebugInfo(const UnwrappedLine &Line,
2435                                                  StringRef Prefix = "") {
2436   llvm::dbgs() << Prefix << "Line(" << Line.Level
2437                << ", FSC=" << Line.FirstStartColumn << ")"
2438                << (Line.InPPDirective ? " MACRO" : "") << ": ";
2439   for (std::list<UnwrappedLineNode>::const_iterator I = Line.Tokens.begin(),
2440                                                     E = Line.Tokens.end();
2441        I != E; ++I) {
2442     llvm::dbgs() << I->Tok->Tok.getName() << "["
2443                  << "T=" << I->Tok->Type << ", OC=" << I->Tok->OriginalColumn
2444                  << "] ";
2445   }
2446   for (std::list<UnwrappedLineNode>::const_iterator I = Line.Tokens.begin(),
2447                                                     E = Line.Tokens.end();
2448        I != E; ++I) {
2449     const UnwrappedLineNode &Node = *I;
2450     for (SmallVectorImpl<UnwrappedLine>::const_iterator
2451              I = Node.Children.begin(),
2452              E = Node.Children.end();
2453          I != E; ++I) {
2454       printDebugInfo(*I, "\nChild: ");
2455     }
2456   }
2457   llvm::dbgs() << "\n";
2458 }
2459 
2460 void UnwrappedLineParser::addUnwrappedLine() {
2461   if (Line->Tokens.empty())
2462     return;
2463   LLVM_DEBUG({
2464     if (CurrentLines == &Lines)
2465       printDebugInfo(*Line);
2466   });
2467   CurrentLines->push_back(std::move(*Line));
2468   Line->Tokens.clear();
2469   Line->MatchingOpeningBlockLineIndex = UnwrappedLine::kInvalidIndex;
2470   Line->FirstStartColumn = 0;
2471   if (CurrentLines == &Lines && !PreprocessorDirectives.empty()) {
2472     CurrentLines->append(
2473         std::make_move_iterator(PreprocessorDirectives.begin()),
2474         std::make_move_iterator(PreprocessorDirectives.end()));
2475     PreprocessorDirectives.clear();
2476   }
2477   // Disconnect the current token from the last token on the previous line.
2478   FormatTok->Previous = nullptr;
2479 }
2480 
2481 bool UnwrappedLineParser::eof() const { return FormatTok->Tok.is(tok::eof); }
2482 
2483 bool UnwrappedLineParser::isOnNewLine(const FormatToken &FormatTok) {
2484   return (Line->InPPDirective || FormatTok.HasUnescapedNewline) &&
2485          FormatTok.NewlinesBefore > 0;
2486 }
2487 
2488 // Checks if \p FormatTok is a line comment that continues the line comment
2489 // section on \p Line.
2490 static bool continuesLineCommentSection(const FormatToken &FormatTok,
2491                                         const UnwrappedLine &Line,
2492                                         llvm::Regex &CommentPragmasRegex) {
2493   if (Line.Tokens.empty())
2494     return false;
2495 
2496   StringRef IndentContent = FormatTok.TokenText;
2497   if (FormatTok.TokenText.startswith("//") ||
2498       FormatTok.TokenText.startswith("/*"))
2499     IndentContent = FormatTok.TokenText.substr(2);
2500   if (CommentPragmasRegex.match(IndentContent))
2501     return false;
2502 
2503   // If Line starts with a line comment, then FormatTok continues the comment
2504   // section if its original column is greater or equal to the original start
2505   // column of the line.
2506   //
2507   // Define the min column token of a line as follows: if a line ends in '{' or
2508   // contains a '{' followed by a line comment, then the min column token is
2509   // that '{'. Otherwise, the min column token of the line is the first token of
2510   // the line.
2511   //
2512   // If Line starts with a token other than a line comment, then FormatTok
2513   // continues the comment section if its original column is greater than the
2514   // original start column of the min column token of the line.
2515   //
2516   // For example, the second line comment continues the first in these cases:
2517   //
2518   // // first line
2519   // // second line
2520   //
2521   // and:
2522   //
2523   // // first line
2524   //  // second line
2525   //
2526   // and:
2527   //
2528   // int i; // first line
2529   //  // second line
2530   //
2531   // and:
2532   //
2533   // do { // first line
2534   //      // second line
2535   //   int i;
2536   // } while (true);
2537   //
2538   // and:
2539   //
2540   // enum {
2541   //   a, // first line
2542   //    // second line
2543   //   b
2544   // };
2545   //
2546   // The second line comment doesn't continue the first in these cases:
2547   //
2548   //   // first line
2549   //  // second line
2550   //
2551   // and:
2552   //
2553   // int i; // first line
2554   // // second line
2555   //
2556   // and:
2557   //
2558   // do { // first line
2559   //   // second line
2560   //   int i;
2561   // } while (true);
2562   //
2563   // and:
2564   //
2565   // enum {
2566   //   a, // first line
2567   //   // second line
2568   // };
2569   const FormatToken *MinColumnToken = Line.Tokens.front().Tok;
2570 
2571   // Scan for '{//'. If found, use the column of '{' as a min column for line
2572   // comment section continuation.
2573   const FormatToken *PreviousToken = nullptr;
2574   for (const UnwrappedLineNode &Node : Line.Tokens) {
2575     if (PreviousToken && PreviousToken->is(tok::l_brace) &&
2576         isLineComment(*Node.Tok)) {
2577       MinColumnToken = PreviousToken;
2578       break;
2579     }
2580     PreviousToken = Node.Tok;
2581 
2582     // Grab the last newline preceding a token in this unwrapped line.
2583     if (Node.Tok->NewlinesBefore > 0) {
2584       MinColumnToken = Node.Tok;
2585     }
2586   }
2587   if (PreviousToken && PreviousToken->is(tok::l_brace)) {
2588     MinColumnToken = PreviousToken;
2589   }
2590 
2591   return continuesLineComment(FormatTok, /*Previous=*/Line.Tokens.back().Tok,
2592                               MinColumnToken);
2593 }
2594 
2595 void UnwrappedLineParser::flushComments(bool NewlineBeforeNext) {
2596   bool JustComments = Line->Tokens.empty();
2597   for (SmallVectorImpl<FormatToken *>::const_iterator
2598            I = CommentsBeforeNextToken.begin(),
2599            E = CommentsBeforeNextToken.end();
2600        I != E; ++I) {
2601     // Line comments that belong to the same line comment section are put on the
2602     // same line since later we might want to reflow content between them.
2603     // Additional fine-grained breaking of line comment sections is controlled
2604     // by the class BreakableLineCommentSection in case it is desirable to keep
2605     // several line comment sections in the same unwrapped line.
2606     //
2607     // FIXME: Consider putting separate line comment sections as children to the
2608     // unwrapped line instead.
2609     (*I)->ContinuesLineCommentSection =
2610         continuesLineCommentSection(**I, *Line, CommentPragmasRegex);
2611     if (isOnNewLine(**I) && JustComments && !(*I)->ContinuesLineCommentSection)
2612       addUnwrappedLine();
2613     pushToken(*I);
2614   }
2615   if (NewlineBeforeNext && JustComments)
2616     addUnwrappedLine();
2617   CommentsBeforeNextToken.clear();
2618 }
2619 
2620 void UnwrappedLineParser::nextToken(int LevelDifference) {
2621   if (eof())
2622     return;
2623   flushComments(isOnNewLine(*FormatTok));
2624   pushToken(FormatTok);
2625   FormatToken *Previous = FormatTok;
2626   if (Style.Language != FormatStyle::LK_JavaScript)
2627     readToken(LevelDifference);
2628   else
2629     readTokenWithJavaScriptASI();
2630   FormatTok->Previous = Previous;
2631 }
2632 
2633 void UnwrappedLineParser::distributeComments(
2634     const SmallVectorImpl<FormatToken *> &Comments,
2635     const FormatToken *NextTok) {
2636   // Whether or not a line comment token continues a line is controlled by
2637   // the method continuesLineCommentSection, with the following caveat:
2638   //
2639   // Define a trail of Comments to be a nonempty proper postfix of Comments such
2640   // that each comment line from the trail is aligned with the next token, if
2641   // the next token exists. If a trail exists, the beginning of the maximal
2642   // trail is marked as a start of a new comment section.
2643   //
2644   // For example in this code:
2645   //
2646   // int a; // line about a
2647   //   // line 1 about b
2648   //   // line 2 about b
2649   //   int b;
2650   //
2651   // the two lines about b form a maximal trail, so there are two sections, the
2652   // first one consisting of the single comment "// line about a" and the
2653   // second one consisting of the next two comments.
2654   if (Comments.empty())
2655     return;
2656   bool ShouldPushCommentsInCurrentLine = true;
2657   bool HasTrailAlignedWithNextToken = false;
2658   unsigned StartOfTrailAlignedWithNextToken = 0;
2659   if (NextTok) {
2660     // We are skipping the first element intentionally.
2661     for (unsigned i = Comments.size() - 1; i > 0; --i) {
2662       if (Comments[i]->OriginalColumn == NextTok->OriginalColumn) {
2663         HasTrailAlignedWithNextToken = true;
2664         StartOfTrailAlignedWithNextToken = i;
2665       }
2666     }
2667   }
2668   for (unsigned i = 0, e = Comments.size(); i < e; ++i) {
2669     FormatToken *FormatTok = Comments[i];
2670     if (HasTrailAlignedWithNextToken && i == StartOfTrailAlignedWithNextToken) {
2671       FormatTok->ContinuesLineCommentSection = false;
2672     } else {
2673       FormatTok->ContinuesLineCommentSection =
2674           continuesLineCommentSection(*FormatTok, *Line, CommentPragmasRegex);
2675     }
2676     if (!FormatTok->ContinuesLineCommentSection &&
2677         (isOnNewLine(*FormatTok) || FormatTok->IsFirst)) {
2678       ShouldPushCommentsInCurrentLine = false;
2679     }
2680     if (ShouldPushCommentsInCurrentLine) {
2681       pushToken(FormatTok);
2682     } else {
2683       CommentsBeforeNextToken.push_back(FormatTok);
2684     }
2685   }
2686 }
2687 
2688 void UnwrappedLineParser::readToken(int LevelDifference) {
2689   SmallVector<FormatToken *, 1> Comments;
2690   do {
2691     FormatTok = Tokens->getNextToken();
2692     assert(FormatTok);
2693     while (!Line->InPPDirective && FormatTok->Tok.is(tok::hash) &&
2694            (FormatTok->HasUnescapedNewline || FormatTok->IsFirst)) {
2695       distributeComments(Comments, FormatTok);
2696       Comments.clear();
2697       // If there is an unfinished unwrapped line, we flush the preprocessor
2698       // directives only after that unwrapped line was finished later.
2699       bool SwitchToPreprocessorLines = !Line->Tokens.empty();
2700       ScopedLineState BlockState(*this, SwitchToPreprocessorLines);
2701       assert((LevelDifference >= 0 ||
2702               static_cast<unsigned>(-LevelDifference) <= Line->Level) &&
2703              "LevelDifference makes Line->Level negative");
2704       Line->Level += LevelDifference;
2705       // Comments stored before the preprocessor directive need to be output
2706       // before the preprocessor directive, at the same level as the
2707       // preprocessor directive, as we consider them to apply to the directive.
2708       if (Style.IndentPPDirectives == FormatStyle::PPDIS_BeforeHash &&
2709           PPBranchLevel > 0)
2710         Line->Level += PPBranchLevel;
2711       flushComments(isOnNewLine(*FormatTok));
2712       parsePPDirective();
2713     }
2714     while (FormatTok->Type == TT_ConflictStart ||
2715            FormatTok->Type == TT_ConflictEnd ||
2716            FormatTok->Type == TT_ConflictAlternative) {
2717       if (FormatTok->Type == TT_ConflictStart) {
2718         conditionalCompilationStart(/*Unreachable=*/false);
2719       } else if (FormatTok->Type == TT_ConflictAlternative) {
2720         conditionalCompilationAlternative();
2721       } else if (FormatTok->Type == TT_ConflictEnd) {
2722         conditionalCompilationEnd();
2723       }
2724       FormatTok = Tokens->getNextToken();
2725       FormatTok->MustBreakBefore = true;
2726     }
2727 
2728     if (!PPStack.empty() && (PPStack.back().Kind == PP_Unreachable) &&
2729         !Line->InPPDirective) {
2730       continue;
2731     }
2732 
2733     if (!FormatTok->Tok.is(tok::comment)) {
2734       distributeComments(Comments, FormatTok);
2735       Comments.clear();
2736       return;
2737     }
2738 
2739     Comments.push_back(FormatTok);
2740   } while (!eof());
2741 
2742   distributeComments(Comments, nullptr);
2743   Comments.clear();
2744 }
2745 
2746 void UnwrappedLineParser::pushToken(FormatToken *Tok) {
2747   Line->Tokens.push_back(UnwrappedLineNode(Tok));
2748   if (MustBreakBeforeNextToken) {
2749     Line->Tokens.back().Tok->MustBreakBefore = true;
2750     MustBreakBeforeNextToken = false;
2751   }
2752 }
2753 
2754 } // end namespace format
2755 } // end namespace clang
2756