1 //===--- ContinuationIndenter.cpp - Format C++ code -----------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 ///
10 /// \file
11 /// This file implements the continuation indenter.
12 ///
13 //===----------------------------------------------------------------------===//
14 
15 #include "ContinuationIndenter.h"
16 #include "BreakableToken.h"
17 #include "FormatInternal.h"
18 #include "WhitespaceManager.h"
19 #include "clang/Basic/OperatorPrecedence.h"
20 #include "clang/Basic/SourceManager.h"
21 #include "clang/Format/Format.h"
22 #include "llvm/Support/Debug.h"
23 
24 #define DEBUG_TYPE "format-indenter"
25 
26 namespace clang {
27 namespace format {
28 
29 // Returns true if a TT_SelectorName should be indented when wrapped,
30 // false otherwise.
31 static bool shouldIndentWrappedSelectorName(const FormatStyle &Style,
32                                             LineType LineType) {
33   return Style.IndentWrappedFunctionNames || LineType == LT_ObjCMethodDecl;
34 }
35 
36 // Returns the length of everything up to the first possible line break after
37 // the ), ], } or > matching \c Tok.
38 static unsigned getLengthToMatchingParen(const FormatToken &Tok,
39                                          const std::vector<ParenState> &Stack) {
40   // Normally whether or not a break before T is possible is calculated and
41   // stored in T.CanBreakBefore. Braces, array initializers and text proto
42   // messages like `key: < ... >` are an exception: a break is possible
43   // before a closing brace R if a break was inserted after the corresponding
44   // opening brace. The information about whether or not a break is needed
45   // before a closing brace R is stored in the ParenState field
46   // S.BreakBeforeClosingBrace where S is the state that R closes.
47   //
48   // In order to decide whether there can be a break before encountered right
49   // braces, this implementation iterates over the sequence of tokens and over
50   // the paren stack in lockstep, keeping track of the stack level which visited
51   // right braces correspond to in MatchingStackIndex.
52   //
53   // For example, consider:
54   // L. <- line number
55   // 1. {
56   // 2. {1},
57   // 3. {2},
58   // 4. {{3}}}
59   //     ^ where we call this method with this token.
60   // The paren stack at this point contains 3 brace levels:
61   //  0. { at line 1, BreakBeforeClosingBrace: true
62   //  1. first { at line 4, BreakBeforeClosingBrace: false
63   //  2. second { at line 4, BreakBeforeClosingBrace: false,
64   //  where there might be fake parens levels in-between these levels.
65   // The algorithm will start at the first } on line 4, which is the matching
66   // brace of the initial left brace and at level 2 of the stack. Then,
67   // examining BreakBeforeClosingBrace: false at level 2, it will continue to
68   // the second } on line 4, and will traverse the stack downwards until it
69   // finds the matching { on level 1. Then, examining BreakBeforeClosingBrace:
70   // false at level 1, it will continue to the third } on line 4 and will
71   // traverse the stack downwards until it finds the matching { on level 0.
72   // Then, examining BreakBeforeClosingBrace: true at level 0, the algorithm
73   // will stop and will use the second } on line 4 to determine the length to
74   // return, as in this example the range will include the tokens: {3}}
75   //
76   // The algorithm will only traverse the stack if it encounters braces, array
77   // initializer squares or text proto angle brackets.
78   if (!Tok.MatchingParen)
79     return 0;
80   FormatToken *End = Tok.MatchingParen;
81   // Maintains a stack level corresponding to the current End token.
82   int MatchingStackIndex = Stack.size() - 1;
83   // Traverses the stack downwards, looking for the level to which LBrace
84   // corresponds. Returns either a pointer to the matching level or nullptr if
85   // LParen is not found in the initial portion of the stack up to
86   // MatchingStackIndex.
87   auto FindParenState = [&](const FormatToken *LBrace) -> const ParenState * {
88     while (MatchingStackIndex >= 0 && Stack[MatchingStackIndex].Tok != LBrace)
89       --MatchingStackIndex;
90     return MatchingStackIndex >= 0 ? &Stack[MatchingStackIndex] : nullptr;
91   };
92   for (; End->Next; End = End->Next) {
93     if (End->Next->CanBreakBefore || !End->Next->closesScope())
94       break;
95     if (End->Next->MatchingParen->isOneOf(tok::l_brace,
96                                           TT_ArrayInitializerLSquare,
97                                           tok::less)) {
98       const ParenState *State = FindParenState(End->Next->MatchingParen);
99       if (State && State->BreakBeforeClosingBrace)
100         break;
101     }
102   }
103   return End->TotalLength - Tok.TotalLength + 1;
104 }
105 
106 static unsigned getLengthToNextOperator(const FormatToken &Tok) {
107   if (!Tok.NextOperator)
108     return 0;
109   return Tok.NextOperator->TotalLength - Tok.TotalLength;
110 }
111 
112 // Returns \c true if \c Tok is the "." or "->" of a call and starts the next
113 // segment of a builder type call.
114 static bool startsSegmentOfBuilderTypeCall(const FormatToken &Tok) {
115   return Tok.isMemberAccess() && Tok.Previous && Tok.Previous->closesScope();
116 }
117 
118 // Returns \c true if \c Current starts a new parameter.
119 static bool startsNextParameter(const FormatToken &Current,
120                                 const FormatStyle &Style) {
121   const FormatToken &Previous = *Current.Previous;
122   if (Current.is(TT_CtorInitializerComma) &&
123       Style.BreakConstructorInitializers == FormatStyle::BCIS_BeforeComma)
124     return true;
125   if (Style.Language == FormatStyle::LK_Proto && Current.is(TT_SelectorName))
126     return true;
127   return Previous.is(tok::comma) && !Current.isTrailingComment() &&
128          ((Previous.isNot(TT_CtorInitializerComma) ||
129            Style.BreakConstructorInitializers !=
130                FormatStyle::BCIS_BeforeComma) &&
131           (Previous.isNot(TT_InheritanceComma) ||
132            !Style.BreakBeforeInheritanceComma));
133 }
134 
135 static bool opensProtoMessageField(const FormatToken &LessTok,
136                                    const FormatStyle &Style) {
137   if (LessTok.isNot(tok::less))
138     return false;
139   return Style.Language == FormatStyle::LK_TextProto ||
140          (Style.Language == FormatStyle::LK_Proto &&
141           (LessTok.NestingLevel > 0 ||
142            (LessTok.Previous && LessTok.Previous->is(tok::equal))));
143 }
144 
145 // Returns the delimiter of a raw string literal, or None if TokenText is not
146 // the text of a raw string literal. The delimiter could be the empty string.
147 // For example, the delimiter of R"deli(cont)deli" is deli.
148 static llvm::Optional<StringRef> getRawStringDelimiter(StringRef TokenText) {
149   if (TokenText.size() < 5 // The smallest raw string possible is 'R"()"'.
150       || !TokenText.startswith("R\"") || !TokenText.endswith("\""))
151     return None;
152 
153   // A raw string starts with 'R"<delimiter>(' and delimiter is ascii and has
154   // size at most 16 by the standard, so the first '(' must be among the first
155   // 19 bytes.
156   size_t LParenPos = TokenText.substr(0, 19).find_first_of('(');
157   if (LParenPos == StringRef::npos)
158     return None;
159   StringRef Delimiter = TokenText.substr(2, LParenPos - 2);
160 
161   // Check that the string ends in ')Delimiter"'.
162   size_t RParenPos = TokenText.size() - Delimiter.size() - 2;
163   if (TokenText[RParenPos] != ')')
164     return None;
165   if (!TokenText.substr(RParenPos + 1).startswith(Delimiter))
166     return None;
167   return Delimiter;
168 }
169 
170 // Returns the canonical delimiter for \p Language, or the empty string if no
171 // canonical delimiter is specified.
172 static StringRef
173 getCanonicalRawStringDelimiter(const FormatStyle &Style,
174                                FormatStyle::LanguageKind Language) {
175   for (const auto &Format : Style.RawStringFormats) {
176     if (Format.Language == Language)
177       return StringRef(Format.CanonicalDelimiter);
178   }
179   return "";
180 }
181 
182 RawStringFormatStyleManager::RawStringFormatStyleManager(
183     const FormatStyle &CodeStyle) {
184   for (const auto &RawStringFormat : CodeStyle.RawStringFormats) {
185     llvm::Optional<FormatStyle> LanguageStyle =
186         CodeStyle.GetLanguageStyle(RawStringFormat.Language);
187     if (!LanguageStyle) {
188       FormatStyle PredefinedStyle;
189       if (!getPredefinedStyle(RawStringFormat.BasedOnStyle,
190                               RawStringFormat.Language, &PredefinedStyle)) {
191         PredefinedStyle = getLLVMStyle();
192         PredefinedStyle.Language = RawStringFormat.Language;
193       }
194       LanguageStyle = PredefinedStyle;
195     }
196     LanguageStyle->ColumnLimit = CodeStyle.ColumnLimit;
197     for (StringRef Delimiter : RawStringFormat.Delimiters) {
198       DelimiterStyle.insert({Delimiter, *LanguageStyle});
199     }
200     for (StringRef EnclosingFunction : RawStringFormat.EnclosingFunctions) {
201       EnclosingFunctionStyle.insert({EnclosingFunction, *LanguageStyle});
202     }
203   }
204 }
205 
206 llvm::Optional<FormatStyle>
207 RawStringFormatStyleManager::getDelimiterStyle(StringRef Delimiter) const {
208   auto It = DelimiterStyle.find(Delimiter);
209   if (It == DelimiterStyle.end())
210     return None;
211   return It->second;
212 }
213 
214 llvm::Optional<FormatStyle>
215 RawStringFormatStyleManager::getEnclosingFunctionStyle(
216     StringRef EnclosingFunction) const {
217   auto It = EnclosingFunctionStyle.find(EnclosingFunction);
218   if (It == EnclosingFunctionStyle.end())
219     return None;
220   return It->second;
221 }
222 
223 ContinuationIndenter::ContinuationIndenter(const FormatStyle &Style,
224                                            const AdditionalKeywords &Keywords,
225                                            const SourceManager &SourceMgr,
226                                            WhitespaceManager &Whitespaces,
227                                            encoding::Encoding Encoding,
228                                            bool BinPackInconclusiveFunctions)
229     : Style(Style), Keywords(Keywords), SourceMgr(SourceMgr),
230       Whitespaces(Whitespaces), Encoding(Encoding),
231       BinPackInconclusiveFunctions(BinPackInconclusiveFunctions),
232       CommentPragmasRegex(Style.CommentPragmas), RawStringFormats(Style) {}
233 
234 LineState ContinuationIndenter::getInitialState(unsigned FirstIndent,
235                                                 unsigned FirstStartColumn,
236                                                 const AnnotatedLine *Line,
237                                                 bool DryRun) {
238   LineState State;
239   State.FirstIndent = FirstIndent;
240   if (FirstStartColumn && Line->First->NewlinesBefore == 0)
241     State.Column = FirstStartColumn;
242   else
243     State.Column = FirstIndent;
244   // With preprocessor directive indentation, the line starts on column 0
245   // since it's indented after the hash, but FirstIndent is set to the
246   // preprocessor indent.
247   if (Style.IndentPPDirectives == FormatStyle::PPDIS_AfterHash &&
248       (Line->Type == LT_PreprocessorDirective ||
249        Line->Type == LT_ImportStatement))
250     State.Column = 0;
251   State.Line = Line;
252   State.NextToken = Line->First;
253   State.Stack.push_back(ParenState(/*Tok=*/nullptr, FirstIndent, FirstIndent,
254                                    /*AvoidBinPacking=*/false,
255                                    /*NoLineBreak=*/false));
256   State.LineContainsContinuedForLoopSection = false;
257   State.NoContinuation = false;
258   State.StartOfStringLiteral = 0;
259   State.StartOfLineLevel = 0;
260   State.LowestLevelOnLine = 0;
261   State.IgnoreStackForComparison = false;
262 
263   if (Style.Language == FormatStyle::LK_TextProto) {
264     // We need this in order to deal with the bin packing of text fields at
265     // global scope.
266     State.Stack.back().AvoidBinPacking = true;
267     State.Stack.back().BreakBeforeParameter = true;
268     State.Stack.back().AlignColons = false;
269   }
270 
271   // The first token has already been indented and thus consumed.
272   moveStateToNextToken(State, DryRun, /*Newline=*/false);
273   return State;
274 }
275 
276 bool ContinuationIndenter::canBreak(const LineState &State) {
277   const FormatToken &Current = *State.NextToken;
278   const FormatToken &Previous = *Current.Previous;
279   assert(&Previous == Current.Previous);
280   if (!Current.CanBreakBefore && !(State.Stack.back().BreakBeforeClosingBrace &&
281                                    Current.closesBlockOrBlockTypeList(Style)))
282     return false;
283   // The opening "{" of a braced list has to be on the same line as the first
284   // element if it is nested in another braced init list or function call.
285   if (!Current.MustBreakBefore && Previous.is(tok::l_brace) &&
286       Previous.isNot(TT_DictLiteral) && Previous.BlockKind == BK_BracedInit &&
287       Previous.Previous &&
288       Previous.Previous->isOneOf(tok::l_brace, tok::l_paren, tok::comma))
289     return false;
290   // This prevents breaks like:
291   //   ...
292   //   SomeParameter, OtherParameter).DoSomething(
293   //   ...
294   // As they hide "DoSomething" and are generally bad for readability.
295   if (Previous.opensScope() && Previous.isNot(tok::l_brace) &&
296       State.LowestLevelOnLine < State.StartOfLineLevel &&
297       State.LowestLevelOnLine < Current.NestingLevel)
298     return false;
299   if (Current.isMemberAccess() && State.Stack.back().ContainsUnwrappedBuilder)
300     return false;
301 
302   // Don't create a 'hanging' indent if there are multiple blocks in a single
303   // statement.
304   if (Previous.is(tok::l_brace) && State.Stack.size() > 1 &&
305       State.Stack[State.Stack.size() - 2].NestedBlockInlined &&
306       State.Stack[State.Stack.size() - 2].HasMultipleNestedBlocks)
307     return false;
308 
309   // Don't break after very short return types (e.g. "void") as that is often
310   // unexpected.
311   if (Current.is(TT_FunctionDeclarationName) && State.Column < 6) {
312     if (Style.AlwaysBreakAfterReturnType == FormatStyle::RTBS_None)
313       return false;
314   }
315 
316   // If binary operators are moved to the next line (including commas for some
317   // styles of constructor initializers), that's always ok.
318   if (!Current.isOneOf(TT_BinaryOperator, tok::comma) &&
319       State.Stack.back().NoLineBreakInOperand)
320     return false;
321 
322   return !State.Stack.back().NoLineBreak;
323 }
324 
325 bool ContinuationIndenter::mustBreak(const LineState &State) {
326   const FormatToken &Current = *State.NextToken;
327   const FormatToken &Previous = *Current.Previous;
328   if (Current.MustBreakBefore || Current.is(TT_InlineASMColon))
329     return true;
330   if (State.Stack.back().BreakBeforeClosingBrace &&
331       Current.closesBlockOrBlockTypeList(Style))
332     return true;
333   if (Previous.is(tok::semi) && State.LineContainsContinuedForLoopSection)
334     return true;
335   if (Style.Language == FormatStyle::LK_ObjC &&
336       Current.ObjCSelectorNameParts > 1 &&
337       Current.startsSequence(TT_SelectorName, tok::colon, tok::caret)) {
338     return true;
339   }
340   if ((startsNextParameter(Current, Style) || Previous.is(tok::semi) ||
341        (Previous.is(TT_TemplateCloser) && Current.is(TT_StartOfName) &&
342         Style.isCpp() &&
343         // FIXME: This is a temporary workaround for the case where clang-format
344         // sets BreakBeforeParameter to avoid bin packing and this creates a
345         // completely unnecessary line break after a template type that isn't
346         // line-wrapped.
347         (Previous.NestingLevel == 1 || Style.BinPackParameters)) ||
348        (Style.BreakBeforeTernaryOperators && Current.is(TT_ConditionalExpr) &&
349         Previous.isNot(tok::question)) ||
350        (!Style.BreakBeforeTernaryOperators &&
351         Previous.is(TT_ConditionalExpr))) &&
352       State.Stack.back().BreakBeforeParameter && !Current.isTrailingComment() &&
353       !Current.isOneOf(tok::r_paren, tok::r_brace))
354     return true;
355   if (((Previous.is(TT_DictLiteral) && Previous.is(tok::l_brace)) ||
356        (Previous.is(TT_ArrayInitializerLSquare) &&
357         Previous.ParameterCount > 1) ||
358        opensProtoMessageField(Previous, Style)) &&
359       Style.ColumnLimit > 0 &&
360       getLengthToMatchingParen(Previous, State.Stack) + State.Column - 1 >
361           getColumnLimit(State))
362     return true;
363 
364   const FormatToken &BreakConstructorInitializersToken =
365       Style.BreakConstructorInitializers == FormatStyle::BCIS_AfterColon
366           ? Previous
367           : Current;
368   if (BreakConstructorInitializersToken.is(TT_CtorInitializerColon) &&
369       (State.Column + State.Line->Last->TotalLength - Previous.TotalLength >
370            getColumnLimit(State) ||
371        State.Stack.back().BreakBeforeParameter) &&
372       (Style.AllowShortFunctionsOnASingleLine != FormatStyle::SFS_All ||
373        Style.BreakConstructorInitializers != FormatStyle::BCIS_BeforeColon ||
374        Style.ColumnLimit != 0))
375     return true;
376 
377   if (Current.is(TT_ObjCMethodExpr) && !Previous.is(TT_SelectorName) &&
378       State.Line->startsWith(TT_ObjCMethodSpecifier))
379     return true;
380   if (Current.is(TT_SelectorName) && State.Stack.back().ObjCSelectorNameFound &&
381       State.Stack.back().BreakBeforeParameter)
382     return true;
383 
384   unsigned NewLineColumn = getNewLineColumn(State);
385   if (Current.isMemberAccess() && Style.ColumnLimit != 0 &&
386       State.Column + getLengthToNextOperator(Current) > Style.ColumnLimit &&
387       (State.Column > NewLineColumn ||
388        Current.NestingLevel < State.StartOfLineLevel))
389     return true;
390 
391   if (startsSegmentOfBuilderTypeCall(Current) &&
392       (State.Stack.back().CallContinuation != 0 ||
393        State.Stack.back().BreakBeforeParameter) &&
394       // JavaScript is treated different here as there is a frequent pattern:
395       //   SomeFunction(function() {
396       //     ...
397       //   }.bind(...));
398       // FIXME: We should find a more generic solution to this problem.
399       !(State.Column <= NewLineColumn &&
400         Style.Language == FormatStyle::LK_JavaScript))
401     return true;
402 
403   if (State.Column <= NewLineColumn)
404     return false;
405 
406   if (Style.AlwaysBreakBeforeMultilineStrings &&
407       (NewLineColumn == State.FirstIndent + Style.ContinuationIndentWidth ||
408        Previous.is(tok::comma) || Current.NestingLevel < 2) &&
409       !Previous.isOneOf(tok::kw_return, tok::lessless, tok::at) &&
410       !Previous.isOneOf(TT_InlineASMColon, TT_ConditionalExpr) &&
411       nextIsMultilineString(State))
412     return true;
413 
414   // Using CanBreakBefore here and below takes care of the decision whether the
415   // current style uses wrapping before or after operators for the given
416   // operator.
417   if (Previous.is(TT_BinaryOperator) && Current.CanBreakBefore) {
418     // If we need to break somewhere inside the LHS of a binary expression, we
419     // should also break after the operator. Otherwise, the formatting would
420     // hide the operator precedence, e.g. in:
421     //   if (aaaaaaaaaaaaaa ==
422     //           bbbbbbbbbbbbbb && c) {..
423     // For comparisons, we only apply this rule, if the LHS is a binary
424     // expression itself as otherwise, the line breaks seem superfluous.
425     // We need special cases for ">>" which we have split into two ">" while
426     // lexing in order to make template parsing easier.
427     bool IsComparison = (Previous.getPrecedence() == prec::Relational ||
428                          Previous.getPrecedence() == prec::Equality ||
429                          Previous.getPrecedence() == prec::Spaceship) &&
430                         Previous.Previous &&
431                         Previous.Previous->isNot(TT_BinaryOperator); // For >>.
432     bool LHSIsBinaryExpr =
433         Previous.Previous && Previous.Previous->EndsBinaryExpression;
434     if ((!IsComparison || LHSIsBinaryExpr) && !Current.isTrailingComment() &&
435         Previous.getPrecedence() != prec::Assignment &&
436         State.Stack.back().BreakBeforeParameter)
437       return true;
438   } else if (Current.is(TT_BinaryOperator) && Current.CanBreakBefore &&
439              State.Stack.back().BreakBeforeParameter) {
440     return true;
441   }
442 
443   // Same as above, but for the first "<<" operator.
444   if (Current.is(tok::lessless) && Current.isNot(TT_OverloadedOperator) &&
445       State.Stack.back().BreakBeforeParameter &&
446       State.Stack.back().FirstLessLess == 0)
447     return true;
448 
449   if (Current.NestingLevel == 0 && !Current.isTrailingComment()) {
450     // Always break after "template <...>" and leading annotations. This is only
451     // for cases where the entire line does not fit on a single line as a
452     // different LineFormatter would be used otherwise.
453     if (Previous.ClosesTemplateDeclaration)
454       return true;
455     if (Previous.is(TT_FunctionAnnotationRParen))
456       return true;
457     if (Previous.is(TT_LeadingJavaAnnotation) && Current.isNot(tok::l_paren) &&
458         Current.isNot(TT_LeadingJavaAnnotation))
459       return true;
460   }
461 
462   // If the return type spans multiple lines, wrap before the function name.
463   if ((Current.is(TT_FunctionDeclarationName) ||
464        (Current.is(tok::kw_operator) && !Previous.is(tok::coloncolon))) &&
465       !Previous.is(tok::kw_template) && State.Stack.back().BreakBeforeParameter)
466     return true;
467 
468   // The following could be precomputed as they do not depend on the state.
469   // However, as they should take effect only if the UnwrappedLine does not fit
470   // into the ColumnLimit, they are checked here in the ContinuationIndenter.
471   if (Style.ColumnLimit != 0 && Previous.BlockKind == BK_Block &&
472       Previous.is(tok::l_brace) && !Current.isOneOf(tok::r_brace, tok::comment))
473     return true;
474 
475   if (Current.is(tok::lessless) &&
476       ((Previous.is(tok::identifier) && Previous.TokenText == "endl") ||
477        (Previous.Tok.isLiteral() && (Previous.TokenText.endswith("\\n\"") ||
478                                      Previous.TokenText == "\'\\n\'"))))
479     return true;
480 
481   if (Previous.is(TT_BlockComment) && Previous.IsMultiline)
482     return true;
483 
484   if (State.NoContinuation)
485     return true;
486 
487   return false;
488 }
489 
490 unsigned ContinuationIndenter::addTokenToState(LineState &State, bool Newline,
491                                                bool DryRun,
492                                                unsigned ExtraSpaces) {
493   const FormatToken &Current = *State.NextToken;
494 
495   assert(!State.Stack.empty());
496   State.NoContinuation = false;
497 
498   if ((Current.is(TT_ImplicitStringLiteral) &&
499        (Current.Previous->Tok.getIdentifierInfo() == nullptr ||
500         Current.Previous->Tok.getIdentifierInfo()->getPPKeywordID() ==
501             tok::pp_not_keyword))) {
502     unsigned EndColumn =
503         SourceMgr.getSpellingColumnNumber(Current.WhitespaceRange.getEnd());
504     if (Current.LastNewlineOffset != 0) {
505       // If there is a newline within this token, the final column will solely
506       // determined by the current end column.
507       State.Column = EndColumn;
508     } else {
509       unsigned StartColumn =
510           SourceMgr.getSpellingColumnNumber(Current.WhitespaceRange.getBegin());
511       assert(EndColumn >= StartColumn);
512       State.Column += EndColumn - StartColumn;
513     }
514     moveStateToNextToken(State, DryRun, /*Newline=*/false);
515     return 0;
516   }
517 
518   unsigned Penalty = 0;
519   if (Newline)
520     Penalty = addTokenOnNewLine(State, DryRun);
521   else
522     addTokenOnCurrentLine(State, DryRun, ExtraSpaces);
523 
524   return moveStateToNextToken(State, DryRun, Newline) + Penalty;
525 }
526 
527 void ContinuationIndenter::addTokenOnCurrentLine(LineState &State, bool DryRun,
528                                                  unsigned ExtraSpaces) {
529   FormatToken &Current = *State.NextToken;
530   const FormatToken &Previous = *State.NextToken->Previous;
531   if (Current.is(tok::equal) &&
532       (State.Line->First->is(tok::kw_for) || Current.NestingLevel == 0) &&
533       State.Stack.back().VariablePos == 0) {
534     State.Stack.back().VariablePos = State.Column;
535     // Move over * and & if they are bound to the variable name.
536     const FormatToken *Tok = &Previous;
537     while (Tok && State.Stack.back().VariablePos >= Tok->ColumnWidth) {
538       State.Stack.back().VariablePos -= Tok->ColumnWidth;
539       if (Tok->SpacesRequiredBefore != 0)
540         break;
541       Tok = Tok->Previous;
542     }
543     if (Previous.PartOfMultiVariableDeclStmt)
544       State.Stack.back().LastSpace = State.Stack.back().VariablePos;
545   }
546 
547   unsigned Spaces = Current.SpacesRequiredBefore + ExtraSpaces;
548 
549   // Indent preprocessor directives after the hash if required.
550   int PPColumnCorrection = 0;
551   if (Style.IndentPPDirectives == FormatStyle::PPDIS_AfterHash &&
552       Previous.is(tok::hash) && State.FirstIndent > 0 &&
553       (State.Line->Type == LT_PreprocessorDirective ||
554        State.Line->Type == LT_ImportStatement)) {
555     Spaces += State.FirstIndent;
556 
557     // For preprocessor indent with tabs, State.Column will be 1 because of the
558     // hash. This causes second-level indents onward to have an extra space
559     // after the tabs. We avoid this misalignment by subtracting 1 from the
560     // column value passed to replaceWhitespace().
561     if (Style.UseTab != FormatStyle::UT_Never)
562       PPColumnCorrection = -1;
563   }
564 
565   if (!DryRun)
566     Whitespaces.replaceWhitespace(Current, /*Newlines=*/0, Spaces,
567                                   State.Column + Spaces + PPColumnCorrection);
568 
569   // If "BreakBeforeInheritanceComma" mode, don't break within the inheritance
570   // declaration unless there is multiple inheritance.
571   if (Style.BreakBeforeInheritanceComma && Current.is(TT_InheritanceColon))
572     State.Stack.back().NoLineBreak = true;
573 
574   if (Current.is(TT_SelectorName) &&
575       !State.Stack.back().ObjCSelectorNameFound) {
576     unsigned MinIndent =
577         std::max(State.FirstIndent + Style.ContinuationIndentWidth,
578                  State.Stack.back().Indent);
579     unsigned FirstColonPos = State.Column + Spaces + Current.ColumnWidth;
580     if (Current.LongestObjCSelectorName == 0)
581       State.Stack.back().AlignColons = false;
582     else if (MinIndent + Current.LongestObjCSelectorName > FirstColonPos)
583       State.Stack.back().ColonPos = MinIndent + Current.LongestObjCSelectorName;
584     else
585       State.Stack.back().ColonPos = FirstColonPos;
586   }
587 
588   // In "AlwaysBreak" mode, enforce wrapping directly after the parenthesis by
589   // disallowing any further line breaks if there is no line break after the
590   // opening parenthesis. Don't break if it doesn't conserve columns.
591   if (Style.AlignAfterOpenBracket == FormatStyle::BAS_AlwaysBreak &&
592       Previous.isOneOf(tok::l_paren, TT_TemplateOpener, tok::l_square) &&
593       State.Column > getNewLineColumn(State) &&
594       (!Previous.Previous || !Previous.Previous->isOneOf(
595                                  tok::kw_for, tok::kw_while, tok::kw_switch)) &&
596       // Don't do this for simple (no expressions) one-argument function calls
597       // as that feels like needlessly wasting whitespace, e.g.:
598       //
599       //   caaaaaaaaaaaall(
600       //       caaaaaaaaaaaall(
601       //           caaaaaaaaaaaall(
602       //               caaaaaaaaaaaaaaaaaaaaaaall(aaaaaaaaaaaaaa, aaaaaaaaa))));
603       Current.FakeLParens.size() > 0 &&
604       Current.FakeLParens.back() > prec::Unknown)
605     State.Stack.back().NoLineBreak = true;
606   if (Previous.is(TT_TemplateString) && Previous.opensScope())
607     State.Stack.back().NoLineBreak = true;
608 
609   if (Style.AlignAfterOpenBracket != FormatStyle::BAS_DontAlign &&
610       Previous.opensScope() && Previous.isNot(TT_ObjCMethodExpr) &&
611       (Current.isNot(TT_LineComment) || Previous.BlockKind == BK_BracedInit))
612     State.Stack.back().Indent = State.Column + Spaces;
613   if (State.Stack.back().AvoidBinPacking && startsNextParameter(Current, Style))
614     State.Stack.back().NoLineBreak = true;
615   if (startsSegmentOfBuilderTypeCall(Current) &&
616       State.Column > getNewLineColumn(State))
617     State.Stack.back().ContainsUnwrappedBuilder = true;
618 
619   if (Current.is(TT_LambdaArrow) && Style.Language == FormatStyle::LK_Java)
620     State.Stack.back().NoLineBreak = true;
621   if (Current.isMemberAccess() && Previous.is(tok::r_paren) &&
622       (Previous.MatchingParen &&
623        (Previous.TotalLength - Previous.MatchingParen->TotalLength > 10)))
624     // If there is a function call with long parameters, break before trailing
625     // calls. This prevents things like:
626     //   EXPECT_CALL(SomeLongParameter).Times(
627     //       2);
628     // We don't want to do this for short parameters as they can just be
629     // indexes.
630     State.Stack.back().NoLineBreak = true;
631 
632   // Don't allow the RHS of an operator to be split over multiple lines unless
633   // there is a line-break right after the operator.
634   // Exclude relational operators, as there, it is always more desirable to
635   // have the LHS 'left' of the RHS.
636   const FormatToken *P = Current.getPreviousNonComment();
637   if (!Current.is(tok::comment) && P &&
638       (P->isOneOf(TT_BinaryOperator, tok::comma) ||
639        (P->is(TT_ConditionalExpr) && P->is(tok::colon))) &&
640       !P->isOneOf(TT_OverloadedOperator, TT_CtorInitializerComma) &&
641       P->getPrecedence() != prec::Assignment &&
642       P->getPrecedence() != prec::Relational &&
643       P->getPrecedence() != prec::Spaceship) {
644     bool BreakBeforeOperator =
645         P->MustBreakBefore || P->is(tok::lessless) ||
646         (P->is(TT_BinaryOperator) &&
647          Style.BreakBeforeBinaryOperators != FormatStyle::BOS_None) ||
648         (P->is(TT_ConditionalExpr) && Style.BreakBeforeTernaryOperators);
649     // Don't do this if there are only two operands. In these cases, there is
650     // always a nice vertical separation between them and the extra line break
651     // does not help.
652     bool HasTwoOperands =
653         P->OperatorIndex == 0 && !P->NextOperator && !P->is(TT_ConditionalExpr);
654     if ((!BreakBeforeOperator && !(HasTwoOperands && Style.AlignOperands)) ||
655         (!State.Stack.back().LastOperatorWrapped && BreakBeforeOperator))
656       State.Stack.back().NoLineBreakInOperand = true;
657   }
658 
659   State.Column += Spaces;
660   if (Current.isNot(tok::comment) && Previous.is(tok::l_paren) &&
661       Previous.Previous &&
662       (Previous.Previous->isOneOf(tok::kw_if, tok::kw_for) ||
663        Previous.Previous->endsSequence(tok::kw_constexpr, tok::kw_if))) {
664     // Treat the condition inside an if as if it was a second function
665     // parameter, i.e. let nested calls have a continuation indent.
666     State.Stack.back().LastSpace = State.Column;
667     State.Stack.back().NestedBlockIndent = State.Column;
668   } else if (!Current.isOneOf(tok::comment, tok::caret) &&
669              ((Previous.is(tok::comma) &&
670                !Previous.is(TT_OverloadedOperator)) ||
671               (Previous.is(tok::colon) && Previous.is(TT_ObjCMethodExpr)))) {
672     State.Stack.back().LastSpace = State.Column;
673   } else if (Previous.is(TT_CtorInitializerColon) &&
674              Style.BreakConstructorInitializers ==
675                  FormatStyle::BCIS_AfterColon) {
676     State.Stack.back().Indent = State.Column;
677     State.Stack.back().LastSpace = State.Column;
678   } else if ((Previous.isOneOf(TT_BinaryOperator, TT_ConditionalExpr,
679                                TT_CtorInitializerColon)) &&
680              ((Previous.getPrecedence() != prec::Assignment &&
681                (Previous.isNot(tok::lessless) || Previous.OperatorIndex != 0 ||
682                 Previous.NextOperator)) ||
683               Current.StartsBinaryExpression)) {
684     // Indent relative to the RHS of the expression unless this is a simple
685     // assignment without binary expression on the RHS. Also indent relative to
686     // unary operators and the colons of constructor initializers.
687     State.Stack.back().LastSpace = State.Column;
688   } else if (Previous.is(TT_InheritanceColon)) {
689     State.Stack.back().Indent = State.Column;
690     State.Stack.back().LastSpace = State.Column;
691   } else if (Previous.opensScope()) {
692     // If a function has a trailing call, indent all parameters from the
693     // opening parenthesis. This avoids confusing indents like:
694     //   OuterFunction(InnerFunctionCall( // break
695     //       ParameterToInnerFunction))   // break
696     //       .SecondInnerFunctionCall();
697     bool HasTrailingCall = false;
698     if (Previous.MatchingParen) {
699       const FormatToken *Next = Previous.MatchingParen->getNextNonComment();
700       HasTrailingCall = Next && Next->isMemberAccess();
701     }
702     if (HasTrailingCall && State.Stack.size() > 1 &&
703         State.Stack[State.Stack.size() - 2].CallContinuation == 0)
704       State.Stack.back().LastSpace = State.Column;
705   }
706 }
707 
708 unsigned ContinuationIndenter::addTokenOnNewLine(LineState &State,
709                                                  bool DryRun) {
710   FormatToken &Current = *State.NextToken;
711   const FormatToken &Previous = *State.NextToken->Previous;
712 
713   // Extra penalty that needs to be added because of the way certain line
714   // breaks are chosen.
715   unsigned Penalty = 0;
716 
717   const FormatToken *PreviousNonComment = Current.getPreviousNonComment();
718   const FormatToken *NextNonComment = Previous.getNextNonComment();
719   if (!NextNonComment)
720     NextNonComment = &Current;
721   // The first line break on any NestingLevel causes an extra penalty in order
722   // prefer similar line breaks.
723   if (!State.Stack.back().ContainsLineBreak)
724     Penalty += 15;
725   State.Stack.back().ContainsLineBreak = true;
726 
727   Penalty += State.NextToken->SplitPenalty;
728 
729   // Breaking before the first "<<" is generally not desirable if the LHS is
730   // short. Also always add the penalty if the LHS is split over multiple lines
731   // to avoid unnecessary line breaks that just work around this penalty.
732   if (NextNonComment->is(tok::lessless) &&
733       State.Stack.back().FirstLessLess == 0 &&
734       (State.Column <= Style.ColumnLimit / 3 ||
735        State.Stack.back().BreakBeforeParameter))
736     Penalty += Style.PenaltyBreakFirstLessLess;
737 
738   State.Column = getNewLineColumn(State);
739 
740   // Indent nested blocks relative to this column, unless in a very specific
741   // JavaScript special case where:
742   //
743   //   var loooooong_name =
744   //       function() {
745   //     // code
746   //   }
747   //
748   // is common and should be formatted like a free-standing function. The same
749   // goes for wrapping before the lambda return type arrow.
750   if (!Current.is(TT_LambdaArrow) &&
751       (Style.Language != FormatStyle::LK_JavaScript ||
752        Current.NestingLevel != 0 || !PreviousNonComment ||
753        !PreviousNonComment->is(tok::equal) ||
754        !Current.isOneOf(Keywords.kw_async, Keywords.kw_function)))
755     State.Stack.back().NestedBlockIndent = State.Column;
756 
757   if (NextNonComment->isMemberAccess()) {
758     if (State.Stack.back().CallContinuation == 0)
759       State.Stack.back().CallContinuation = State.Column;
760   } else if (NextNonComment->is(TT_SelectorName)) {
761     if (!State.Stack.back().ObjCSelectorNameFound) {
762       if (NextNonComment->LongestObjCSelectorName == 0) {
763         State.Stack.back().AlignColons = false;
764       } else {
765         State.Stack.back().ColonPos =
766             (shouldIndentWrappedSelectorName(Style, State.Line->Type)
767                  ? std::max(State.Stack.back().Indent,
768                             State.FirstIndent + Style.ContinuationIndentWidth)
769                  : State.Stack.back().Indent) +
770             std::max(NextNonComment->LongestObjCSelectorName,
771                      NextNonComment->ColumnWidth);
772       }
773     } else if (State.Stack.back().AlignColons &&
774                State.Stack.back().ColonPos <= NextNonComment->ColumnWidth) {
775       State.Stack.back().ColonPos = State.Column + NextNonComment->ColumnWidth;
776     }
777   } else if (PreviousNonComment && PreviousNonComment->is(tok::colon) &&
778              PreviousNonComment->isOneOf(TT_ObjCMethodExpr, TT_DictLiteral)) {
779     // FIXME: This is hacky, find a better way. The problem is that in an ObjC
780     // method expression, the block should be aligned to the line starting it,
781     // e.g.:
782     //   [aaaaaaaaaaaaaaa aaaaaaaaa: \\ break for some reason
783     //                        ^(int *i) {
784     //                            // ...
785     //                        }];
786     // Thus, we set LastSpace of the next higher NestingLevel, to which we move
787     // when we consume all of the "}"'s FakeRParens at the "{".
788     if (State.Stack.size() > 1)
789       State.Stack[State.Stack.size() - 2].LastSpace =
790           std::max(State.Stack.back().LastSpace, State.Stack.back().Indent) +
791           Style.ContinuationIndentWidth;
792   }
793 
794   if ((PreviousNonComment &&
795        PreviousNonComment->isOneOf(tok::comma, tok::semi) &&
796        !State.Stack.back().AvoidBinPacking) ||
797       Previous.is(TT_BinaryOperator))
798     State.Stack.back().BreakBeforeParameter = false;
799   if (Previous.isOneOf(TT_TemplateCloser, TT_JavaAnnotation) &&
800       Current.NestingLevel == 0)
801     State.Stack.back().BreakBeforeParameter = false;
802   if (NextNonComment->is(tok::question) ||
803       (PreviousNonComment && PreviousNonComment->is(tok::question)))
804     State.Stack.back().BreakBeforeParameter = true;
805   if (Current.is(TT_BinaryOperator) && Current.CanBreakBefore)
806     State.Stack.back().BreakBeforeParameter = false;
807 
808   if (!DryRun) {
809     unsigned MaxEmptyLinesToKeep = Style.MaxEmptyLinesToKeep + 1;
810     if (Current.is(tok::r_brace) && Current.MatchingParen &&
811         // Only strip trailing empty lines for l_braces that have children, i.e.
812         // for function expressions (lambdas, arrows, etc).
813         !Current.MatchingParen->Children.empty()) {
814       // lambdas and arrow functions are expressions, thus their r_brace is not
815       // on its own line, and thus not covered by UnwrappedLineFormatter's logic
816       // about removing empty lines on closing blocks. Special case them here.
817       MaxEmptyLinesToKeep = 1;
818     }
819     unsigned Newlines = std::max(
820         1u, std::min(Current.NewlinesBefore, MaxEmptyLinesToKeep));
821     bool ContinuePPDirective =
822         State.Line->InPPDirective && State.Line->Type != LT_ImportStatement;
823     Whitespaces.replaceWhitespace(Current, Newlines, State.Column, State.Column,
824                                   ContinuePPDirective);
825   }
826 
827   if (!Current.isTrailingComment())
828     State.Stack.back().LastSpace = State.Column;
829   if (Current.is(tok::lessless))
830     // If we are breaking before a "<<", we always want to indent relative to
831     // RHS. This is necessary only for "<<", as we special-case it and don't
832     // always indent relative to the RHS.
833     State.Stack.back().LastSpace += 3; // 3 -> width of "<< ".
834 
835   State.StartOfLineLevel = Current.NestingLevel;
836   State.LowestLevelOnLine = Current.NestingLevel;
837 
838   // Any break on this level means that the parent level has been broken
839   // and we need to avoid bin packing there.
840   bool NestedBlockSpecialCase =
841       !Style.isCpp() && Current.is(tok::r_brace) && State.Stack.size() > 1 &&
842       State.Stack[State.Stack.size() - 2].NestedBlockInlined;
843   if (!NestedBlockSpecialCase)
844     for (unsigned i = 0, e = State.Stack.size() - 1; i != e; ++i)
845       State.Stack[i].BreakBeforeParameter = true;
846 
847   if (PreviousNonComment &&
848       !PreviousNonComment->isOneOf(tok::comma, tok::colon, tok::semi) &&
849       (PreviousNonComment->isNot(TT_TemplateCloser) ||
850        Current.NestingLevel != 0) &&
851       !PreviousNonComment->isOneOf(
852           TT_BinaryOperator, TT_FunctionAnnotationRParen, TT_JavaAnnotation,
853           TT_LeadingJavaAnnotation) &&
854       Current.isNot(TT_BinaryOperator) && !PreviousNonComment->opensScope())
855     State.Stack.back().BreakBeforeParameter = true;
856 
857   // If we break after { or the [ of an array initializer, we should also break
858   // before the corresponding } or ].
859   if (PreviousNonComment &&
860       (PreviousNonComment->isOneOf(tok::l_brace, TT_ArrayInitializerLSquare) ||
861        opensProtoMessageField(*PreviousNonComment, Style)))
862     State.Stack.back().BreakBeforeClosingBrace = true;
863 
864   if (State.Stack.back().AvoidBinPacking) {
865     // If we are breaking after '(', '{', '<', this is not bin packing
866     // unless AllowAllParametersOfDeclarationOnNextLine is false or this is a
867     // dict/object literal.
868     if (!Previous.isOneOf(tok::l_paren, tok::l_brace, TT_BinaryOperator) ||
869         (!Style.AllowAllParametersOfDeclarationOnNextLine &&
870          State.Line->MustBeDeclaration) ||
871         Previous.is(TT_DictLiteral))
872       State.Stack.back().BreakBeforeParameter = true;
873   }
874 
875   return Penalty;
876 }
877 
878 unsigned ContinuationIndenter::getNewLineColumn(const LineState &State) {
879   if (!State.NextToken || !State.NextToken->Previous)
880     return 0;
881   FormatToken &Current = *State.NextToken;
882   const FormatToken &Previous = *Current.Previous;
883   // If we are continuing an expression, we want to use the continuation indent.
884   unsigned ContinuationIndent =
885       std::max(State.Stack.back().LastSpace, State.Stack.back().Indent) +
886       Style.ContinuationIndentWidth;
887   const FormatToken *PreviousNonComment = Current.getPreviousNonComment();
888   const FormatToken *NextNonComment = Previous.getNextNonComment();
889   if (!NextNonComment)
890     NextNonComment = &Current;
891 
892   // Java specific bits.
893   if (Style.Language == FormatStyle::LK_Java &&
894       Current.isOneOf(Keywords.kw_implements, Keywords.kw_extends))
895     return std::max(State.Stack.back().LastSpace,
896                     State.Stack.back().Indent + Style.ContinuationIndentWidth);
897 
898   if (NextNonComment->is(tok::l_brace) && NextNonComment->BlockKind == BK_Block)
899     return Current.NestingLevel == 0 ? State.FirstIndent
900                                      : State.Stack.back().Indent;
901   if ((Current.isOneOf(tok::r_brace, tok::r_square) ||
902        (Current.is(tok::greater) &&
903         (Style.Language == FormatStyle::LK_Proto ||
904          Style.Language == FormatStyle::LK_TextProto))) &&
905       State.Stack.size() > 1) {
906     if (Current.closesBlockOrBlockTypeList(Style))
907       return State.Stack[State.Stack.size() - 2].NestedBlockIndent;
908     if (Current.MatchingParen &&
909         Current.MatchingParen->BlockKind == BK_BracedInit)
910       return State.Stack[State.Stack.size() - 2].LastSpace;
911     return State.FirstIndent;
912   }
913   // Indent a closing parenthesis at the previous level if followed by a semi or
914   // opening brace. This allows indentations such as:
915   //     foo(
916   //       a,
917   //     );
918   //     function foo(
919   //       a,
920   //     ) {
921   //       code(); //
922   //     }
923   if (Current.is(tok::r_paren) && State.Stack.size() > 1 &&
924       (!Current.Next || Current.Next->isOneOf(tok::semi, tok::l_brace)))
925     return State.Stack[State.Stack.size() - 2].LastSpace;
926   if (NextNonComment->is(TT_TemplateString) && NextNonComment->closesScope())
927     return State.Stack[State.Stack.size() - 2].LastSpace;
928   if (Current.is(tok::identifier) && Current.Next &&
929       (Current.Next->is(TT_DictLiteral) ||
930        ((Style.Language == FormatStyle::LK_Proto ||
931          Style.Language == FormatStyle::LK_TextProto) &&
932         Current.Next->isOneOf(tok::less, tok::l_brace))))
933     return State.Stack.back().Indent;
934   if (NextNonComment->is(TT_ObjCStringLiteral) &&
935       State.StartOfStringLiteral != 0)
936     return State.StartOfStringLiteral - 1;
937   if (NextNonComment->isStringLiteral() && State.StartOfStringLiteral != 0)
938     return State.StartOfStringLiteral;
939   if (NextNonComment->is(tok::lessless) &&
940       State.Stack.back().FirstLessLess != 0)
941     return State.Stack.back().FirstLessLess;
942   if (NextNonComment->isMemberAccess()) {
943     if (State.Stack.back().CallContinuation == 0)
944       return ContinuationIndent;
945     return State.Stack.back().CallContinuation;
946   }
947   if (State.Stack.back().QuestionColumn != 0 &&
948       ((NextNonComment->is(tok::colon) &&
949         NextNonComment->is(TT_ConditionalExpr)) ||
950        Previous.is(TT_ConditionalExpr)))
951     return State.Stack.back().QuestionColumn;
952   if (Previous.is(tok::comma) && State.Stack.back().VariablePos != 0)
953     return State.Stack.back().VariablePos;
954   if ((PreviousNonComment &&
955        (PreviousNonComment->ClosesTemplateDeclaration ||
956         PreviousNonComment->isOneOf(
957             TT_AttributeParen, TT_AttributeSquare, TT_FunctionAnnotationRParen,
958             TT_JavaAnnotation, TT_LeadingJavaAnnotation))) ||
959       (!Style.IndentWrappedFunctionNames &&
960        NextNonComment->isOneOf(tok::kw_operator, TT_FunctionDeclarationName)))
961     return std::max(State.Stack.back().LastSpace, State.Stack.back().Indent);
962   if (NextNonComment->is(TT_SelectorName)) {
963     if (!State.Stack.back().ObjCSelectorNameFound) {
964       unsigned MinIndent = State.Stack.back().Indent;
965       if (shouldIndentWrappedSelectorName(Style, State.Line->Type))
966         MinIndent = std::max(MinIndent,
967                              State.FirstIndent + Style.ContinuationIndentWidth);
968       // If LongestObjCSelectorName is 0, we are indenting the first
969       // part of an ObjC selector (or a selector component which is
970       // not colon-aligned due to block formatting).
971       //
972       // Otherwise, we are indenting a subsequent part of an ObjC
973       // selector which should be colon-aligned to the longest
974       // component of the ObjC selector.
975       //
976       // In either case, we want to respect Style.IndentWrappedFunctionNames.
977       return MinIndent +
978              std::max(NextNonComment->LongestObjCSelectorName,
979                       NextNonComment->ColumnWidth) -
980              NextNonComment->ColumnWidth;
981     }
982     if (!State.Stack.back().AlignColons)
983       return State.Stack.back().Indent;
984     if (State.Stack.back().ColonPos > NextNonComment->ColumnWidth)
985       return State.Stack.back().ColonPos - NextNonComment->ColumnWidth;
986     return State.Stack.back().Indent;
987   }
988   if (NextNonComment->is(tok::colon) && NextNonComment->is(TT_ObjCMethodExpr))
989     return State.Stack.back().ColonPos;
990   if (NextNonComment->is(TT_ArraySubscriptLSquare)) {
991     if (State.Stack.back().StartOfArraySubscripts != 0)
992       return State.Stack.back().StartOfArraySubscripts;
993     return ContinuationIndent;
994   }
995 
996   // This ensure that we correctly format ObjC methods calls without inputs,
997   // i.e. where the last element isn't selector like: [callee method];
998   if (NextNonComment->is(tok::identifier) && NextNonComment->FakeRParens == 0 &&
999       NextNonComment->Next && NextNonComment->Next->is(TT_ObjCMethodExpr))
1000     return State.Stack.back().Indent;
1001 
1002   if (NextNonComment->isOneOf(TT_StartOfName, TT_PointerOrReference) ||
1003       Previous.isOneOf(tok::coloncolon, tok::equal, TT_JsTypeColon))
1004     return ContinuationIndent;
1005   if (PreviousNonComment && PreviousNonComment->is(tok::colon) &&
1006       PreviousNonComment->isOneOf(TT_ObjCMethodExpr, TT_DictLiteral))
1007     return ContinuationIndent;
1008   if (NextNonComment->is(TT_CtorInitializerComma))
1009     return State.Stack.back().Indent;
1010   if (PreviousNonComment && PreviousNonComment->is(TT_CtorInitializerColon) &&
1011       Style.BreakConstructorInitializers == FormatStyle::BCIS_AfterColon)
1012     return State.Stack.back().Indent;
1013   if (NextNonComment->isOneOf(TT_CtorInitializerColon, TT_InheritanceColon,
1014                               TT_InheritanceComma))
1015     return State.FirstIndent + Style.ConstructorInitializerIndentWidth;
1016   if (Previous.is(tok::r_paren) && !Current.isBinaryOperator() &&
1017       !Current.isOneOf(tok::colon, tok::comment))
1018     return ContinuationIndent;
1019   if (Current.is(TT_ProtoExtensionLSquare))
1020     return State.Stack.back().Indent;
1021   if (State.Stack.back().Indent == State.FirstIndent && PreviousNonComment &&
1022       PreviousNonComment->isNot(tok::r_brace))
1023     // Ensure that we fall back to the continuation indent width instead of
1024     // just flushing continuations left.
1025     return State.Stack.back().Indent + Style.ContinuationIndentWidth;
1026   return State.Stack.back().Indent;
1027 }
1028 
1029 unsigned ContinuationIndenter::moveStateToNextToken(LineState &State,
1030                                                     bool DryRun, bool Newline) {
1031   assert(State.Stack.size());
1032   const FormatToken &Current = *State.NextToken;
1033 
1034   if (Current.isOneOf(tok::comma, TT_BinaryOperator))
1035     State.Stack.back().NoLineBreakInOperand = false;
1036   if (Current.is(TT_InheritanceColon))
1037     State.Stack.back().AvoidBinPacking = true;
1038   if (Current.is(tok::lessless) && Current.isNot(TT_OverloadedOperator)) {
1039     if (State.Stack.back().FirstLessLess == 0)
1040       State.Stack.back().FirstLessLess = State.Column;
1041     else
1042       State.Stack.back().LastOperatorWrapped = Newline;
1043   }
1044   if (Current.is(TT_BinaryOperator) && Current.isNot(tok::lessless))
1045     State.Stack.back().LastOperatorWrapped = Newline;
1046   if (Current.is(TT_ConditionalExpr) && Current.Previous &&
1047       !Current.Previous->is(TT_ConditionalExpr))
1048     State.Stack.back().LastOperatorWrapped = Newline;
1049   if (Current.is(TT_ArraySubscriptLSquare) &&
1050       State.Stack.back().StartOfArraySubscripts == 0)
1051     State.Stack.back().StartOfArraySubscripts = State.Column;
1052   if (Style.BreakBeforeTernaryOperators && Current.is(tok::question))
1053     State.Stack.back().QuestionColumn = State.Column;
1054   if (!Style.BreakBeforeTernaryOperators && Current.isNot(tok::colon)) {
1055     const FormatToken *Previous = Current.Previous;
1056     while (Previous && Previous->isTrailingComment())
1057       Previous = Previous->Previous;
1058     if (Previous && Previous->is(tok::question))
1059       State.Stack.back().QuestionColumn = State.Column;
1060   }
1061   if (!Current.opensScope() && !Current.closesScope() &&
1062       !Current.is(TT_PointerOrReference))
1063     State.LowestLevelOnLine =
1064         std::min(State.LowestLevelOnLine, Current.NestingLevel);
1065   if (Current.isMemberAccess())
1066     State.Stack.back().StartOfFunctionCall =
1067         !Current.NextOperator ? 0 : State.Column;
1068   if (Current.is(TT_SelectorName))
1069     State.Stack.back().ObjCSelectorNameFound = true;
1070   if (Current.is(TT_CtorInitializerColon) &&
1071       Style.BreakConstructorInitializers != FormatStyle::BCIS_AfterColon) {
1072     // Indent 2 from the column, so:
1073     // SomeClass::SomeClass()
1074     //     : First(...), ...
1075     //       Next(...)
1076     //       ^ line up here.
1077     State.Stack.back().Indent =
1078         State.Column +
1079         (Style.BreakConstructorInitializers == FormatStyle::BCIS_BeforeComma
1080              ? 0
1081              : 2);
1082     State.Stack.back().NestedBlockIndent = State.Stack.back().Indent;
1083     if (Style.ConstructorInitializerAllOnOneLineOrOnePerLine)
1084       State.Stack.back().AvoidBinPacking = true;
1085     State.Stack.back().BreakBeforeParameter = false;
1086   }
1087   if (Current.is(TT_CtorInitializerColon) &&
1088       Style.BreakConstructorInitializers == FormatStyle::BCIS_AfterColon) {
1089     State.Stack.back().Indent =
1090         State.FirstIndent + Style.ConstructorInitializerIndentWidth;
1091     State.Stack.back().NestedBlockIndent = State.Stack.back().Indent;
1092     if (Style.ConstructorInitializerAllOnOneLineOrOnePerLine)
1093       State.Stack.back().AvoidBinPacking = true;
1094   }
1095   if (Current.is(TT_InheritanceColon))
1096     State.Stack.back().Indent =
1097         State.FirstIndent + Style.ContinuationIndentWidth;
1098   if (Current.isOneOf(TT_BinaryOperator, TT_ConditionalExpr) && Newline)
1099     State.Stack.back().NestedBlockIndent =
1100         State.Column + Current.ColumnWidth + 1;
1101   if (Current.isOneOf(TT_LambdaLSquare, TT_LambdaArrow))
1102     State.Stack.back().LastSpace = State.Column;
1103 
1104   // Insert scopes created by fake parenthesis.
1105   const FormatToken *Previous = Current.getPreviousNonComment();
1106 
1107   // Add special behavior to support a format commonly used for JavaScript
1108   // closures:
1109   //   SomeFunction(function() {
1110   //     foo();
1111   //     bar();
1112   //   }, a, b, c);
1113   if (Current.isNot(tok::comment) && Previous &&
1114       Previous->isOneOf(tok::l_brace, TT_ArrayInitializerLSquare) &&
1115       !Previous->is(TT_DictLiteral) && State.Stack.size() > 1) {
1116     if (State.Stack[State.Stack.size() - 2].NestedBlockInlined && Newline)
1117       for (unsigned i = 0, e = State.Stack.size() - 1; i != e; ++i)
1118         State.Stack[i].NoLineBreak = true;
1119     State.Stack[State.Stack.size() - 2].NestedBlockInlined = false;
1120   }
1121   if (Previous &&
1122       (Previous->isOneOf(tok::l_paren, tok::comma, tok::colon) ||
1123        Previous->isOneOf(TT_BinaryOperator, TT_ConditionalExpr)) &&
1124       !Previous->isOneOf(TT_DictLiteral, TT_ObjCMethodExpr)) {
1125     State.Stack.back().NestedBlockInlined =
1126         !Newline &&
1127         (Previous->isNot(tok::l_paren) || Previous->ParameterCount > 1);
1128   }
1129 
1130   moveStatePastFakeLParens(State, Newline);
1131   moveStatePastScopeCloser(State);
1132   bool AllowBreak = !State.Stack.back().NoLineBreak &&
1133                     !State.Stack.back().NoLineBreakInOperand;
1134   moveStatePastScopeOpener(State, Newline);
1135   moveStatePastFakeRParens(State);
1136 
1137   if (Current.is(TT_ObjCStringLiteral) && State.StartOfStringLiteral == 0)
1138     State.StartOfStringLiteral = State.Column + 1;
1139   else if (Current.isStringLiteral() && State.StartOfStringLiteral == 0)
1140     State.StartOfStringLiteral = State.Column;
1141   else if (!Current.isOneOf(tok::comment, tok::identifier, tok::hash) &&
1142            !Current.isStringLiteral())
1143     State.StartOfStringLiteral = 0;
1144 
1145   State.Column += Current.ColumnWidth;
1146   State.NextToken = State.NextToken->Next;
1147 
1148   unsigned Penalty =
1149       handleEndOfLine(Current, State, DryRun, AllowBreak);
1150 
1151   if (Current.Role)
1152     Current.Role->formatFromToken(State, this, DryRun);
1153   // If the previous has a special role, let it consume tokens as appropriate.
1154   // It is necessary to start at the previous token for the only implemented
1155   // role (comma separated list). That way, the decision whether or not to break
1156   // after the "{" is already done and both options are tried and evaluated.
1157   // FIXME: This is ugly, find a better way.
1158   if (Previous && Previous->Role)
1159     Penalty += Previous->Role->formatAfterToken(State, this, DryRun);
1160 
1161   return Penalty;
1162 }
1163 
1164 void ContinuationIndenter::moveStatePastFakeLParens(LineState &State,
1165                                                     bool Newline) {
1166   const FormatToken &Current = *State.NextToken;
1167   const FormatToken *Previous = Current.getPreviousNonComment();
1168 
1169   // Don't add extra indentation for the first fake parenthesis after
1170   // 'return', assignments or opening <({[. The indentation for these cases
1171   // is special cased.
1172   bool SkipFirstExtraIndent =
1173       (Previous && (Previous->opensScope() ||
1174                     Previous->isOneOf(tok::semi, tok::kw_return) ||
1175                     (Previous->getPrecedence() == prec::Assignment &&
1176                      Style.AlignOperands) ||
1177                     Previous->is(TT_ObjCMethodExpr)));
1178   for (SmallVectorImpl<prec::Level>::const_reverse_iterator
1179            I = Current.FakeLParens.rbegin(),
1180            E = Current.FakeLParens.rend();
1181        I != E; ++I) {
1182     ParenState NewParenState = State.Stack.back();
1183     NewParenState.Tok = nullptr;
1184     NewParenState.ContainsLineBreak = false;
1185     NewParenState.LastOperatorWrapped = true;
1186     NewParenState.NoLineBreak =
1187         NewParenState.NoLineBreak || State.Stack.back().NoLineBreakInOperand;
1188 
1189     // Don't propagate AvoidBinPacking into subexpressions of arg/param lists.
1190     if (*I > prec::Comma)
1191       NewParenState.AvoidBinPacking = false;
1192 
1193     // Indent from 'LastSpace' unless these are fake parentheses encapsulating
1194     // a builder type call after 'return' or, if the alignment after opening
1195     // brackets is disabled.
1196     if (!Current.isTrailingComment() &&
1197         (Style.AlignOperands || *I < prec::Assignment) &&
1198         (!Previous || Previous->isNot(tok::kw_return) ||
1199          (Style.Language != FormatStyle::LK_Java && *I > 0)) &&
1200         (Style.AlignAfterOpenBracket != FormatStyle::BAS_DontAlign ||
1201          *I != prec::Comma || Current.NestingLevel == 0))
1202       NewParenState.Indent =
1203           std::max(std::max(State.Column, NewParenState.Indent),
1204                    State.Stack.back().LastSpace);
1205 
1206     // Do not indent relative to the fake parentheses inserted for "." or "->".
1207     // This is a special case to make the following to statements consistent:
1208     //   OuterFunction(InnerFunctionCall( // break
1209     //       ParameterToInnerFunction));
1210     //   OuterFunction(SomeObject.InnerFunctionCall( // break
1211     //       ParameterToInnerFunction));
1212     if (*I > prec::Unknown)
1213       NewParenState.LastSpace = std::max(NewParenState.LastSpace, State.Column);
1214     if (*I != prec::Conditional && !Current.is(TT_UnaryOperator) &&
1215         Style.AlignAfterOpenBracket != FormatStyle::BAS_DontAlign)
1216       NewParenState.StartOfFunctionCall = State.Column;
1217 
1218     // Always indent conditional expressions. Never indent expression where
1219     // the 'operator' is ',', ';' or an assignment (i.e. *I <=
1220     // prec::Assignment) as those have different indentation rules. Indent
1221     // other expression, unless the indentation needs to be skipped.
1222     if (*I == prec::Conditional ||
1223         (!SkipFirstExtraIndent && *I > prec::Assignment &&
1224          !Current.isTrailingComment()))
1225       NewParenState.Indent += Style.ContinuationIndentWidth;
1226     if ((Previous && !Previous->opensScope()) || *I != prec::Comma)
1227       NewParenState.BreakBeforeParameter = false;
1228     State.Stack.push_back(NewParenState);
1229     SkipFirstExtraIndent = false;
1230   }
1231 }
1232 
1233 void ContinuationIndenter::moveStatePastFakeRParens(LineState &State) {
1234   for (unsigned i = 0, e = State.NextToken->FakeRParens; i != e; ++i) {
1235     unsigned VariablePos = State.Stack.back().VariablePos;
1236     if (State.Stack.size() == 1) {
1237       // Do not pop the last element.
1238       break;
1239     }
1240     State.Stack.pop_back();
1241     State.Stack.back().VariablePos = VariablePos;
1242   }
1243 }
1244 
1245 void ContinuationIndenter::moveStatePastScopeOpener(LineState &State,
1246                                                     bool Newline) {
1247   const FormatToken &Current = *State.NextToken;
1248   if (!Current.opensScope())
1249     return;
1250 
1251   if (Current.MatchingParen && Current.BlockKind == BK_Block) {
1252     moveStateToNewBlock(State);
1253     return;
1254   }
1255 
1256   unsigned NewIndent;
1257   unsigned LastSpace = State.Stack.back().LastSpace;
1258   bool AvoidBinPacking;
1259   bool BreakBeforeParameter = false;
1260   unsigned NestedBlockIndent = std::max(State.Stack.back().StartOfFunctionCall,
1261                                         State.Stack.back().NestedBlockIndent);
1262   if (Current.isOneOf(tok::l_brace, TT_ArrayInitializerLSquare) ||
1263       opensProtoMessageField(Current, Style)) {
1264     if (Current.opensBlockOrBlockTypeList(Style)) {
1265       NewIndent = Style.IndentWidth +
1266                   std::min(State.Column, State.Stack.back().NestedBlockIndent);
1267     } else {
1268       NewIndent = State.Stack.back().LastSpace + Style.ContinuationIndentWidth;
1269     }
1270     const FormatToken *NextNoComment = Current.getNextNonComment();
1271     bool EndsInComma = Current.MatchingParen &&
1272                        Current.MatchingParen->Previous &&
1273                        Current.MatchingParen->Previous->is(tok::comma);
1274     AvoidBinPacking = EndsInComma || Current.is(TT_DictLiteral) ||
1275                       Style.Language == FormatStyle::LK_Proto ||
1276                       Style.Language == FormatStyle::LK_TextProto ||
1277                       !Style.BinPackArguments ||
1278                       (NextNoComment &&
1279                        NextNoComment->isOneOf(TT_DesignatedInitializerPeriod,
1280                                               TT_DesignatedInitializerLSquare));
1281     BreakBeforeParameter = EndsInComma;
1282     if (Current.ParameterCount > 1)
1283       NestedBlockIndent = std::max(NestedBlockIndent, State.Column + 1);
1284   } else {
1285     NewIndent = Style.ContinuationIndentWidth +
1286                 std::max(State.Stack.back().LastSpace,
1287                          State.Stack.back().StartOfFunctionCall);
1288 
1289     // Ensure that different different brackets force relative alignment, e.g.:
1290     // void SomeFunction(vector<  // break
1291     //                       int> v);
1292     // FIXME: We likely want to do this for more combinations of brackets.
1293     if (Current.is(tok::less) && Current.ParentBracket == tok::l_paren) {
1294       NewIndent = std::max(NewIndent, State.Stack.back().Indent);
1295       LastSpace = std::max(LastSpace, State.Stack.back().Indent);
1296     }
1297 
1298     bool EndsInComma =
1299         Current.MatchingParen &&
1300         Current.MatchingParen->getPreviousNonComment() &&
1301         Current.MatchingParen->getPreviousNonComment()->is(tok::comma);
1302 
1303     // If ObjCBinPackProtocolList is unspecified, fall back to BinPackParameters
1304     // for backwards compatibility.
1305     bool ObjCBinPackProtocolList =
1306         (Style.ObjCBinPackProtocolList == FormatStyle::BPS_Auto &&
1307          Style.BinPackParameters) ||
1308         Style.ObjCBinPackProtocolList == FormatStyle::BPS_Always;
1309 
1310     bool BinPackDeclaration =
1311         (State.Line->Type != LT_ObjCDecl && Style.BinPackParameters) ||
1312         (State.Line->Type == LT_ObjCDecl && ObjCBinPackProtocolList);
1313 
1314     AvoidBinPacking =
1315         (Style.Language == FormatStyle::LK_JavaScript && EndsInComma) ||
1316         (State.Line->MustBeDeclaration && !BinPackDeclaration) ||
1317         (!State.Line->MustBeDeclaration && !Style.BinPackArguments) ||
1318         (Style.ExperimentalAutoDetectBinPacking &&
1319          (Current.PackingKind == PPK_OnePerLine ||
1320           (!BinPackInconclusiveFunctions &&
1321            Current.PackingKind == PPK_Inconclusive)));
1322 
1323     if (Current.is(TT_ObjCMethodExpr) && Current.MatchingParen) {
1324       if (Style.ColumnLimit) {
1325         // If this '[' opens an ObjC call, determine whether all parameters fit
1326         // into one line and put one per line if they don't.
1327         if (getLengthToMatchingParen(Current, State.Stack) + State.Column >
1328             getColumnLimit(State))
1329           BreakBeforeParameter = true;
1330       } else {
1331         // For ColumnLimit = 0, we have to figure out whether there is or has to
1332         // be a line break within this call.
1333         for (const FormatToken *Tok = &Current;
1334              Tok && Tok != Current.MatchingParen; Tok = Tok->Next) {
1335           if (Tok->MustBreakBefore ||
1336               (Tok->CanBreakBefore && Tok->NewlinesBefore > 0)) {
1337             BreakBeforeParameter = true;
1338             break;
1339           }
1340         }
1341       }
1342     }
1343 
1344     if (Style.Language == FormatStyle::LK_JavaScript && EndsInComma)
1345       BreakBeforeParameter = true;
1346   }
1347   // Generally inherit NoLineBreak from the current scope to nested scope.
1348   // However, don't do this for non-empty nested blocks, dict literals and
1349   // array literals as these follow different indentation rules.
1350   bool NoLineBreak =
1351       Current.Children.empty() &&
1352       !Current.isOneOf(TT_DictLiteral, TT_ArrayInitializerLSquare) &&
1353       (State.Stack.back().NoLineBreak ||
1354        State.Stack.back().NoLineBreakInOperand ||
1355        (Current.is(TT_TemplateOpener) &&
1356         State.Stack.back().ContainsUnwrappedBuilder));
1357   State.Stack.push_back(
1358       ParenState(&Current, NewIndent, LastSpace, AvoidBinPacking, NoLineBreak));
1359   State.Stack.back().NestedBlockIndent = NestedBlockIndent;
1360   State.Stack.back().BreakBeforeParameter = BreakBeforeParameter;
1361   State.Stack.back().HasMultipleNestedBlocks = Current.BlockParameterCount > 1;
1362   State.Stack.back().IsInsideObjCArrayLiteral =
1363       Current.is(TT_ArrayInitializerLSquare) && Current.Previous &&
1364       Current.Previous->is(tok::at);
1365 }
1366 
1367 void ContinuationIndenter::moveStatePastScopeCloser(LineState &State) {
1368   const FormatToken &Current = *State.NextToken;
1369   if (!Current.closesScope())
1370     return;
1371 
1372   // If we encounter a closing ), ], } or >, we can remove a level from our
1373   // stacks.
1374   if (State.Stack.size() > 1 &&
1375       (Current.isOneOf(tok::r_paren, tok::r_square, TT_TemplateString) ||
1376        (Current.is(tok::r_brace) && State.NextToken != State.Line->First) ||
1377        State.NextToken->is(TT_TemplateCloser) ||
1378        (Current.is(tok::greater) && Current.is(TT_DictLiteral))))
1379     State.Stack.pop_back();
1380 
1381   if (Current.is(tok::r_square)) {
1382     // If this ends the array subscript expr, reset the corresponding value.
1383     const FormatToken *NextNonComment = Current.getNextNonComment();
1384     if (NextNonComment && NextNonComment->isNot(tok::l_square))
1385       State.Stack.back().StartOfArraySubscripts = 0;
1386   }
1387 }
1388 
1389 void ContinuationIndenter::moveStateToNewBlock(LineState &State) {
1390   unsigned NestedBlockIndent = State.Stack.back().NestedBlockIndent;
1391   // ObjC block sometimes follow special indentation rules.
1392   unsigned NewIndent =
1393       NestedBlockIndent + (State.NextToken->is(TT_ObjCBlockLBrace)
1394                                ? Style.ObjCBlockIndentWidth
1395                                : Style.IndentWidth);
1396   State.Stack.push_back(ParenState(State.NextToken, NewIndent,
1397                                    State.Stack.back().LastSpace,
1398                                    /*AvoidBinPacking=*/true,
1399                                    /*NoLineBreak=*/false));
1400   State.Stack.back().NestedBlockIndent = NestedBlockIndent;
1401   State.Stack.back().BreakBeforeParameter = true;
1402 }
1403 
1404 static unsigned getLastLineEndColumn(StringRef Text, unsigned StartColumn,
1405                                      unsigned TabWidth,
1406                                      encoding::Encoding Encoding) {
1407   size_t LastNewlinePos = Text.find_last_of("\n");
1408   if (LastNewlinePos == StringRef::npos) {
1409     return StartColumn +
1410            encoding::columnWidthWithTabs(Text, StartColumn, TabWidth, Encoding);
1411   } else {
1412     return encoding::columnWidthWithTabs(Text.substr(LastNewlinePos),
1413                                          /*StartColumn=*/0, TabWidth, Encoding);
1414   }
1415 }
1416 
1417 unsigned ContinuationIndenter::reformatRawStringLiteral(
1418     const FormatToken &Current, LineState &State,
1419     const FormatStyle &RawStringStyle, bool DryRun) {
1420   unsigned StartColumn = State.Column - Current.ColumnWidth;
1421   StringRef OldDelimiter = *getRawStringDelimiter(Current.TokenText);
1422   StringRef NewDelimiter =
1423       getCanonicalRawStringDelimiter(Style, RawStringStyle.Language);
1424   if (NewDelimiter.empty() || OldDelimiter.empty())
1425     NewDelimiter = OldDelimiter;
1426   // The text of a raw string is between the leading 'R"delimiter(' and the
1427   // trailing 'delimiter)"'.
1428   unsigned OldPrefixSize = 3 + OldDelimiter.size();
1429   unsigned OldSuffixSize = 2 + OldDelimiter.size();
1430   // We create a virtual text environment which expects a null-terminated
1431   // string, so we cannot use StringRef.
1432   std::string RawText =
1433       Current.TokenText.substr(OldPrefixSize).drop_back(OldSuffixSize);
1434   if (NewDelimiter != OldDelimiter) {
1435     // Don't update to the canonical delimiter 'deli' if ')deli"' occurs in the
1436     // raw string.
1437     std::string CanonicalDelimiterSuffix = (")" + NewDelimiter + "\"").str();
1438     if (StringRef(RawText).contains(CanonicalDelimiterSuffix))
1439       NewDelimiter = OldDelimiter;
1440   }
1441 
1442   unsigned NewPrefixSize = 3 + NewDelimiter.size();
1443   unsigned NewSuffixSize = 2 + NewDelimiter.size();
1444 
1445   // The first start column is the column the raw text starts after formatting.
1446   unsigned FirstStartColumn = StartColumn + NewPrefixSize;
1447 
1448   // The next start column is the intended indentation a line break inside
1449   // the raw string at level 0. It is determined by the following rules:
1450   //   - if the content starts on newline, it is one level more than the current
1451   //     indent, and
1452   //   - if the content does not start on a newline, it is the first start
1453   //     column.
1454   // These rules have the advantage that the formatted content both does not
1455   // violate the rectangle rule and visually flows within the surrounding
1456   // source.
1457   bool ContentStartsOnNewline = Current.TokenText[OldPrefixSize] == '\n';
1458   unsigned NextStartColumn =
1459       ContentStartsOnNewline
1460           ? State.Stack.back().NestedBlockIndent + Style.IndentWidth
1461           : FirstStartColumn;
1462 
1463   // The last start column is the column the raw string suffix starts if it is
1464   // put on a newline.
1465   // The last start column is the intended indentation of the raw string postfix
1466   // if it is put on a newline. It is determined by the following rules:
1467   //   - if the raw string prefix starts on a newline, it is the column where
1468   //     that raw string prefix starts, and
1469   //   - if the raw string prefix does not start on a newline, it is the current
1470   //     indent.
1471   unsigned LastStartColumn = Current.NewlinesBefore
1472                                  ? FirstStartColumn - NewPrefixSize
1473                                  : State.Stack.back().NestedBlockIndent;
1474 
1475   std::pair<tooling::Replacements, unsigned> Fixes = internal::reformat(
1476       RawStringStyle, RawText, {tooling::Range(0, RawText.size())},
1477       FirstStartColumn, NextStartColumn, LastStartColumn, "<stdin>",
1478       /*Status=*/nullptr);
1479 
1480   auto NewCode = applyAllReplacements(RawText, Fixes.first);
1481   tooling::Replacements NoFixes;
1482   if (!NewCode) {
1483     State.Column += Current.ColumnWidth;
1484     return 0;
1485   }
1486   if (!DryRun) {
1487     if (NewDelimiter != OldDelimiter) {
1488       // In 'R"delimiter(...', the delimiter starts 2 characters after the start
1489       // of the token.
1490       SourceLocation PrefixDelimiterStart =
1491           Current.Tok.getLocation().getLocWithOffset(2);
1492       auto PrefixErr = Whitespaces.addReplacement(tooling::Replacement(
1493           SourceMgr, PrefixDelimiterStart, OldDelimiter.size(), NewDelimiter));
1494       if (PrefixErr) {
1495         llvm::errs()
1496             << "Failed to update the prefix delimiter of a raw string: "
1497             << llvm::toString(std::move(PrefixErr)) << "\n";
1498       }
1499       // In 'R"delimiter(...)delimiter"', the suffix delimiter starts at
1500       // position length - 1 - |delimiter|.
1501       SourceLocation SuffixDelimiterStart =
1502           Current.Tok.getLocation().getLocWithOffset(Current.TokenText.size() -
1503                                                      1 - OldDelimiter.size());
1504       auto SuffixErr = Whitespaces.addReplacement(tooling::Replacement(
1505           SourceMgr, SuffixDelimiterStart, OldDelimiter.size(), NewDelimiter));
1506       if (SuffixErr) {
1507         llvm::errs()
1508             << "Failed to update the suffix delimiter of a raw string: "
1509             << llvm::toString(std::move(SuffixErr)) << "\n";
1510       }
1511     }
1512     SourceLocation OriginLoc =
1513         Current.Tok.getLocation().getLocWithOffset(OldPrefixSize);
1514     for (const tooling::Replacement &Fix : Fixes.first) {
1515       auto Err = Whitespaces.addReplacement(tooling::Replacement(
1516           SourceMgr, OriginLoc.getLocWithOffset(Fix.getOffset()),
1517           Fix.getLength(), Fix.getReplacementText()));
1518       if (Err) {
1519         llvm::errs() << "Failed to reformat raw string: "
1520                      << llvm::toString(std::move(Err)) << "\n";
1521       }
1522     }
1523   }
1524   unsigned RawLastLineEndColumn = getLastLineEndColumn(
1525       *NewCode, FirstStartColumn, Style.TabWidth, Encoding);
1526   State.Column = RawLastLineEndColumn + NewSuffixSize;
1527   // Since we're updating the column to after the raw string literal here, we
1528   // have to manually add the penalty for the prefix R"delim( over the column
1529   // limit.
1530   unsigned PrefixExcessCharacters =
1531       StartColumn + NewPrefixSize > Style.ColumnLimit ?
1532       StartColumn + NewPrefixSize - Style.ColumnLimit : 0;
1533   return Fixes.second + PrefixExcessCharacters * Style.PenaltyExcessCharacter;
1534 }
1535 
1536 unsigned ContinuationIndenter::addMultilineToken(const FormatToken &Current,
1537                                                  LineState &State) {
1538   // Break before further function parameters on all levels.
1539   for (unsigned i = 0, e = State.Stack.size(); i != e; ++i)
1540     State.Stack[i].BreakBeforeParameter = true;
1541 
1542   unsigned ColumnsUsed = State.Column;
1543   // We can only affect layout of the first and the last line, so the penalty
1544   // for all other lines is constant, and we ignore it.
1545   State.Column = Current.LastLineColumnWidth;
1546 
1547   if (ColumnsUsed > getColumnLimit(State))
1548     return Style.PenaltyExcessCharacter * (ColumnsUsed - getColumnLimit(State));
1549   return 0;
1550 }
1551 
1552 unsigned ContinuationIndenter::handleEndOfLine(const FormatToken &Current,
1553                                                LineState &State, bool DryRun,
1554                                                bool AllowBreak) {
1555   unsigned Penalty = 0;
1556   // Compute the raw string style to use in case this is a raw string literal
1557   // that can be reformatted.
1558   auto RawStringStyle = getRawStringStyle(Current, State);
1559   if (RawStringStyle && !Current.Finalized) {
1560     Penalty = reformatRawStringLiteral(Current, State, *RawStringStyle, DryRun);
1561   } else if (Current.IsMultiline && Current.isNot(TT_BlockComment)) {
1562     // Don't break multi-line tokens other than block comments and raw string
1563     // literals. Instead, just update the state.
1564     Penalty = addMultilineToken(Current, State);
1565   } else if (State.Line->Type != LT_ImportStatement) {
1566     // We generally don't break import statements.
1567     LineState OriginalState = State;
1568 
1569     // Whether we force the reflowing algorithm to stay strictly within the
1570     // column limit.
1571     bool Strict = false;
1572     // Whether the first non-strict attempt at reflowing did intentionally
1573     // exceed the column limit.
1574     bool Exceeded = false;
1575     std::tie(Penalty, Exceeded) = breakProtrudingToken(
1576         Current, State, AllowBreak, /*DryRun=*/true, Strict);
1577     if (Exceeded) {
1578       // If non-strict reflowing exceeds the column limit, try whether strict
1579       // reflowing leads to an overall lower penalty.
1580       LineState StrictState = OriginalState;
1581       unsigned StrictPenalty =
1582           breakProtrudingToken(Current, StrictState, AllowBreak,
1583                                /*DryRun=*/true, /*Strict=*/true)
1584               .first;
1585       Strict = StrictPenalty <= Penalty;
1586       if (Strict) {
1587         Penalty = StrictPenalty;
1588         State = StrictState;
1589       }
1590     }
1591     if (!DryRun) {
1592       // If we're not in dry-run mode, apply the changes with the decision on
1593       // strictness made above.
1594       breakProtrudingToken(Current, OriginalState, AllowBreak, /*DryRun=*/false,
1595                            Strict);
1596     }
1597   }
1598   if (State.Column > getColumnLimit(State)) {
1599     unsigned ExcessCharacters = State.Column - getColumnLimit(State);
1600     Penalty += Style.PenaltyExcessCharacter * ExcessCharacters;
1601   }
1602   return Penalty;
1603 }
1604 
1605 // Returns the enclosing function name of a token, or the empty string if not
1606 // found.
1607 static StringRef getEnclosingFunctionName(const FormatToken &Current) {
1608   // Look for: 'function(' or 'function<templates>(' before Current.
1609   auto Tok = Current.getPreviousNonComment();
1610   if (!Tok || !Tok->is(tok::l_paren))
1611     return "";
1612   Tok = Tok->getPreviousNonComment();
1613   if (!Tok)
1614     return "";
1615   if (Tok->is(TT_TemplateCloser)) {
1616     Tok = Tok->MatchingParen;
1617     if (Tok)
1618       Tok = Tok->getPreviousNonComment();
1619   }
1620   if (!Tok || !Tok->is(tok::identifier))
1621     return "";
1622   return Tok->TokenText;
1623 }
1624 
1625 llvm::Optional<FormatStyle>
1626 ContinuationIndenter::getRawStringStyle(const FormatToken &Current,
1627                                         const LineState &State) {
1628   if (!Current.isStringLiteral())
1629     return None;
1630   auto Delimiter = getRawStringDelimiter(Current.TokenText);
1631   if (!Delimiter)
1632     return None;
1633   auto RawStringStyle = RawStringFormats.getDelimiterStyle(*Delimiter);
1634   if (!RawStringStyle)
1635     RawStringStyle = RawStringFormats.getEnclosingFunctionStyle(
1636         getEnclosingFunctionName(Current));
1637   if (!RawStringStyle)
1638     return None;
1639   RawStringStyle->ColumnLimit = getColumnLimit(State);
1640   return RawStringStyle;
1641 }
1642 
1643 std::unique_ptr<BreakableToken> ContinuationIndenter::createBreakableToken(
1644     const FormatToken &Current, LineState &State, bool AllowBreak) {
1645   unsigned StartColumn = State.Column - Current.ColumnWidth;
1646   if (Current.isStringLiteral()) {
1647     // FIXME: String literal breaking is currently disabled for Java and JS, as
1648     // it requires strings to be merged using "+" which we don't support.
1649     if (Style.Language == FormatStyle::LK_Java ||
1650         Style.Language == FormatStyle::LK_JavaScript ||
1651         !Style.BreakStringLiterals ||
1652         !AllowBreak)
1653       return nullptr;
1654 
1655     // Don't break string literals inside preprocessor directives (except for
1656     // #define directives, as their contents are stored in separate lines and
1657     // are not affected by this check).
1658     // This way we avoid breaking code with line directives and unknown
1659     // preprocessor directives that contain long string literals.
1660     if (State.Line->Type == LT_PreprocessorDirective)
1661       return nullptr;
1662     // Exempts unterminated string literals from line breaking. The user will
1663     // likely want to terminate the string before any line breaking is done.
1664     if (Current.IsUnterminatedLiteral)
1665       return nullptr;
1666     // Don't break string literals inside Objective-C array literals (doing so
1667     // raises the warning -Wobjc-string-concatenation).
1668     if (State.Stack.back().IsInsideObjCArrayLiteral) {
1669       return nullptr;
1670     }
1671 
1672     StringRef Text = Current.TokenText;
1673     StringRef Prefix;
1674     StringRef Postfix;
1675     // FIXME: Handle whitespace between '_T', '(', '"..."', and ')'.
1676     // FIXME: Store Prefix and Suffix (or PrefixLength and SuffixLength to
1677     // reduce the overhead) for each FormatToken, which is a string, so that we
1678     // don't run multiple checks here on the hot path.
1679     if ((Text.endswith(Postfix = "\"") &&
1680          (Text.startswith(Prefix = "@\"") || Text.startswith(Prefix = "\"") ||
1681           Text.startswith(Prefix = "u\"") || Text.startswith(Prefix = "U\"") ||
1682           Text.startswith(Prefix = "u8\"") ||
1683           Text.startswith(Prefix = "L\""))) ||
1684         (Text.startswith(Prefix = "_T(\"") && Text.endswith(Postfix = "\")"))) {
1685       // We need this to address the case where there is an unbreakable tail
1686       // only if certain other formatting decisions have been taken. The
1687       // UnbreakableTailLength of Current is an overapproximation is that case
1688       // and we need to be correct here.
1689       unsigned UnbreakableTailLength = (State.NextToken && canBreak(State))
1690                                            ? 0
1691                                            : Current.UnbreakableTailLength;
1692       return llvm::make_unique<BreakableStringLiteral>(
1693           Current, StartColumn, Prefix, Postfix, UnbreakableTailLength,
1694           State.Line->InPPDirective, Encoding, Style);
1695     }
1696   } else if (Current.is(TT_BlockComment)) {
1697     if (!Style.ReflowComments ||
1698         // If a comment token switches formatting, like
1699         // /* clang-format on */, we don't want to break it further,
1700         // but we may still want to adjust its indentation.
1701         switchesFormatting(Current)) {
1702       return nullptr;
1703     }
1704     return llvm::make_unique<BreakableBlockComment>(
1705         Current, StartColumn, Current.OriginalColumn, !Current.Previous,
1706         State.Line->InPPDirective, Encoding, Style);
1707   } else if (Current.is(TT_LineComment) &&
1708              (Current.Previous == nullptr ||
1709               Current.Previous->isNot(TT_ImplicitStringLiteral))) {
1710     if (!Style.ReflowComments ||
1711         CommentPragmasRegex.match(Current.TokenText.substr(2)) ||
1712         switchesFormatting(Current))
1713       return nullptr;
1714     return llvm::make_unique<BreakableLineCommentSection>(
1715         Current, StartColumn, Current.OriginalColumn, !Current.Previous,
1716         /*InPPDirective=*/false, Encoding, Style);
1717   }
1718   return nullptr;
1719 }
1720 
1721 std::pair<unsigned, bool>
1722 ContinuationIndenter::breakProtrudingToken(const FormatToken &Current,
1723                                            LineState &State, bool AllowBreak,
1724                                            bool DryRun, bool Strict) {
1725   std::unique_ptr<const BreakableToken> Token =
1726       createBreakableToken(Current, State, AllowBreak);
1727   if (!Token)
1728     return {0, false};
1729   assert(Token->getLineCount() > 0);
1730   unsigned ColumnLimit = getColumnLimit(State);
1731   if (Current.is(TT_LineComment)) {
1732     // We don't insert backslashes when breaking line comments.
1733     ColumnLimit = Style.ColumnLimit;
1734   }
1735   if (Current.UnbreakableTailLength >= ColumnLimit)
1736     return {0, false};
1737   // ColumnWidth was already accounted into State.Column before calling
1738   // breakProtrudingToken.
1739   unsigned StartColumn = State.Column - Current.ColumnWidth;
1740   unsigned NewBreakPenalty = Current.isStringLiteral()
1741                                  ? Style.PenaltyBreakString
1742                                  : Style.PenaltyBreakComment;
1743   // Stores whether we intentionally decide to let a line exceed the column
1744   // limit.
1745   bool Exceeded = false;
1746   // Stores whether we introduce a break anywhere in the token.
1747   bool BreakInserted = Token->introducesBreakBeforeToken();
1748   // Store whether we inserted a new line break at the end of the previous
1749   // logical line.
1750   bool NewBreakBefore = false;
1751   // We use a conservative reflowing strategy. Reflow starts after a line is
1752   // broken or the corresponding whitespace compressed. Reflow ends as soon as a
1753   // line that doesn't get reflown with the previous line is reached.
1754   bool Reflow = false;
1755   // Keep track of where we are in the token:
1756   // Where we are in the content of the current logical line.
1757   unsigned TailOffset = 0;
1758   // The column number we're currently at.
1759   unsigned ContentStartColumn =
1760       Token->getContentStartColumn(0, /*Break=*/false);
1761   // The number of columns left in the current logical line after TailOffset.
1762   unsigned RemainingTokenColumns =
1763       Token->getRemainingLength(0, TailOffset, ContentStartColumn);
1764   // Adapt the start of the token, for example indent.
1765   if (!DryRun)
1766     Token->adaptStartOfLine(0, Whitespaces);
1767 
1768   unsigned Penalty = 0;
1769   DEBUG(llvm::dbgs() << "Breaking protruding token at column " << StartColumn
1770                      << ".\n");
1771   for (unsigned LineIndex = 0, EndIndex = Token->getLineCount();
1772        LineIndex != EndIndex; ++LineIndex) {
1773     DEBUG(llvm::dbgs() << "  Line: " << LineIndex << " (Reflow: " << Reflow
1774                        << ")\n");
1775     NewBreakBefore = false;
1776     // If we did reflow the previous line, we'll try reflowing again. Otherwise
1777     // we'll start reflowing if the current line is broken or whitespace is
1778     // compressed.
1779     bool TryReflow = Reflow;
1780     // Break the current token until we can fit the rest of the line.
1781     while (ContentStartColumn + RemainingTokenColumns > ColumnLimit) {
1782       DEBUG(llvm::dbgs() << "    Over limit, need: "
1783                          << (ContentStartColumn + RemainingTokenColumns)
1784                          << ", space: " << ColumnLimit
1785                          << ", reflown prefix: " << ContentStartColumn
1786                          << ", offset in line: " << TailOffset << "\n");
1787       // If the current token doesn't fit, find the latest possible split in the
1788       // current line so that breaking at it will be under the column limit.
1789       // FIXME: Use the earliest possible split while reflowing to correctly
1790       // compress whitespace within a line.
1791       BreakableToken::Split Split =
1792           Token->getSplit(LineIndex, TailOffset, ColumnLimit,
1793                           ContentStartColumn, CommentPragmasRegex);
1794       if (Split.first == StringRef::npos) {
1795         // No break opportunity - update the penalty and continue with the next
1796         // logical line.
1797         if (LineIndex < EndIndex - 1)
1798           // The last line's penalty is handled in addNextStateToQueue().
1799           Penalty += Style.PenaltyExcessCharacter *
1800                      (ContentStartColumn + RemainingTokenColumns - ColumnLimit);
1801         DEBUG(llvm::dbgs() << "    No break opportunity.\n");
1802         break;
1803       }
1804       assert(Split.first != 0);
1805 
1806       if (Token->supportsReflow()) {
1807         // Check whether the next natural split point after the current one can
1808         // still fit the line, either because we can compress away whitespace,
1809         // or because the penalty the excess characters introduce is lower than
1810         // the break penalty.
1811         // We only do this for tokens that support reflowing, and thus allow us
1812         // to change the whitespace arbitrarily (e.g. comments).
1813         // Other tokens, like string literals, can be broken on arbitrary
1814         // positions.
1815 
1816         // First, compute the columns from TailOffset to the next possible split
1817         // position.
1818         // For example:
1819         // ColumnLimit:     |
1820         // // Some text   that    breaks
1821         //    ^ tail offset
1822         //             ^-- split
1823         //    ^-------- to split columns
1824         //                    ^--- next split
1825         //    ^--------------- to next split columns
1826         unsigned ToSplitColumns = Token->getRangeLength(
1827             LineIndex, TailOffset, Split.first, ContentStartColumn);
1828         DEBUG(llvm::dbgs() << "    ToSplit: " << ToSplitColumns << "\n");
1829 
1830         BreakableToken::Split NextSplit = Token->getSplit(
1831             LineIndex, TailOffset + Split.first + Split.second, ColumnLimit,
1832             ContentStartColumn + ToSplitColumns + 1, CommentPragmasRegex);
1833         // Compute the columns necessary to fit the next non-breakable sequence
1834         // into the current line.
1835         unsigned ToNextSplitColumns = 0;
1836         if (NextSplit.first == StringRef::npos) {
1837           ToNextSplitColumns = Token->getRemainingLength(LineIndex, TailOffset,
1838                                                          ContentStartColumn);
1839         } else {
1840           ToNextSplitColumns = Token->getRangeLength(
1841               LineIndex, TailOffset,
1842               Split.first + Split.second + NextSplit.first, ContentStartColumn);
1843         }
1844         // Compress the whitespace between the break and the start of the next
1845         // unbreakable sequence.
1846         ToNextSplitColumns =
1847             Token->getLengthAfterCompression(ToNextSplitColumns, Split);
1848         DEBUG(llvm::dbgs() << "    ContentStartColumn: " << ContentStartColumn
1849                            << "\n");
1850         DEBUG(llvm::dbgs() << "    ToNextSplit: " << ToNextSplitColumns << "\n");
1851         // If the whitespace compression makes us fit, continue on the current
1852         // line.
1853         bool ContinueOnLine =
1854             ContentStartColumn + ToNextSplitColumns <= ColumnLimit;
1855         unsigned ExcessCharactersPenalty = 0;
1856         if (!ContinueOnLine && !Strict) {
1857           // Similarly, if the excess characters' penalty is lower than the
1858           // penalty of introducing a new break, continue on the current line.
1859           ExcessCharactersPenalty =
1860               (ContentStartColumn + ToNextSplitColumns - ColumnLimit) *
1861               Style.PenaltyExcessCharacter;
1862           DEBUG(llvm::dbgs()
1863                 << "    Penalty excess: " << ExcessCharactersPenalty
1864                 << "\n            break : " << NewBreakPenalty << "\n");
1865           if (ExcessCharactersPenalty < NewBreakPenalty) {
1866             Exceeded = true;
1867             ContinueOnLine = true;
1868           }
1869         }
1870         if (ContinueOnLine) {
1871           DEBUG(llvm::dbgs() << "    Continuing on line...\n");
1872           // The current line fits after compressing the whitespace - reflow
1873           // the next line into it if possible.
1874           TryReflow = true;
1875           if (!DryRun)
1876             Token->compressWhitespace(LineIndex, TailOffset, Split,
1877                                       Whitespaces);
1878           // When we continue on the same line, leave one space between content.
1879           ContentStartColumn += ToSplitColumns + 1;
1880           Penalty += ExcessCharactersPenalty;
1881           TailOffset += Split.first + Split.second;
1882           RemainingTokenColumns = Token->getRemainingLength(
1883               LineIndex, TailOffset, ContentStartColumn);
1884           continue;
1885         }
1886       }
1887       DEBUG(llvm::dbgs() << "    Breaking...\n");
1888       ContentStartColumn =
1889           Token->getContentStartColumn(LineIndex, /*Break=*/true);
1890       unsigned NewRemainingTokenColumns = Token->getRemainingLength(
1891           LineIndex, TailOffset + Split.first + Split.second,
1892           ContentStartColumn);
1893 
1894       // When breaking before a tab character, it may be moved by a few columns,
1895       // but will still be expanded to the next tab stop, so we don't save any
1896       // columns.
1897       if (NewRemainingTokenColumns == RemainingTokenColumns) {
1898         // FIXME: Do we need to adjust the penalty?
1899         break;
1900       }
1901       assert(NewRemainingTokenColumns < RemainingTokenColumns);
1902 
1903       DEBUG(llvm::dbgs() << "    Breaking at: " << TailOffset + Split.first
1904                          << ", " << Split.second << "\n");
1905       if (!DryRun)
1906         Token->insertBreak(LineIndex, TailOffset, Split, Whitespaces);
1907 
1908       Penalty += NewBreakPenalty;
1909       TailOffset += Split.first + Split.second;
1910       RemainingTokenColumns = NewRemainingTokenColumns;
1911       BreakInserted = true;
1912       NewBreakBefore = true;
1913     }
1914     // In case there's another line, prepare the state for the start of the next
1915     // line.
1916     if (LineIndex + 1 != EndIndex) {
1917       unsigned NextLineIndex = LineIndex + 1;
1918       if (NewBreakBefore)
1919         // After breaking a line, try to reflow the next line into the current
1920         // one once RemainingTokenColumns fits.
1921         TryReflow = true;
1922       if (TryReflow) {
1923         // We decided that we want to try reflowing the next line into the
1924         // current one.
1925         // We will now adjust the state as if the reflow is successful (in
1926         // preparation for the next line), and see whether that works. If we
1927         // decide that we cannot reflow, we will later reset the state to the
1928         // start of the next line.
1929         Reflow = false;
1930         // As we did not continue breaking the line, RemainingTokenColumns is
1931         // known to fit after ContentStartColumn. Adapt ContentStartColumn to
1932         // the position at which we want to format the next line if we do
1933         // actually reflow.
1934         // When we reflow, we need to add a space between the end of the current
1935         // line and the next line's start column.
1936         ContentStartColumn += RemainingTokenColumns + 1;
1937         // Get the split that we need to reflow next logical line into the end
1938         // of the current one; the split will include any leading whitespace of
1939         // the next logical line.
1940         BreakableToken::Split SplitBeforeNext =
1941             Token->getReflowSplit(NextLineIndex, CommentPragmasRegex);
1942         DEBUG(llvm::dbgs() << "    Size of reflown text: " << ContentStartColumn
1943                            << "\n    Potential reflow split: ");
1944         if (SplitBeforeNext.first != StringRef::npos) {
1945           DEBUG(llvm::dbgs() << SplitBeforeNext.first << ", "
1946                              << SplitBeforeNext.second << "\n");
1947           TailOffset = SplitBeforeNext.first + SplitBeforeNext.second;
1948           // If the rest of the next line fits into the current line below the
1949           // column limit, we can safely reflow.
1950           RemainingTokenColumns = Token->getRemainingLength(
1951               NextLineIndex, TailOffset, ContentStartColumn);
1952           Reflow = true;
1953           if (ContentStartColumn + RemainingTokenColumns > ColumnLimit) {
1954             DEBUG(llvm::dbgs() << "    Over limit after reflow, need: "
1955                                << (ContentStartColumn + RemainingTokenColumns)
1956                                << ", space: " << ColumnLimit
1957                                << ", reflown prefix: " << ContentStartColumn
1958                                << ", offset in line: " << TailOffset << "\n");
1959             // If the whole next line does not fit, try to find a point in
1960             // the next line at which we can break so that attaching the part
1961             // of the next line to that break point onto the current line is
1962             // below the column limit.
1963             BreakableToken::Split Split =
1964                 Token->getSplit(NextLineIndex, TailOffset, ColumnLimit,
1965                                 ContentStartColumn, CommentPragmasRegex);
1966             if (Split.first == StringRef::npos) {
1967               DEBUG(llvm::dbgs() << "    Did not find later break\n");
1968               Reflow = false;
1969             } else {
1970               // Check whether the first split point gets us below the column
1971               // limit. Note that we will execute this split below as part of
1972               // the normal token breaking and reflow logic within the line.
1973               unsigned ToSplitColumns = Token->getRangeLength(
1974                   NextLineIndex, TailOffset, Split.first, ContentStartColumn);
1975               if (ContentStartColumn + ToSplitColumns > ColumnLimit) {
1976                 DEBUG(llvm::dbgs() << "    Next split protrudes, need: "
1977                                    << (ContentStartColumn + ToSplitColumns)
1978                                    << ", space: " << ColumnLimit);
1979                 unsigned ExcessCharactersPenalty =
1980                     (ContentStartColumn + ToSplitColumns - ColumnLimit) *
1981                     Style.PenaltyExcessCharacter;
1982                 if (NewBreakPenalty < ExcessCharactersPenalty) {
1983                   Reflow = false;
1984                 }
1985               }
1986             }
1987           }
1988         } else {
1989           DEBUG(llvm::dbgs() << "not found.\n");
1990         }
1991       }
1992       if (!Reflow) {
1993         // If we didn't reflow into the next line, the only space to consider is
1994         // the next logical line. Reset our state to match the start of the next
1995         // line.
1996         TailOffset = 0;
1997         ContentStartColumn =
1998             Token->getContentStartColumn(NextLineIndex, /*Break=*/false);
1999         RemainingTokenColumns = Token->getRemainingLength(
2000             NextLineIndex, TailOffset, ContentStartColumn);
2001         // Adapt the start of the token, for example indent.
2002         if (!DryRun)
2003           Token->adaptStartOfLine(NextLineIndex, Whitespaces);
2004       } else {
2005         // If we found a reflow split and have added a new break before the next
2006         // line, we are going to remove the line break at the start of the next
2007         // logical line. For example, here we'll add a new line break after
2008         // 'text', and subsequently delete the line break between 'that' and
2009         // 'reflows'.
2010         //   // some text that
2011         //   // reflows
2012         // ->
2013         //   // some text
2014         //   // that reflows
2015         // When adding the line break, we also added the penalty for it, so we
2016         // need to subtract that penalty again when we remove the line break due
2017         // to reflowing.
2018         if (NewBreakBefore) {
2019           assert(Penalty >= NewBreakPenalty);
2020           Penalty -= NewBreakPenalty;
2021         }
2022         if (!DryRun)
2023           Token->reflow(NextLineIndex, Whitespaces);
2024       }
2025     }
2026   }
2027 
2028   BreakableToken::Split SplitAfterLastLine =
2029       Token->getSplitAfterLastLine(TailOffset);
2030   if (SplitAfterLastLine.first != StringRef::npos) {
2031     DEBUG(llvm::dbgs() << "Replacing whitespace after last line.\n");
2032     if (!DryRun)
2033       Token->replaceWhitespaceAfterLastLine(TailOffset, SplitAfterLastLine,
2034                                             Whitespaces);
2035     ContentStartColumn =
2036         Token->getContentStartColumn(Token->getLineCount() - 1, /*Break=*/true);
2037     RemainingTokenColumns = Token->getRemainingLength(
2038         Token->getLineCount() - 1,
2039         TailOffset + SplitAfterLastLine.first + SplitAfterLastLine.second,
2040         ContentStartColumn);
2041   }
2042 
2043   State.Column = ContentStartColumn + RemainingTokenColumns -
2044                  Current.UnbreakableTailLength;
2045 
2046   if (BreakInserted) {
2047     // If we break the token inside a parameter list, we need to break before
2048     // the next parameter on all levels, so that the next parameter is clearly
2049     // visible. Line comments already introduce a break.
2050     if (Current.isNot(TT_LineComment)) {
2051       for (unsigned i = 0, e = State.Stack.size(); i != e; ++i)
2052         State.Stack[i].BreakBeforeParameter = true;
2053     }
2054 
2055     if (Current.is(TT_BlockComment))
2056       State.NoContinuation = true;
2057 
2058     State.Stack.back().LastSpace = StartColumn;
2059   }
2060 
2061   Token->updateNextToken(State);
2062 
2063   return {Penalty, Exceeded};
2064 }
2065 
2066 unsigned ContinuationIndenter::getColumnLimit(const LineState &State) const {
2067   // In preprocessor directives reserve two chars for trailing " \"
2068   return Style.ColumnLimit - (State.Line->InPPDirective ? 2 : 0);
2069 }
2070 
2071 bool ContinuationIndenter::nextIsMultilineString(const LineState &State) {
2072   const FormatToken &Current = *State.NextToken;
2073   if (!Current.isStringLiteral() || Current.is(TT_ImplicitStringLiteral))
2074     return false;
2075   // We never consider raw string literals "multiline" for the purpose of
2076   // AlwaysBreakBeforeMultilineStrings implementation as they are special-cased
2077   // (see TokenAnnotator::mustBreakBefore().
2078   if (Current.TokenText.startswith("R\""))
2079     return false;
2080   if (Current.IsMultiline)
2081     return true;
2082   if (Current.getNextNonComment() &&
2083       Current.getNextNonComment()->isStringLiteral())
2084     return true; // Implicit concatenation.
2085   if (Style.ColumnLimit != 0 && Style.BreakStringLiterals &&
2086       State.Column + Current.ColumnWidth + Current.UnbreakableTailLength >
2087           Style.ColumnLimit)
2088     return true; // String will be split.
2089   return false;
2090 }
2091 
2092 } // namespace format
2093 } // namespace clang
2094