1 //===--- UnwrappedLineFormatter.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 #include "UnwrappedLineFormatter.h"
11 #include "WhitespaceManager.h"
12 #include "llvm/Support/Debug.h"
13 
14 #define DEBUG_TYPE "format-formatter"
15 
16 namespace clang {
17 namespace format {
18 
19 namespace {
20 
21 bool startsExternCBlock(const AnnotatedLine &Line) {
22   const FormatToken *Next = Line.First->getNextNonComment();
23   const FormatToken *NextNext = Next ? Next->getNextNonComment() : nullptr;
24   return Line.startsWith(tok::kw_extern) && Next && Next->isStringLiteral() &&
25          NextNext && NextNext->is(tok::l_brace);
26 }
27 
28 /// \brief Tracks the indent level of \c AnnotatedLines across levels.
29 ///
30 /// \c nextLine must be called for each \c AnnotatedLine, after which \c
31 /// getIndent() will return the indent for the last line \c nextLine was called
32 /// with.
33 /// If the line is not formatted (and thus the indent does not change), calling
34 /// \c adjustToUnmodifiedLine after the call to \c nextLine will cause
35 /// subsequent lines on the same level to be indented at the same level as the
36 /// given line.
37 class LevelIndentTracker {
38 public:
39   LevelIndentTracker(const FormatStyle &Style,
40                      const AdditionalKeywords &Keywords, unsigned StartLevel,
41                      int AdditionalIndent)
42       : Style(Style), Keywords(Keywords), AdditionalIndent(AdditionalIndent) {
43     for (unsigned i = 0; i != StartLevel; ++i)
44       IndentForLevel.push_back(Style.IndentWidth * i + AdditionalIndent);
45   }
46 
47   /// \brief Returns the indent for the current line.
48   unsigned getIndent() const { return Indent; }
49 
50   /// \brief Update the indent state given that \p Line is going to be formatted
51   /// next.
52   void nextLine(const AnnotatedLine &Line) {
53     Offset = getIndentOffset(*Line.First);
54     // Update the indent level cache size so that we can rely on it
55     // having the right size in adjustToUnmodifiedline.
56     while (IndentForLevel.size() <= Line.Level)
57       IndentForLevel.push_back(-1);
58     if (Line.InPPDirective) {
59       Indent = Line.Level * Style.IndentWidth + AdditionalIndent;
60     } else {
61       IndentForLevel.resize(Line.Level + 1);
62       Indent = getIndent(IndentForLevel, Line.Level);
63     }
64     if (static_cast<int>(Indent) + Offset >= 0)
65       Indent += Offset;
66   }
67 
68   /// \brief Update the level indent to adapt to the given \p Line.
69   ///
70   /// When a line is not formatted, we move the subsequent lines on the same
71   /// level to the same indent.
72   /// Note that \c nextLine must have been called before this method.
73   void adjustToUnmodifiedLine(const AnnotatedLine &Line) {
74     unsigned LevelIndent = Line.First->OriginalColumn;
75     if (static_cast<int>(LevelIndent) - Offset >= 0)
76       LevelIndent -= Offset;
77     if ((!Line.First->is(tok::comment) || IndentForLevel[Line.Level] == -1) &&
78         !Line.InPPDirective)
79       IndentForLevel[Line.Level] = LevelIndent;
80   }
81 
82 private:
83   /// \brief Get the offset of the line relatively to the level.
84   ///
85   /// For example, 'public:' labels in classes are offset by 1 or 2
86   /// characters to the left from their level.
87   int getIndentOffset(const FormatToken &RootToken) {
88     if (Style.Language == FormatStyle::LK_Java ||
89         Style.Language == FormatStyle::LK_JavaScript)
90       return 0;
91     if (RootToken.isAccessSpecifier(false) ||
92         RootToken.isObjCAccessSpecifier() ||
93         (RootToken.is(Keywords.kw_signals) && RootToken.Next &&
94          RootToken.Next->is(tok::colon)))
95       return Style.AccessModifierOffset;
96     return 0;
97   }
98 
99   /// \brief Get the indent of \p Level from \p IndentForLevel.
100   ///
101   /// \p IndentForLevel must contain the indent for the level \c l
102   /// at \p IndentForLevel[l], or a value < 0 if the indent for
103   /// that level is unknown.
104   unsigned getIndent(ArrayRef<int> IndentForLevel, unsigned Level) {
105     if (IndentForLevel[Level] != -1)
106       return IndentForLevel[Level];
107     if (Level == 0)
108       return 0;
109     return getIndent(IndentForLevel, Level - 1) + Style.IndentWidth;
110   }
111 
112   const FormatStyle &Style;
113   const AdditionalKeywords &Keywords;
114   const unsigned AdditionalIndent;
115 
116   /// \brief The indent in characters for each level.
117   std::vector<int> IndentForLevel;
118 
119   /// \brief Offset of the current line relative to the indent level.
120   ///
121   /// For example, the 'public' keywords is often indented with a negative
122   /// offset.
123   int Offset = 0;
124 
125   /// \brief The current line's indent.
126   unsigned Indent = 0;
127 };
128 
129 class LineJoiner {
130 public:
131   LineJoiner(const FormatStyle &Style, const AdditionalKeywords &Keywords,
132              const SmallVectorImpl<AnnotatedLine *> &Lines)
133       : Style(Style), Keywords(Keywords), End(Lines.end()),
134         Next(Lines.begin()) {}
135 
136   /// \brief Returns the next line, merging multiple lines into one if possible.
137   const AnnotatedLine *getNextMergedLine(bool DryRun,
138                                          LevelIndentTracker &IndentTracker) {
139     if (Next == End)
140       return nullptr;
141     const AnnotatedLine *Current = *Next;
142     IndentTracker.nextLine(*Current);
143     unsigned MergedLines =
144         tryFitMultipleLinesInOne(IndentTracker.getIndent(), Next, End);
145     if (MergedLines > 0 && Style.ColumnLimit == 0)
146       // Disallow line merging if there is a break at the start of one of the
147       // input lines.
148       for (unsigned i = 0; i < MergedLines; ++i)
149         if (Next[i + 1]->First->NewlinesBefore > 0)
150           MergedLines = 0;
151     if (!DryRun)
152       for (unsigned i = 0; i < MergedLines; ++i)
153         join(*Next[i], *Next[i + 1]);
154     Next = Next + MergedLines + 1;
155     return Current;
156   }
157 
158 private:
159   /// \brief Calculates how many lines can be merged into 1 starting at \p I.
160   unsigned
161   tryFitMultipleLinesInOne(unsigned Indent,
162                            SmallVectorImpl<AnnotatedLine *>::const_iterator I,
163                            SmallVectorImpl<AnnotatedLine *>::const_iterator E) {
164     // Can't join the last line with anything.
165     if (I + 1 == E)
166       return 0;
167     // We can never merge stuff if there are trailing line comments.
168     const AnnotatedLine *TheLine = *I;
169     if (TheLine->Last->is(TT_LineComment))
170       return 0;
171     if (I[1]->Type == LT_Invalid || I[1]->First->MustBreakBefore)
172       return 0;
173     if (TheLine->InPPDirective &&
174         (!I[1]->InPPDirective || I[1]->First->HasUnescapedNewline))
175       return 0;
176 
177     if (Style.ColumnLimit > 0 && Indent > Style.ColumnLimit)
178       return 0;
179 
180     unsigned Limit =
181         Style.ColumnLimit == 0 ? UINT_MAX : Style.ColumnLimit - Indent;
182     // If we already exceed the column limit, we set 'Limit' to 0. The different
183     // tryMerge..() functions can then decide whether to still do merging.
184     Limit = TheLine->Last->TotalLength > Limit
185                 ? 0
186                 : Limit - TheLine->Last->TotalLength;
187 
188     // FIXME: TheLine->Level != 0 might or might not be the right check to do.
189     // If necessary, change to something smarter.
190     bool MergeShortFunctions =
191         Style.AllowShortFunctionsOnASingleLine == FormatStyle::SFS_All ||
192         (Style.AllowShortFunctionsOnASingleLine >= FormatStyle::SFS_Empty &&
193          I[1]->First->is(tok::r_brace)) ||
194         (Style.AllowShortFunctionsOnASingleLine == FormatStyle::SFS_Inline &&
195          TheLine->Level != 0);
196 
197     if (TheLine->Last->is(TT_FunctionLBrace) &&
198         TheLine->First != TheLine->Last) {
199       return MergeShortFunctions ? tryMergeSimpleBlock(I, E, Limit) : 0;
200     }
201     if (TheLine->Last->is(tok::l_brace)) {
202       return Style.BreakBeforeBraces == FormatStyle::BS_Attach
203                  ? tryMergeSimpleBlock(I, E, Limit)
204                  : 0;
205     }
206     if (I[1]->First->is(TT_FunctionLBrace) &&
207         Style.BreakBeforeBraces != FormatStyle::BS_Attach) {
208       if (I[1]->Last->is(TT_LineComment))
209         return 0;
210 
211       // Check for Limit <= 2 to account for the " {".
212       if (Limit <= 2 || (Style.ColumnLimit == 0 && containsMustBreak(TheLine)))
213         return 0;
214       Limit -= 2;
215 
216       unsigned MergedLines = 0;
217       if (MergeShortFunctions) {
218         MergedLines = tryMergeSimpleBlock(I + 1, E, Limit);
219         // If we managed to merge the block, count the function header, which is
220         // on a separate line.
221         if (MergedLines > 0)
222           ++MergedLines;
223       }
224       return MergedLines;
225     }
226     if (TheLine->First->is(tok::kw_if)) {
227       return Style.AllowShortIfStatementsOnASingleLine
228                  ? tryMergeSimpleControlStatement(I, E, Limit)
229                  : 0;
230     }
231     if (TheLine->First->isOneOf(tok::kw_for, tok::kw_while)) {
232       return Style.AllowShortLoopsOnASingleLine
233                  ? tryMergeSimpleControlStatement(I, E, Limit)
234                  : 0;
235     }
236     if (TheLine->First->isOneOf(tok::kw_case, tok::kw_default)) {
237       return Style.AllowShortCaseLabelsOnASingleLine
238                  ? tryMergeShortCaseLabels(I, E, Limit)
239                  : 0;
240     }
241     if (TheLine->InPPDirective &&
242         (TheLine->First->HasUnescapedNewline || TheLine->First->IsFirst)) {
243       return tryMergeSimplePPDirective(I, E, Limit);
244     }
245     return 0;
246   }
247 
248   unsigned
249   tryMergeSimplePPDirective(SmallVectorImpl<AnnotatedLine *>::const_iterator I,
250                             SmallVectorImpl<AnnotatedLine *>::const_iterator E,
251                             unsigned Limit) {
252     if (Limit == 0)
253       return 0;
254     if (I + 2 != E && I[2]->InPPDirective && !I[2]->First->HasUnescapedNewline)
255       return 0;
256     if (1 + I[1]->Last->TotalLength > Limit)
257       return 0;
258     return 1;
259   }
260 
261   unsigned tryMergeSimpleControlStatement(
262       SmallVectorImpl<AnnotatedLine *>::const_iterator I,
263       SmallVectorImpl<AnnotatedLine *>::const_iterator E, unsigned Limit) {
264     if (Limit == 0)
265       return 0;
266     if ((Style.BreakBeforeBraces == FormatStyle::BS_Allman ||
267          Style.BreakBeforeBraces == FormatStyle::BS_GNU) &&
268         (I[1]->First->is(tok::l_brace) && !Style.AllowShortBlocksOnASingleLine))
269       return 0;
270     if (I[1]->InPPDirective != (*I)->InPPDirective ||
271         (I[1]->InPPDirective && I[1]->First->HasUnescapedNewline))
272       return 0;
273     Limit = limitConsideringMacros(I + 1, E, Limit);
274     AnnotatedLine &Line = **I;
275     if (Line.Last->isNot(tok::r_paren))
276       return 0;
277     if (1 + I[1]->Last->TotalLength > Limit)
278       return 0;
279     if (I[1]->First->isOneOf(tok::semi, tok::kw_if, tok::kw_for, tok::kw_while,
280                              TT_LineComment))
281       return 0;
282     // Only inline simple if's (no nested if or else).
283     if (I + 2 != E && Line.startsWith(tok::kw_if) &&
284         I[2]->First->is(tok::kw_else))
285       return 0;
286     return 1;
287   }
288 
289   unsigned
290   tryMergeShortCaseLabels(SmallVectorImpl<AnnotatedLine *>::const_iterator I,
291                           SmallVectorImpl<AnnotatedLine *>::const_iterator E,
292                           unsigned Limit) {
293     if (Limit == 0 || I + 1 == E ||
294         I[1]->First->isOneOf(tok::kw_case, tok::kw_default))
295       return 0;
296     unsigned NumStmts = 0;
297     unsigned Length = 0;
298     bool InPPDirective = I[0]->InPPDirective;
299     for (; NumStmts < 3; ++NumStmts) {
300       if (I + 1 + NumStmts == E)
301         break;
302       const AnnotatedLine *Line = I[1 + NumStmts];
303       if (Line->InPPDirective != InPPDirective)
304         break;
305       if (Line->First->isOneOf(tok::kw_case, tok::kw_default, tok::r_brace))
306         break;
307       if (Line->First->isOneOf(tok::kw_if, tok::kw_for, tok::kw_switch,
308                                tok::kw_while, tok::comment) ||
309           Line->Last->is(tok::comment))
310         return 0;
311       Length += I[1 + NumStmts]->Last->TotalLength + 1; // 1 for the space.
312     }
313     if (NumStmts == 0 || NumStmts == 3 || Length > Limit)
314       return 0;
315     return NumStmts;
316   }
317 
318   unsigned
319   tryMergeSimpleBlock(SmallVectorImpl<AnnotatedLine *>::const_iterator I,
320                       SmallVectorImpl<AnnotatedLine *>::const_iterator E,
321                       unsigned Limit) {
322     AnnotatedLine &Line = **I;
323 
324     // Don't merge ObjC @ keywords and methods.
325     // FIXME: If an option to allow short exception handling clauses on a single
326     // line is added, change this to not return for @try and friends.
327     if (Style.Language != FormatStyle::LK_Java &&
328         Line.First->isOneOf(tok::at, tok::minus, tok::plus))
329       return 0;
330 
331     // Check that the current line allows merging. This depends on whether we
332     // are in a control flow statements as well as several style flags.
333     if (Line.First->isOneOf(tok::kw_else, tok::kw_case) ||
334         (Line.First->Next && Line.First->Next->is(tok::kw_else)))
335       return 0;
336     if (Line.First->isOneOf(tok::kw_if, tok::kw_while, tok::kw_do, tok::kw_try,
337                             tok::kw___try, tok::kw_catch, tok::kw___finally,
338                             tok::kw_for, tok::r_brace, Keywords.kw___except)) {
339       if (!Style.AllowShortBlocksOnASingleLine)
340         return 0;
341       if (!Style.AllowShortIfStatementsOnASingleLine &&
342           Line.startsWith(tok::kw_if))
343         return 0;
344       if (!Style.AllowShortLoopsOnASingleLine &&
345           Line.First->isOneOf(tok::kw_while, tok::kw_do, tok::kw_for))
346         return 0;
347       // FIXME: Consider an option to allow short exception handling clauses on
348       // a single line.
349       // FIXME: This isn't covered by tests.
350       // FIXME: For catch, __except, __finally the first token on the line
351       // is '}', so this isn't correct here.
352       if (Line.First->isOneOf(tok::kw_try, tok::kw___try, tok::kw_catch,
353                               Keywords.kw___except, tok::kw___finally))
354         return 0;
355     }
356 
357     FormatToken *Tok = I[1]->First;
358     if (Tok->is(tok::r_brace) && !Tok->MustBreakBefore &&
359         (Tok->getNextNonComment() == nullptr ||
360          Tok->getNextNonComment()->is(tok::semi))) {
361       // We merge empty blocks even if the line exceeds the column limit.
362       Tok->SpacesRequiredBefore = 0;
363       Tok->CanBreakBefore = true;
364       return 1;
365     } else if (Limit != 0 && !Line.startsWith(tok::kw_namespace) &&
366                !startsExternCBlock(Line)) {
367       // We don't merge short records.
368       if (Line.First->isOneOf(tok::kw_class, tok::kw_union, tok::kw_struct,
369                               Keywords.kw_interface))
370         return 0;
371 
372       // Check that we still have three lines and they fit into the limit.
373       if (I + 2 == E || I[2]->Type == LT_Invalid)
374         return 0;
375       Limit = limitConsideringMacros(I + 2, E, Limit);
376 
377       if (!nextTwoLinesFitInto(I, Limit))
378         return 0;
379 
380       // Second, check that the next line does not contain any braces - if it
381       // does, readability declines when putting it into a single line.
382       if (I[1]->Last->is(TT_LineComment))
383         return 0;
384       do {
385         if (Tok->is(tok::l_brace) && Tok->BlockKind != BK_BracedInit)
386           return 0;
387         Tok = Tok->Next;
388       } while (Tok);
389 
390       // Last, check that the third line starts with a closing brace.
391       Tok = I[2]->First;
392       if (Tok->isNot(tok::r_brace))
393         return 0;
394 
395       // Don't merge "if (a) { .. } else {".
396       if (Tok->Next && Tok->Next->is(tok::kw_else))
397         return 0;
398 
399       return 2;
400     }
401     return 0;
402   }
403 
404   /// Returns the modified column limit for \p I if it is inside a macro and
405   /// needs a trailing '\'.
406   unsigned
407   limitConsideringMacros(SmallVectorImpl<AnnotatedLine *>::const_iterator I,
408                          SmallVectorImpl<AnnotatedLine *>::const_iterator E,
409                          unsigned Limit) {
410     if (I[0]->InPPDirective && I + 1 != E &&
411         !I[1]->First->HasUnescapedNewline && !I[1]->First->is(tok::eof)) {
412       return Limit < 2 ? 0 : Limit - 2;
413     }
414     return Limit;
415   }
416 
417   bool nextTwoLinesFitInto(SmallVectorImpl<AnnotatedLine *>::const_iterator I,
418                            unsigned Limit) {
419     if (I[1]->First->MustBreakBefore || I[2]->First->MustBreakBefore)
420       return false;
421     return 1 + I[1]->Last->TotalLength + 1 + I[2]->Last->TotalLength <= Limit;
422   }
423 
424   bool containsMustBreak(const AnnotatedLine *Line) {
425     for (const FormatToken *Tok = Line->First; Tok; Tok = Tok->Next) {
426       if (Tok->MustBreakBefore)
427         return true;
428     }
429     return false;
430   }
431 
432   void join(AnnotatedLine &A, const AnnotatedLine &B) {
433     assert(!A.Last->Next);
434     assert(!B.First->Previous);
435     if (B.Affected)
436       A.Affected = true;
437     A.Last->Next = B.First;
438     B.First->Previous = A.Last;
439     B.First->CanBreakBefore = true;
440     unsigned LengthA = A.Last->TotalLength + B.First->SpacesRequiredBefore;
441     for (FormatToken *Tok = B.First; Tok; Tok = Tok->Next) {
442       Tok->TotalLength += LengthA;
443       A.Last = Tok;
444     }
445   }
446 
447   const FormatStyle &Style;
448   const AdditionalKeywords &Keywords;
449   const SmallVectorImpl<AnnotatedLine *>::const_iterator End;
450 
451   SmallVectorImpl<AnnotatedLine *>::const_iterator Next;
452 };
453 
454 static void markFinalized(FormatToken *Tok) {
455   for (; Tok; Tok = Tok->Next) {
456     Tok->Finalized = true;
457     for (AnnotatedLine *Child : Tok->Children)
458       markFinalized(Child->First);
459   }
460 }
461 
462 #ifndef NDEBUG
463 static void printLineState(const LineState &State) {
464   llvm::dbgs() << "State: ";
465   for (const ParenState &P : State.Stack) {
466     llvm::dbgs() << P.Indent << "|" << P.LastSpace << "|" << P.NestedBlockIndent
467                  << " ";
468   }
469   llvm::dbgs() << State.NextToken->TokenText << "\n";
470 }
471 #endif
472 
473 /// \brief Base class for classes that format one \c AnnotatedLine.
474 class LineFormatter {
475 public:
476   LineFormatter(ContinuationIndenter *Indenter, WhitespaceManager *Whitespaces,
477                 const FormatStyle &Style,
478                 UnwrappedLineFormatter *BlockFormatter)
479       : Indenter(Indenter), Whitespaces(Whitespaces), Style(Style),
480         BlockFormatter(BlockFormatter) {}
481   virtual ~LineFormatter() {}
482 
483   /// \brief Formats an \c AnnotatedLine and returns the penalty.
484   ///
485   /// If \p DryRun is \c false, directly applies the changes.
486   virtual unsigned formatLine(const AnnotatedLine &Line, unsigned FirstIndent,
487                               bool DryRun) = 0;
488 
489 protected:
490   /// \brief If the \p State's next token is an r_brace closing a nested block,
491   /// format the nested block before it.
492   ///
493   /// Returns \c true if all children could be placed successfully and adapts
494   /// \p Penalty as well as \p State. If \p DryRun is false, also directly
495   /// creates changes using \c Whitespaces.
496   ///
497   /// The crucial idea here is that children always get formatted upon
498   /// encountering the closing brace right after the nested block. Now, if we
499   /// are currently trying to keep the "}" on the same line (i.e. \p NewLine is
500   /// \c false), the entire block has to be kept on the same line (which is only
501   /// possible if it fits on the line, only contains a single statement, etc.
502   ///
503   /// If \p NewLine is true, we format the nested block on separate lines, i.e.
504   /// break after the "{", format all lines with correct indentation and the put
505   /// the closing "}" on yet another new line.
506   ///
507   /// This enables us to keep the simple structure of the
508   /// \c UnwrappedLineFormatter, where we only have two options for each token:
509   /// break or don't break.
510   bool formatChildren(LineState &State, bool NewLine, bool DryRun,
511                       unsigned &Penalty) {
512     const FormatToken *LBrace = State.NextToken->getPreviousNonComment();
513     FormatToken &Previous = *State.NextToken->Previous;
514     if (!LBrace || LBrace->isNot(tok::l_brace) ||
515         LBrace->BlockKind != BK_Block || Previous.Children.size() == 0)
516       // The previous token does not open a block. Nothing to do. We don't
517       // assert so that we can simply call this function for all tokens.
518       return true;
519 
520     if (NewLine) {
521       int AdditionalIndent = State.Stack.back().Indent -
522                              Previous.Children[0]->Level * Style.IndentWidth;
523 
524       Penalty +=
525           BlockFormatter->format(Previous.Children, DryRun, AdditionalIndent,
526                                  /*FixBadIndentation=*/true);
527       return true;
528     }
529 
530     if (Previous.Children[0]->First->MustBreakBefore)
531       return false;
532 
533     // Cannot merge multiple statements into a single line.
534     if (Previous.Children.size() > 1)
535       return false;
536 
537     // Cannot merge into one line if this line ends on a comment.
538     if (Previous.is(tok::comment))
539       return false;
540 
541     // We can't put the closing "}" on a line with a trailing comment.
542     if (Previous.Children[0]->Last->isTrailingComment())
543       return false;
544 
545     // If the child line exceeds the column limit, we wouldn't want to merge it.
546     // We add +2 for the trailing " }".
547     if (Style.ColumnLimit > 0 &&
548         Previous.Children[0]->Last->TotalLength + State.Column + 2 >
549             Style.ColumnLimit)
550       return false;
551 
552     if (!DryRun) {
553       Whitespaces->replaceWhitespace(
554           *Previous.Children[0]->First,
555           /*Newlines=*/0, /*IndentLevel=*/0, /*Spaces=*/1,
556           /*StartOfTokenColumn=*/State.Column, State.Line->InPPDirective);
557     }
558     Penalty += formatLine(*Previous.Children[0], State.Column + 1, DryRun);
559 
560     State.Column += 1 + Previous.Children[0]->Last->TotalLength;
561     return true;
562   }
563 
564   ContinuationIndenter *Indenter;
565 
566 private:
567   WhitespaceManager *Whitespaces;
568   const FormatStyle &Style;
569   UnwrappedLineFormatter *BlockFormatter;
570 };
571 
572 /// \brief Formatter that keeps the existing line breaks.
573 class NoColumnLimitLineFormatter : public LineFormatter {
574 public:
575   NoColumnLimitLineFormatter(ContinuationIndenter *Indenter,
576                              WhitespaceManager *Whitespaces,
577                              const FormatStyle &Style,
578                              UnwrappedLineFormatter *BlockFormatter)
579       : LineFormatter(Indenter, Whitespaces, Style, BlockFormatter) {}
580 
581   /// \brief Formats the line, simply keeping all of the input's line breaking
582   /// decisions.
583   unsigned formatLine(const AnnotatedLine &Line, unsigned FirstIndent,
584                       bool DryRun) override {
585     assert(!DryRun);
586     LineState State =
587         Indenter->getInitialState(FirstIndent, &Line, /*DryRun=*/false);
588     while (State.NextToken) {
589       bool Newline =
590           Indenter->mustBreak(State) ||
591           (Indenter->canBreak(State) && State.NextToken->NewlinesBefore > 0);
592       unsigned Penalty = 0;
593       formatChildren(State, Newline, /*DryRun=*/false, Penalty);
594       Indenter->addTokenToState(State, Newline, /*DryRun=*/false);
595     }
596     return 0;
597   }
598 };
599 
600 /// \brief Formatter that puts all tokens into a single line without breaks.
601 class NoLineBreakFormatter : public LineFormatter {
602 public:
603   NoLineBreakFormatter(ContinuationIndenter *Indenter,
604                        WhitespaceManager *Whitespaces, const FormatStyle &Style,
605                        UnwrappedLineFormatter *BlockFormatter)
606       : LineFormatter(Indenter, Whitespaces, Style, BlockFormatter) {}
607 
608   /// \brief Puts all tokens into a single line.
609   unsigned formatLine(const AnnotatedLine &Line, unsigned FirstIndent,
610                       bool DryRun) override {
611     unsigned Penalty = 0;
612     LineState State = Indenter->getInitialState(FirstIndent, &Line, DryRun);
613     while (State.NextToken) {
614       formatChildren(State, /*Newline=*/false, DryRun, Penalty);
615       Indenter->addTokenToState(State, /*Newline=*/false, DryRun);
616     }
617     return Penalty;
618   }
619 };
620 
621 /// \brief Finds the best way to break lines.
622 class OptimizingLineFormatter : public LineFormatter {
623 public:
624   OptimizingLineFormatter(ContinuationIndenter *Indenter,
625                           WhitespaceManager *Whitespaces,
626                           const FormatStyle &Style,
627                           UnwrappedLineFormatter *BlockFormatter)
628       : LineFormatter(Indenter, Whitespaces, Style, BlockFormatter) {}
629 
630   /// \brief Formats the line by finding the best line breaks with line lengths
631   /// below the column limit.
632   unsigned formatLine(const AnnotatedLine &Line, unsigned FirstIndent,
633                       bool DryRun) override {
634     LineState State = Indenter->getInitialState(FirstIndent, &Line, DryRun);
635 
636     // If the ObjC method declaration does not fit on a line, we should format
637     // it with one arg per line.
638     if (State.Line->Type == LT_ObjCMethodDecl)
639       State.Stack.back().BreakBeforeParameter = true;
640 
641     // Find best solution in solution space.
642     return analyzeSolutionSpace(State, DryRun);
643   }
644 
645 private:
646   struct CompareLineStatePointers {
647     bool operator()(LineState *obj1, LineState *obj2) const {
648       return *obj1 < *obj2;
649     }
650   };
651 
652   /// \brief A pair of <penalty, count> that is used to prioritize the BFS on.
653   ///
654   /// In case of equal penalties, we want to prefer states that were inserted
655   /// first. During state generation we make sure that we insert states first
656   /// that break the line as late as possible.
657   typedef std::pair<unsigned, unsigned> OrderedPenalty;
658 
659   /// \brief An edge in the solution space from \c Previous->State to \c State,
660   /// inserting a newline dependent on the \c NewLine.
661   struct StateNode {
662     StateNode(const LineState &State, bool NewLine, StateNode *Previous)
663         : State(State), NewLine(NewLine), Previous(Previous) {}
664     LineState State;
665     bool NewLine;
666     StateNode *Previous;
667   };
668 
669   /// \brief An item in the prioritized BFS search queue. The \c StateNode's
670   /// \c State has the given \c OrderedPenalty.
671   typedef std::pair<OrderedPenalty, StateNode *> QueueItem;
672 
673   /// \brief The BFS queue type.
674   typedef std::priority_queue<QueueItem, std::vector<QueueItem>,
675                               std::greater<QueueItem>> QueueType;
676 
677   /// \brief Analyze the entire solution space starting from \p InitialState.
678   ///
679   /// This implements a variant of Dijkstra's algorithm on the graph that spans
680   /// the solution space (\c LineStates are the nodes). The algorithm tries to
681   /// find the shortest path (the one with lowest penalty) from \p InitialState
682   /// to a state where all tokens are placed. Returns the penalty.
683   ///
684   /// If \p DryRun is \c false, directly applies the changes.
685   unsigned analyzeSolutionSpace(LineState &InitialState, bool DryRun) {
686     std::set<LineState *, CompareLineStatePointers> Seen;
687 
688     // Increasing count of \c StateNode items we have created. This is used to
689     // create a deterministic order independent of the container.
690     unsigned Count = 0;
691     QueueType Queue;
692 
693     // Insert start element into queue.
694     StateNode *Node =
695         new (Allocator.Allocate()) StateNode(InitialState, false, nullptr);
696     Queue.push(QueueItem(OrderedPenalty(0, Count), Node));
697     ++Count;
698 
699     unsigned Penalty = 0;
700 
701     // While not empty, take first element and follow edges.
702     while (!Queue.empty()) {
703       Penalty = Queue.top().first.first;
704       StateNode *Node = Queue.top().second;
705       if (!Node->State.NextToken) {
706         DEBUG(llvm::dbgs() << "\n---\nPenalty for line: " << Penalty << "\n");
707         break;
708       }
709       Queue.pop();
710 
711       // Cut off the analysis of certain solutions if the analysis gets too
712       // complex. See description of IgnoreStackForComparison.
713       if (Count > 10000)
714         Node->State.IgnoreStackForComparison = true;
715 
716       if (!Seen.insert(&Node->State).second)
717         // State already examined with lower penalty.
718         continue;
719 
720       FormatDecision LastFormat = Node->State.NextToken->Decision;
721       if (LastFormat == FD_Unformatted || LastFormat == FD_Continue)
722         addNextStateToQueue(Penalty, Node, /*NewLine=*/false, &Count, &Queue);
723       if (LastFormat == FD_Unformatted || LastFormat == FD_Break)
724         addNextStateToQueue(Penalty, Node, /*NewLine=*/true, &Count, &Queue);
725     }
726 
727     if (Queue.empty()) {
728       // We were unable to find a solution, do nothing.
729       // FIXME: Add diagnostic?
730       DEBUG(llvm::dbgs() << "Could not find a solution.\n");
731       return 0;
732     }
733 
734     // Reconstruct the solution.
735     if (!DryRun)
736       reconstructPath(InitialState, Queue.top().second);
737 
738     DEBUG(llvm::dbgs() << "Total number of analyzed states: " << Count << "\n");
739     DEBUG(llvm::dbgs() << "---\n");
740 
741     return Penalty;
742   }
743 
744   /// \brief Add the following state to the analysis queue \c Queue.
745   ///
746   /// Assume the current state is \p PreviousNode and has been reached with a
747   /// penalty of \p Penalty. Insert a line break if \p NewLine is \c true.
748   void addNextStateToQueue(unsigned Penalty, StateNode *PreviousNode,
749                            bool NewLine, unsigned *Count, QueueType *Queue) {
750     if (NewLine && !Indenter->canBreak(PreviousNode->State))
751       return;
752     if (!NewLine && Indenter->mustBreak(PreviousNode->State))
753       return;
754 
755     StateNode *Node = new (Allocator.Allocate())
756         StateNode(PreviousNode->State, NewLine, PreviousNode);
757     if (!formatChildren(Node->State, NewLine, /*DryRun=*/true, Penalty))
758       return;
759 
760     Penalty += Indenter->addTokenToState(Node->State, NewLine, true);
761 
762     Queue->push(QueueItem(OrderedPenalty(Penalty, *Count), Node));
763     ++(*Count);
764   }
765 
766   /// \brief Applies the best formatting by reconstructing the path in the
767   /// solution space that leads to \c Best.
768   void reconstructPath(LineState &State, StateNode *Best) {
769     std::deque<StateNode *> Path;
770     // We do not need a break before the initial token.
771     while (Best->Previous) {
772       Path.push_front(Best);
773       Best = Best->Previous;
774     }
775     for (std::deque<StateNode *>::iterator I = Path.begin(), E = Path.end();
776          I != E; ++I) {
777       unsigned Penalty = 0;
778       formatChildren(State, (*I)->NewLine, /*DryRun=*/false, Penalty);
779       Penalty += Indenter->addTokenToState(State, (*I)->NewLine, false);
780 
781       DEBUG({
782         printLineState((*I)->Previous->State);
783         if ((*I)->NewLine) {
784           llvm::dbgs() << "Penalty for placing "
785                        << (*I)->Previous->State.NextToken->Tok.getName() << ": "
786                        << Penalty << "\n";
787         }
788       });
789     }
790   }
791 
792   llvm::SpecificBumpPtrAllocator<StateNode> Allocator;
793 };
794 
795 } // anonymous namespace
796 
797 unsigned
798 UnwrappedLineFormatter::format(const SmallVectorImpl<AnnotatedLine *> &Lines,
799                                bool DryRun, int AdditionalIndent,
800                                bool FixBadIndentation) {
801   LineJoiner Joiner(Style, Keywords, Lines);
802 
803   // Try to look up already computed penalty in DryRun-mode.
804   std::pair<const SmallVectorImpl<AnnotatedLine *> *, unsigned> CacheKey(
805       &Lines, AdditionalIndent);
806   auto CacheIt = PenaltyCache.find(CacheKey);
807   if (DryRun && CacheIt != PenaltyCache.end())
808     return CacheIt->second;
809 
810   assert(!Lines.empty());
811   unsigned Penalty = 0;
812   LevelIndentTracker IndentTracker(Style, Keywords, Lines[0]->Level,
813                                    AdditionalIndent);
814   const AnnotatedLine *PreviousLine = nullptr;
815   const AnnotatedLine *NextLine = nullptr;
816   for (const AnnotatedLine *Line =
817            Joiner.getNextMergedLine(DryRun, IndentTracker);
818        Line; Line = NextLine) {
819     const AnnotatedLine &TheLine = *Line;
820     unsigned Indent = IndentTracker.getIndent();
821     bool FixIndentation =
822         FixBadIndentation && (Indent != TheLine.First->OriginalColumn);
823     bool ShouldFormat = TheLine.Affected || FixIndentation;
824     // We cannot format this line; if the reason is that the line had a
825     // parsing error, remember that.
826     if (ShouldFormat && TheLine.Type == LT_Invalid && IncompleteFormat)
827       *IncompleteFormat = true;
828 
829     if (ShouldFormat && TheLine.Type != LT_Invalid) {
830       if (!DryRun)
831         formatFirstToken(*TheLine.First, PreviousLine, TheLine.Level, Indent,
832                          TheLine.InPPDirective);
833 
834       NextLine = Joiner.getNextMergedLine(DryRun, IndentTracker);
835       unsigned ColumnLimit = getColumnLimit(TheLine.InPPDirective, NextLine);
836       bool FitsIntoOneLine =
837           TheLine.Last->TotalLength + Indent <= ColumnLimit ||
838           TheLine.Type == LT_ImportStatement;
839 
840       if (Style.ColumnLimit == 0)
841         NoColumnLimitLineFormatter(Indenter, Whitespaces, Style, this)
842             .formatLine(TheLine, Indent, DryRun);
843       else if (FitsIntoOneLine)
844         Penalty += NoLineBreakFormatter(Indenter, Whitespaces, Style, this)
845                        .formatLine(TheLine, Indent, DryRun);
846       else
847         Penalty += OptimizingLineFormatter(Indenter, Whitespaces, Style, this)
848                        .formatLine(TheLine, Indent, DryRun);
849     } else {
850       // If no token in the current line is affected, we still need to format
851       // affected children.
852       if (TheLine.ChildrenAffected)
853         format(TheLine.Children, DryRun);
854 
855       // Adapt following lines on the current indent level to the same level
856       // unless the current \c AnnotatedLine is not at the beginning of a line.
857       bool StartsNewLine =
858           TheLine.First->NewlinesBefore > 0 || TheLine.First->IsFirst;
859       if (StartsNewLine)
860         IndentTracker.adjustToUnmodifiedLine(TheLine);
861       if (!DryRun) {
862         bool ReformatLeadingWhitespace =
863             StartsNewLine && ((PreviousLine && PreviousLine->Affected) ||
864                               TheLine.LeadingEmptyLinesAffected);
865         // Format the first token.
866         if (ReformatLeadingWhitespace)
867           formatFirstToken(*TheLine.First, PreviousLine, TheLine.Level,
868                            TheLine.First->OriginalColumn,
869                            TheLine.InPPDirective);
870         else
871           Whitespaces->addUntouchableToken(*TheLine.First,
872                                            TheLine.InPPDirective);
873 
874         // Notify the WhitespaceManager about the unchanged whitespace.
875         for (FormatToken *Tok = TheLine.First->Next; Tok; Tok = Tok->Next)
876           Whitespaces->addUntouchableToken(*Tok, TheLine.InPPDirective);
877       }
878       NextLine = Joiner.getNextMergedLine(DryRun, IndentTracker);
879     }
880     if (!DryRun)
881       markFinalized(TheLine.First);
882     PreviousLine = &TheLine;
883   }
884   PenaltyCache[CacheKey] = Penalty;
885   return Penalty;
886 }
887 
888 void UnwrappedLineFormatter::formatFirstToken(FormatToken &RootToken,
889                                               const AnnotatedLine *PreviousLine,
890                                               unsigned IndentLevel,
891                                               unsigned Indent,
892                                               bool InPPDirective) {
893   if (RootToken.is(tok::eof)) {
894     unsigned Newlines = std::min(RootToken.NewlinesBefore, 1u);
895     Whitespaces->replaceWhitespace(RootToken, Newlines, /*IndentLevel=*/0,
896                                    /*Spaces=*/0, /*TargetColumn=*/0);
897     return;
898   }
899   unsigned Newlines =
900       std::min(RootToken.NewlinesBefore, Style.MaxEmptyLinesToKeep + 1);
901   // Remove empty lines before "}" where applicable.
902   if (RootToken.is(tok::r_brace) &&
903       (!RootToken.Next ||
904        (RootToken.Next->is(tok::semi) && !RootToken.Next->Next)))
905     Newlines = std::min(Newlines, 1u);
906   if (Newlines == 0 && !RootToken.IsFirst)
907     Newlines = 1;
908   if (RootToken.IsFirst && !RootToken.HasUnescapedNewline)
909     Newlines = 0;
910 
911   // Remove empty lines after "{".
912   if (!Style.KeepEmptyLinesAtTheStartOfBlocks && PreviousLine &&
913       PreviousLine->Last->is(tok::l_brace) &&
914       PreviousLine->First->isNot(tok::kw_namespace) &&
915       !startsExternCBlock(*PreviousLine))
916     Newlines = 1;
917 
918   // Insert extra new line before access specifiers.
919   if (PreviousLine && PreviousLine->Last->isOneOf(tok::semi, tok::r_brace) &&
920       RootToken.isAccessSpecifier() && RootToken.NewlinesBefore == 1)
921     ++Newlines;
922 
923   // Remove empty lines after access specifiers.
924   if (PreviousLine && PreviousLine->First->isAccessSpecifier() &&
925       (!PreviousLine->InPPDirective || !RootToken.HasUnescapedNewline))
926     Newlines = std::min(1u, Newlines);
927 
928   Whitespaces->replaceWhitespace(RootToken, Newlines, IndentLevel, Indent,
929                                  Indent, InPPDirective &&
930                                              !RootToken.HasUnescapedNewline);
931 }
932 
933 unsigned
934 UnwrappedLineFormatter::getColumnLimit(bool InPPDirective,
935                                        const AnnotatedLine *NextLine) const {
936   // In preprocessor directives reserve two chars for trailing " \" if the
937   // next line continues the preprocessor directive.
938   bool ContinuesPPDirective =
939       InPPDirective &&
940       // If there is no next line, this is likely a child line and the parent
941       // continues the preprocessor directive.
942       (!NextLine ||
943        (NextLine->InPPDirective &&
944         // If there is an unescaped newline between this line and the next, the
945         // next line starts a new preprocessor directive.
946         !NextLine->First->HasUnescapedNewline));
947   return Style.ColumnLimit - (ContinuesPPDirective ? 2 : 0);
948 }
949 
950 } // namespace format
951 } // namespace clang
952