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