1 //===--- BreakableToken.cpp - Format C++ code -----------------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 /// 10 /// \file 11 /// \brief Contains implementation of BreakableToken class and classes derived 12 /// from it. 13 /// 14 //===----------------------------------------------------------------------===// 15 16 #include "BreakableToken.h" 17 #include "ContinuationIndenter.h" 18 #include "clang/Basic/CharInfo.h" 19 #include "clang/Format/Format.h" 20 #include "llvm/ADT/STLExtras.h" 21 #include "llvm/Support/Debug.h" 22 #include <algorithm> 23 24 #define DEBUG_TYPE "format-token-breaker" 25 26 namespace clang { 27 namespace format { 28 29 static const char *const Blanks = " \t\v\f\r"; 30 static bool IsBlank(char C) { 31 switch (C) { 32 case ' ': 33 case '\t': 34 case '\v': 35 case '\f': 36 case '\r': 37 return true; 38 default: 39 return false; 40 } 41 } 42 43 static StringRef getLineCommentIndentPrefix(StringRef Comment) { 44 static const char *const KnownPrefixes[] = {"///", "//", "//!"}; 45 StringRef LongestPrefix; 46 for (StringRef KnownPrefix : KnownPrefixes) { 47 if (Comment.startswith(KnownPrefix)) { 48 size_t PrefixLength = KnownPrefix.size(); 49 while (PrefixLength < Comment.size() && Comment[PrefixLength] == ' ') 50 ++PrefixLength; 51 if (PrefixLength > LongestPrefix.size()) 52 LongestPrefix = Comment.substr(0, PrefixLength); 53 } 54 } 55 return LongestPrefix; 56 } 57 58 static BreakableToken::Split getCommentSplit(StringRef Text, 59 unsigned ContentStartColumn, 60 unsigned ColumnLimit, 61 unsigned TabWidth, 62 encoding::Encoding Encoding) { 63 if (ColumnLimit <= ContentStartColumn + 1) 64 return BreakableToken::Split(StringRef::npos, 0); 65 66 unsigned MaxSplit = ColumnLimit - ContentStartColumn + 1; 67 unsigned MaxSplitBytes = 0; 68 69 for (unsigned NumChars = 0; 70 NumChars < MaxSplit && MaxSplitBytes < Text.size();) { 71 unsigned BytesInChar = 72 encoding::getCodePointNumBytes(Text[MaxSplitBytes], Encoding); 73 NumChars += 74 encoding::columnWidthWithTabs(Text.substr(MaxSplitBytes, BytesInChar), 75 ContentStartColumn, TabWidth, Encoding); 76 MaxSplitBytes += BytesInChar; 77 } 78 79 StringRef::size_type SpaceOffset = Text.find_last_of(Blanks, MaxSplitBytes); 80 if (SpaceOffset == StringRef::npos || 81 // Don't break at leading whitespace. 82 Text.find_last_not_of(Blanks, SpaceOffset) == StringRef::npos) { 83 // Make sure that we don't break at leading whitespace that 84 // reaches past MaxSplit. 85 StringRef::size_type FirstNonWhitespace = Text.find_first_not_of(Blanks); 86 if (FirstNonWhitespace == StringRef::npos) 87 // If the comment is only whitespace, we cannot split. 88 return BreakableToken::Split(StringRef::npos, 0); 89 SpaceOffset = Text.find_first_of( 90 Blanks, std::max<unsigned>(MaxSplitBytes, FirstNonWhitespace)); 91 } 92 if (SpaceOffset != StringRef::npos && SpaceOffset != 0) { 93 StringRef BeforeCut = Text.substr(0, SpaceOffset).rtrim(Blanks); 94 StringRef AfterCut = Text.substr(SpaceOffset).ltrim(Blanks); 95 return BreakableToken::Split(BeforeCut.size(), 96 AfterCut.begin() - BeforeCut.end()); 97 } 98 return BreakableToken::Split(StringRef::npos, 0); 99 } 100 101 static BreakableToken::Split 102 getStringSplit(StringRef Text, unsigned UsedColumns, unsigned ColumnLimit, 103 unsigned TabWidth, encoding::Encoding Encoding) { 104 // FIXME: Reduce unit test case. 105 if (Text.empty()) 106 return BreakableToken::Split(StringRef::npos, 0); 107 if (ColumnLimit <= UsedColumns) 108 return BreakableToken::Split(StringRef::npos, 0); 109 unsigned MaxSplit = ColumnLimit - UsedColumns; 110 StringRef::size_type SpaceOffset = 0; 111 StringRef::size_type SlashOffset = 0; 112 StringRef::size_type WordStartOffset = 0; 113 StringRef::size_type SplitPoint = 0; 114 for (unsigned Chars = 0;;) { 115 unsigned Advance; 116 if (Text[0] == '\\') { 117 Advance = encoding::getEscapeSequenceLength(Text); 118 Chars += Advance; 119 } else { 120 Advance = encoding::getCodePointNumBytes(Text[0], Encoding); 121 Chars += encoding::columnWidthWithTabs( 122 Text.substr(0, Advance), UsedColumns + Chars, TabWidth, Encoding); 123 } 124 125 if (Chars > MaxSplit || Text.size() <= Advance) 126 break; 127 128 if (IsBlank(Text[0])) 129 SpaceOffset = SplitPoint; 130 if (Text[0] == '/') 131 SlashOffset = SplitPoint; 132 if (Advance == 1 && !isAlphanumeric(Text[0])) 133 WordStartOffset = SplitPoint; 134 135 SplitPoint += Advance; 136 Text = Text.substr(Advance); 137 } 138 139 if (SpaceOffset != 0) 140 return BreakableToken::Split(SpaceOffset + 1, 0); 141 if (SlashOffset != 0) 142 return BreakableToken::Split(SlashOffset + 1, 0); 143 if (WordStartOffset != 0) 144 return BreakableToken::Split(WordStartOffset + 1, 0); 145 if (SplitPoint != 0) 146 return BreakableToken::Split(SplitPoint, 0); 147 return BreakableToken::Split(StringRef::npos, 0); 148 } 149 150 bool switchesFormatting(const FormatToken &Token) { 151 assert((Token.is(TT_BlockComment) || Token.is(TT_LineComment)) && 152 "formatting regions are switched by comment tokens"); 153 StringRef Content = Token.TokenText.substr(2).ltrim(); 154 return Content.startswith("clang-format on") || 155 Content.startswith("clang-format off"); 156 } 157 158 unsigned 159 BreakableToken::getLineLengthAfterCompression(unsigned RemainingTokenColumns, 160 Split Split) const { 161 // Example: consider the content 162 // lala lala 163 // - RemainingTokenColumns is the original number of columns, 10; 164 // - Split is (4, 2), denoting the two spaces between the two words; 165 // 166 // We compute the number of columns when the split is compressed into a single 167 // space, like: 168 // lala lala 169 return RemainingTokenColumns + 1 - Split.second; 170 } 171 172 unsigned BreakableSingleLineToken::getLineCount() const { return 1; } 173 174 unsigned BreakableSingleLineToken::getLineLengthAfterSplit( 175 unsigned LineIndex, unsigned TailOffset, 176 StringRef::size_type Length) const { 177 return StartColumn + Prefix.size() + Postfix.size() + 178 encoding::columnWidthWithTabs(Line.substr(TailOffset, Length), 179 StartColumn + Prefix.size(), 180 Style.TabWidth, Encoding); 181 } 182 183 BreakableSingleLineToken::BreakableSingleLineToken( 184 const FormatToken &Tok, unsigned StartColumn, StringRef Prefix, 185 StringRef Postfix, bool InPPDirective, encoding::Encoding Encoding, 186 const FormatStyle &Style) 187 : BreakableToken(Tok, InPPDirective, Encoding, Style), 188 StartColumn(StartColumn), Prefix(Prefix), Postfix(Postfix) { 189 assert(Tok.TokenText.startswith(Prefix) && Tok.TokenText.endswith(Postfix)); 190 Line = Tok.TokenText.substr( 191 Prefix.size(), Tok.TokenText.size() - Prefix.size() - Postfix.size()); 192 } 193 194 BreakableStringLiteral::BreakableStringLiteral( 195 const FormatToken &Tok, unsigned StartColumn, StringRef Prefix, 196 StringRef Postfix, bool InPPDirective, encoding::Encoding Encoding, 197 const FormatStyle &Style) 198 : BreakableSingleLineToken(Tok, StartColumn, Prefix, Postfix, InPPDirective, 199 Encoding, Style) {} 200 201 BreakableToken::Split 202 BreakableStringLiteral::getSplit(unsigned LineIndex, unsigned TailOffset, 203 unsigned ColumnLimit, 204 llvm::Regex &CommentPragmasRegex) const { 205 return getStringSplit(Line.substr(TailOffset), 206 StartColumn + Prefix.size() + Postfix.size(), 207 ColumnLimit, Style.TabWidth, Encoding); 208 } 209 210 void BreakableStringLiteral::insertBreak(unsigned LineIndex, 211 unsigned TailOffset, Split Split, 212 WhitespaceManager &Whitespaces) { 213 Whitespaces.replaceWhitespaceInToken( 214 Tok, Prefix.size() + TailOffset + Split.first, Split.second, Postfix, 215 Prefix, InPPDirective, 1, StartColumn); 216 } 217 218 BreakableComment::BreakableComment(const FormatToken &Token, 219 unsigned StartColumn, 220 bool InPPDirective, 221 encoding::Encoding Encoding, 222 const FormatStyle &Style) 223 : BreakableToken(Token, InPPDirective, Encoding, Style), 224 StartColumn(StartColumn) {} 225 226 unsigned BreakableComment::getLineCount() const { return Lines.size(); } 227 228 BreakableToken::Split 229 BreakableComment::getSplit(unsigned LineIndex, unsigned TailOffset, 230 unsigned ColumnLimit, 231 llvm::Regex &CommentPragmasRegex) const { 232 // Don't break lines matching the comment pragmas regex. 233 if (CommentPragmasRegex.match(Content[LineIndex])) 234 return Split(StringRef::npos, 0); 235 return getCommentSplit(Content[LineIndex].substr(TailOffset), 236 getContentStartColumn(LineIndex, TailOffset), 237 ColumnLimit, Style.TabWidth, Encoding); 238 } 239 240 void BreakableComment::compressWhitespace(unsigned LineIndex, 241 unsigned TailOffset, Split Split, 242 WhitespaceManager &Whitespaces) { 243 StringRef Text = Content[LineIndex].substr(TailOffset); 244 // Text is relative to the content line, but Whitespaces operates relative to 245 // the start of the corresponding token, so compute the start of the Split 246 // that needs to be compressed into a single space relative to the start of 247 // its token. 248 unsigned BreakOffsetInToken = 249 Text.data() - tokenAt(LineIndex).TokenText.data() + Split.first; 250 unsigned CharsToRemove = Split.second; 251 Whitespaces.replaceWhitespaceInToken( 252 tokenAt(LineIndex), BreakOffsetInToken, CharsToRemove, "", "", 253 /*InPPDirective=*/false, /*Newlines=*/0, /*Spaces=*/1); 254 } 255 256 BreakableToken::Split 257 BreakableComment::getReflowSplit(StringRef Text, StringRef ReflowPrefix, 258 unsigned PreviousEndColumn, 259 unsigned ColumnLimit) const { 260 unsigned ReflowStartColumn = PreviousEndColumn + ReflowPrefix.size(); 261 StringRef TrimmedText = Text.rtrim(Blanks); 262 // This is the width of the resulting line in case the full line of Text gets 263 // reflown up starting at ReflowStartColumn. 264 unsigned FullWidth = ReflowStartColumn + encoding::columnWidthWithTabs( 265 TrimmedText, ReflowStartColumn, 266 Style.TabWidth, Encoding); 267 // If the full line fits up, we return a reflow split after it, 268 // otherwise we compute the largest piece of text that fits after 269 // ReflowStartColumn. 270 Split ReflowSplit = 271 FullWidth <= ColumnLimit 272 ? Split(TrimmedText.size(), Text.size() - TrimmedText.size()) 273 : getCommentSplit(Text, ReflowStartColumn, ColumnLimit, 274 Style.TabWidth, Encoding); 275 276 // We need to be extra careful here, because while it's OK to keep a long line 277 // if it can't be broken into smaller pieces (like when the first word of a 278 // long line is longer than the column limit), it's not OK to reflow that long 279 // word up. So we recompute the size of the previous line after reflowing and 280 // only return the reflow split if that's under the line limit. 281 if (ReflowSplit.first != StringRef::npos && 282 // Check if the width of the newly reflown line is under the limit. 283 PreviousEndColumn + ReflowPrefix.size() + 284 encoding::columnWidthWithTabs(Text.substr(0, ReflowSplit.first), 285 PreviousEndColumn + 286 ReflowPrefix.size(), 287 Style.TabWidth, Encoding) <= 288 ColumnLimit) { 289 return ReflowSplit; 290 } 291 return Split(StringRef::npos, 0); 292 } 293 294 const FormatToken &BreakableComment::tokenAt(unsigned LineIndex) const { 295 return Tokens[LineIndex] ? *Tokens[LineIndex] : Tok; 296 } 297 298 static bool mayReflowContent(StringRef Content) { 299 Content = Content.trim(Blanks); 300 // Lines starting with '@' commonly have special meaning. 301 static const SmallVector<StringRef, 4> kSpecialMeaningPrefixes = { 302 "@", "TODO", "FIXME", "XXX"}; 303 bool hasSpecialMeaningPrefix = false; 304 for (StringRef Prefix : kSpecialMeaningPrefixes) { 305 if (Content.startswith(Prefix)) { 306 hasSpecialMeaningPrefix = true; 307 break; 308 } 309 } 310 // Simple heuristic for what to reflow: content should contain at least two 311 // characters and either the first or second character must be 312 // non-punctuation. 313 return Content.size() >= 2 && !hasSpecialMeaningPrefix && 314 !Content.endswith("\\") && 315 // Note that this is UTF-8 safe, since if isPunctuation(Content[0]) is 316 // true, then the first code point must be 1 byte long. 317 (!isPunctuation(Content[0]) || !isPunctuation(Content[1])); 318 } 319 320 BreakableBlockComment::BreakableBlockComment( 321 const FormatToken &Token, unsigned StartColumn, 322 unsigned OriginalStartColumn, bool FirstInLine, bool InPPDirective, 323 encoding::Encoding Encoding, const FormatStyle &Style) 324 : BreakableComment(Token, StartColumn, InPPDirective, Encoding, Style) { 325 assert(Tok.is(TT_BlockComment) && 326 "block comment section must start with a block comment"); 327 328 StringRef TokenText(Tok.TokenText); 329 assert(TokenText.startswith("/*") && TokenText.endswith("*/")); 330 TokenText.substr(2, TokenText.size() - 4).split(Lines, "\n"); 331 332 int IndentDelta = StartColumn - OriginalStartColumn; 333 Content.resize(Lines.size()); 334 Content[0] = Lines[0]; 335 ContentColumn.resize(Lines.size()); 336 // Account for the initial '/*'. 337 ContentColumn[0] = StartColumn + 2; 338 Tokens.resize(Lines.size()); 339 for (size_t i = 1; i < Lines.size(); ++i) 340 adjustWhitespace(i, IndentDelta); 341 342 // Align decorations with the column of the star on the first line, 343 // that is one column after the start "/*". 344 DecorationColumn = StartColumn + 1; 345 346 // Account for comment decoration patterns like this: 347 // 348 // /* 349 // ** blah blah blah 350 // */ 351 if (Lines.size() >= 2 && Content[1].startswith("**") && 352 static_cast<unsigned>(ContentColumn[1]) == StartColumn) { 353 DecorationColumn = StartColumn; 354 } 355 356 Decoration = "* "; 357 if (Lines.size() == 1 && !FirstInLine) { 358 // Comments for which FirstInLine is false can start on arbitrary column, 359 // and available horizontal space can be too small to align consecutive 360 // lines with the first one. 361 // FIXME: We could, probably, align them to current indentation level, but 362 // now we just wrap them without stars. 363 Decoration = ""; 364 } 365 for (size_t i = 1, e = Lines.size(); i < e && !Decoration.empty(); ++i) { 366 // If the last line is empty, the closing "*/" will have a star. 367 if (i + 1 == e && Content[i].empty()) 368 break; 369 if (!Content[i].empty() && i + 1 != e && 370 Decoration.startswith(Content[i])) 371 continue; 372 while (!Content[i].startswith(Decoration)) 373 Decoration = Decoration.substr(0, Decoration.size() - 1); 374 } 375 376 LastLineNeedsDecoration = true; 377 IndentAtLineBreak = ContentColumn[0] + 1; 378 for (size_t i = 1, e = Lines.size(); i < e; ++i) { 379 if (Content[i].empty()) { 380 if (i + 1 == e) { 381 // Empty last line means that we already have a star as a part of the 382 // trailing */. We also need to preserve whitespace, so that */ is 383 // correctly indented. 384 LastLineNeedsDecoration = false; 385 // Align the star in the last '*/' with the stars on the previous lines. 386 if (e >= 2 && !Decoration.empty()) { 387 ContentColumn[i] = DecorationColumn; 388 } 389 } else if (Decoration.empty()) { 390 // For all other lines, set the start column to 0 if they're empty, so 391 // we do not insert trailing whitespace anywhere. 392 ContentColumn[i] = 0; 393 } 394 continue; 395 } 396 397 // The first line already excludes the star. 398 // The last line excludes the star if LastLineNeedsDecoration is false. 399 // For all other lines, adjust the line to exclude the star and 400 // (optionally) the first whitespace. 401 unsigned DecorationSize = Decoration.startswith(Content[i]) 402 ? Content[i].size() 403 : Decoration.size(); 404 if (DecorationSize) { 405 ContentColumn[i] = DecorationColumn + DecorationSize; 406 } 407 Content[i] = Content[i].substr(DecorationSize); 408 if (!Decoration.startswith(Content[i])) 409 IndentAtLineBreak = 410 std::min<int>(IndentAtLineBreak, std::max(0, ContentColumn[i])); 411 } 412 IndentAtLineBreak = 413 std::max<unsigned>(IndentAtLineBreak, Decoration.size()); 414 415 DEBUG({ 416 llvm::dbgs() << "IndentAtLineBreak " << IndentAtLineBreak << "\n"; 417 for (size_t i = 0; i < Lines.size(); ++i) { 418 llvm::dbgs() << i << " |" << Content[i] << "| " 419 << "CC=" << ContentColumn[i] << "| " 420 << "IN=" << (Content[i].data() - Lines[i].data()) << "\n"; 421 } 422 }); 423 } 424 425 void BreakableBlockComment::adjustWhitespace(unsigned LineIndex, 426 int IndentDelta) { 427 // When in a preprocessor directive, the trailing backslash in a block comment 428 // is not needed, but can serve a purpose of uniformity with necessary escaped 429 // newlines outside the comment. In this case we remove it here before 430 // trimming the trailing whitespace. The backslash will be re-added later when 431 // inserting a line break. 432 size_t EndOfPreviousLine = Lines[LineIndex - 1].size(); 433 if (InPPDirective && Lines[LineIndex - 1].endswith("\\")) 434 --EndOfPreviousLine; 435 436 // Calculate the end of the non-whitespace text in the previous line. 437 EndOfPreviousLine = 438 Lines[LineIndex - 1].find_last_not_of(Blanks, EndOfPreviousLine); 439 if (EndOfPreviousLine == StringRef::npos) 440 EndOfPreviousLine = 0; 441 else 442 ++EndOfPreviousLine; 443 // Calculate the start of the non-whitespace text in the current line. 444 size_t StartOfLine = Lines[LineIndex].find_first_not_of(Blanks); 445 if (StartOfLine == StringRef::npos) 446 StartOfLine = Lines[LineIndex].rtrim("\r\n").size(); 447 448 StringRef Whitespace = Lines[LineIndex].substr(0, StartOfLine); 449 // Adjust Lines to only contain relevant text. 450 size_t PreviousContentOffset = 451 Content[LineIndex - 1].data() - Lines[LineIndex - 1].data(); 452 Content[LineIndex - 1] = Lines[LineIndex - 1].substr( 453 PreviousContentOffset, EndOfPreviousLine - PreviousContentOffset); 454 Content[LineIndex] = Lines[LineIndex].substr(StartOfLine); 455 456 // Adjust the start column uniformly across all lines. 457 ContentColumn[LineIndex] = 458 encoding::columnWidthWithTabs(Whitespace, 0, Style.TabWidth, Encoding) + 459 IndentDelta; 460 } 461 462 unsigned BreakableBlockComment::getLineLengthAfterSplit( 463 unsigned LineIndex, unsigned TailOffset, 464 StringRef::size_type Length) const { 465 unsigned ContentStartColumn = getContentStartColumn(LineIndex, TailOffset); 466 unsigned LineLength = 467 ContentStartColumn + encoding::columnWidthWithTabs( 468 Content[LineIndex].substr(TailOffset, Length), 469 ContentStartColumn, Style.TabWidth, Encoding); 470 // The last line gets a "*/" postfix. 471 if (LineIndex + 1 == Lines.size()) { 472 LineLength += 2; 473 // We never need a decoration when breaking just the trailing "*/" postfix. 474 // Note that checking that Length == 0 is not enough, since Length could 475 // also be StringRef::npos. 476 if (Content[LineIndex].substr(TailOffset, Length).empty()) { 477 LineLength -= Decoration.size(); 478 } 479 } 480 return LineLength; 481 } 482 483 void BreakableBlockComment::insertBreak(unsigned LineIndex, unsigned TailOffset, 484 Split Split, 485 WhitespaceManager &Whitespaces) { 486 StringRef Text = Content[LineIndex].substr(TailOffset); 487 StringRef Prefix = Decoration; 488 // We need this to account for the case when we have a decoration "* " for all 489 // the lines except for the last one, where the star in "*/" acts as a 490 // decoration. 491 unsigned LocalIndentAtLineBreak = IndentAtLineBreak; 492 if (LineIndex + 1 == Lines.size() && 493 Text.size() == Split.first + Split.second) { 494 // For the last line we need to break before "*/", but not to add "* ". 495 Prefix = ""; 496 if (LocalIndentAtLineBreak >= 2) 497 LocalIndentAtLineBreak -= 2; 498 } 499 // The split offset is from the beginning of the line. Convert it to an offset 500 // from the beginning of the token text. 501 unsigned BreakOffsetInToken = 502 Text.data() - tokenAt(LineIndex).TokenText.data() + Split.first; 503 unsigned CharsToRemove = Split.second; 504 assert(LocalIndentAtLineBreak >= Prefix.size()); 505 Whitespaces.replaceWhitespaceInToken( 506 tokenAt(LineIndex), BreakOffsetInToken, CharsToRemove, "", Prefix, 507 InPPDirective, /*Newlines=*/1, 508 /*Spaces=*/LocalIndentAtLineBreak - Prefix.size()); 509 } 510 511 BreakableToken::Split BreakableBlockComment::getSplitBefore( 512 unsigned LineIndex, 513 unsigned PreviousEndColumn, 514 unsigned ColumnLimit, 515 llvm::Regex &CommentPragmasRegex) const { 516 if (!mayReflow(LineIndex, CommentPragmasRegex)) 517 return Split(StringRef::npos, 0); 518 StringRef TrimmedContent = Content[LineIndex].ltrim(Blanks); 519 return getReflowSplit(TrimmedContent, ReflowPrefix, PreviousEndColumn, 520 ColumnLimit); 521 } 522 523 unsigned BreakableBlockComment::getReflownColumn( 524 StringRef Content, 525 unsigned LineIndex, 526 unsigned PreviousEndColumn) const { 527 unsigned StartColumn = PreviousEndColumn + ReflowPrefix.size(); 528 // If this is the last line, it will carry around its '*/' postfix. 529 unsigned PostfixLength = (LineIndex + 1 == Lines.size() ? 2 : 0); 530 // The line is composed of previous text, reflow prefix, reflown text and 531 // postfix. 532 unsigned ReflownColumn = 533 StartColumn + encoding::columnWidthWithTabs(Content, StartColumn, 534 Style.TabWidth, Encoding) + 535 PostfixLength; 536 return ReflownColumn; 537 } 538 539 unsigned BreakableBlockComment::getLineLengthAfterSplitBefore( 540 unsigned LineIndex, unsigned TailOffset, 541 unsigned PreviousEndColumn, 542 unsigned ColumnLimit, 543 Split SplitBefore) const { 544 if (SplitBefore.first == StringRef::npos || 545 // Block comment line contents contain the trailing whitespace after the 546 // decoration, so the need of left trim. Note that this behavior is 547 // consistent with the breaking of block comments where the indentation of 548 // a broken line is uniform across all the lines of the block comment. 549 SplitBefore.first + SplitBefore.second < 550 Content[LineIndex].ltrim().size()) { 551 // A piece of line, not the whole, gets reflown. 552 return getLineLengthAfterSplit(LineIndex, TailOffset, StringRef::npos); 553 } else { 554 // The whole line gets reflown, need to check if we need to insert a break 555 // for the postfix or not. 556 StringRef TrimmedContent = Content[LineIndex].ltrim(Blanks); 557 unsigned ReflownColumn = 558 getReflownColumn(TrimmedContent, LineIndex, PreviousEndColumn); 559 if (ReflownColumn <= ColumnLimit) { 560 return ReflownColumn; 561 } 562 return getLineLengthAfterSplit(LineIndex, TailOffset, StringRef::npos); 563 } 564 } 565 void BreakableBlockComment::replaceWhitespaceBefore( 566 unsigned LineIndex, unsigned PreviousEndColumn, unsigned ColumnLimit, 567 Split SplitBefore, WhitespaceManager &Whitespaces) { 568 if (LineIndex == 0) return; 569 StringRef TrimmedContent = Content[LineIndex].ltrim(Blanks); 570 if (SplitBefore.first != StringRef::npos) { 571 // Here we need to reflow. 572 assert(Tokens[LineIndex - 1] == Tokens[LineIndex] && 573 "Reflowing whitespace within a token"); 574 // This is the offset of the end of the last line relative to the start of 575 // the token text in the token. 576 unsigned WhitespaceOffsetInToken = Content[LineIndex - 1].data() + 577 Content[LineIndex - 1].size() - 578 tokenAt(LineIndex).TokenText.data(); 579 unsigned WhitespaceLength = TrimmedContent.data() - 580 tokenAt(LineIndex).TokenText.data() - 581 WhitespaceOffsetInToken; 582 Whitespaces.replaceWhitespaceInToken( 583 tokenAt(LineIndex), WhitespaceOffsetInToken, 584 /*ReplaceChars=*/WhitespaceLength, /*PreviousPostfix=*/"", 585 /*CurrentPrefix=*/ReflowPrefix, InPPDirective, /*Newlines=*/0, 586 /*Spaces=*/0); 587 // Check if we need to also insert a break at the whitespace range. 588 // For this we first adapt the reflow split relative to the beginning of the 589 // content. 590 // Note that we don't need a penalty for this break, since it doesn't change 591 // the total number of lines. 592 Split BreakSplit = SplitBefore; 593 BreakSplit.first += TrimmedContent.data() - Content[LineIndex].data(); 594 unsigned ReflownColumn = 595 getReflownColumn(TrimmedContent, LineIndex, PreviousEndColumn); 596 if (ReflownColumn > ColumnLimit) { 597 insertBreak(LineIndex, 0, BreakSplit, Whitespaces); 598 } 599 return; 600 } 601 602 // Here no reflow with the previous line will happen. 603 // Fix the decoration of the line at LineIndex. 604 StringRef Prefix = Decoration; 605 if (Content[LineIndex].empty()) { 606 if (LineIndex + 1 == Lines.size()) { 607 if (!LastLineNeedsDecoration) { 608 // If the last line was empty, we don't need a prefix, as the */ will 609 // line up with the decoration (if it exists). 610 Prefix = ""; 611 } 612 } else if (!Decoration.empty()) { 613 // For other empty lines, if we do have a decoration, adapt it to not 614 // contain a trailing whitespace. 615 Prefix = Prefix.substr(0, 1); 616 } 617 } else { 618 if (ContentColumn[LineIndex] == 1) { 619 // This line starts immediately after the decorating *. 620 Prefix = Prefix.substr(0, 1); 621 } 622 } 623 // This is the offset of the end of the last line relative to the start of the 624 // token text in the token. 625 unsigned WhitespaceOffsetInToken = Content[LineIndex - 1].data() + 626 Content[LineIndex - 1].size() - 627 tokenAt(LineIndex).TokenText.data(); 628 unsigned WhitespaceLength = Content[LineIndex].data() - 629 tokenAt(LineIndex).TokenText.data() - 630 WhitespaceOffsetInToken; 631 Whitespaces.replaceWhitespaceInToken( 632 tokenAt(LineIndex), WhitespaceOffsetInToken, WhitespaceLength, "", Prefix, 633 InPPDirective, /*Newlines=*/1, ContentColumn[LineIndex] - Prefix.size()); 634 } 635 636 bool BreakableBlockComment::mayReflow(unsigned LineIndex, 637 llvm::Regex &CommentPragmasRegex) const { 638 // Content[LineIndex] may exclude the indent after the '*' decoration. In that 639 // case, we compute the start of the comment pragma manually. 640 StringRef IndentContent = Content[LineIndex]; 641 if (Lines[LineIndex].ltrim(Blanks).startswith("*")) { 642 IndentContent = Lines[LineIndex].ltrim(Blanks).substr(1); 643 } 644 return LineIndex > 0 && !CommentPragmasRegex.match(IndentContent) && 645 mayReflowContent(Content[LineIndex]) && !Tok.Finalized && 646 !switchesFormatting(tokenAt(LineIndex)); 647 } 648 649 unsigned 650 BreakableBlockComment::getContentStartColumn(unsigned LineIndex, 651 unsigned TailOffset) const { 652 // If we break, we always break at the predefined indent. 653 if (TailOffset != 0) 654 return IndentAtLineBreak; 655 return std::max(0, ContentColumn[LineIndex]); 656 } 657 658 BreakableLineCommentSection::BreakableLineCommentSection( 659 const FormatToken &Token, unsigned StartColumn, 660 unsigned OriginalStartColumn, bool FirstInLine, bool InPPDirective, 661 encoding::Encoding Encoding, const FormatStyle &Style) 662 : BreakableComment(Token, StartColumn, InPPDirective, Encoding, Style) { 663 assert(Tok.is(TT_LineComment) && 664 "line comment section must start with a line comment"); 665 FormatToken *LineTok = nullptr; 666 for (const FormatToken *CurrentTok = &Tok; 667 CurrentTok && CurrentTok->is(TT_LineComment); 668 CurrentTok = CurrentTok->Next) { 669 LastLineTok = LineTok; 670 StringRef TokenText(CurrentTok->TokenText); 671 assert(TokenText.startswith("//")); 672 size_t FirstLineIndex = Lines.size(); 673 TokenText.split(Lines, "\n"); 674 Content.resize(Lines.size()); 675 ContentColumn.resize(Lines.size()); 676 OriginalContentColumn.resize(Lines.size()); 677 Tokens.resize(Lines.size()); 678 Prefix.resize(Lines.size()); 679 OriginalPrefix.resize(Lines.size()); 680 for (size_t i = FirstLineIndex, e = Lines.size(); i < e; ++i) { 681 // We need to trim the blanks in case this is not the first line in a 682 // multiline comment. Then the indent is included in Lines[i]. 683 StringRef IndentPrefix = 684 getLineCommentIndentPrefix(Lines[i].ltrim(Blanks)); 685 assert(IndentPrefix.startswith("//")); 686 OriginalPrefix[i] = Prefix[i] = IndentPrefix; 687 if (Lines[i].size() > Prefix[i].size() && 688 isAlphanumeric(Lines[i][Prefix[i].size()])) { 689 if (Prefix[i] == "//") 690 Prefix[i] = "// "; 691 else if (Prefix[i] == "///") 692 Prefix[i] = "/// "; 693 else if (Prefix[i] == "//!") 694 Prefix[i] = "//! "; 695 } 696 697 Tokens[i] = LineTok; 698 Content[i] = Lines[i].substr(IndentPrefix.size()); 699 OriginalContentColumn[i] = 700 StartColumn + 701 encoding::columnWidthWithTabs(OriginalPrefix[i], 702 StartColumn, 703 Style.TabWidth, 704 Encoding); 705 ContentColumn[i] = 706 StartColumn + 707 encoding::columnWidthWithTabs(Prefix[i], 708 StartColumn, 709 Style.TabWidth, 710 Encoding); 711 712 // Calculate the end of the non-whitespace text in this line. 713 size_t EndOfLine = Content[i].find_last_not_of(Blanks); 714 if (EndOfLine == StringRef::npos) 715 EndOfLine = Content[i].size(); 716 else 717 ++EndOfLine; 718 Content[i] = Content[i].substr(0, EndOfLine); 719 } 720 LineTok = CurrentTok->Next; 721 if (CurrentTok->Next && !CurrentTok->Next->ContinuesLineCommentSection) { 722 // A line comment section needs to broken by a line comment that is 723 // preceded by at least two newlines. Note that we put this break here 724 // instead of breaking at a previous stage during parsing, since that 725 // would split the contents of the enum into two unwrapped lines in this 726 // example, which is undesirable: 727 // enum A { 728 // a, // comment about a 729 // 730 // // comment about b 731 // b 732 // }; 733 // 734 // FIXME: Consider putting separate line comment sections as children to 735 // the unwrapped line instead. 736 break; 737 } 738 } 739 } 740 741 unsigned BreakableLineCommentSection::getLineLengthAfterSplit( 742 unsigned LineIndex, unsigned TailOffset, 743 StringRef::size_type Length) const { 744 unsigned ContentStartColumn = 745 (TailOffset == 0 ? ContentColumn[LineIndex] 746 : OriginalContentColumn[LineIndex]); 747 return ContentStartColumn + encoding::columnWidthWithTabs( 748 Content[LineIndex].substr(TailOffset, Length), 749 ContentStartColumn, Style.TabWidth, Encoding); 750 } 751 752 void BreakableLineCommentSection::insertBreak(unsigned LineIndex, 753 unsigned TailOffset, Split Split, 754 WhitespaceManager &Whitespaces) { 755 StringRef Text = Content[LineIndex].substr(TailOffset); 756 // Compute the offset of the split relative to the beginning of the token 757 // text. 758 unsigned BreakOffsetInToken = 759 Text.data() - tokenAt(LineIndex).TokenText.data() + Split.first; 760 unsigned CharsToRemove = Split.second; 761 // Compute the size of the new indent, including the size of the new prefix of 762 // the newly broken line. 763 unsigned IndentAtLineBreak = OriginalContentColumn[LineIndex] + 764 Prefix[LineIndex].size() - 765 OriginalPrefix[LineIndex].size(); 766 assert(IndentAtLineBreak >= Prefix[LineIndex].size()); 767 Whitespaces.replaceWhitespaceInToken( 768 tokenAt(LineIndex), BreakOffsetInToken, CharsToRemove, "", 769 Prefix[LineIndex], InPPDirective, /*Newlines=*/1, 770 /*Spaces=*/IndentAtLineBreak - Prefix[LineIndex].size()); 771 } 772 773 BreakableComment::Split BreakableLineCommentSection::getSplitBefore( 774 unsigned LineIndex, unsigned PreviousEndColumn, unsigned ColumnLimit, 775 llvm::Regex &CommentPragmasRegex) const { 776 if (!mayReflow(LineIndex, CommentPragmasRegex)) 777 return Split(StringRef::npos, 0); 778 return getReflowSplit(Content[LineIndex], ReflowPrefix, PreviousEndColumn, 779 ColumnLimit); 780 } 781 782 unsigned BreakableLineCommentSection::getLineLengthAfterSplitBefore( 783 unsigned LineIndex, unsigned TailOffset, 784 unsigned PreviousEndColumn, 785 unsigned ColumnLimit, 786 Split SplitBefore) const { 787 if (SplitBefore.first == StringRef::npos || 788 SplitBefore.first + SplitBefore.second < Content[LineIndex].size()) { 789 // A piece of line, not the whole line, gets reflown. 790 return getLineLengthAfterSplit(LineIndex, TailOffset, StringRef::npos); 791 } else { 792 // The whole line gets reflown. 793 unsigned StartColumn = PreviousEndColumn + ReflowPrefix.size(); 794 return StartColumn + encoding::columnWidthWithTabs(Content[LineIndex], 795 StartColumn, 796 Style.TabWidth, 797 Encoding); 798 } 799 } 800 801 void BreakableLineCommentSection::replaceWhitespaceBefore( 802 unsigned LineIndex, unsigned PreviousEndColumn, unsigned ColumnLimit, 803 Split SplitBefore, WhitespaceManager &Whitespaces) { 804 // If this is the first line of a token, we need to inform Whitespace Manager 805 // about it: either adapt the whitespace range preceding it, or mark it as an 806 // untouchable token. 807 // This happens for instance here: 808 // // line 1 \ 809 // // line 2 810 if (LineIndex > 0 && Tokens[LineIndex] != Tokens[LineIndex - 1]) { 811 if (SplitBefore.first != StringRef::npos) { 812 // Reflow happens between tokens. Replace the whitespace between the 813 // tokens by the empty string. 814 Whitespaces.replaceWhitespace( 815 *Tokens[LineIndex], /*Newlines=*/0, /*Spaces=*/0, 816 /*StartOfTokenColumn=*/StartColumn, /*InPPDirective=*/false); 817 // Replace the indent and prefix of the token with the reflow prefix. 818 unsigned WhitespaceLength = 819 Content[LineIndex].data() - tokenAt(LineIndex).TokenText.data(); 820 Whitespaces.replaceWhitespaceInToken(*Tokens[LineIndex], 821 /*Offset=*/0, 822 /*ReplaceChars=*/WhitespaceLength, 823 /*PreviousPostfix=*/"", 824 /*CurrentPrefix=*/ReflowPrefix, 825 /*InPPDirective=*/false, 826 /*Newlines=*/0, 827 /*Spaces=*/0); 828 } else { 829 // This is the first line for the current token, but no reflow with the 830 // previous token is necessary. However, we still may need to adjust the 831 // start column. Note that ContentColumn[LineIndex] is the expected 832 // content column after a possible update to the prefix, hence the prefix 833 // length change is included. 834 unsigned LineColumn = 835 ContentColumn[LineIndex] - 836 (Content[LineIndex].data() - Lines[LineIndex].data()) + 837 (OriginalPrefix[LineIndex].size() - Prefix[LineIndex].size()); 838 839 // We always want to create a replacement instead of adding an untouchable 840 // token, even if LineColumn is the same as the original column of the 841 // token. This is because WhitespaceManager doesn't align trailing 842 // comments if they are untouchable. 843 Whitespaces.replaceWhitespace(*Tokens[LineIndex], 844 /*Newlines=*/1, 845 /*Spaces=*/LineColumn, 846 /*StartOfTokenColumn=*/LineColumn, 847 /*InPPDirective=*/false); 848 } 849 } 850 if (OriginalPrefix[LineIndex] != Prefix[LineIndex]) { 851 // Adjust the prefix if necessary. 852 853 // Take care of the space possibly introduced after a decoration. 854 assert(Prefix[LineIndex] == (OriginalPrefix[LineIndex] + " ").str() && 855 "Expecting a line comment prefix to differ from original by at most " 856 "a space"); 857 Whitespaces.replaceWhitespaceInToken( 858 tokenAt(LineIndex), OriginalPrefix[LineIndex].size(), 0, "", "", 859 /*InPPDirective=*/false, /*Newlines=*/0, /*Spaces=*/1); 860 } 861 // Add a break after a reflow split has been introduced, if necessary. 862 // Note that this break doesn't need to be penalized, since it doesn't change 863 // the number of lines. 864 if (SplitBefore.first != StringRef::npos && 865 SplitBefore.first + SplitBefore.second < Content[LineIndex].size()) { 866 insertBreak(LineIndex, 0, SplitBefore, Whitespaces); 867 } 868 } 869 870 void BreakableLineCommentSection::updateNextToken(LineState& State) const { 871 if (LastLineTok) { 872 State.NextToken = LastLineTok->Next; 873 } 874 } 875 876 bool BreakableLineCommentSection::mayReflow( 877 unsigned LineIndex, llvm::Regex &CommentPragmasRegex) const { 878 // Line comments have the indent as part of the prefix, so we need to 879 // recompute the start of the line. 880 StringRef IndentContent = Content[LineIndex]; 881 if (Lines[LineIndex].startswith("//")) { 882 IndentContent = Lines[LineIndex].substr(2); 883 } 884 return LineIndex > 0 && !CommentPragmasRegex.match(IndentContent) && 885 mayReflowContent(Content[LineIndex]) && !Tok.Finalized && 886 !switchesFormatting(tokenAt(LineIndex)) && 887 OriginalPrefix[LineIndex] == OriginalPrefix[LineIndex - 1]; 888 } 889 890 unsigned 891 BreakableLineCommentSection::getContentStartColumn(unsigned LineIndex, 892 unsigned TailOffset) const { 893 if (TailOffset != 0) { 894 return OriginalContentColumn[LineIndex]; 895 } 896 return ContentColumn[LineIndex]; 897 } 898 899 } // namespace format 900 } // namespace clang 901