1 //===--- LeftRightQualifierAlignmentFixer.cpp -------------------*- C++--*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 /// 9 /// \file 10 /// This file implements LeftRightQualifierAlignmentFixer, a TokenAnalyzer that 11 /// enforces either left or right const depending on the style. 12 /// 13 //===----------------------------------------------------------------------===// 14 15 #include "QualifierAlignmentFixer.h" 16 #include "FormatToken.h" 17 #include "llvm/Support/Debug.h" 18 #include "llvm/Support/Regex.h" 19 20 #include <algorithm> 21 22 #define DEBUG_TYPE "format-qualifier-alignment-fixer" 23 24 namespace clang { 25 namespace format { 26 27 QualifierAlignmentFixer::QualifierAlignmentFixer( 28 const Environment &Env, const FormatStyle &Style, StringRef &Code, 29 ArrayRef<tooling::Range> Ranges, unsigned FirstStartColumn, 30 unsigned NextStartColumn, unsigned LastStartColumn, StringRef FileName) 31 : TokenAnalyzer(Env, Style), Code(Code), Ranges(Ranges), 32 FirstStartColumn(FirstStartColumn), NextStartColumn(NextStartColumn), 33 LastStartColumn(LastStartColumn), FileName(FileName) { 34 std::vector<std::string> LeftOrder; 35 std::vector<std::string> RightOrder; 36 std::vector<tok::TokenKind> ConfiguredQualifierTokens; 37 PrepareLeftRightOrdering(Style.QualifierOrder, LeftOrder, RightOrder, 38 ConfiguredQualifierTokens); 39 40 // Handle the left and right Alignment Seperately 41 for (const auto &Qualifier : LeftOrder) { 42 Passes.emplace_back( 43 [&, Qualifier, ConfiguredQualifierTokens](const Environment &Env) { 44 return LeftRightQualifierAlignmentFixer(Env, Style, Qualifier, 45 ConfiguredQualifierTokens, 46 /*RightAlign=*/false) 47 .process(); 48 }); 49 } 50 for (const auto &Qualifier : RightOrder) { 51 Passes.emplace_back( 52 [&, Qualifier, ConfiguredQualifierTokens](const Environment &Env) { 53 return LeftRightQualifierAlignmentFixer(Env, Style, Qualifier, 54 ConfiguredQualifierTokens, 55 /*RightAlign=*/true) 56 .process(); 57 }); 58 } 59 } 60 61 std::pair<tooling::Replacements, unsigned> QualifierAlignmentFixer::analyze( 62 TokenAnnotator &Annotator, SmallVectorImpl<AnnotatedLine *> &AnnotatedLines, 63 FormatTokenLexer &Tokens) { 64 65 auto Env = 66 std::make_unique<Environment>(Code, FileName, Ranges, FirstStartColumn, 67 NextStartColumn, LastStartColumn); 68 llvm::Optional<std::string> CurrentCode = None; 69 tooling::Replacements Fixes; 70 for (size_t I = 0, E = Passes.size(); I < E; ++I) { 71 std::pair<tooling::Replacements, unsigned> PassFixes = Passes[I](*Env); 72 auto NewCode = applyAllReplacements( 73 CurrentCode ? StringRef(*CurrentCode) : Code, PassFixes.first); 74 if (NewCode) { 75 Fixes = Fixes.merge(PassFixes.first); 76 if (I + 1 < E) { 77 CurrentCode = std::move(*NewCode); 78 Env = std::make_unique<Environment>( 79 *CurrentCode, FileName, 80 tooling::calculateRangesAfterReplacements(Fixes, Ranges), 81 FirstStartColumn, NextStartColumn, LastStartColumn); 82 } 83 } 84 } 85 86 // Don't make replacements that replace nothing. 87 tooling::Replacements NonNoOpFixes; 88 89 for (auto I = Fixes.begin(), E = Fixes.end(); I != E; ++I) { 90 StringRef OriginalCode = Code.substr(I->getOffset(), I->getLength()); 91 92 if (!OriginalCode.equals(I->getReplacementText())) { 93 auto Err = NonNoOpFixes.add(*I); 94 if (Err) 95 llvm::errs() << "Error adding replacements : " 96 << llvm::toString(std::move(Err)) << "\n"; 97 } 98 } 99 return {NonNoOpFixes, 0}; 100 } 101 102 static void replaceToken(const SourceManager &SourceMgr, 103 tooling::Replacements &Fixes, 104 const CharSourceRange &Range, std::string NewText) { 105 auto Replacement = tooling::Replacement(SourceMgr, Range, NewText); 106 auto Err = Fixes.add(Replacement); 107 108 if (Err) 109 llvm::errs() << "Error while rearranging Qualifier : " 110 << llvm::toString(std::move(Err)) << "\n"; 111 } 112 113 static void removeToken(const SourceManager &SourceMgr, 114 tooling::Replacements &Fixes, 115 const FormatToken *First) { 116 auto Range = CharSourceRange::getCharRange(First->getStartOfNonWhitespace(), 117 First->Tok.getEndLoc()); 118 replaceToken(SourceMgr, Fixes, Range, ""); 119 } 120 121 static void insertQualifierAfter(const SourceManager &SourceMgr, 122 tooling::Replacements &Fixes, 123 const FormatToken *First, 124 const std::string &Qualifier) { 125 FormatToken *Next = First->Next; 126 if (!Next) 127 return; 128 auto Range = CharSourceRange::getCharRange(Next->getStartOfNonWhitespace(), 129 Next->Tok.getEndLoc()); 130 131 std::string NewText = " " + Qualifier + " "; 132 NewText += Next->TokenText; 133 replaceToken(SourceMgr, Fixes, Range, NewText); 134 } 135 136 static void insertQualifierBefore(const SourceManager &SourceMgr, 137 tooling::Replacements &Fixes, 138 const FormatToken *First, 139 const std::string &Qualifier) { 140 auto Range = CharSourceRange::getCharRange(First->getStartOfNonWhitespace(), 141 First->Tok.getEndLoc()); 142 143 std::string NewText = " " + Qualifier + " "; 144 NewText += First->TokenText; 145 146 replaceToken(SourceMgr, Fixes, Range, NewText); 147 } 148 149 static bool endsWithSpace(const std::string &s) { 150 if (s.empty()) { 151 return false; 152 } 153 return isspace(s.back()); 154 } 155 156 static bool startsWithSpace(const std::string &s) { 157 if (s.empty()) { 158 return false; 159 } 160 return isspace(s.front()); 161 } 162 163 static void rotateTokens(const SourceManager &SourceMgr, 164 tooling::Replacements &Fixes, const FormatToken *First, 165 const FormatToken *Last, bool Left) { 166 auto *End = Last; 167 auto *Begin = First; 168 if (!Left) { 169 End = Last->Next; 170 Begin = First->Next; 171 } 172 173 std::string NewText; 174 // If we are rotating to the left we move the Last token to the front. 175 if (Left) { 176 NewText += Last->TokenText; 177 NewText += " "; 178 } 179 180 // Then move through the other tokens. 181 auto *Tok = Begin; 182 while (Tok != End) { 183 if (!NewText.empty() && !endsWithSpace(NewText)) { 184 NewText += " "; 185 } 186 187 NewText += Tok->TokenText; 188 Tok = Tok->Next; 189 } 190 191 // If we are rotating to the right we move the first token to the back. 192 if (!Left) { 193 if (!NewText.empty() && !startsWithSpace(NewText)) { 194 NewText += " "; 195 } 196 NewText += First->TokenText; 197 } 198 199 auto Range = CharSourceRange::getCharRange(First->getStartOfNonWhitespace(), 200 Last->Tok.getEndLoc()); 201 202 replaceToken(SourceMgr, Fixes, Range, NewText); 203 } 204 205 FormatToken *LeftRightQualifierAlignmentFixer::analyzeRight( 206 const SourceManager &SourceMgr, const AdditionalKeywords &Keywords, 207 tooling::Replacements &Fixes, FormatToken *Tok, 208 const std::string &Qualifier, tok::TokenKind QualifierType) { 209 // We only need to think about streams that begin with a qualifier. 210 if (!Tok->is(QualifierType)) 211 return Tok; 212 // Don't concern yourself if nothing follows the qualifier. 213 if (!Tok->Next) 214 return Tok; 215 if (LeftRightQualifierAlignmentFixer::isPossibleMacro(Tok->Next)) 216 return Tok; 217 218 FormatToken *Qual = Tok->Next; 219 FormatToken *LastQual = Qual; 220 while (Qual && isQualifierOrType(Qual, ConfiguredQualifierTokens)) { 221 LastQual = Qual; 222 Qual = Qual->Next; 223 } 224 if (LastQual && Qual != LastQual) { 225 rotateTokens(SourceMgr, Fixes, Tok, LastQual, /*Left=*/false); 226 Tok = LastQual; 227 } else if (Tok->startsSequence(QualifierType, tok::identifier, 228 TT_TemplateOpener)) { 229 // Read from the TemplateOpener to 230 // TemplateCloser as in const ArrayRef<int> a; const ArrayRef<int> &a; 231 FormatToken *EndTemplate = Tok->Next->Next->MatchingParen; 232 if (EndTemplate) { 233 // Move to the end of any template class members e.g. 234 // `Foo<int>::iterator`. 235 if (EndTemplate->startsSequence(TT_TemplateCloser, tok::coloncolon, 236 tok::identifier)) 237 EndTemplate = EndTemplate->Next->Next; 238 } 239 if (EndTemplate && EndTemplate->Next && 240 !EndTemplate->Next->isOneOf(tok::equal, tok::l_paren)) { 241 insertQualifierAfter(SourceMgr, Fixes, EndTemplate, Qualifier); 242 // Remove the qualifier. 243 removeToken(SourceMgr, Fixes, Tok); 244 return Tok; 245 } 246 } else if (Tok->startsSequence(QualifierType, tok::identifier)) { 247 FormatToken *Next = Tok->Next; 248 // The case `const Foo` -> `Foo const` 249 // The case `const Foo *` -> `Foo const *` 250 // The case `const Foo &` -> `Foo const &` 251 // The case `const Foo &&` -> `Foo const &&` 252 // The case `const std::Foo &&` -> `std::Foo const &&` 253 // The case `const std::Foo<T> &&` -> `std::Foo<T> const &&` 254 while (Next && Next->isOneOf(tok::identifier, tok::coloncolon)) { 255 Next = Next->Next; 256 } 257 if (Next && Next->is(TT_TemplateOpener)) { 258 Next = Next->MatchingParen; 259 // Move to the end of any template class members e.g. 260 // `Foo<int>::iterator`. 261 if (Next && Next->startsSequence(TT_TemplateCloser, tok::coloncolon, 262 tok::identifier)) { 263 Next = Next->Next->Next; 264 return Tok; 265 } 266 assert(Next && "Missing template opener"); 267 Next = Next->Next; 268 } 269 if (Next && Next->isOneOf(tok::star, tok::amp, tok::ampamp) && 270 !Tok->Next->isOneOf(Keywords.kw_override, Keywords.kw_final)) { 271 if (Next->Previous && !Next->Previous->is(QualifierType)) { 272 insertQualifierAfter(SourceMgr, Fixes, Next->Previous, Qualifier); 273 removeToken(SourceMgr, Fixes, Tok); 274 } 275 return Next; 276 } 277 } 278 279 return Tok; 280 } 281 282 FormatToken *LeftRightQualifierAlignmentFixer::analyzeLeft( 283 const SourceManager &SourceMgr, const AdditionalKeywords &Keywords, 284 tooling::Replacements &Fixes, FormatToken *Tok, 285 const std::string &Qualifier, tok::TokenKind QualifierType) { 286 // if Tok is an identifier and possibly a macro then don't convert. 287 if (LeftRightQualifierAlignmentFixer::isPossibleMacro(Tok)) 288 return Tok; 289 290 FormatToken *Qual = Tok; 291 FormatToken *LastQual = Qual; 292 while (Qual && isQualifierOrType(Qual, ConfiguredQualifierTokens)) { 293 LastQual = Qual; 294 Qual = Qual->Next; 295 if (Qual && Qual->is(QualifierType)) 296 break; 297 } 298 299 if (!Qual) { 300 return Tok; 301 } 302 303 if (LastQual && Qual != LastQual && Qual->is(QualifierType)) { 304 rotateTokens(SourceMgr, Fixes, Tok, Qual, /*Left=*/true); 305 Tok = Qual->Next; 306 } else if (Tok->startsSequence(tok::identifier, QualifierType)) { 307 if (Tok->Next->Next && Tok->Next->Next->isOneOf(tok::identifier, tok::star, 308 tok::amp, tok::ampamp)) { 309 // Don't swap `::iterator const` to `::const iterator`. 310 if (!Tok->Previous || 311 (Tok->Previous && !Tok->Previous->is(tok::coloncolon))) { 312 rotateTokens(SourceMgr, Fixes, Tok, Tok->Next, /*Left=*/true); 313 Tok = Tok->Next; 314 } 315 } 316 } 317 if (Tok->is(TT_TemplateOpener) && Tok->Next && 318 (Tok->Next->is(tok::identifier) || Tok->Next->isSimpleTypeSpecifier()) && 319 Tok->Next->Next && Tok->Next->Next->is(QualifierType)) { 320 rotateTokens(SourceMgr, Fixes, Tok->Next, Tok->Next->Next, /*Left=*/true); 321 } 322 if (Tok->startsSequence(tok::identifier) && Tok->Next) { 323 if (Tok->Previous && 324 Tok->Previous->isOneOf(tok::star, tok::ampamp, tok::amp)) { 325 return Tok; 326 } 327 FormatToken *Next = Tok->Next; 328 // The case `std::Foo<T> const` -> `const std::Foo<T> &&` 329 while (Next && Next->isOneOf(tok::identifier, tok::coloncolon)) 330 Next = Next->Next; 331 if (Next && Next->Previous && 332 Next->Previous->startsSequence(tok::identifier, TT_TemplateOpener)) { 333 // Read from to the end of the TemplateOpener to 334 // TemplateCloser const ArrayRef<int> a; const ArrayRef<int> &a; 335 assert(Next->MatchingParen && "Missing template closer"); 336 Next = Next->MatchingParen->Next; 337 338 // Move to the end of any template class members e.g. 339 // `Foo<int>::iterator`. 340 if (Next && Next->startsSequence(tok::coloncolon, tok::identifier)) 341 Next = Next->Next->Next; 342 if (Next && Next->is(QualifierType)) { 343 // Remove the const. 344 insertQualifierBefore(SourceMgr, Fixes, Tok, Qualifier); 345 removeToken(SourceMgr, Fixes, Next); 346 return Next; 347 } 348 } 349 if (Next && Next->Next && 350 Next->Next->isOneOf(tok::amp, tok::ampamp, tok::star)) { 351 if (Next->is(QualifierType)) { 352 // Remove the qualifier. 353 insertQualifierBefore(SourceMgr, Fixes, Tok, Qualifier); 354 removeToken(SourceMgr, Fixes, Next); 355 return Next; 356 } 357 } 358 } 359 return Tok; 360 } 361 362 tok::TokenKind LeftRightQualifierAlignmentFixer::getTokenFromQualifier( 363 const std::string &Qualifier) { 364 // Don't let 'type' be an identifier, but steal typeof token. 365 return llvm::StringSwitch<tok::TokenKind>(Qualifier) 366 .Case("type", tok::kw_typeof) 367 .Case("const", tok::kw_const) 368 .Case("volatile", tok::kw_volatile) 369 .Case("static", tok::kw_static) 370 .Case("inline", tok::kw_inline) 371 .Case("constexpr", tok::kw_constexpr) 372 .Case("restrict", tok::kw_restrict) 373 .Default(tok::identifier); 374 } 375 376 LeftRightQualifierAlignmentFixer::LeftRightQualifierAlignmentFixer( 377 const Environment &Env, const FormatStyle &Style, 378 const std::string &Qualifier, 379 const std::vector<tok::TokenKind> &QualifierTokens, bool RightAlign) 380 : TokenAnalyzer(Env, Style), Qualifier(Qualifier), RightAlign(RightAlign), 381 ConfiguredQualifierTokens(QualifierTokens) {} 382 383 std::pair<tooling::Replacements, unsigned> 384 LeftRightQualifierAlignmentFixer::analyze( 385 TokenAnnotator &Annotator, SmallVectorImpl<AnnotatedLine *> &AnnotatedLines, 386 FormatTokenLexer &Tokens) { 387 tooling::Replacements Fixes; 388 const AdditionalKeywords &Keywords = Tokens.getKeywords(); 389 const SourceManager &SourceMgr = Env.getSourceManager(); 390 AffectedRangeMgr.computeAffectedLines(AnnotatedLines); 391 392 tok::TokenKind QualifierToken = getTokenFromQualifier(Qualifier); 393 assert(QualifierToken != tok::identifier && "Unrecognised Qualifier"); 394 395 for (size_t I = 0, E = AnnotatedLines.size(); I != E; ++I) { 396 FormatToken *First = AnnotatedLines[I]->First; 397 const auto *Last = AnnotatedLines[I]->Last; 398 399 for (auto *Tok = First; Tok && Tok != Last && Tok->Next; Tok = Tok->Next) { 400 if (Tok->is(tok::comment)) 401 continue; 402 if (RightAlign) 403 Tok = analyzeRight(SourceMgr, Keywords, Fixes, Tok, Qualifier, 404 QualifierToken); 405 else 406 Tok = analyzeLeft(SourceMgr, Keywords, Fixes, Tok, Qualifier, 407 QualifierToken); 408 } 409 } 410 return {Fixes, 0}; 411 } 412 413 void QualifierAlignmentFixer::PrepareLeftRightOrdering( 414 const std::vector<std::string> &Order, std::vector<std::string> &LeftOrder, 415 std::vector<std::string> &RightOrder, 416 std::vector<tok::TokenKind> &Qualifiers) { 417 418 // Depending on the position of type in the order you need 419 // To iterate forward or backward through the order list as qualifier 420 // can push through each other. 421 // The Order list must define the position of "type" to signify 422 assert(llvm::is_contained(Order, "type") && 423 "QualifierOrder must contain type"); 424 // Split the Order list by type and reverse the left side. 425 426 bool left = true; 427 for (const auto &s : Order) { 428 if (s == "type") { 429 left = false; 430 continue; 431 } 432 433 tok::TokenKind QualifierToken = 434 LeftRightQualifierAlignmentFixer::getTokenFromQualifier(s); 435 if (QualifierToken != tok::kw_typeof && QualifierToken != tok::identifier) { 436 Qualifiers.push_back(QualifierToken); 437 } 438 439 if (left) 440 // Reverse the order for left aligned items. 441 LeftOrder.insert(LeftOrder.begin(), s); 442 else 443 RightOrder.push_back(s); 444 } 445 } 446 447 bool LeftRightQualifierAlignmentFixer::isQualifierOrType( 448 const FormatToken *Tok, const std::vector<tok::TokenKind> &specifiedTypes) { 449 return Tok && (Tok->isSimpleTypeSpecifier() || Tok->is(tok::kw_auto) || 450 llvm::is_contained(specifiedTypes, Tok->Tok.getKind())); 451 } 452 453 // If a token is an identifier and it's upper case, it could 454 // be a macro and hence we need to be able to ignore it. 455 bool LeftRightQualifierAlignmentFixer::isPossibleMacro(const FormatToken *Tok) { 456 if (!Tok) 457 return false; 458 if (!Tok->is(tok::identifier)) 459 return false; 460 if (Tok->TokenText.upper() == Tok->TokenText.str()) 461 return true; 462 return false; 463 } 464 465 } // namespace format 466 } // namespace clang 467