1 //===--- Format.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 This file implements functions declared in Format.h. This will be 12 /// split into separate files as we go. 13 /// 14 //===----------------------------------------------------------------------===// 15 16 #include "clang/Format/Format.h" 17 #include "ContinuationIndenter.h" 18 #include "TokenAnnotator.h" 19 #include "UnwrappedLineFormatter.h" 20 #include "UnwrappedLineParser.h" 21 #include "WhitespaceManager.h" 22 #include "clang/Basic/Diagnostic.h" 23 #include "clang/Basic/DiagnosticOptions.h" 24 #include "clang/Basic/SourceManager.h" 25 #include "clang/Lex/Lexer.h" 26 #include "llvm/ADT/STLExtras.h" 27 #include "llvm/Support/Allocator.h" 28 #include "llvm/Support/Debug.h" 29 #include "llvm/Support/Path.h" 30 #include "llvm/Support/Regex.h" 31 #include "llvm/Support/YAMLTraits.h" 32 #include <queue> 33 #include <string> 34 35 #define DEBUG_TYPE "format-formatter" 36 37 using clang::format::FormatStyle; 38 39 LLVM_YAML_IS_FLOW_SEQUENCE_VECTOR(std::string) 40 LLVM_YAML_IS_SEQUENCE_VECTOR(clang::format::FormatStyle::IncludeCategory) 41 42 namespace llvm { 43 namespace yaml { 44 template <> struct ScalarEnumerationTraits<FormatStyle::LanguageKind> { 45 static void enumeration(IO &IO, FormatStyle::LanguageKind &Value) { 46 IO.enumCase(Value, "Cpp", FormatStyle::LK_Cpp); 47 IO.enumCase(Value, "Java", FormatStyle::LK_Java); 48 IO.enumCase(Value, "JavaScript", FormatStyle::LK_JavaScript); 49 IO.enumCase(Value, "Proto", FormatStyle::LK_Proto); 50 } 51 }; 52 53 template <> struct ScalarEnumerationTraits<FormatStyle::LanguageStandard> { 54 static void enumeration(IO &IO, FormatStyle::LanguageStandard &Value) { 55 IO.enumCase(Value, "Cpp03", FormatStyle::LS_Cpp03); 56 IO.enumCase(Value, "C++03", FormatStyle::LS_Cpp03); 57 IO.enumCase(Value, "Cpp11", FormatStyle::LS_Cpp11); 58 IO.enumCase(Value, "C++11", FormatStyle::LS_Cpp11); 59 IO.enumCase(Value, "Auto", FormatStyle::LS_Auto); 60 } 61 }; 62 63 template <> struct ScalarEnumerationTraits<FormatStyle::UseTabStyle> { 64 static void enumeration(IO &IO, FormatStyle::UseTabStyle &Value) { 65 IO.enumCase(Value, "Never", FormatStyle::UT_Never); 66 IO.enumCase(Value, "false", FormatStyle::UT_Never); 67 IO.enumCase(Value, "Always", FormatStyle::UT_Always); 68 IO.enumCase(Value, "true", FormatStyle::UT_Always); 69 IO.enumCase(Value, "ForIndentation", FormatStyle::UT_ForIndentation); 70 } 71 }; 72 73 template <> struct ScalarEnumerationTraits<FormatStyle::ShortFunctionStyle> { 74 static void enumeration(IO &IO, FormatStyle::ShortFunctionStyle &Value) { 75 IO.enumCase(Value, "None", FormatStyle::SFS_None); 76 IO.enumCase(Value, "false", FormatStyle::SFS_None); 77 IO.enumCase(Value, "All", FormatStyle::SFS_All); 78 IO.enumCase(Value, "true", FormatStyle::SFS_All); 79 IO.enumCase(Value, "Inline", FormatStyle::SFS_Inline); 80 IO.enumCase(Value, "Empty", FormatStyle::SFS_Empty); 81 } 82 }; 83 84 template <> struct ScalarEnumerationTraits<FormatStyle::BinaryOperatorStyle> { 85 static void enumeration(IO &IO, FormatStyle::BinaryOperatorStyle &Value) { 86 IO.enumCase(Value, "All", FormatStyle::BOS_All); 87 IO.enumCase(Value, "true", FormatStyle::BOS_All); 88 IO.enumCase(Value, "None", FormatStyle::BOS_None); 89 IO.enumCase(Value, "false", FormatStyle::BOS_None); 90 IO.enumCase(Value, "NonAssignment", FormatStyle::BOS_NonAssignment); 91 } 92 }; 93 94 template <> struct ScalarEnumerationTraits<FormatStyle::BraceBreakingStyle> { 95 static void enumeration(IO &IO, FormatStyle::BraceBreakingStyle &Value) { 96 IO.enumCase(Value, "Attach", FormatStyle::BS_Attach); 97 IO.enumCase(Value, "Linux", FormatStyle::BS_Linux); 98 IO.enumCase(Value, "Mozilla", FormatStyle::BS_Mozilla); 99 IO.enumCase(Value, "Stroustrup", FormatStyle::BS_Stroustrup); 100 IO.enumCase(Value, "Allman", FormatStyle::BS_Allman); 101 IO.enumCase(Value, "GNU", FormatStyle::BS_GNU); 102 IO.enumCase(Value, "WebKit", FormatStyle::BS_WebKit); 103 IO.enumCase(Value, "Custom", FormatStyle::BS_Custom); 104 } 105 }; 106 107 template <> 108 struct ScalarEnumerationTraits<FormatStyle::DefinitionReturnTypeBreakingStyle> { 109 static void 110 enumeration(IO &IO, FormatStyle::DefinitionReturnTypeBreakingStyle &Value) { 111 IO.enumCase(Value, "None", FormatStyle::DRTBS_None); 112 IO.enumCase(Value, "All", FormatStyle::DRTBS_All); 113 IO.enumCase(Value, "TopLevel", FormatStyle::DRTBS_TopLevel); 114 115 // For backward compatibility. 116 IO.enumCase(Value, "false", FormatStyle::DRTBS_None); 117 IO.enumCase(Value, "true", FormatStyle::DRTBS_All); 118 } 119 }; 120 121 template <> 122 struct ScalarEnumerationTraits<FormatStyle::NamespaceIndentationKind> { 123 static void enumeration(IO &IO, 124 FormatStyle::NamespaceIndentationKind &Value) { 125 IO.enumCase(Value, "None", FormatStyle::NI_None); 126 IO.enumCase(Value, "Inner", FormatStyle::NI_Inner); 127 IO.enumCase(Value, "All", FormatStyle::NI_All); 128 } 129 }; 130 131 template <> struct ScalarEnumerationTraits<FormatStyle::BracketAlignmentStyle> { 132 static void enumeration(IO &IO, FormatStyle::BracketAlignmentStyle &Value) { 133 IO.enumCase(Value, "Align", FormatStyle::BAS_Align); 134 IO.enumCase(Value, "DontAlign", FormatStyle::BAS_DontAlign); 135 IO.enumCase(Value, "AlwaysBreak", FormatStyle::BAS_AlwaysBreak); 136 137 // For backward compatibility. 138 IO.enumCase(Value, "true", FormatStyle::BAS_Align); 139 IO.enumCase(Value, "false", FormatStyle::BAS_DontAlign); 140 } 141 }; 142 143 template <> struct ScalarEnumerationTraits<FormatStyle::PointerAlignmentStyle> { 144 static void enumeration(IO &IO, FormatStyle::PointerAlignmentStyle &Value) { 145 IO.enumCase(Value, "Middle", FormatStyle::PAS_Middle); 146 IO.enumCase(Value, "Left", FormatStyle::PAS_Left); 147 IO.enumCase(Value, "Right", FormatStyle::PAS_Right); 148 149 // For backward compatibility. 150 IO.enumCase(Value, "true", FormatStyle::PAS_Left); 151 IO.enumCase(Value, "false", FormatStyle::PAS_Right); 152 } 153 }; 154 155 template <> 156 struct ScalarEnumerationTraits<FormatStyle::SpaceBeforeParensOptions> { 157 static void enumeration(IO &IO, 158 FormatStyle::SpaceBeforeParensOptions &Value) { 159 IO.enumCase(Value, "Never", FormatStyle::SBPO_Never); 160 IO.enumCase(Value, "ControlStatements", 161 FormatStyle::SBPO_ControlStatements); 162 IO.enumCase(Value, "Always", FormatStyle::SBPO_Always); 163 164 // For backward compatibility. 165 IO.enumCase(Value, "false", FormatStyle::SBPO_Never); 166 IO.enumCase(Value, "true", FormatStyle::SBPO_ControlStatements); 167 } 168 }; 169 170 template <> struct MappingTraits<FormatStyle> { 171 static void mapping(IO &IO, FormatStyle &Style) { 172 // When reading, read the language first, we need it for getPredefinedStyle. 173 IO.mapOptional("Language", Style.Language); 174 175 if (IO.outputting()) { 176 StringRef StylesArray[] = {"LLVM", "Google", "Chromium", 177 "Mozilla", "WebKit", "GNU"}; 178 ArrayRef<StringRef> Styles(StylesArray); 179 for (size_t i = 0, e = Styles.size(); i < e; ++i) { 180 StringRef StyleName(Styles[i]); 181 FormatStyle PredefinedStyle; 182 if (getPredefinedStyle(StyleName, Style.Language, &PredefinedStyle) && 183 Style == PredefinedStyle) { 184 IO.mapOptional("# BasedOnStyle", StyleName); 185 break; 186 } 187 } 188 } else { 189 StringRef BasedOnStyle; 190 IO.mapOptional("BasedOnStyle", BasedOnStyle); 191 if (!BasedOnStyle.empty()) { 192 FormatStyle::LanguageKind OldLanguage = Style.Language; 193 FormatStyle::LanguageKind Language = 194 ((FormatStyle *)IO.getContext())->Language; 195 if (!getPredefinedStyle(BasedOnStyle, Language, &Style)) { 196 IO.setError(Twine("Unknown value for BasedOnStyle: ", BasedOnStyle)); 197 return; 198 } 199 Style.Language = OldLanguage; 200 } 201 } 202 203 // For backward compatibility. 204 if (!IO.outputting()) { 205 IO.mapOptional("DerivePointerBinding", Style.DerivePointerAlignment); 206 IO.mapOptional("IndentFunctionDeclarationAfterType", 207 Style.IndentWrappedFunctionNames); 208 IO.mapOptional("PointerBindsToType", Style.PointerAlignment); 209 IO.mapOptional("SpaceAfterControlStatementKeyword", 210 Style.SpaceBeforeParens); 211 } 212 213 IO.mapOptional("AccessModifierOffset", Style.AccessModifierOffset); 214 IO.mapOptional("AlignAfterOpenBracket", Style.AlignAfterOpenBracket); 215 IO.mapOptional("AlignConsecutiveAssignments", 216 Style.AlignConsecutiveAssignments); 217 IO.mapOptional("AlignConsecutiveDeclarations", 218 Style.AlignConsecutiveDeclarations); 219 IO.mapOptional("AlignEscapedNewlinesLeft", Style.AlignEscapedNewlinesLeft); 220 IO.mapOptional("AlignOperands", Style.AlignOperands); 221 IO.mapOptional("AlignTrailingComments", Style.AlignTrailingComments); 222 IO.mapOptional("AllowAllParametersOfDeclarationOnNextLine", 223 Style.AllowAllParametersOfDeclarationOnNextLine); 224 IO.mapOptional("AllowShortBlocksOnASingleLine", 225 Style.AllowShortBlocksOnASingleLine); 226 IO.mapOptional("AllowShortCaseLabelsOnASingleLine", 227 Style.AllowShortCaseLabelsOnASingleLine); 228 IO.mapOptional("AllowShortFunctionsOnASingleLine", 229 Style.AllowShortFunctionsOnASingleLine); 230 IO.mapOptional("AllowShortIfStatementsOnASingleLine", 231 Style.AllowShortIfStatementsOnASingleLine); 232 IO.mapOptional("AllowShortLoopsOnASingleLine", 233 Style.AllowShortLoopsOnASingleLine); 234 IO.mapOptional("AlwaysBreakAfterDefinitionReturnType", 235 Style.AlwaysBreakAfterDefinitionReturnType); 236 IO.mapOptional("AlwaysBreakBeforeMultilineStrings", 237 Style.AlwaysBreakBeforeMultilineStrings); 238 IO.mapOptional("AlwaysBreakTemplateDeclarations", 239 Style.AlwaysBreakTemplateDeclarations); 240 IO.mapOptional("BinPackArguments", Style.BinPackArguments); 241 IO.mapOptional("BinPackParameters", Style.BinPackParameters); 242 IO.mapOptional("BraceWrapping", Style.BraceWrapping); 243 IO.mapOptional("BreakBeforeBinaryOperators", 244 Style.BreakBeforeBinaryOperators); 245 IO.mapOptional("BreakBeforeBraces", Style.BreakBeforeBraces); 246 IO.mapOptional("BreakBeforeTernaryOperators", 247 Style.BreakBeforeTernaryOperators); 248 IO.mapOptional("BreakConstructorInitializersBeforeComma", 249 Style.BreakConstructorInitializersBeforeComma); 250 IO.mapOptional("ColumnLimit", Style.ColumnLimit); 251 IO.mapOptional("CommentPragmas", Style.CommentPragmas); 252 IO.mapOptional("ConstructorInitializerAllOnOneLineOrOnePerLine", 253 Style.ConstructorInitializerAllOnOneLineOrOnePerLine); 254 IO.mapOptional("ConstructorInitializerIndentWidth", 255 Style.ConstructorInitializerIndentWidth); 256 IO.mapOptional("ContinuationIndentWidth", Style.ContinuationIndentWidth); 257 IO.mapOptional("Cpp11BracedListStyle", Style.Cpp11BracedListStyle); 258 IO.mapOptional("DerivePointerAlignment", Style.DerivePointerAlignment); 259 IO.mapOptional("DisableFormat", Style.DisableFormat); 260 IO.mapOptional("ExperimentalAutoDetectBinPacking", 261 Style.ExperimentalAutoDetectBinPacking); 262 IO.mapOptional("ForEachMacros", Style.ForEachMacros); 263 IO.mapOptional("IncludeCategories", Style.IncludeCategories); 264 IO.mapOptional("IndentCaseLabels", Style.IndentCaseLabels); 265 IO.mapOptional("IndentWidth", Style.IndentWidth); 266 IO.mapOptional("IndentWrappedFunctionNames", 267 Style.IndentWrappedFunctionNames); 268 IO.mapOptional("KeepEmptyLinesAtTheStartOfBlocks", 269 Style.KeepEmptyLinesAtTheStartOfBlocks); 270 IO.mapOptional("MacroBlockBegin", Style.MacroBlockBegin); 271 IO.mapOptional("MacroBlockEnd", Style.MacroBlockEnd); 272 IO.mapOptional("MaxEmptyLinesToKeep", Style.MaxEmptyLinesToKeep); 273 IO.mapOptional("NamespaceIndentation", Style.NamespaceIndentation); 274 IO.mapOptional("ObjCBlockIndentWidth", Style.ObjCBlockIndentWidth); 275 IO.mapOptional("ObjCSpaceAfterProperty", Style.ObjCSpaceAfterProperty); 276 IO.mapOptional("ObjCSpaceBeforeProtocolList", 277 Style.ObjCSpaceBeforeProtocolList); 278 IO.mapOptional("PenaltyBreakBeforeFirstCallParameter", 279 Style.PenaltyBreakBeforeFirstCallParameter); 280 IO.mapOptional("PenaltyBreakComment", Style.PenaltyBreakComment); 281 IO.mapOptional("PenaltyBreakFirstLessLess", 282 Style.PenaltyBreakFirstLessLess); 283 IO.mapOptional("PenaltyBreakString", Style.PenaltyBreakString); 284 IO.mapOptional("PenaltyExcessCharacter", Style.PenaltyExcessCharacter); 285 IO.mapOptional("PenaltyReturnTypeOnItsOwnLine", 286 Style.PenaltyReturnTypeOnItsOwnLine); 287 IO.mapOptional("SortIncludes", Style.SortIncludes); 288 IO.mapOptional("PointerAlignment", Style.PointerAlignment); 289 IO.mapOptional("SpaceAfterCStyleCast", Style.SpaceAfterCStyleCast); 290 IO.mapOptional("SpaceBeforeAssignmentOperators", 291 Style.SpaceBeforeAssignmentOperators); 292 IO.mapOptional("SpaceBeforeParens", Style.SpaceBeforeParens); 293 IO.mapOptional("SpaceInEmptyParentheses", Style.SpaceInEmptyParentheses); 294 IO.mapOptional("SpacesBeforeTrailingComments", 295 Style.SpacesBeforeTrailingComments); 296 IO.mapOptional("SpacesInAngles", Style.SpacesInAngles); 297 IO.mapOptional("SpacesInContainerLiterals", 298 Style.SpacesInContainerLiterals); 299 IO.mapOptional("SpacesInCStyleCastParentheses", 300 Style.SpacesInCStyleCastParentheses); 301 IO.mapOptional("SpacesInParentheses", Style.SpacesInParentheses); 302 IO.mapOptional("SpacesInSquareBrackets", Style.SpacesInSquareBrackets); 303 IO.mapOptional("Standard", Style.Standard); 304 IO.mapOptional("TabWidth", Style.TabWidth); 305 IO.mapOptional("UseTab", Style.UseTab); 306 } 307 }; 308 309 template <> struct MappingTraits<FormatStyle::BraceWrappingFlags> { 310 static void mapping(IO &IO, FormatStyle::BraceWrappingFlags &Wrapping) { 311 IO.mapOptional("AfterClass", Wrapping.AfterClass); 312 IO.mapOptional("AfterControlStatement", Wrapping.AfterControlStatement); 313 IO.mapOptional("AfterEnum", Wrapping.AfterEnum); 314 IO.mapOptional("AfterFunction", Wrapping.AfterFunction); 315 IO.mapOptional("AfterNamespace", Wrapping.AfterNamespace); 316 IO.mapOptional("AfterObjCDeclaration", Wrapping.AfterObjCDeclaration); 317 IO.mapOptional("AfterStruct", Wrapping.AfterStruct); 318 IO.mapOptional("AfterUnion", Wrapping.AfterUnion); 319 IO.mapOptional("BeforeCatch", Wrapping.BeforeCatch); 320 IO.mapOptional("BeforeElse", Wrapping.BeforeElse); 321 IO.mapOptional("IndentBraces", Wrapping.IndentBraces); 322 } 323 }; 324 325 template <> struct MappingTraits<FormatStyle::IncludeCategory> { 326 static void mapping(IO &IO, FormatStyle::IncludeCategory &Category) { 327 IO.mapOptional("Regex", Category.Regex); 328 IO.mapOptional("Priority", Category.Priority); 329 } 330 }; 331 332 // Allows to read vector<FormatStyle> while keeping default values. 333 // IO.getContext() should contain a pointer to the FormatStyle structure, that 334 // will be used to get default values for missing keys. 335 // If the first element has no Language specified, it will be treated as the 336 // default one for the following elements. 337 template <> struct DocumentListTraits<std::vector<FormatStyle>> { 338 static size_t size(IO &IO, std::vector<FormatStyle> &Seq) { 339 return Seq.size(); 340 } 341 static FormatStyle &element(IO &IO, std::vector<FormatStyle> &Seq, 342 size_t Index) { 343 if (Index >= Seq.size()) { 344 assert(Index == Seq.size()); 345 FormatStyle Template; 346 if (Seq.size() > 0 && Seq[0].Language == FormatStyle::LK_None) { 347 Template = Seq[0]; 348 } else { 349 Template = *((const FormatStyle *)IO.getContext()); 350 Template.Language = FormatStyle::LK_None; 351 } 352 Seq.resize(Index + 1, Template); 353 } 354 return Seq[Index]; 355 } 356 }; 357 } // namespace yaml 358 } // namespace llvm 359 360 namespace clang { 361 namespace format { 362 363 const std::error_category &getParseCategory() { 364 static ParseErrorCategory C; 365 return C; 366 } 367 std::error_code make_error_code(ParseError e) { 368 return std::error_code(static_cast<int>(e), getParseCategory()); 369 } 370 371 const char *ParseErrorCategory::name() const LLVM_NOEXCEPT { 372 return "clang-format.parse_error"; 373 } 374 375 std::string ParseErrorCategory::message(int EV) const { 376 switch (static_cast<ParseError>(EV)) { 377 case ParseError::Success: 378 return "Success"; 379 case ParseError::Error: 380 return "Invalid argument"; 381 case ParseError::Unsuitable: 382 return "Unsuitable"; 383 } 384 llvm_unreachable("unexpected parse error"); 385 } 386 387 static FormatStyle expandPresets(const FormatStyle &Style) { 388 if (Style.BreakBeforeBraces == FormatStyle::BS_Custom) 389 return Style; 390 FormatStyle Expanded = Style; 391 Expanded.BraceWrapping = {false, false, false, false, false, false, 392 false, false, false, false, false}; 393 switch (Style.BreakBeforeBraces) { 394 case FormatStyle::BS_Linux: 395 Expanded.BraceWrapping.AfterClass = true; 396 Expanded.BraceWrapping.AfterFunction = true; 397 Expanded.BraceWrapping.AfterNamespace = true; 398 Expanded.BraceWrapping.BeforeElse = true; 399 break; 400 case FormatStyle::BS_Mozilla: 401 Expanded.BraceWrapping.AfterClass = true; 402 Expanded.BraceWrapping.AfterEnum = true; 403 Expanded.BraceWrapping.AfterFunction = true; 404 Expanded.BraceWrapping.AfterStruct = true; 405 Expanded.BraceWrapping.AfterUnion = true; 406 break; 407 case FormatStyle::BS_Stroustrup: 408 Expanded.BraceWrapping.AfterFunction = true; 409 Expanded.BraceWrapping.BeforeCatch = true; 410 Expanded.BraceWrapping.BeforeElse = true; 411 break; 412 case FormatStyle::BS_Allman: 413 Expanded.BraceWrapping.AfterClass = true; 414 Expanded.BraceWrapping.AfterControlStatement = true; 415 Expanded.BraceWrapping.AfterEnum = true; 416 Expanded.BraceWrapping.AfterFunction = true; 417 Expanded.BraceWrapping.AfterNamespace = true; 418 Expanded.BraceWrapping.AfterObjCDeclaration = true; 419 Expanded.BraceWrapping.AfterStruct = true; 420 Expanded.BraceWrapping.BeforeCatch = true; 421 Expanded.BraceWrapping.BeforeElse = true; 422 break; 423 case FormatStyle::BS_GNU: 424 Expanded.BraceWrapping = {true, true, true, true, true, true, 425 true, true, true, true, true}; 426 break; 427 case FormatStyle::BS_WebKit: 428 Expanded.BraceWrapping.AfterFunction = true; 429 Expanded.BraceWrapping.BeforeElse = true; 430 break; 431 default: 432 break; 433 } 434 return Expanded; 435 } 436 437 FormatStyle getLLVMStyle() { 438 FormatStyle LLVMStyle; 439 LLVMStyle.Language = FormatStyle::LK_Cpp; 440 LLVMStyle.AccessModifierOffset = -2; 441 LLVMStyle.AlignEscapedNewlinesLeft = false; 442 LLVMStyle.AlignAfterOpenBracket = FormatStyle::BAS_Align; 443 LLVMStyle.AlignOperands = true; 444 LLVMStyle.AlignTrailingComments = true; 445 LLVMStyle.AlignConsecutiveAssignments = false; 446 LLVMStyle.AlignConsecutiveDeclarations = false; 447 LLVMStyle.AllowAllParametersOfDeclarationOnNextLine = true; 448 LLVMStyle.AllowShortFunctionsOnASingleLine = FormatStyle::SFS_All; 449 LLVMStyle.AllowShortBlocksOnASingleLine = false; 450 LLVMStyle.AllowShortCaseLabelsOnASingleLine = false; 451 LLVMStyle.AllowShortIfStatementsOnASingleLine = false; 452 LLVMStyle.AllowShortLoopsOnASingleLine = false; 453 LLVMStyle.AlwaysBreakAfterDefinitionReturnType = FormatStyle::DRTBS_None; 454 LLVMStyle.AlwaysBreakBeforeMultilineStrings = false; 455 LLVMStyle.AlwaysBreakTemplateDeclarations = false; 456 LLVMStyle.BinPackParameters = true; 457 LLVMStyle.BinPackArguments = true; 458 LLVMStyle.BreakBeforeBinaryOperators = FormatStyle::BOS_None; 459 LLVMStyle.BreakBeforeTernaryOperators = true; 460 LLVMStyle.BreakBeforeBraces = FormatStyle::BS_Attach; 461 LLVMStyle.BraceWrapping = {false, false, false, false, false, false, 462 false, false, false, false, false}; 463 LLVMStyle.BreakConstructorInitializersBeforeComma = false; 464 LLVMStyle.BreakAfterJavaFieldAnnotations = false; 465 LLVMStyle.ColumnLimit = 80; 466 LLVMStyle.CommentPragmas = "^ IWYU pragma:"; 467 LLVMStyle.ConstructorInitializerAllOnOneLineOrOnePerLine = false; 468 LLVMStyle.ConstructorInitializerIndentWidth = 4; 469 LLVMStyle.ContinuationIndentWidth = 4; 470 LLVMStyle.Cpp11BracedListStyle = true; 471 LLVMStyle.DerivePointerAlignment = false; 472 LLVMStyle.ExperimentalAutoDetectBinPacking = false; 473 LLVMStyle.ForEachMacros.push_back("foreach"); 474 LLVMStyle.ForEachMacros.push_back("Q_FOREACH"); 475 LLVMStyle.ForEachMacros.push_back("BOOST_FOREACH"); 476 LLVMStyle.IncludeCategories = {{"^\"(llvm|llvm-c|clang|clang-c)/", 2}, 477 {"^(<|\"(gtest|isl|json)/)", 3}, 478 {".*", 1}}; 479 LLVMStyle.IndentCaseLabels = false; 480 LLVMStyle.IndentWrappedFunctionNames = false; 481 LLVMStyle.IndentWidth = 2; 482 LLVMStyle.TabWidth = 8; 483 LLVMStyle.MaxEmptyLinesToKeep = 1; 484 LLVMStyle.KeepEmptyLinesAtTheStartOfBlocks = true; 485 LLVMStyle.NamespaceIndentation = FormatStyle::NI_None; 486 LLVMStyle.ObjCBlockIndentWidth = 2; 487 LLVMStyle.ObjCSpaceAfterProperty = false; 488 LLVMStyle.ObjCSpaceBeforeProtocolList = true; 489 LLVMStyle.PointerAlignment = FormatStyle::PAS_Right; 490 LLVMStyle.SpacesBeforeTrailingComments = 1; 491 LLVMStyle.Standard = FormatStyle::LS_Cpp11; 492 LLVMStyle.UseTab = FormatStyle::UT_Never; 493 LLVMStyle.SpacesInParentheses = false; 494 LLVMStyle.SpacesInSquareBrackets = false; 495 LLVMStyle.SpaceInEmptyParentheses = false; 496 LLVMStyle.SpacesInContainerLiterals = true; 497 LLVMStyle.SpacesInCStyleCastParentheses = false; 498 LLVMStyle.SpaceAfterCStyleCast = false; 499 LLVMStyle.SpaceBeforeParens = FormatStyle::SBPO_ControlStatements; 500 LLVMStyle.SpaceBeforeAssignmentOperators = true; 501 LLVMStyle.SpacesInAngles = false; 502 503 LLVMStyle.PenaltyBreakComment = 300; 504 LLVMStyle.PenaltyBreakFirstLessLess = 120; 505 LLVMStyle.PenaltyBreakString = 1000; 506 LLVMStyle.PenaltyExcessCharacter = 1000000; 507 LLVMStyle.PenaltyReturnTypeOnItsOwnLine = 60; 508 LLVMStyle.PenaltyBreakBeforeFirstCallParameter = 19; 509 510 LLVMStyle.DisableFormat = false; 511 LLVMStyle.SortIncludes = true; 512 513 return LLVMStyle; 514 } 515 516 FormatStyle getGoogleStyle(FormatStyle::LanguageKind Language) { 517 FormatStyle GoogleStyle = getLLVMStyle(); 518 GoogleStyle.Language = Language; 519 520 GoogleStyle.AccessModifierOffset = -1; 521 GoogleStyle.AlignEscapedNewlinesLeft = true; 522 GoogleStyle.AllowShortIfStatementsOnASingleLine = true; 523 GoogleStyle.AllowShortLoopsOnASingleLine = true; 524 GoogleStyle.AlwaysBreakBeforeMultilineStrings = true; 525 GoogleStyle.AlwaysBreakTemplateDeclarations = true; 526 GoogleStyle.ConstructorInitializerAllOnOneLineOrOnePerLine = true; 527 GoogleStyle.DerivePointerAlignment = true; 528 GoogleStyle.IncludeCategories = {{"^<.*\\.h>", 1}, {"^<.*", 2}, {".*", 3}}; 529 GoogleStyle.IndentCaseLabels = true; 530 GoogleStyle.KeepEmptyLinesAtTheStartOfBlocks = false; 531 GoogleStyle.ObjCSpaceAfterProperty = false; 532 GoogleStyle.ObjCSpaceBeforeProtocolList = false; 533 GoogleStyle.PointerAlignment = FormatStyle::PAS_Left; 534 GoogleStyle.SpacesBeforeTrailingComments = 2; 535 GoogleStyle.Standard = FormatStyle::LS_Auto; 536 537 GoogleStyle.PenaltyReturnTypeOnItsOwnLine = 200; 538 GoogleStyle.PenaltyBreakBeforeFirstCallParameter = 1; 539 540 if (Language == FormatStyle::LK_Java) { 541 GoogleStyle.AlignAfterOpenBracket = FormatStyle::BAS_DontAlign; 542 GoogleStyle.AlignOperands = false; 543 GoogleStyle.AlignTrailingComments = false; 544 GoogleStyle.AllowShortFunctionsOnASingleLine = FormatStyle::SFS_Empty; 545 GoogleStyle.AllowShortIfStatementsOnASingleLine = false; 546 GoogleStyle.AlwaysBreakBeforeMultilineStrings = false; 547 GoogleStyle.BreakBeforeBinaryOperators = FormatStyle::BOS_NonAssignment; 548 GoogleStyle.ColumnLimit = 100; 549 GoogleStyle.SpaceAfterCStyleCast = true; 550 GoogleStyle.SpacesBeforeTrailingComments = 1; 551 } else if (Language == FormatStyle::LK_JavaScript) { 552 GoogleStyle.AlignAfterOpenBracket = FormatStyle::BAS_AlwaysBreak; 553 GoogleStyle.AllowShortFunctionsOnASingleLine = FormatStyle::SFS_Inline; 554 GoogleStyle.AlwaysBreakBeforeMultilineStrings = false; 555 GoogleStyle.BreakBeforeTernaryOperators = false; 556 GoogleStyle.MaxEmptyLinesToKeep = 3; 557 GoogleStyle.SpacesInContainerLiterals = false; 558 } else if (Language == FormatStyle::LK_Proto) { 559 GoogleStyle.AllowShortFunctionsOnASingleLine = FormatStyle::SFS_None; 560 GoogleStyle.SpacesInContainerLiterals = false; 561 } 562 563 return GoogleStyle; 564 } 565 566 FormatStyle getChromiumStyle(FormatStyle::LanguageKind Language) { 567 FormatStyle ChromiumStyle = getGoogleStyle(Language); 568 if (Language == FormatStyle::LK_Java) { 569 ChromiumStyle.AllowShortIfStatementsOnASingleLine = true; 570 ChromiumStyle.BreakAfterJavaFieldAnnotations = true; 571 ChromiumStyle.ContinuationIndentWidth = 8; 572 ChromiumStyle.IndentWidth = 4; 573 } else { 574 ChromiumStyle.AllowAllParametersOfDeclarationOnNextLine = false; 575 ChromiumStyle.AllowShortFunctionsOnASingleLine = FormatStyle::SFS_Inline; 576 ChromiumStyle.AllowShortIfStatementsOnASingleLine = false; 577 ChromiumStyle.AllowShortLoopsOnASingleLine = false; 578 ChromiumStyle.BinPackParameters = false; 579 ChromiumStyle.DerivePointerAlignment = false; 580 } 581 return ChromiumStyle; 582 } 583 584 FormatStyle getMozillaStyle() { 585 FormatStyle MozillaStyle = getLLVMStyle(); 586 MozillaStyle.AllowAllParametersOfDeclarationOnNextLine = false; 587 MozillaStyle.AllowShortFunctionsOnASingleLine = FormatStyle::SFS_Inline; 588 MozillaStyle.AlwaysBreakAfterDefinitionReturnType = 589 FormatStyle::DRTBS_TopLevel; 590 MozillaStyle.AlwaysBreakTemplateDeclarations = true; 591 MozillaStyle.BreakBeforeBraces = FormatStyle::BS_Mozilla; 592 MozillaStyle.BreakConstructorInitializersBeforeComma = true; 593 MozillaStyle.ConstructorInitializerIndentWidth = 2; 594 MozillaStyle.ContinuationIndentWidth = 2; 595 MozillaStyle.Cpp11BracedListStyle = false; 596 MozillaStyle.IndentCaseLabels = true; 597 MozillaStyle.ObjCSpaceAfterProperty = true; 598 MozillaStyle.ObjCSpaceBeforeProtocolList = false; 599 MozillaStyle.PenaltyReturnTypeOnItsOwnLine = 200; 600 MozillaStyle.PointerAlignment = FormatStyle::PAS_Left; 601 return MozillaStyle; 602 } 603 604 FormatStyle getWebKitStyle() { 605 FormatStyle Style = getLLVMStyle(); 606 Style.AccessModifierOffset = -4; 607 Style.AlignAfterOpenBracket = FormatStyle::BAS_DontAlign; 608 Style.AlignOperands = false; 609 Style.AlignTrailingComments = false; 610 Style.BreakBeforeBinaryOperators = FormatStyle::BOS_All; 611 Style.BreakBeforeBraces = FormatStyle::BS_WebKit; 612 Style.BreakConstructorInitializersBeforeComma = true; 613 Style.Cpp11BracedListStyle = false; 614 Style.ColumnLimit = 0; 615 Style.IndentWidth = 4; 616 Style.NamespaceIndentation = FormatStyle::NI_Inner; 617 Style.ObjCBlockIndentWidth = 4; 618 Style.ObjCSpaceAfterProperty = true; 619 Style.PointerAlignment = FormatStyle::PAS_Left; 620 Style.Standard = FormatStyle::LS_Cpp03; 621 return Style; 622 } 623 624 FormatStyle getGNUStyle() { 625 FormatStyle Style = getLLVMStyle(); 626 Style.AlwaysBreakAfterDefinitionReturnType = FormatStyle::DRTBS_All; 627 Style.BreakBeforeBinaryOperators = FormatStyle::BOS_All; 628 Style.BreakBeforeBraces = FormatStyle::BS_GNU; 629 Style.BreakBeforeTernaryOperators = true; 630 Style.Cpp11BracedListStyle = false; 631 Style.ColumnLimit = 79; 632 Style.SpaceBeforeParens = FormatStyle::SBPO_Always; 633 Style.Standard = FormatStyle::LS_Cpp03; 634 return Style; 635 } 636 637 FormatStyle getNoStyle() { 638 FormatStyle NoStyle = getLLVMStyle(); 639 NoStyle.DisableFormat = true; 640 NoStyle.SortIncludes = false; 641 return NoStyle; 642 } 643 644 bool getPredefinedStyle(StringRef Name, FormatStyle::LanguageKind Language, 645 FormatStyle *Style) { 646 if (Name.equals_lower("llvm")) { 647 *Style = getLLVMStyle(); 648 } else if (Name.equals_lower("chromium")) { 649 *Style = getChromiumStyle(Language); 650 } else if (Name.equals_lower("mozilla")) { 651 *Style = getMozillaStyle(); 652 } else if (Name.equals_lower("google")) { 653 *Style = getGoogleStyle(Language); 654 } else if (Name.equals_lower("webkit")) { 655 *Style = getWebKitStyle(); 656 } else if (Name.equals_lower("gnu")) { 657 *Style = getGNUStyle(); 658 } else if (Name.equals_lower("none")) { 659 *Style = getNoStyle(); 660 } else { 661 return false; 662 } 663 664 Style->Language = Language; 665 return true; 666 } 667 668 std::error_code parseConfiguration(StringRef Text, FormatStyle *Style) { 669 assert(Style); 670 FormatStyle::LanguageKind Language = Style->Language; 671 assert(Language != FormatStyle::LK_None); 672 if (Text.trim().empty()) 673 return make_error_code(ParseError::Error); 674 675 std::vector<FormatStyle> Styles; 676 llvm::yaml::Input Input(Text); 677 // DocumentListTraits<vector<FormatStyle>> uses the context to get default 678 // values for the fields, keys for which are missing from the configuration. 679 // Mapping also uses the context to get the language to find the correct 680 // base style. 681 Input.setContext(Style); 682 Input >> Styles; 683 if (Input.error()) 684 return Input.error(); 685 686 for (unsigned i = 0; i < Styles.size(); ++i) { 687 // Ensures that only the first configuration can skip the Language option. 688 if (Styles[i].Language == FormatStyle::LK_None && i != 0) 689 return make_error_code(ParseError::Error); 690 // Ensure that each language is configured at most once. 691 for (unsigned j = 0; j < i; ++j) { 692 if (Styles[i].Language == Styles[j].Language) { 693 DEBUG(llvm::dbgs() 694 << "Duplicate languages in the config file on positions " << j 695 << " and " << i << "\n"); 696 return make_error_code(ParseError::Error); 697 } 698 } 699 } 700 // Look for a suitable configuration starting from the end, so we can 701 // find the configuration for the specific language first, and the default 702 // configuration (which can only be at slot 0) after it. 703 for (int i = Styles.size() - 1; i >= 0; --i) { 704 if (Styles[i].Language == Language || 705 Styles[i].Language == FormatStyle::LK_None) { 706 *Style = Styles[i]; 707 Style->Language = Language; 708 return make_error_code(ParseError::Success); 709 } 710 } 711 return make_error_code(ParseError::Unsuitable); 712 } 713 714 std::string configurationAsText(const FormatStyle &Style) { 715 std::string Text; 716 llvm::raw_string_ostream Stream(Text); 717 llvm::yaml::Output Output(Stream); 718 // We use the same mapping method for input and output, so we need a non-const 719 // reference here. 720 FormatStyle NonConstStyle = expandPresets(Style); 721 Output << NonConstStyle; 722 return Stream.str(); 723 } 724 725 namespace { 726 727 class FormatTokenLexer { 728 public: 729 FormatTokenLexer(SourceManager &SourceMgr, FileID ID, FormatStyle &Style, 730 encoding::Encoding Encoding) 731 : FormatTok(nullptr), IsFirstToken(true), GreaterStashed(false), 732 LessStashed(false), Column(0), TrailingWhitespace(0), 733 SourceMgr(SourceMgr), ID(ID), Style(Style), 734 IdentTable(getFormattingLangOpts(Style)), Keywords(IdentTable), 735 Encoding(Encoding), FirstInLineIndex(0), FormattingDisabled(false), 736 MacroBlockBeginRegex(Style.MacroBlockBegin), 737 MacroBlockEndRegex(Style.MacroBlockEnd) { 738 Lex.reset(new Lexer(ID, SourceMgr.getBuffer(ID), SourceMgr, 739 getFormattingLangOpts(Style))); 740 Lex->SetKeepWhitespaceMode(true); 741 742 for (const std::string &ForEachMacro : Style.ForEachMacros) 743 ForEachMacros.push_back(&IdentTable.get(ForEachMacro)); 744 std::sort(ForEachMacros.begin(), ForEachMacros.end()); 745 } 746 747 ArrayRef<FormatToken *> lex() { 748 assert(Tokens.empty()); 749 assert(FirstInLineIndex == 0); 750 do { 751 Tokens.push_back(getNextToken()); 752 if (Style.Language == FormatStyle::LK_JavaScript) 753 tryParseJSRegexLiteral(); 754 tryMergePreviousTokens(); 755 if (Tokens.back()->NewlinesBefore > 0 || Tokens.back()->IsMultiline) 756 FirstInLineIndex = Tokens.size() - 1; 757 } while (Tokens.back()->Tok.isNot(tok::eof)); 758 return Tokens; 759 } 760 761 const AdditionalKeywords &getKeywords() { return Keywords; } 762 763 private: 764 void tryMergePreviousTokens() { 765 if (tryMerge_TMacro()) 766 return; 767 if (tryMergeConflictMarkers()) 768 return; 769 if (tryMergeLessLess()) 770 return; 771 772 if (Style.Language == FormatStyle::LK_JavaScript) { 773 if (tryMergeTemplateString()) 774 return; 775 776 static const tok::TokenKind JSIdentity[] = {tok::equalequal, tok::equal}; 777 static const tok::TokenKind JSNotIdentity[] = {tok::exclaimequal, 778 tok::equal}; 779 static const tok::TokenKind JSShiftEqual[] = {tok::greater, tok::greater, 780 tok::greaterequal}; 781 static const tok::TokenKind JSRightArrow[] = {tok::equal, tok::greater}; 782 // FIXME: Investigate what token type gives the correct operator priority. 783 if (tryMergeTokens(JSIdentity, TT_BinaryOperator)) 784 return; 785 if (tryMergeTokens(JSNotIdentity, TT_BinaryOperator)) 786 return; 787 if (tryMergeTokens(JSShiftEqual, TT_BinaryOperator)) 788 return; 789 if (tryMergeTokens(JSRightArrow, TT_JsFatArrow)) 790 return; 791 } 792 } 793 794 bool tryMergeLessLess() { 795 // Merge X,less,less,Y into X,lessless,Y unless X or Y is less. 796 if (Tokens.size() < 3) 797 return false; 798 799 bool FourthTokenIsLess = false; 800 if (Tokens.size() > 3) 801 FourthTokenIsLess = (Tokens.end() - 4)[0]->is(tok::less); 802 803 auto First = Tokens.end() - 3; 804 if (First[2]->is(tok::less) || First[1]->isNot(tok::less) || 805 First[0]->isNot(tok::less) || FourthTokenIsLess) 806 return false; 807 808 // Only merge if there currently is no whitespace between the two "<". 809 if (First[1]->WhitespaceRange.getBegin() != 810 First[1]->WhitespaceRange.getEnd()) 811 return false; 812 813 First[0]->Tok.setKind(tok::lessless); 814 First[0]->TokenText = "<<"; 815 First[0]->ColumnWidth += 1; 816 Tokens.erase(Tokens.end() - 2); 817 return true; 818 } 819 820 bool tryMergeTokens(ArrayRef<tok::TokenKind> Kinds, TokenType NewType) { 821 if (Tokens.size() < Kinds.size()) 822 return false; 823 824 SmallVectorImpl<FormatToken *>::const_iterator First = 825 Tokens.end() - Kinds.size(); 826 if (!First[0]->is(Kinds[0])) 827 return false; 828 unsigned AddLength = 0; 829 for (unsigned i = 1; i < Kinds.size(); ++i) { 830 if (!First[i]->is(Kinds[i]) || 831 First[i]->WhitespaceRange.getBegin() != 832 First[i]->WhitespaceRange.getEnd()) 833 return false; 834 AddLength += First[i]->TokenText.size(); 835 } 836 Tokens.resize(Tokens.size() - Kinds.size() + 1); 837 First[0]->TokenText = StringRef(First[0]->TokenText.data(), 838 First[0]->TokenText.size() + AddLength); 839 First[0]->ColumnWidth += AddLength; 840 First[0]->Type = NewType; 841 return true; 842 } 843 844 // Returns \c true if \p Tok can only be followed by an operand in JavaScript. 845 bool precedesOperand(FormatToken *Tok) { 846 // NB: This is not entirely correct, as an r_paren can introduce an operand 847 // location in e.g. `if (foo) /bar/.exec(...);`. That is a rare enough 848 // corner case to not matter in practice, though. 849 return Tok->isOneOf(tok::period, tok::l_paren, tok::comma, tok::l_brace, 850 tok::r_brace, tok::l_square, tok::semi, tok::exclaim, 851 tok::colon, tok::question, tok::tilde) || 852 Tok->isOneOf(tok::kw_return, tok::kw_do, tok::kw_case, tok::kw_throw, 853 tok::kw_else, tok::kw_new, tok::kw_delete, tok::kw_void, 854 tok::kw_typeof, Keywords.kw_instanceof, 855 Keywords.kw_in) || 856 Tok->isBinaryOperator(); 857 } 858 859 bool canPrecedeRegexLiteral(FormatToken *Prev) { 860 if (!Prev) 861 return true; 862 863 // Regex literals can only follow after prefix unary operators, not after 864 // postfix unary operators. If the '++' is followed by a non-operand 865 // introducing token, the slash here is the operand and not the start of a 866 // regex. 867 if (Prev->isOneOf(tok::plusplus, tok::minusminus)) 868 return (Tokens.size() < 3 || precedesOperand(Tokens[Tokens.size() - 3])); 869 870 // The previous token must introduce an operand location where regex 871 // literals can occur. 872 if (!precedesOperand(Prev)) 873 return false; 874 875 return true; 876 } 877 878 // Tries to parse a JavaScript Regex literal starting at the current token, 879 // if that begins with a slash and is in a location where JavaScript allows 880 // regex literals. Changes the current token to a regex literal and updates 881 // its text if successful. 882 void tryParseJSRegexLiteral() { 883 FormatToken *RegexToken = Tokens.back(); 884 if (!RegexToken->isOneOf(tok::slash, tok::slashequal)) 885 return; 886 887 FormatToken *Prev = nullptr; 888 for (auto I = Tokens.rbegin() + 1, E = Tokens.rend(); I != E; ++I) { 889 // NB: Because previous pointers are not initialized yet, this cannot use 890 // Token.getPreviousNonComment. 891 if ((*I)->isNot(tok::comment)) { 892 Prev = *I; 893 break; 894 } 895 } 896 897 if (!canPrecedeRegexLiteral(Prev)) 898 return; 899 900 // 'Manually' lex ahead in the current file buffer. 901 const char *Offset = Lex->getBufferLocation(); 902 const char *RegexBegin = Offset - RegexToken->TokenText.size(); 903 StringRef Buffer = Lex->getBuffer(); 904 bool InCharacterClass = false; 905 bool HaveClosingSlash = false; 906 for (; !HaveClosingSlash && Offset != Buffer.end(); ++Offset) { 907 // Regular expressions are terminated with a '/', which can only be 908 // escaped using '\' or a character class between '[' and ']'. 909 // See http://www.ecma-international.org/ecma-262/5.1/#sec-7.8.5. 910 switch (*Offset) { 911 case '\\': 912 // Skip the escaped character. 913 ++Offset; 914 break; 915 case '[': 916 InCharacterClass = true; 917 break; 918 case ']': 919 InCharacterClass = false; 920 break; 921 case '/': 922 if (!InCharacterClass) 923 HaveClosingSlash = true; 924 break; 925 } 926 } 927 928 RegexToken->Type = TT_RegexLiteral; 929 // Treat regex literals like other string_literals. 930 RegexToken->Tok.setKind(tok::string_literal); 931 RegexToken->TokenText = StringRef(RegexBegin, Offset - RegexBegin); 932 RegexToken->ColumnWidth = RegexToken->TokenText.size(); 933 934 resetLexer(SourceMgr.getFileOffset(Lex->getSourceLocation(Offset))); 935 } 936 937 bool tryMergeTemplateString() { 938 if (Tokens.size() < 2) 939 return false; 940 941 FormatToken *EndBacktick = Tokens.back(); 942 // Backticks get lexed as tok::unknown tokens. If a template string contains 943 // a comment start, it gets lexed as a tok::comment, or tok::unknown if 944 // unterminated. 945 if (!EndBacktick->isOneOf(tok::comment, tok::string_literal, 946 tok::char_constant, tok::unknown)) 947 return false; 948 size_t CommentBacktickPos = EndBacktick->TokenText.find('`'); 949 // Unknown token that's not actually a backtick, or a comment that doesn't 950 // contain a backtick. 951 if (CommentBacktickPos == StringRef::npos) 952 return false; 953 954 unsigned TokenCount = 0; 955 bool IsMultiline = false; 956 unsigned EndColumnInFirstLine = 957 EndBacktick->OriginalColumn + EndBacktick->ColumnWidth; 958 for (auto I = Tokens.rbegin() + 1, E = Tokens.rend(); I != E; I++) { 959 ++TokenCount; 960 if (I[0]->IsMultiline) 961 IsMultiline = true; 962 963 // If there was a preceding template string, this must be the start of a 964 // template string, not the end. 965 if (I[0]->is(TT_TemplateString)) 966 return false; 967 968 if (I[0]->isNot(tok::unknown) || I[0]->TokenText != "`") { 969 // Keep track of the rhs offset of the last token to wrap across lines - 970 // its the rhs offset of the first line of the template string, used to 971 // determine its width. 972 if (I[0]->IsMultiline) 973 EndColumnInFirstLine = I[0]->OriginalColumn + I[0]->ColumnWidth; 974 // If the token has newlines, the token before it (if it exists) is the 975 // rhs end of the previous line. 976 if (I[0]->NewlinesBefore > 0 && (I + 1 != E)) { 977 EndColumnInFirstLine = I[1]->OriginalColumn + I[1]->ColumnWidth; 978 IsMultiline = true; 979 } 980 continue; 981 } 982 983 Tokens.resize(Tokens.size() - TokenCount); 984 Tokens.back()->Type = TT_TemplateString; 985 const char *EndOffset = 986 EndBacktick->TokenText.data() + 1 + CommentBacktickPos; 987 if (CommentBacktickPos != 0) { 988 // If the backtick was not the first character (e.g. in a comment), 989 // re-lex after the backtick position. 990 SourceLocation Loc = EndBacktick->Tok.getLocation(); 991 resetLexer(SourceMgr.getFileOffset(Loc) + CommentBacktickPos + 1); 992 } 993 Tokens.back()->TokenText = 994 StringRef(Tokens.back()->TokenText.data(), 995 EndOffset - Tokens.back()->TokenText.data()); 996 997 unsigned EndOriginalColumn = EndBacktick->OriginalColumn; 998 if (EndOriginalColumn == 0) { 999 SourceLocation Loc = EndBacktick->Tok.getLocation(); 1000 EndOriginalColumn = SourceMgr.getSpellingColumnNumber(Loc); 1001 } 1002 // If the ` is further down within the token (e.g. in a comment). 1003 EndOriginalColumn += CommentBacktickPos; 1004 1005 if (IsMultiline) { 1006 // ColumnWidth is from backtick to last token in line. 1007 // LastLineColumnWidth is 0 to backtick. 1008 // x = `some content 1009 // until here`; 1010 Tokens.back()->ColumnWidth = 1011 EndColumnInFirstLine - Tokens.back()->OriginalColumn; 1012 // +1 for the ` itself. 1013 Tokens.back()->LastLineColumnWidth = EndOriginalColumn + 1; 1014 Tokens.back()->IsMultiline = true; 1015 } else { 1016 // Token simply spans from start to end, +1 for the ` itself. 1017 Tokens.back()->ColumnWidth = 1018 EndOriginalColumn - Tokens.back()->OriginalColumn + 1; 1019 } 1020 return true; 1021 } 1022 return false; 1023 } 1024 1025 bool tryMerge_TMacro() { 1026 if (Tokens.size() < 4) 1027 return false; 1028 FormatToken *Last = Tokens.back(); 1029 if (!Last->is(tok::r_paren)) 1030 return false; 1031 1032 FormatToken *String = Tokens[Tokens.size() - 2]; 1033 if (!String->is(tok::string_literal) || String->IsMultiline) 1034 return false; 1035 1036 if (!Tokens[Tokens.size() - 3]->is(tok::l_paren)) 1037 return false; 1038 1039 FormatToken *Macro = Tokens[Tokens.size() - 4]; 1040 if (Macro->TokenText != "_T") 1041 return false; 1042 1043 const char *Start = Macro->TokenText.data(); 1044 const char *End = Last->TokenText.data() + Last->TokenText.size(); 1045 String->TokenText = StringRef(Start, End - Start); 1046 String->IsFirst = Macro->IsFirst; 1047 String->LastNewlineOffset = Macro->LastNewlineOffset; 1048 String->WhitespaceRange = Macro->WhitespaceRange; 1049 String->OriginalColumn = Macro->OriginalColumn; 1050 String->ColumnWidth = encoding::columnWidthWithTabs( 1051 String->TokenText, String->OriginalColumn, Style.TabWidth, Encoding); 1052 String->NewlinesBefore = Macro->NewlinesBefore; 1053 String->HasUnescapedNewline = Macro->HasUnescapedNewline; 1054 1055 Tokens.pop_back(); 1056 Tokens.pop_back(); 1057 Tokens.pop_back(); 1058 Tokens.back() = String; 1059 return true; 1060 } 1061 1062 bool tryMergeConflictMarkers() { 1063 if (Tokens.back()->NewlinesBefore == 0 && Tokens.back()->isNot(tok::eof)) 1064 return false; 1065 1066 // Conflict lines look like: 1067 // <marker> <text from the vcs> 1068 // For example: 1069 // >>>>>>> /file/in/file/system at revision 1234 1070 // 1071 // We merge all tokens in a line that starts with a conflict marker 1072 // into a single token with a special token type that the unwrapped line 1073 // parser will use to correctly rebuild the underlying code. 1074 1075 FileID ID; 1076 // Get the position of the first token in the line. 1077 unsigned FirstInLineOffset; 1078 std::tie(ID, FirstInLineOffset) = SourceMgr.getDecomposedLoc( 1079 Tokens[FirstInLineIndex]->getStartOfNonWhitespace()); 1080 StringRef Buffer = SourceMgr.getBuffer(ID)->getBuffer(); 1081 // Calculate the offset of the start of the current line. 1082 auto LineOffset = Buffer.rfind('\n', FirstInLineOffset); 1083 if (LineOffset == StringRef::npos) { 1084 LineOffset = 0; 1085 } else { 1086 ++LineOffset; 1087 } 1088 1089 auto FirstSpace = Buffer.find_first_of(" \n", LineOffset); 1090 StringRef LineStart; 1091 if (FirstSpace == StringRef::npos) { 1092 LineStart = Buffer.substr(LineOffset); 1093 } else { 1094 LineStart = Buffer.substr(LineOffset, FirstSpace - LineOffset); 1095 } 1096 1097 TokenType Type = TT_Unknown; 1098 if (LineStart == "<<<<<<<" || LineStart == ">>>>") { 1099 Type = TT_ConflictStart; 1100 } else if (LineStart == "|||||||" || LineStart == "=======" || 1101 LineStart == "====") { 1102 Type = TT_ConflictAlternative; 1103 } else if (LineStart == ">>>>>>>" || LineStart == "<<<<") { 1104 Type = TT_ConflictEnd; 1105 } 1106 1107 if (Type != TT_Unknown) { 1108 FormatToken *Next = Tokens.back(); 1109 1110 Tokens.resize(FirstInLineIndex + 1); 1111 // We do not need to build a complete token here, as we will skip it 1112 // during parsing anyway (as we must not touch whitespace around conflict 1113 // markers). 1114 Tokens.back()->Type = Type; 1115 Tokens.back()->Tok.setKind(tok::kw___unknown_anytype); 1116 1117 Tokens.push_back(Next); 1118 return true; 1119 } 1120 1121 return false; 1122 } 1123 1124 FormatToken *getStashedToken() { 1125 // Create a synthesized second '>' or '<' token. 1126 Token Tok = FormatTok->Tok; 1127 StringRef TokenText = FormatTok->TokenText; 1128 1129 unsigned OriginalColumn = FormatTok->OriginalColumn; 1130 FormatTok = new (Allocator.Allocate()) FormatToken; 1131 FormatTok->Tok = Tok; 1132 SourceLocation TokLocation = 1133 FormatTok->Tok.getLocation().getLocWithOffset(Tok.getLength() - 1); 1134 FormatTok->Tok.setLocation(TokLocation); 1135 FormatTok->WhitespaceRange = SourceRange(TokLocation, TokLocation); 1136 FormatTok->TokenText = TokenText; 1137 FormatTok->ColumnWidth = 1; 1138 FormatTok->OriginalColumn = OriginalColumn + 1; 1139 1140 return FormatTok; 1141 } 1142 1143 FormatToken *getNextToken() { 1144 if (GreaterStashed) { 1145 GreaterStashed = false; 1146 return getStashedToken(); 1147 } 1148 if (LessStashed) { 1149 LessStashed = false; 1150 return getStashedToken(); 1151 } 1152 1153 FormatTok = new (Allocator.Allocate()) FormatToken; 1154 readRawToken(*FormatTok); 1155 SourceLocation WhitespaceStart = 1156 FormatTok->Tok.getLocation().getLocWithOffset(-TrailingWhitespace); 1157 FormatTok->IsFirst = IsFirstToken; 1158 IsFirstToken = false; 1159 1160 // Consume and record whitespace until we find a significant token. 1161 unsigned WhitespaceLength = TrailingWhitespace; 1162 while (FormatTok->Tok.is(tok::unknown)) { 1163 StringRef Text = FormatTok->TokenText; 1164 auto EscapesNewline = [&](int pos) { 1165 // A '\r' here is just part of '\r\n'. Skip it. 1166 if (pos >= 0 && Text[pos] == '\r') 1167 --pos; 1168 // See whether there is an odd number of '\' before this. 1169 unsigned count = 0; 1170 for (; pos >= 0; --pos, ++count) 1171 if (Text[pos] != '\\') 1172 break; 1173 return count & 1; 1174 }; 1175 // FIXME: This miscounts tok:unknown tokens that are not just 1176 // whitespace, e.g. a '`' character. 1177 for (int i = 0, e = Text.size(); i != e; ++i) { 1178 switch (Text[i]) { 1179 case '\n': 1180 ++FormatTok->NewlinesBefore; 1181 FormatTok->HasUnescapedNewline = !EscapesNewline(i - 1); 1182 FormatTok->LastNewlineOffset = WhitespaceLength + i + 1; 1183 Column = 0; 1184 break; 1185 case '\r': 1186 FormatTok->LastNewlineOffset = WhitespaceLength + i + 1; 1187 Column = 0; 1188 break; 1189 case '\f': 1190 case '\v': 1191 Column = 0; 1192 break; 1193 case ' ': 1194 ++Column; 1195 break; 1196 case '\t': 1197 Column += Style.TabWidth - Column % Style.TabWidth; 1198 break; 1199 case '\\': 1200 if (i + 1 == e || (Text[i + 1] != '\r' && Text[i + 1] != '\n')) 1201 FormatTok->Type = TT_ImplicitStringLiteral; 1202 break; 1203 default: 1204 FormatTok->Type = TT_ImplicitStringLiteral; 1205 break; 1206 } 1207 } 1208 1209 if (FormatTok->is(TT_ImplicitStringLiteral)) 1210 break; 1211 WhitespaceLength += FormatTok->Tok.getLength(); 1212 1213 readRawToken(*FormatTok); 1214 } 1215 1216 // In case the token starts with escaped newlines, we want to 1217 // take them into account as whitespace - this pattern is quite frequent 1218 // in macro definitions. 1219 // FIXME: Add a more explicit test. 1220 while (FormatTok->TokenText.size() > 1 && FormatTok->TokenText[0] == '\\' && 1221 FormatTok->TokenText[1] == '\n') { 1222 ++FormatTok->NewlinesBefore; 1223 WhitespaceLength += 2; 1224 FormatTok->LastNewlineOffset = 2; 1225 Column = 0; 1226 FormatTok->TokenText = FormatTok->TokenText.substr(2); 1227 } 1228 1229 FormatTok->WhitespaceRange = SourceRange( 1230 WhitespaceStart, WhitespaceStart.getLocWithOffset(WhitespaceLength)); 1231 1232 FormatTok->OriginalColumn = Column; 1233 1234 TrailingWhitespace = 0; 1235 if (FormatTok->Tok.is(tok::comment)) { 1236 // FIXME: Add the trimmed whitespace to Column. 1237 StringRef UntrimmedText = FormatTok->TokenText; 1238 FormatTok->TokenText = FormatTok->TokenText.rtrim(" \t\v\f"); 1239 TrailingWhitespace = UntrimmedText.size() - FormatTok->TokenText.size(); 1240 } else if (FormatTok->Tok.is(tok::raw_identifier)) { 1241 IdentifierInfo &Info = IdentTable.get(FormatTok->TokenText); 1242 FormatTok->Tok.setIdentifierInfo(&Info); 1243 FormatTok->Tok.setKind(Info.getTokenID()); 1244 if (Style.Language == FormatStyle::LK_Java && 1245 FormatTok->isOneOf(tok::kw_struct, tok::kw_union, tok::kw_delete)) { 1246 FormatTok->Tok.setKind(tok::identifier); 1247 FormatTok->Tok.setIdentifierInfo(nullptr); 1248 } 1249 } else if (FormatTok->Tok.is(tok::greatergreater)) { 1250 FormatTok->Tok.setKind(tok::greater); 1251 FormatTok->TokenText = FormatTok->TokenText.substr(0, 1); 1252 GreaterStashed = true; 1253 } else if (FormatTok->Tok.is(tok::lessless)) { 1254 FormatTok->Tok.setKind(tok::less); 1255 FormatTok->TokenText = FormatTok->TokenText.substr(0, 1); 1256 LessStashed = true; 1257 } 1258 1259 // Now FormatTok is the next non-whitespace token. 1260 1261 StringRef Text = FormatTok->TokenText; 1262 size_t FirstNewlinePos = Text.find('\n'); 1263 if (FirstNewlinePos == StringRef::npos) { 1264 // FIXME: ColumnWidth actually depends on the start column, we need to 1265 // take this into account when the token is moved. 1266 FormatTok->ColumnWidth = 1267 encoding::columnWidthWithTabs(Text, Column, Style.TabWidth, Encoding); 1268 Column += FormatTok->ColumnWidth; 1269 } else { 1270 FormatTok->IsMultiline = true; 1271 // FIXME: ColumnWidth actually depends on the start column, we need to 1272 // take this into account when the token is moved. 1273 FormatTok->ColumnWidth = encoding::columnWidthWithTabs( 1274 Text.substr(0, FirstNewlinePos), Column, Style.TabWidth, Encoding); 1275 1276 // The last line of the token always starts in column 0. 1277 // Thus, the length can be precomputed even in the presence of tabs. 1278 FormatTok->LastLineColumnWidth = encoding::columnWidthWithTabs( 1279 Text.substr(Text.find_last_of('\n') + 1), 0, Style.TabWidth, 1280 Encoding); 1281 Column = FormatTok->LastLineColumnWidth; 1282 } 1283 1284 if (Style.Language == FormatStyle::LK_Cpp) { 1285 if (!(Tokens.size() > 0 && Tokens.back()->Tok.getIdentifierInfo() && 1286 Tokens.back()->Tok.getIdentifierInfo()->getPPKeywordID() == 1287 tok::pp_define) && 1288 std::find(ForEachMacros.begin(), ForEachMacros.end(), 1289 FormatTok->Tok.getIdentifierInfo()) != ForEachMacros.end()) { 1290 FormatTok->Type = TT_ForEachMacro; 1291 } else if (FormatTok->is(tok::identifier)) { 1292 if (MacroBlockBeginRegex.match(Text)) { 1293 FormatTok->Type = TT_MacroBlockBegin; 1294 } else if (MacroBlockEndRegex.match(Text)) { 1295 FormatTok->Type = TT_MacroBlockEnd; 1296 } 1297 } 1298 } 1299 1300 return FormatTok; 1301 } 1302 1303 FormatToken *FormatTok; 1304 bool IsFirstToken; 1305 bool GreaterStashed, LessStashed; 1306 unsigned Column; 1307 unsigned TrailingWhitespace; 1308 std::unique_ptr<Lexer> Lex; 1309 SourceManager &SourceMgr; 1310 FileID ID; 1311 FormatStyle &Style; 1312 IdentifierTable IdentTable; 1313 AdditionalKeywords Keywords; 1314 encoding::Encoding Encoding; 1315 llvm::SpecificBumpPtrAllocator<FormatToken> Allocator; 1316 // Index (in 'Tokens') of the last token that starts a new line. 1317 unsigned FirstInLineIndex; 1318 SmallVector<FormatToken *, 16> Tokens; 1319 SmallVector<IdentifierInfo *, 8> ForEachMacros; 1320 1321 bool FormattingDisabled; 1322 1323 llvm::Regex MacroBlockBeginRegex; 1324 llvm::Regex MacroBlockEndRegex; 1325 1326 void readRawToken(FormatToken &Tok) { 1327 Lex->LexFromRawLexer(Tok.Tok); 1328 Tok.TokenText = StringRef(SourceMgr.getCharacterData(Tok.Tok.getLocation()), 1329 Tok.Tok.getLength()); 1330 // For formatting, treat unterminated string literals like normal string 1331 // literals. 1332 if (Tok.is(tok::unknown)) { 1333 if (!Tok.TokenText.empty() && Tok.TokenText[0] == '"') { 1334 Tok.Tok.setKind(tok::string_literal); 1335 Tok.IsUnterminatedLiteral = true; 1336 } else if (Style.Language == FormatStyle::LK_JavaScript && 1337 Tok.TokenText == "''") { 1338 Tok.Tok.setKind(tok::char_constant); 1339 } 1340 } 1341 1342 if (Tok.is(tok::comment) && (Tok.TokenText == "// clang-format on" || 1343 Tok.TokenText == "/* clang-format on */")) { 1344 FormattingDisabled = false; 1345 } 1346 1347 Tok.Finalized = FormattingDisabled; 1348 1349 if (Tok.is(tok::comment) && (Tok.TokenText == "// clang-format off" || 1350 Tok.TokenText == "/* clang-format off */")) { 1351 FormattingDisabled = true; 1352 } 1353 } 1354 1355 void resetLexer(unsigned Offset) { 1356 StringRef Buffer = SourceMgr.getBufferData(ID); 1357 Lex.reset(new Lexer(SourceMgr.getLocForStartOfFile(ID), 1358 getFormattingLangOpts(Style), Buffer.begin(), 1359 Buffer.begin() + Offset, Buffer.end())); 1360 Lex->SetKeepWhitespaceMode(true); 1361 TrailingWhitespace = 0; 1362 } 1363 }; 1364 1365 static StringRef getLanguageName(FormatStyle::LanguageKind Language) { 1366 switch (Language) { 1367 case FormatStyle::LK_Cpp: 1368 return "C++"; 1369 case FormatStyle::LK_Java: 1370 return "Java"; 1371 case FormatStyle::LK_JavaScript: 1372 return "JavaScript"; 1373 case FormatStyle::LK_Proto: 1374 return "Proto"; 1375 default: 1376 return "Unknown"; 1377 } 1378 } 1379 1380 class Formatter : public UnwrappedLineConsumer { 1381 public: 1382 Formatter(const FormatStyle &Style, SourceManager &SourceMgr, FileID ID, 1383 ArrayRef<CharSourceRange> Ranges) 1384 : Style(Style), ID(ID), SourceMgr(SourceMgr), 1385 Whitespaces(SourceMgr, Style, 1386 inputUsesCRLF(SourceMgr.getBufferData(ID))), 1387 Ranges(Ranges.begin(), Ranges.end()), UnwrappedLines(1), 1388 Encoding(encoding::detectEncoding(SourceMgr.getBufferData(ID))) { 1389 DEBUG(llvm::dbgs() << "File encoding: " 1390 << (Encoding == encoding::Encoding_UTF8 ? "UTF8" 1391 : "unknown") 1392 << "\n"); 1393 DEBUG(llvm::dbgs() << "Language: " << getLanguageName(Style.Language) 1394 << "\n"); 1395 } 1396 1397 tooling::Replacements format(bool *IncompleteFormat) { 1398 tooling::Replacements Result; 1399 FormatTokenLexer Tokens(SourceMgr, ID, Style, Encoding); 1400 1401 UnwrappedLineParser Parser(Style, Tokens.getKeywords(), Tokens.lex(), 1402 *this); 1403 Parser.parse(); 1404 assert(UnwrappedLines.rbegin()->empty()); 1405 for (unsigned Run = 0, RunE = UnwrappedLines.size(); Run + 1 != RunE; 1406 ++Run) { 1407 DEBUG(llvm::dbgs() << "Run " << Run << "...\n"); 1408 SmallVector<AnnotatedLine *, 16> AnnotatedLines; 1409 for (unsigned i = 0, e = UnwrappedLines[Run].size(); i != e; ++i) { 1410 AnnotatedLines.push_back(new AnnotatedLine(UnwrappedLines[Run][i])); 1411 } 1412 tooling::Replacements RunResult = 1413 format(AnnotatedLines, Tokens, IncompleteFormat); 1414 DEBUG({ 1415 llvm::dbgs() << "Replacements for run " << Run << ":\n"; 1416 for (tooling::Replacements::iterator I = RunResult.begin(), 1417 E = RunResult.end(); 1418 I != E; ++I) { 1419 llvm::dbgs() << I->toString() << "\n"; 1420 } 1421 }); 1422 for (unsigned i = 0, e = AnnotatedLines.size(); i != e; ++i) { 1423 delete AnnotatedLines[i]; 1424 } 1425 Result.insert(RunResult.begin(), RunResult.end()); 1426 Whitespaces.reset(); 1427 } 1428 return Result; 1429 } 1430 1431 tooling::Replacements format(SmallVectorImpl<AnnotatedLine *> &AnnotatedLines, 1432 FormatTokenLexer &Tokens, 1433 bool *IncompleteFormat) { 1434 TokenAnnotator Annotator(Style, Tokens.getKeywords()); 1435 for (unsigned i = 0, e = AnnotatedLines.size(); i != e; ++i) { 1436 Annotator.annotate(*AnnotatedLines[i]); 1437 } 1438 deriveLocalStyle(AnnotatedLines); 1439 for (unsigned i = 0, e = AnnotatedLines.size(); i != e; ++i) { 1440 Annotator.calculateFormattingInformation(*AnnotatedLines[i]); 1441 } 1442 computeAffectedLines(AnnotatedLines.begin(), AnnotatedLines.end()); 1443 1444 Annotator.setCommentLineLevels(AnnotatedLines); 1445 ContinuationIndenter Indenter(Style, Tokens.getKeywords(), SourceMgr, 1446 Whitespaces, Encoding, 1447 BinPackInconclusiveFunctions); 1448 UnwrappedLineFormatter(&Indenter, &Whitespaces, Style, Tokens.getKeywords(), 1449 IncompleteFormat) 1450 .format(AnnotatedLines); 1451 return Whitespaces.generateReplacements(); 1452 } 1453 1454 private: 1455 // Determines which lines are affected by the SourceRanges given as input. 1456 // Returns \c true if at least one line between I and E or one of their 1457 // children is affected. 1458 bool computeAffectedLines(SmallVectorImpl<AnnotatedLine *>::iterator I, 1459 SmallVectorImpl<AnnotatedLine *>::iterator E) { 1460 bool SomeLineAffected = false; 1461 const AnnotatedLine *PreviousLine = nullptr; 1462 while (I != E) { 1463 AnnotatedLine *Line = *I; 1464 Line->LeadingEmptyLinesAffected = affectsLeadingEmptyLines(*Line->First); 1465 1466 // If a line is part of a preprocessor directive, it needs to be formatted 1467 // if any token within the directive is affected. 1468 if (Line->InPPDirective) { 1469 FormatToken *Last = Line->Last; 1470 SmallVectorImpl<AnnotatedLine *>::iterator PPEnd = I + 1; 1471 while (PPEnd != E && !(*PPEnd)->First->HasUnescapedNewline) { 1472 Last = (*PPEnd)->Last; 1473 ++PPEnd; 1474 } 1475 1476 if (affectsTokenRange(*Line->First, *Last, 1477 /*IncludeLeadingNewlines=*/false)) { 1478 SomeLineAffected = true; 1479 markAllAsAffected(I, PPEnd); 1480 } 1481 I = PPEnd; 1482 continue; 1483 } 1484 1485 if (nonPPLineAffected(Line, PreviousLine)) 1486 SomeLineAffected = true; 1487 1488 PreviousLine = Line; 1489 ++I; 1490 } 1491 return SomeLineAffected; 1492 } 1493 1494 // Determines whether 'Line' is affected by the SourceRanges given as input. 1495 // Returns \c true if line or one if its children is affected. 1496 bool nonPPLineAffected(AnnotatedLine *Line, 1497 const AnnotatedLine *PreviousLine) { 1498 bool SomeLineAffected = false; 1499 Line->ChildrenAffected = 1500 computeAffectedLines(Line->Children.begin(), Line->Children.end()); 1501 if (Line->ChildrenAffected) 1502 SomeLineAffected = true; 1503 1504 // Stores whether one of the line's tokens is directly affected. 1505 bool SomeTokenAffected = false; 1506 // Stores whether we need to look at the leading newlines of the next token 1507 // in order to determine whether it was affected. 1508 bool IncludeLeadingNewlines = false; 1509 1510 // Stores whether the first child line of any of this line's tokens is 1511 // affected. 1512 bool SomeFirstChildAffected = false; 1513 1514 for (FormatToken *Tok = Line->First; Tok; Tok = Tok->Next) { 1515 // Determine whether 'Tok' was affected. 1516 if (affectsTokenRange(*Tok, *Tok, IncludeLeadingNewlines)) 1517 SomeTokenAffected = true; 1518 1519 // Determine whether the first child of 'Tok' was affected. 1520 if (!Tok->Children.empty() && Tok->Children.front()->Affected) 1521 SomeFirstChildAffected = true; 1522 1523 IncludeLeadingNewlines = Tok->Children.empty(); 1524 } 1525 1526 // Was this line moved, i.e. has it previously been on the same line as an 1527 // affected line? 1528 bool LineMoved = PreviousLine && PreviousLine->Affected && 1529 Line->First->NewlinesBefore == 0; 1530 1531 bool IsContinuedComment = 1532 Line->First->is(tok::comment) && Line->First->Next == nullptr && 1533 Line->First->NewlinesBefore < 2 && PreviousLine && 1534 PreviousLine->Affected && PreviousLine->Last->is(tok::comment); 1535 1536 if (SomeTokenAffected || SomeFirstChildAffected || LineMoved || 1537 IsContinuedComment) { 1538 Line->Affected = true; 1539 SomeLineAffected = true; 1540 } 1541 return SomeLineAffected; 1542 } 1543 1544 // Marks all lines between I and E as well as all their children as affected. 1545 void markAllAsAffected(SmallVectorImpl<AnnotatedLine *>::iterator I, 1546 SmallVectorImpl<AnnotatedLine *>::iterator E) { 1547 while (I != E) { 1548 (*I)->Affected = true; 1549 markAllAsAffected((*I)->Children.begin(), (*I)->Children.end()); 1550 ++I; 1551 } 1552 } 1553 1554 // Returns true if the range from 'First' to 'Last' intersects with one of the 1555 // input ranges. 1556 bool affectsTokenRange(const FormatToken &First, const FormatToken &Last, 1557 bool IncludeLeadingNewlines) { 1558 SourceLocation Start = First.WhitespaceRange.getBegin(); 1559 if (!IncludeLeadingNewlines) 1560 Start = Start.getLocWithOffset(First.LastNewlineOffset); 1561 SourceLocation End = Last.getStartOfNonWhitespace(); 1562 End = End.getLocWithOffset(Last.TokenText.size()); 1563 CharSourceRange Range = CharSourceRange::getCharRange(Start, End); 1564 return affectsCharSourceRange(Range); 1565 } 1566 1567 // Returns true if one of the input ranges intersect the leading empty lines 1568 // before 'Tok'. 1569 bool affectsLeadingEmptyLines(const FormatToken &Tok) { 1570 CharSourceRange EmptyLineRange = CharSourceRange::getCharRange( 1571 Tok.WhitespaceRange.getBegin(), 1572 Tok.WhitespaceRange.getBegin().getLocWithOffset(Tok.LastNewlineOffset)); 1573 return affectsCharSourceRange(EmptyLineRange); 1574 } 1575 1576 // Returns true if 'Range' intersects with one of the input ranges. 1577 bool affectsCharSourceRange(const CharSourceRange &Range) { 1578 for (SmallVectorImpl<CharSourceRange>::const_iterator I = Ranges.begin(), 1579 E = Ranges.end(); 1580 I != E; ++I) { 1581 if (!SourceMgr.isBeforeInTranslationUnit(Range.getEnd(), I->getBegin()) && 1582 !SourceMgr.isBeforeInTranslationUnit(I->getEnd(), Range.getBegin())) 1583 return true; 1584 } 1585 return false; 1586 } 1587 1588 static bool inputUsesCRLF(StringRef Text) { 1589 return Text.count('\r') * 2 > Text.count('\n'); 1590 } 1591 1592 bool 1593 hasCpp03IncompatibleFormat(const SmallVectorImpl<AnnotatedLine *> &Lines) { 1594 for (const AnnotatedLine* Line : Lines) { 1595 if (hasCpp03IncompatibleFormat(Line->Children)) 1596 return true; 1597 for (FormatToken *Tok = Line->First->Next; Tok; Tok = Tok->Next) { 1598 if (Tok->WhitespaceRange.getBegin() == Tok->WhitespaceRange.getEnd()) { 1599 if (Tok->is(tok::coloncolon) && Tok->Previous->is(TT_TemplateOpener)) 1600 return true; 1601 if (Tok->is(TT_TemplateCloser) && 1602 Tok->Previous->is(TT_TemplateCloser)) 1603 return true; 1604 } 1605 } 1606 } 1607 return false; 1608 } 1609 1610 int countVariableAlignments(const SmallVectorImpl<AnnotatedLine *> &Lines) { 1611 int AlignmentDiff = 0; 1612 for (const AnnotatedLine* Line : Lines) { 1613 AlignmentDiff += countVariableAlignments(Line->Children); 1614 for (FormatToken *Tok = Line->First; Tok && Tok->Next; Tok = Tok->Next) { 1615 if (!Tok->is(TT_PointerOrReference)) 1616 continue; 1617 bool SpaceBefore = 1618 Tok->WhitespaceRange.getBegin() != Tok->WhitespaceRange.getEnd(); 1619 bool SpaceAfter = Tok->Next->WhitespaceRange.getBegin() != 1620 Tok->Next->WhitespaceRange.getEnd(); 1621 if (SpaceBefore && !SpaceAfter) 1622 ++AlignmentDiff; 1623 if (!SpaceBefore && SpaceAfter) 1624 --AlignmentDiff; 1625 } 1626 } 1627 return AlignmentDiff; 1628 } 1629 1630 void 1631 deriveLocalStyle(const SmallVectorImpl<AnnotatedLine *> &AnnotatedLines) { 1632 bool HasBinPackedFunction = false; 1633 bool HasOnePerLineFunction = false; 1634 for (unsigned i = 0, e = AnnotatedLines.size(); i != e; ++i) { 1635 if (!AnnotatedLines[i]->First->Next) 1636 continue; 1637 FormatToken *Tok = AnnotatedLines[i]->First->Next; 1638 while (Tok->Next) { 1639 if (Tok->PackingKind == PPK_BinPacked) 1640 HasBinPackedFunction = true; 1641 if (Tok->PackingKind == PPK_OnePerLine) 1642 HasOnePerLineFunction = true; 1643 1644 Tok = Tok->Next; 1645 } 1646 } 1647 if (Style.DerivePointerAlignment) 1648 Style.PointerAlignment = countVariableAlignments(AnnotatedLines) <= 0 1649 ? FormatStyle::PAS_Left 1650 : FormatStyle::PAS_Right; 1651 if (Style.Standard == FormatStyle::LS_Auto) 1652 Style.Standard = hasCpp03IncompatibleFormat(AnnotatedLines) 1653 ? FormatStyle::LS_Cpp11 1654 : FormatStyle::LS_Cpp03; 1655 BinPackInconclusiveFunctions = 1656 HasBinPackedFunction || !HasOnePerLineFunction; 1657 } 1658 1659 void consumeUnwrappedLine(const UnwrappedLine &TheLine) override { 1660 assert(!UnwrappedLines.empty()); 1661 UnwrappedLines.back().push_back(TheLine); 1662 } 1663 1664 void finishRun() override { 1665 UnwrappedLines.push_back(SmallVector<UnwrappedLine, 16>()); 1666 } 1667 1668 FormatStyle Style; 1669 FileID ID; 1670 SourceManager &SourceMgr; 1671 WhitespaceManager Whitespaces; 1672 SmallVector<CharSourceRange, 8> Ranges; 1673 SmallVector<SmallVector<UnwrappedLine, 16>, 2> UnwrappedLines; 1674 1675 encoding::Encoding Encoding; 1676 bool BinPackInconclusiveFunctions; 1677 }; 1678 1679 struct IncludeDirective { 1680 StringRef Filename; 1681 StringRef Text; 1682 unsigned Offset; 1683 unsigned Category; 1684 }; 1685 1686 } // end anonymous namespace 1687 1688 // Determines whether 'Ranges' intersects with ('Start', 'End'). 1689 static bool affectsRange(ArrayRef<tooling::Range> Ranges, unsigned Start, 1690 unsigned End) { 1691 for (auto Range : Ranges) { 1692 if (Range.getOffset() < End && 1693 Range.getOffset() + Range.getLength() > Start) 1694 return true; 1695 } 1696 return false; 1697 } 1698 1699 // Sorts a block of includes given by 'Includes' alphabetically adding the 1700 // necessary replacement to 'Replaces'. 'Includes' must be in strict source 1701 // order. 1702 static void sortIncludes(const FormatStyle &Style, 1703 const SmallVectorImpl<IncludeDirective> &Includes, 1704 ArrayRef<tooling::Range> Ranges, StringRef FileName, 1705 tooling::Replacements &Replaces) { 1706 if (!affectsRange(Ranges, Includes.front().Offset, 1707 Includes.back().Offset + Includes.back().Text.size())) 1708 return; 1709 SmallVector<unsigned, 16> Indices; 1710 for (unsigned i = 0, e = Includes.size(); i != e; ++i) 1711 Indices.push_back(i); 1712 std::sort(Indices.begin(), Indices.end(), [&](unsigned LHSI, unsigned RHSI) { 1713 return std::tie(Includes[LHSI].Category, Includes[LHSI].Filename) < 1714 std::tie(Includes[RHSI].Category, Includes[RHSI].Filename); 1715 }); 1716 1717 // If the #includes are out of order, we generate a single replacement fixing 1718 // the entire block. Otherwise, no replacement is generated. 1719 bool OutOfOrder = false; 1720 for (unsigned i = 1, e = Indices.size(); i != e; ++i) { 1721 if (Indices[i] != i) { 1722 OutOfOrder = true; 1723 break; 1724 } 1725 } 1726 if (!OutOfOrder) 1727 return; 1728 1729 std::string result = Includes[Indices[0]].Text; 1730 for (unsigned i = 1, e = Indices.size(); i != e; ++i) { 1731 result += "\n"; 1732 result += Includes[Indices[i]].Text; 1733 } 1734 1735 // Sorting #includes shouldn't change their total number of characters. 1736 // This would otherwise mess up 'Ranges'. 1737 assert(result.size() == 1738 Includes.back().Offset + Includes.back().Text.size() - 1739 Includes.front().Offset); 1740 1741 Replaces.insert(tooling::Replacement(FileName, Includes.front().Offset, 1742 result.size(), result)); 1743 } 1744 1745 tooling::Replacements sortIncludes(const FormatStyle &Style, StringRef Code, 1746 ArrayRef<tooling::Range> Ranges, 1747 StringRef FileName) { 1748 tooling::Replacements Replaces; 1749 if (!Style.SortIncludes) 1750 return Replaces; 1751 1752 unsigned Prev = 0; 1753 unsigned SearchFrom = 0; 1754 llvm::Regex IncludeRegex( 1755 R"(^[\t\ ]*#[\t\ ]*(import|include)[^"<]*(["<][^">]*[">]))"); 1756 SmallVector<StringRef, 4> Matches; 1757 SmallVector<IncludeDirective, 16> IncludesInBlock; 1758 1759 // In compiled files, consider the first #include to be the main #include of 1760 // the file if it is not a system #include. This ensures that the header 1761 // doesn't have hidden dependencies 1762 // (http://llvm.org/docs/CodingStandards.html#include-style). 1763 // 1764 // FIXME: Do some sanity checking, e.g. edit distance of the base name, to fix 1765 // cases where the first #include is unlikely to be the main header. 1766 bool LookForMainHeader = FileName.endswith(".c") || 1767 FileName.endswith(".cc") || 1768 FileName.endswith(".cpp")|| 1769 FileName.endswith(".c++")|| 1770 FileName.endswith(".cxx") || 1771 FileName.endswith(".m")|| 1772 FileName.endswith(".mm"); 1773 1774 // Create pre-compiled regular expressions for the #include categories. 1775 SmallVector<llvm::Regex, 4> CategoryRegexs; 1776 for (const auto &Category : Style.IncludeCategories) 1777 CategoryRegexs.emplace_back(Category.Regex); 1778 1779 for (;;) { 1780 auto Pos = Code.find('\n', SearchFrom); 1781 StringRef Line = 1782 Code.substr(Prev, (Pos != StringRef::npos ? Pos : Code.size()) - Prev); 1783 if (!Line.endswith("\\")) { 1784 if (IncludeRegex.match(Line, &Matches)) { 1785 StringRef IncludeName = Matches[2]; 1786 unsigned Category; 1787 if (LookForMainHeader && !IncludeName.startswith("<")) { 1788 Category = 0; 1789 } else { 1790 Category = UINT_MAX; 1791 for (unsigned i = 0, e = CategoryRegexs.size(); i != e; ++i) { 1792 if (CategoryRegexs[i].match(IncludeName)) { 1793 Category = Style.IncludeCategories[i].Priority; 1794 break; 1795 } 1796 } 1797 } 1798 LookForMainHeader = false; 1799 IncludesInBlock.push_back({IncludeName, Line, Prev, Category}); 1800 } else if (!IncludesInBlock.empty()) { 1801 sortIncludes(Style, IncludesInBlock, Ranges, FileName, Replaces); 1802 IncludesInBlock.clear(); 1803 } 1804 Prev = Pos + 1; 1805 } 1806 if (Pos == StringRef::npos || Pos + 1 == Code.size()) 1807 break; 1808 SearchFrom = Pos + 1; 1809 } 1810 if (!IncludesInBlock.empty()) 1811 sortIncludes(Style, IncludesInBlock, Ranges, FileName, Replaces); 1812 return Replaces; 1813 } 1814 1815 tooling::Replacements reformat(const FormatStyle &Style, 1816 SourceManager &SourceMgr, FileID ID, 1817 ArrayRef<CharSourceRange> Ranges, 1818 bool *IncompleteFormat) { 1819 FormatStyle Expanded = expandPresets(Style); 1820 if (Expanded.DisableFormat) 1821 return tooling::Replacements(); 1822 Formatter formatter(Expanded, SourceMgr, ID, Ranges); 1823 return formatter.format(IncompleteFormat); 1824 } 1825 1826 tooling::Replacements reformat(const FormatStyle &Style, StringRef Code, 1827 ArrayRef<tooling::Range> Ranges, 1828 StringRef FileName, bool *IncompleteFormat) { 1829 if (Style.DisableFormat) 1830 return tooling::Replacements(); 1831 1832 IntrusiveRefCntPtr<vfs::InMemoryFileSystem> InMemoryFileSystem( 1833 new vfs::InMemoryFileSystem); 1834 FileManager Files(FileSystemOptions(), InMemoryFileSystem); 1835 DiagnosticsEngine Diagnostics( 1836 IntrusiveRefCntPtr<DiagnosticIDs>(new DiagnosticIDs), 1837 new DiagnosticOptions); 1838 SourceManager SourceMgr(Diagnostics, Files); 1839 InMemoryFileSystem->addFile(FileName, 0, 1840 llvm::MemoryBuffer::getMemBuffer(Code, FileName)); 1841 FileID ID = SourceMgr.createFileID(Files.getFile(FileName), SourceLocation(), 1842 clang::SrcMgr::C_User); 1843 SourceLocation StartOfFile = SourceMgr.getLocForStartOfFile(ID); 1844 std::vector<CharSourceRange> CharRanges; 1845 for (const tooling::Range &Range : Ranges) { 1846 SourceLocation Start = StartOfFile.getLocWithOffset(Range.getOffset()); 1847 SourceLocation End = Start.getLocWithOffset(Range.getLength()); 1848 CharRanges.push_back(CharSourceRange::getCharRange(Start, End)); 1849 } 1850 return reformat(Style, SourceMgr, ID, CharRanges, IncompleteFormat); 1851 } 1852 1853 LangOptions getFormattingLangOpts(const FormatStyle &Style) { 1854 LangOptions LangOpts; 1855 LangOpts.CPlusPlus = 1; 1856 LangOpts.CPlusPlus11 = Style.Standard == FormatStyle::LS_Cpp03 ? 0 : 1; 1857 LangOpts.CPlusPlus14 = Style.Standard == FormatStyle::LS_Cpp03 ? 0 : 1; 1858 LangOpts.LineComment = 1; 1859 bool AlternativeOperators = Style.Language == FormatStyle::LK_Cpp; 1860 LangOpts.CXXOperatorNames = AlternativeOperators ? 1 : 0; 1861 LangOpts.Bool = 1; 1862 LangOpts.ObjC1 = 1; 1863 LangOpts.ObjC2 = 1; 1864 LangOpts.MicrosoftExt = 1; // To get kw___try, kw___finally. 1865 LangOpts.DeclSpecKeyword = 1; // To get __declspec. 1866 return LangOpts; 1867 } 1868 1869 const char *StyleOptionHelpDescription = 1870 "Coding style, currently supports:\n" 1871 " LLVM, Google, Chromium, Mozilla, WebKit.\n" 1872 "Use -style=file to load style configuration from\n" 1873 ".clang-format file located in one of the parent\n" 1874 "directories of the source file (or current\n" 1875 "directory for stdin).\n" 1876 "Use -style=\"{key: value, ...}\" to set specific\n" 1877 "parameters, e.g.:\n" 1878 " -style=\"{BasedOnStyle: llvm, IndentWidth: 8}\""; 1879 1880 static FormatStyle::LanguageKind getLanguageByFileName(StringRef FileName) { 1881 if (FileName.endswith(".java")) { 1882 return FormatStyle::LK_Java; 1883 } else if (FileName.endswith_lower(".js") || FileName.endswith_lower(".ts")) { 1884 // JavaScript or TypeScript. 1885 return FormatStyle::LK_JavaScript; 1886 } else if (FileName.endswith_lower(".proto") || 1887 FileName.endswith_lower(".protodevel")) { 1888 return FormatStyle::LK_Proto; 1889 } 1890 return FormatStyle::LK_Cpp; 1891 } 1892 1893 FormatStyle getStyle(StringRef StyleName, StringRef FileName, 1894 StringRef FallbackStyle) { 1895 FormatStyle Style = getLLVMStyle(); 1896 Style.Language = getLanguageByFileName(FileName); 1897 if (!getPredefinedStyle(FallbackStyle, Style.Language, &Style)) { 1898 llvm::errs() << "Invalid fallback style \"" << FallbackStyle 1899 << "\" using LLVM style\n"; 1900 return Style; 1901 } 1902 1903 if (StyleName.startswith("{")) { 1904 // Parse YAML/JSON style from the command line. 1905 if (std::error_code ec = parseConfiguration(StyleName, &Style)) { 1906 llvm::errs() << "Error parsing -style: " << ec.message() << ", using " 1907 << FallbackStyle << " style\n"; 1908 } 1909 return Style; 1910 } 1911 1912 if (!StyleName.equals_lower("file")) { 1913 if (!getPredefinedStyle(StyleName, Style.Language, &Style)) 1914 llvm::errs() << "Invalid value for -style, using " << FallbackStyle 1915 << " style\n"; 1916 return Style; 1917 } 1918 1919 // Look for .clang-format/_clang-format file in the file's parent directories. 1920 SmallString<128> UnsuitableConfigFiles; 1921 SmallString<128> Path(FileName); 1922 llvm::sys::fs::make_absolute(Path); 1923 for (StringRef Directory = Path; !Directory.empty(); 1924 Directory = llvm::sys::path::parent_path(Directory)) { 1925 if (!llvm::sys::fs::is_directory(Directory)) 1926 continue; 1927 SmallString<128> ConfigFile(Directory); 1928 1929 llvm::sys::path::append(ConfigFile, ".clang-format"); 1930 DEBUG(llvm::dbgs() << "Trying " << ConfigFile << "...\n"); 1931 bool IsFile = false; 1932 // Ignore errors from is_regular_file: we only need to know if we can read 1933 // the file or not. 1934 llvm::sys::fs::is_regular_file(Twine(ConfigFile), IsFile); 1935 1936 if (!IsFile) { 1937 // Try _clang-format too, since dotfiles are not commonly used on Windows. 1938 ConfigFile = Directory; 1939 llvm::sys::path::append(ConfigFile, "_clang-format"); 1940 DEBUG(llvm::dbgs() << "Trying " << ConfigFile << "...\n"); 1941 llvm::sys::fs::is_regular_file(Twine(ConfigFile), IsFile); 1942 } 1943 1944 if (IsFile) { 1945 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> Text = 1946 llvm::MemoryBuffer::getFile(ConfigFile.c_str()); 1947 if (std::error_code EC = Text.getError()) { 1948 llvm::errs() << EC.message() << "\n"; 1949 break; 1950 } 1951 if (std::error_code ec = 1952 parseConfiguration(Text.get()->getBuffer(), &Style)) { 1953 if (ec == ParseError::Unsuitable) { 1954 if (!UnsuitableConfigFiles.empty()) 1955 UnsuitableConfigFiles.append(", "); 1956 UnsuitableConfigFiles.append(ConfigFile); 1957 continue; 1958 } 1959 llvm::errs() << "Error reading " << ConfigFile << ": " << ec.message() 1960 << "\n"; 1961 break; 1962 } 1963 DEBUG(llvm::dbgs() << "Using configuration file " << ConfigFile << "\n"); 1964 return Style; 1965 } 1966 } 1967 if (!UnsuitableConfigFiles.empty()) { 1968 llvm::errs() << "Configuration file(s) do(es) not support " 1969 << getLanguageName(Style.Language) << ": " 1970 << UnsuitableConfigFiles << "\n"; 1971 } 1972 return Style; 1973 } 1974 1975 } // namespace format 1976 } // namespace clang 1977