1 //===--- UnwrappedLineParser.h - Format C++ code ----------------*- 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 contains the declaration of the UnwrappedLineParser, 11 /// which turns a stream of tokens into UnwrappedLines. 12 /// 13 //===----------------------------------------------------------------------===// 14 15 #ifndef LLVM_CLANG_LIB_FORMAT_UNWRAPPEDLINEPARSER_H 16 #define LLVM_CLANG_LIB_FORMAT_UNWRAPPEDLINEPARSER_H 17 18 #include "FormatToken.h" 19 #include "clang/Basic/IdentifierTable.h" 20 #include "clang/Format/Format.h" 21 #include "llvm/ADT/BitVector.h" 22 #include "llvm/Support/Regex.h" 23 #include <stack> 24 #include <vector> 25 26 namespace clang { 27 namespace format { 28 29 struct UnwrappedLineNode; 30 31 /// An unwrapped line is a sequence of \c Token, that we would like to 32 /// put on a single line if there was no column limit. 33 /// 34 /// This is used as a main interface between the \c UnwrappedLineParser and the 35 /// \c UnwrappedLineFormatter. The key property is that changing the formatting 36 /// within an unwrapped line does not affect any other unwrapped lines. 37 struct UnwrappedLine { 38 UnwrappedLine(); 39 40 /// The \c Tokens comprising this \c UnwrappedLine. 41 std::vector<UnwrappedLineNode> Tokens; 42 43 /// The indent level of the \c UnwrappedLine. 44 unsigned Level; 45 46 /// Whether this \c UnwrappedLine is part of a preprocessor directive. 47 bool InPPDirective; 48 49 bool MustBeDeclaration; 50 51 /// If this \c UnwrappedLine closes a block in a sequence of lines, 52 /// \c MatchingOpeningBlockLineIndex stores the index of the corresponding 53 /// opening line. Otherwise, \c MatchingOpeningBlockLineIndex must be 54 /// \c kInvalidIndex. 55 size_t MatchingOpeningBlockLineIndex = kInvalidIndex; 56 57 /// If this \c UnwrappedLine opens a block, stores the index of the 58 /// line with the corresponding closing brace. 59 size_t MatchingClosingBlockLineIndex = kInvalidIndex; 60 61 static const size_t kInvalidIndex = -1; 62 63 unsigned FirstStartColumn = 0; 64 }; 65 66 class UnwrappedLineConsumer { 67 public: 68 virtual ~UnwrappedLineConsumer() {} 69 virtual void consumeUnwrappedLine(const UnwrappedLine &Line) = 0; 70 virtual void finishRun() = 0; 71 }; 72 73 class FormatTokenSource; 74 75 class UnwrappedLineParser { 76 public: 77 UnwrappedLineParser(const FormatStyle &Style, 78 const AdditionalKeywords &Keywords, 79 unsigned FirstStartColumn, ArrayRef<FormatToken *> Tokens, 80 UnwrappedLineConsumer &Callback); 81 82 void parse(); 83 84 private: 85 enum class IfStmtKind { 86 NotIf, // Not an if statement. 87 IfOnly, // An if statement without the else clause. 88 IfElse, // An if statement followed by else but not else if. 89 IfElseIf // An if statement followed by else if. 90 }; 91 92 void reset(); 93 void parseFile(); 94 bool precededByCommentOrPPDirective() const; 95 bool parseLevel(bool HasOpeningBrace, bool CanContainBracedList, 96 IfStmtKind *IfKind = nullptr, 97 TokenType NextLBracesType = TT_Unknown); 98 IfStmtKind parseBlock(bool MustBeDeclaration = false, unsigned AddLevels = 1u, 99 bool MunchSemi = true, 100 bool UnindentWhitesmithsBraces = false, 101 bool CanContainBracedList = true, 102 TokenType NextLBracesType = TT_Unknown); 103 void parseChildBlock(bool CanContainBracedList = true, 104 TokenType NextLBracesType = TT_Unknown); 105 void parsePPDirective(); 106 void parsePPDefine(); 107 void parsePPIf(bool IfDef); 108 void parsePPElIf(); 109 void parsePPElse(); 110 void parsePPEndIf(); 111 void parsePPUnknown(); 112 void readTokenWithJavaScriptASI(); 113 void parseStructuralElement(IfStmtKind *IfKind = nullptr, 114 bool IsTopLevel = false, 115 TokenType NextLBracesType = TT_Unknown, 116 bool *HasLabel = nullptr); 117 bool tryToParseBracedList(); 118 bool parseBracedList(bool ContinueOnSemicolons = false, bool IsEnum = false, 119 tok::TokenKind ClosingBraceKind = tok::r_brace); 120 void parseParens(TokenType AmpAmpTokenType = TT_Unknown); 121 void parseSquare(bool LambdaIntroducer = false); 122 void keepAncestorBraces(); 123 void parseUnbracedBody(bool CheckEOF = false); 124 void handleAttributes(); 125 bool handleCppAttributes(); 126 FormatToken *parseIfThenElse(IfStmtKind *IfKind, bool KeepBraces = false); 127 void parseTryCatch(); 128 void parseLoopBody(bool TryRemoveBraces, bool WrapRightBrace); 129 void parseForOrWhileLoop(); 130 void parseDoWhile(); 131 void parseLabel(bool LeftAlignLabel = false); 132 void parseCaseLabel(); 133 void parseSwitch(); 134 void parseNamespace(); 135 void parseModuleImport(); 136 void parseNew(); 137 void parseAccessSpecifier(); 138 bool parseEnum(); 139 bool parseStructLike(); 140 void parseConcept(); 141 bool parseRequires(); 142 void parseRequiresClause(FormatToken *RequiresToken); 143 void parseRequiresExpression(FormatToken *RequiresToken); 144 void parseConstraintExpression(); 145 void parseJavaEnumBody(); 146 // Parses a record (aka class) as a top level element. If ParseAsExpr is true, 147 // parses the record as a child block, i.e. if the class declaration is an 148 // expression. 149 void parseRecord(bool ParseAsExpr = false); 150 void parseObjCLightweightGenerics(); 151 void parseObjCMethod(); 152 void parseObjCProtocolList(); 153 void parseObjCUntilAtEnd(); 154 void parseObjCInterfaceOrImplementation(); 155 bool parseObjCProtocol(); 156 void parseJavaScriptEs6ImportExport(); 157 void parseStatementMacro(); 158 void parseCSharpAttribute(); 159 // Parse a C# generic type constraint: `where T : IComparable<T>`. 160 // See: 161 // https://docs.microsoft.com/en-us/dotnet/csharp/language-reference/keywords/where-generic-type-constraint 162 void parseCSharpGenericTypeConstraint(); 163 bool tryToParseLambda(); 164 bool tryToParseChildBlock(); 165 bool tryToParseLambdaIntroducer(); 166 bool tryToParsePropertyAccessor(); 167 void tryToParseJSFunction(); 168 bool tryToParseSimpleAttribute(); 169 170 // Used by addUnwrappedLine to denote whether to keep or remove a level 171 // when resetting the line state. 172 enum class LineLevel { Remove, Keep }; 173 174 void addUnwrappedLine(LineLevel AdjustLevel = LineLevel::Remove); 175 bool eof() const; 176 // LevelDifference is the difference of levels after and before the current 177 // token. For example: 178 // - if the token is '{' and opens a block, LevelDifference is 1. 179 // - if the token is '}' and closes a block, LevelDifference is -1. 180 void nextToken(int LevelDifference = 0); 181 void readToken(int LevelDifference = 0); 182 183 // Decides which comment tokens should be added to the current line and which 184 // should be added as comments before the next token. 185 // 186 // Comments specifies the sequence of comment tokens to analyze. They get 187 // either pushed to the current line or added to the comments before the next 188 // token. 189 // 190 // NextTok specifies the next token. A null pointer NextTok is supported, and 191 // signifies either the absence of a next token, or that the next token 192 // shouldn't be taken into accunt for the analysis. 193 void distributeComments(const SmallVectorImpl<FormatToken *> &Comments, 194 const FormatToken *NextTok); 195 196 // Adds the comment preceding the next token to unwrapped lines. 197 void flushComments(bool NewlineBeforeNext); 198 void pushToken(FormatToken *Tok); 199 void calculateBraceTypes(bool ExpectClassBody = false); 200 201 // Marks a conditional compilation edge (for example, an '#if', '#ifdef', 202 // '#else' or merge conflict marker). If 'Unreachable' is true, assumes 203 // this branch either cannot be taken (for example '#if false'), or should 204 // not be taken in this round. 205 void conditionalCompilationCondition(bool Unreachable); 206 void conditionalCompilationStart(bool Unreachable); 207 void conditionalCompilationAlternative(); 208 void conditionalCompilationEnd(); 209 210 bool isOnNewLine(const FormatToken &FormatTok); 211 212 // Compute hash of the current preprocessor branch. 213 // This is used to identify the different branches, and thus track if block 214 // open and close in the same branch. 215 size_t computePPHash() const; 216 217 // FIXME: We are constantly running into bugs where Line.Level is incorrectly 218 // subtracted from beyond 0. Introduce a method to subtract from Line.Level 219 // and use that everywhere in the Parser. 220 std::unique_ptr<UnwrappedLine> Line; 221 222 // Comments are sorted into unwrapped lines by whether they are in the same 223 // line as the previous token, or not. If not, they belong to the next token. 224 // Since the next token might already be in a new unwrapped line, we need to 225 // store the comments belonging to that token. 226 SmallVector<FormatToken *, 1> CommentsBeforeNextToken; 227 FormatToken *FormatTok; 228 bool MustBreakBeforeNextToken; 229 230 // The parsed lines. Only added to through \c CurrentLines. 231 SmallVector<UnwrappedLine, 8> Lines; 232 233 // Preprocessor directives are parsed out-of-order from other unwrapped lines. 234 // Thus, we need to keep a list of preprocessor directives to be reported 235 // after an unwrapped line that has been started was finished. 236 SmallVector<UnwrappedLine, 4> PreprocessorDirectives; 237 238 // New unwrapped lines are added via CurrentLines. 239 // Usually points to \c &Lines. While parsing a preprocessor directive when 240 // there is an unfinished previous unwrapped line, will point to 241 // \c &PreprocessorDirectives. 242 SmallVectorImpl<UnwrappedLine> *CurrentLines; 243 244 // We store for each line whether it must be a declaration depending on 245 // whether we are in a compound statement or not. 246 llvm::BitVector DeclarationScopeStack; 247 248 const FormatStyle &Style; 249 const AdditionalKeywords &Keywords; 250 251 llvm::Regex CommentPragmasRegex; 252 253 FormatTokenSource *Tokens; 254 UnwrappedLineConsumer &Callback; 255 256 // FIXME: This is a temporary measure until we have reworked the ownership 257 // of the format tokens. The goal is to have the actual tokens created and 258 // owned outside of and handed into the UnwrappedLineParser. 259 ArrayRef<FormatToken *> AllTokens; 260 261 // Keeps a stack of the states of nested control statements (true if the 262 // statement contains more than some predefined number of nested statements). 263 SmallVector<bool, 8> NestedTooDeep; 264 265 // Represents preprocessor branch type, so we can find matching 266 // #if/#else/#endif directives. 267 enum PPBranchKind { 268 PP_Conditional, // Any #if, #ifdef, #ifndef, #elif, block outside #if 0 269 PP_Unreachable // #if 0 or a conditional preprocessor block inside #if 0 270 }; 271 272 struct PPBranch { 273 PPBranch(PPBranchKind Kind, size_t Line) : Kind(Kind), Line(Line) {} 274 PPBranchKind Kind; 275 size_t Line; 276 }; 277 278 // Keeps a stack of currently active preprocessor branching directives. 279 SmallVector<PPBranch, 16> PPStack; 280 281 // The \c UnwrappedLineParser re-parses the code for each combination 282 // of preprocessor branches that can be taken. 283 // To that end, we take the same branch (#if, #else, or one of the #elif 284 // branches) for each nesting level of preprocessor branches. 285 // \c PPBranchLevel stores the current nesting level of preprocessor 286 // branches during one pass over the code. 287 int PPBranchLevel; 288 289 // Contains the current branch (#if, #else or one of the #elif branches) 290 // for each nesting level. 291 SmallVector<int, 8> PPLevelBranchIndex; 292 293 // Contains the maximum number of branches at each nesting level. 294 SmallVector<int, 8> PPLevelBranchCount; 295 296 // Contains the number of branches per nesting level we are currently 297 // in while parsing a preprocessor branch sequence. 298 // This is used to update PPLevelBranchCount at the end of a branch 299 // sequence. 300 std::stack<int> PPChainBranchIndex; 301 302 // Include guard search state. Used to fixup preprocessor indent levels 303 // so that include guards do not participate in indentation. 304 enum IncludeGuardState { 305 IG_Inited, // Search started, looking for #ifndef. 306 IG_IfNdefed, // #ifndef found, IncludeGuardToken points to condition. 307 IG_Defined, // Matching #define found, checking other requirements. 308 IG_Found, // All requirements met, need to fix indents. 309 IG_Rejected, // Search failed or never started. 310 }; 311 312 // Current state of include guard search. 313 IncludeGuardState IncludeGuard; 314 315 // Points to the #ifndef condition for a potential include guard. Null unless 316 // IncludeGuardState == IG_IfNdefed. 317 FormatToken *IncludeGuardToken; 318 319 // Contains the first start column where the source begins. This is zero for 320 // normal source code and may be nonzero when formatting a code fragment that 321 // does not start at the beginning of the file. 322 unsigned FirstStartColumn; 323 324 friend class ScopedLineState; 325 friend class CompoundStatementIndenter; 326 }; 327 328 struct UnwrappedLineNode { 329 UnwrappedLineNode() : Tok(nullptr) {} 330 UnwrappedLineNode(FormatToken *Tok) : Tok(Tok) {} 331 332 FormatToken *Tok; 333 SmallVector<UnwrappedLine, 0> Children; 334 }; 335 336 inline UnwrappedLine::UnwrappedLine() 337 : Level(0), InPPDirective(false), MustBeDeclaration(false), 338 MatchingOpeningBlockLineIndex(kInvalidIndex) {} 339 340 } // end namespace format 341 } // end namespace clang 342 343 #endif 344