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/Support/Regex.h"
22 #include <list>
23 #include <stack>
24 
25 namespace clang {
26 namespace format {
27 
28 struct UnwrappedLineNode;
29 
30 /// An unwrapped line is a sequence of \c Token, that we would like to
31 /// put on a single line if there was no column limit.
32 ///
33 /// This is used as a main interface between the \c UnwrappedLineParser and the
34 /// \c UnwrappedLineFormatter. The key property is that changing the formatting
35 /// within an unwrapped line does not affect any other unwrapped lines.
36 struct UnwrappedLine {
37   UnwrappedLine();
38 
39   // FIXME: Don't use std::list here.
40   /// The \c Tokens comprising this \c UnwrappedLine.
41   std::list<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   void reset();
86   void parseFile();
87   void parseLevel(bool HasOpeningBrace);
88   void parseBlock(bool MustBeDeclaration, bool AddLevel = true,
89                   bool MunchSemi = true);
90   void parseChildBlock();
91   void parsePPDirective();
92   void parsePPDefine();
93   void parsePPIf(bool IfDef);
94   void parsePPElIf();
95   void parsePPElse();
96   void parsePPEndIf();
97   void parsePPUnknown();
98   void readTokenWithJavaScriptASI();
99   void parseStructuralElement();
100   bool tryToParseBracedList();
101   bool parseBracedList(bool ContinueOnSemicolons = false,
102                        tok::TokenKind ClosingBraceKind = tok::r_brace);
103   void parseParens();
104   void parseSquare(bool LambdaIntroducer = false);
105   void parseIfThenElse();
106   void parseTryCatch();
107   void parseForOrWhileLoop();
108   void parseDoWhile();
109   void parseLabel(bool LeftAlignLabel = false);
110   void parseCaseLabel();
111   void parseSwitch();
112   void parseNamespace();
113   void parseNew();
114   void parseAccessSpecifier();
115   bool parseEnum();
116   void parseJavaEnumBody();
117   // Parses a record (aka class) as a top level element. If ParseAsExpr is true,
118   // parses the record as a child block, i.e. if the class declaration is an
119   // expression.
120   void parseRecord(bool ParseAsExpr = false);
121   void parseObjCMethod();
122   void parseObjCProtocolList();
123   void parseObjCUntilAtEnd();
124   void parseObjCInterfaceOrImplementation();
125   bool parseObjCProtocol();
126   void parseJavaScriptEs6ImportExport();
127   void parseStatementMacro();
128   void parseCSharpAttribute();
129   // Parse a C# generic type constraint: `where T : IComparable<T>`.
130   // See:
131   // https://docs.microsoft.com/en-us/dotnet/csharp/language-reference/keywords/where-generic-type-constraint
132   void parseCSharpGenericTypeConstraint();
133   bool tryToParseLambda();
134   bool tryToParseLambdaIntroducer();
135   void tryToParseJSFunction();
136   void addUnwrappedLine();
137   bool eof() const;
138   // LevelDifference is the difference of levels after and before the current
139   // token. For example:
140   // - if the token is '{' and opens a block, LevelDifference is 1.
141   // - if the token is '}' and closes a block, LevelDifference is -1.
142   void nextToken(int LevelDifference = 0);
143   void readToken(int LevelDifference = 0);
144 
145   // Decides which comment tokens should be added to the current line and which
146   // should be added as comments before the next token.
147   //
148   // Comments specifies the sequence of comment tokens to analyze. They get
149   // either pushed to the current line or added to the comments before the next
150   // token.
151   //
152   // NextTok specifies the next token. A null pointer NextTok is supported, and
153   // signifies either the absence of a next token, or that the next token
154   // shouldn't be taken into accunt for the analysis.
155   void distributeComments(const SmallVectorImpl<FormatToken *> &Comments,
156                           const FormatToken *NextTok);
157 
158   // Adds the comment preceding the next token to unwrapped lines.
159   void flushComments(bool NewlineBeforeNext);
160   void pushToken(FormatToken *Tok);
161   void calculateBraceTypes(bool ExpectClassBody = false);
162 
163   // Marks a conditional compilation edge (for example, an '#if', '#ifdef',
164   // '#else' or merge conflict marker). If 'Unreachable' is true, assumes
165   // this branch either cannot be taken (for example '#if false'), or should
166   // not be taken in this round.
167   void conditionalCompilationCondition(bool Unreachable);
168   void conditionalCompilationStart(bool Unreachable);
169   void conditionalCompilationAlternative();
170   void conditionalCompilationEnd();
171 
172   bool isOnNewLine(const FormatToken &FormatTok);
173 
174   // Compute hash of the current preprocessor branch.
175   // This is used to identify the different branches, and thus track if block
176   // open and close in the same branch.
177   size_t computePPHash() const;
178 
179   // FIXME: We are constantly running into bugs where Line.Level is incorrectly
180   // subtracted from beyond 0. Introduce a method to subtract from Line.Level
181   // and use that everywhere in the Parser.
182   std::unique_ptr<UnwrappedLine> Line;
183 
184   // Comments are sorted into unwrapped lines by whether they are in the same
185   // line as the previous token, or not. If not, they belong to the next token.
186   // Since the next token might already be in a new unwrapped line, we need to
187   // store the comments belonging to that token.
188   SmallVector<FormatToken *, 1> CommentsBeforeNextToken;
189   FormatToken *FormatTok;
190   bool MustBreakBeforeNextToken;
191 
192   // The parsed lines. Only added to through \c CurrentLines.
193   SmallVector<UnwrappedLine, 8> Lines;
194 
195   // Preprocessor directives are parsed out-of-order from other unwrapped lines.
196   // Thus, we need to keep a list of preprocessor directives to be reported
197   // after an unwrapped line that has been started was finished.
198   SmallVector<UnwrappedLine, 4> PreprocessorDirectives;
199 
200   // New unwrapped lines are added via CurrentLines.
201   // Usually points to \c &Lines. While parsing a preprocessor directive when
202   // there is an unfinished previous unwrapped line, will point to
203   // \c &PreprocessorDirectives.
204   SmallVectorImpl<UnwrappedLine> *CurrentLines;
205 
206   // We store for each line whether it must be a declaration depending on
207   // whether we are in a compound statement or not.
208   std::vector<bool> DeclarationScopeStack;
209 
210   const FormatStyle &Style;
211   const AdditionalKeywords &Keywords;
212 
213   llvm::Regex CommentPragmasRegex;
214 
215   FormatTokenSource *Tokens;
216   UnwrappedLineConsumer &Callback;
217 
218   // FIXME: This is a temporary measure until we have reworked the ownership
219   // of the format tokens. The goal is to have the actual tokens created and
220   // owned outside of and handed into the UnwrappedLineParser.
221   ArrayRef<FormatToken *> AllTokens;
222 
223   // Represents preprocessor branch type, so we can find matching
224   // #if/#else/#endif directives.
225   enum PPBranchKind {
226     PP_Conditional, // Any #if, #ifdef, #ifndef, #elif, block outside #if 0
227     PP_Unreachable  // #if 0 or a conditional preprocessor block inside #if 0
228   };
229 
230   struct PPBranch {
231     PPBranch(PPBranchKind Kind, size_t Line) : Kind(Kind), Line(Line) {}
232     PPBranchKind Kind;
233     size_t Line;
234   };
235 
236   // Keeps a stack of currently active preprocessor branching directives.
237   SmallVector<PPBranch, 16> PPStack;
238 
239   // The \c UnwrappedLineParser re-parses the code for each combination
240   // of preprocessor branches that can be taken.
241   // To that end, we take the same branch (#if, #else, or one of the #elif
242   // branches) for each nesting level of preprocessor branches.
243   // \c PPBranchLevel stores the current nesting level of preprocessor
244   // branches during one pass over the code.
245   int PPBranchLevel;
246 
247   // Contains the current branch (#if, #else or one of the #elif branches)
248   // for each nesting level.
249   SmallVector<int, 8> PPLevelBranchIndex;
250 
251   // Contains the maximum number of branches at each nesting level.
252   SmallVector<int, 8> PPLevelBranchCount;
253 
254   // Contains the number of branches per nesting level we are currently
255   // in while parsing a preprocessor branch sequence.
256   // This is used to update PPLevelBranchCount at the end of a branch
257   // sequence.
258   std::stack<int> PPChainBranchIndex;
259 
260   // Include guard search state. Used to fixup preprocessor indent levels
261   // so that include guards do not participate in indentation.
262   enum IncludeGuardState {
263     IG_Inited,   // Search started, looking for #ifndef.
264     IG_IfNdefed, // #ifndef found, IncludeGuardToken points to condition.
265     IG_Defined,  // Matching #define found, checking other requirements.
266     IG_Found,    // All requirements met, need to fix indents.
267     IG_Rejected, // Search failed or never started.
268   };
269 
270   // Current state of include guard search.
271   IncludeGuardState IncludeGuard;
272 
273   // Points to the #ifndef condition for a potential include guard. Null unless
274   // IncludeGuardState == IG_IfNdefed.
275   FormatToken *IncludeGuardToken;
276 
277   // Contains the first start column where the source begins. This is zero for
278   // normal source code and may be nonzero when formatting a code fragment that
279   // does not start at the beginning of the file.
280   unsigned FirstStartColumn;
281 
282   friend class ScopedLineState;
283   friend class CompoundStatementIndenter;
284 };
285 
286 struct UnwrappedLineNode {
287   UnwrappedLineNode() : Tok(nullptr) {}
288   UnwrappedLineNode(FormatToken *Tok) : Tok(Tok) {}
289 
290   FormatToken *Tok;
291   SmallVector<UnwrappedLine, 0> Children;
292 };
293 
294 inline UnwrappedLine::UnwrappedLine()
295     : Level(0), InPPDirective(false), MustBeDeclaration(false),
296       MatchingOpeningBlockLineIndex(kInvalidIndex) {}
297 
298 } // end namespace format
299 } // end namespace clang
300 
301 #endif
302