1 //===-- ClangHighlighter.cpp ------------------------------------*- C++ -*-===// 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 #include "ClangHighlighter.h" 11 12 #include "lldb/Target/Language.h" 13 #include "lldb/Utility/AnsiTerminal.h" 14 #include "lldb/Utility/StreamString.h" 15 16 #include "clang/Basic/SourceManager.h" 17 #include "clang/Lex/Lexer.h" 18 #include "llvm/ADT/StringSet.h" 19 #include "llvm/Support/MemoryBuffer.h" 20 21 using namespace lldb_private; 22 23 bool ClangHighlighter::isKeyword(llvm::StringRef token) const { 24 return keywords.find(token) != keywords.end(); 25 } 26 27 ClangHighlighter::ClangHighlighter() { 28 #define KEYWORD(X, N) keywords.insert(#X); 29 #include "clang/Basic/TokenKinds.def" 30 } 31 32 /// Determines which style should be applied to the given token. 33 /// \param highlighter 34 /// The current highlighter that should use the style. 35 /// \param token 36 /// The current token. 37 /// \param tok_str 38 /// The string in the source code the token represents. 39 /// \param options 40 /// The style we use for coloring the source code. 41 /// \param in_pp_directive 42 /// If we are currently in a preprocessor directive. NOTE: This is 43 /// passed by reference and will be updated if the current token starts 44 /// or ends a preprocessor directive. 45 /// \return 46 /// The ColorStyle that should be applied to the token. 47 static HighlightStyle::ColorStyle 48 determineClangStyle(const ClangHighlighter &highlighter, 49 const clang::Token &token, llvm::StringRef tok_str, 50 const HighlightStyle &options, bool &in_pp_directive) { 51 using namespace clang; 52 53 if (token.is(tok::comment)) { 54 // If we were in a preprocessor directive before, we now left it. 55 in_pp_directive = false; 56 return options.comment; 57 } else if (in_pp_directive || token.getKind() == tok::hash) { 58 // Let's assume that the rest of the line is a PP directive. 59 in_pp_directive = true; 60 // Preprocessor directives are hard to match, so we have to hack this in. 61 return options.pp_directive; 62 } else if (tok::isStringLiteral(token.getKind())) 63 return options.string_literal; 64 else if (tok::isLiteral(token.getKind())) 65 return options.scalar_literal; 66 else if (highlighter.isKeyword(tok_str)) 67 return options.keyword; 68 else 69 switch (token.getKind()) { 70 case tok::raw_identifier: 71 case tok::identifier: 72 return options.identifier; 73 case tok::l_brace: 74 case tok::r_brace: 75 return options.braces; 76 case tok::l_square: 77 case tok::r_square: 78 return options.square_brackets; 79 case tok::l_paren: 80 case tok::r_paren: 81 return options.parentheses; 82 case tok::comma: 83 return options.comma; 84 case tok::coloncolon: 85 case tok::colon: 86 return options.colon; 87 88 case tok::amp: 89 case tok::ampamp: 90 case tok::ampequal: 91 case tok::star: 92 case tok::starequal: 93 case tok::plus: 94 case tok::plusplus: 95 case tok::plusequal: 96 case tok::minus: 97 case tok::arrow: 98 case tok::minusminus: 99 case tok::minusequal: 100 case tok::tilde: 101 case tok::exclaim: 102 case tok::exclaimequal: 103 case tok::slash: 104 case tok::slashequal: 105 case tok::percent: 106 case tok::percentequal: 107 case tok::less: 108 case tok::lessless: 109 case tok::lessequal: 110 case tok::lesslessequal: 111 case tok::spaceship: 112 case tok::greater: 113 case tok::greatergreater: 114 case tok::greaterequal: 115 case tok::greatergreaterequal: 116 case tok::caret: 117 case tok::caretequal: 118 case tok::pipe: 119 case tok::pipepipe: 120 case tok::pipeequal: 121 case tok::question: 122 case tok::equal: 123 case tok::equalequal: 124 return options.operators; 125 default: 126 break; 127 } 128 return HighlightStyle::ColorStyle(); 129 } 130 131 void ClangHighlighter::Highlight(const HighlightStyle &options, 132 llvm::StringRef line, 133 llvm::Optional<size_t> cursor_pos, 134 llvm::StringRef previous_lines, 135 Stream &result) const { 136 using namespace clang; 137 138 FileSystemOptions file_opts; 139 FileManager file_mgr(file_opts); 140 141 unsigned line_number = previous_lines.count('\n') + 1U; 142 143 // Let's build the actual source code Clang needs and setup some utility 144 // objects. 145 std::string full_source = previous_lines.str() + line.str(); 146 llvm::IntrusiveRefCntPtr<DiagnosticIDs> diag_ids(new DiagnosticIDs()); 147 llvm::IntrusiveRefCntPtr<DiagnosticOptions> diags_opts( 148 new DiagnosticOptions()); 149 DiagnosticsEngine diags(diag_ids, diags_opts); 150 clang::SourceManager SM(diags, file_mgr); 151 auto buf = llvm::MemoryBuffer::getMemBuffer(full_source); 152 153 FileID FID = SM.createFileID(clang::SourceManager::Unowned, buf.get()); 154 155 // Let's just enable the latest ObjC and C++ which should get most tokens 156 // right. 157 LangOptions Opts; 158 Opts.ObjC2 = true; 159 Opts.CPlusPlus17 = true; 160 Opts.LineComment = true; 161 162 Lexer lex(FID, buf.get(), SM, Opts); 163 // The lexer should keep whitespace around. 164 lex.SetKeepWhitespaceMode(true); 165 166 // Keeps track if we have entered a PP directive. 167 bool in_pp_directive = false; 168 169 // True once we actually lexed the user provided line. 170 bool found_user_line = false; 171 172 // True if we already highlighted the token under the cursor, false otherwise. 173 bool highlighted_cursor = false; 174 Token token; 175 bool exit = false; 176 while (!exit) { 177 // Returns true if this is the last token we get from the lexer. 178 exit = lex.LexFromRawLexer(token); 179 180 bool invalid = false; 181 unsigned current_line_number = 182 SM.getSpellingLineNumber(token.getLocation(), &invalid); 183 if (current_line_number != line_number) 184 continue; 185 found_user_line = true; 186 187 // We don't need to print any tokens without a spelling line number. 188 if (invalid) 189 continue; 190 191 // Same as above but with the column number. 192 invalid = false; 193 unsigned start = SM.getSpellingColumnNumber(token.getLocation(), &invalid); 194 if (invalid) 195 continue; 196 // Column numbers start at 1, but indexes in our string start at 0. 197 --start; 198 199 // Annotations don't have a length, so let's skip them. 200 if (token.isAnnotation()) 201 continue; 202 203 // Extract the token string from our source code. 204 llvm::StringRef tok_str = line.substr(start, token.getLength()); 205 206 // If the token is just an empty string, we can skip all the work below. 207 if (tok_str.empty()) 208 continue; 209 210 // If the cursor is inside this token, we have to apply the 'selected' 211 // highlight style before applying the actual token color. 212 llvm::StringRef to_print = tok_str; 213 StreamString storage; 214 auto end = start + token.getLength(); 215 if (cursor_pos && end > *cursor_pos && !highlighted_cursor) { 216 highlighted_cursor = true; 217 options.selected.Apply(storage, tok_str); 218 to_print = storage.GetString(); 219 } 220 221 // See how we are supposed to highlight this token. 222 HighlightStyle::ColorStyle color = 223 determineClangStyle(*this, token, tok_str, options, in_pp_directive); 224 225 color.Apply(result, to_print); 226 } 227 228 // If we went over the whole file but couldn't find our own file, then 229 // somehow our setup was wrong. When we're in release mode we just give the 230 // user the normal line and pretend we don't know how to highlight it. In 231 // debug mode we bail out with an assert as this should never happen. 232 if (!found_user_line) { 233 result << line; 234 assert(false && "We couldn't find the user line in the input file?"); 235 } 236 } 237