1 //===--- OptTable.cpp - Option Table Implementation -----------------------===// 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 "llvm/Option/OptTable.h" 11 #include "llvm/Option/Arg.h" 12 #include "llvm/Option/ArgList.h" 13 #include "llvm/Option/Option.h" 14 #include "llvm/Support/ErrorHandling.h" 15 #include "llvm/Support/raw_ostream.h" 16 #include <algorithm> 17 #include <map> 18 19 using namespace llvm; 20 using namespace llvm::opt; 21 22 // Ordering on Info. The ordering is *almost* lexicographic, with two 23 // exceptions. First, '\0' comes at the end of the alphabet instead of 24 // the beginning (thus options precede any other options which prefix 25 // them). Second, for options with the same name, the less permissive 26 // version should come first; a Flag option should precede a Joined 27 // option, for example. 28 29 static int StrCmpOptionName(const char *A, const char *B) { 30 char a = *A, b = *B; 31 while (a == b) { 32 if (a == '\0') 33 return 0; 34 35 a = *++A; 36 b = *++B; 37 } 38 39 if (a == '\0') // A is a prefix of B. 40 return 1; 41 if (b == '\0') // B is a prefix of A. 42 return -1; 43 44 // Otherwise lexicographic. 45 return (a < b) ? -1 : 1; 46 } 47 48 namespace llvm { 49 namespace opt { 50 51 static inline bool operator<(const OptTable::Info &A, const OptTable::Info &B) { 52 if (&A == &B) 53 return false; 54 55 if (int N = StrCmpOptionName(A.Name, B.Name)) 56 return N == -1; 57 58 for (const char * const *APre = A.Prefixes, 59 * const *BPre = B.Prefixes; 60 *APre != 0 && *BPre != 0; ++APre, ++BPre) { 61 if (int N = StrCmpOptionName(*APre, *BPre)) 62 return N == -1; 63 } 64 65 // Names are the same, check that classes are in order; exactly one 66 // should be joined, and it should succeed the other. 67 assert(((A.Kind == Option::JoinedClass) ^ (B.Kind == Option::JoinedClass)) && 68 "Unexpected classes for options with same name."); 69 return B.Kind == Option::JoinedClass; 70 } 71 72 // Support lower_bound between info and an option name. 73 static inline bool operator<(const OptTable::Info &I, const char *Name) { 74 return StrCmpOptionName(I.Name, Name) == -1; 75 } 76 static inline bool operator<(const char *Name, const OptTable::Info &I) { 77 return StrCmpOptionName(Name, I.Name) == -1; 78 } 79 } 80 } 81 82 OptSpecifier::OptSpecifier(const Option *Opt) : ID(Opt->getID()) {} 83 84 OptTable::OptTable(const Info *_OptionInfos, unsigned _NumOptionInfos) 85 : OptionInfos(_OptionInfos), 86 NumOptionInfos(_NumOptionInfos), 87 TheInputOptionID(0), 88 TheUnknownOptionID(0), 89 FirstSearchableIndex(0) 90 { 91 // Explicitly zero initialize the error to work around a bug in array 92 // value-initialization on MinGW with gcc 4.3.5. 93 94 // Find start of normal options. 95 for (unsigned i = 0, e = getNumOptions(); i != e; ++i) { 96 unsigned Kind = getInfo(i + 1).Kind; 97 if (Kind == Option::InputClass) { 98 assert(!TheInputOptionID && "Cannot have multiple input options!"); 99 TheInputOptionID = getInfo(i + 1).ID; 100 } else if (Kind == Option::UnknownClass) { 101 assert(!TheUnknownOptionID && "Cannot have multiple unknown options!"); 102 TheUnknownOptionID = getInfo(i + 1).ID; 103 } else if (Kind != Option::GroupClass) { 104 FirstSearchableIndex = i; 105 break; 106 } 107 } 108 assert(FirstSearchableIndex != 0 && "No searchable options?"); 109 110 #ifndef NDEBUG 111 // Check that everything after the first searchable option is a 112 // regular option class. 113 for (unsigned i = FirstSearchableIndex, e = getNumOptions(); i != e; ++i) { 114 Option::OptionClass Kind = (Option::OptionClass) getInfo(i + 1).Kind; 115 assert((Kind != Option::InputClass && Kind != Option::UnknownClass && 116 Kind != Option::GroupClass) && 117 "Special options should be defined first!"); 118 } 119 120 // Check that options are in order. 121 for (unsigned i = FirstSearchableIndex + 1, e = getNumOptions(); i != e; ++i){ 122 if (!(getInfo(i) < getInfo(i + 1))) { 123 getOption(i).dump(); 124 getOption(i + 1).dump(); 125 llvm_unreachable("Options are not in order!"); 126 } 127 } 128 #endif 129 130 // Build prefixes. 131 for (unsigned i = FirstSearchableIndex + 1, e = getNumOptions() + 1; 132 i != e; ++i) { 133 if (const char *const *P = getInfo(i).Prefixes) { 134 for (; *P != 0; ++P) { 135 PrefixesUnion.insert(*P); 136 } 137 } 138 } 139 140 // Build prefix chars. 141 for (llvm::StringSet<>::const_iterator I = PrefixesUnion.begin(), 142 E = PrefixesUnion.end(); I != E; ++I) { 143 StringRef Prefix = I->getKey(); 144 for (StringRef::const_iterator C = Prefix.begin(), CE = Prefix.end(); 145 C != CE; ++C) 146 if (std::find(PrefixChars.begin(), PrefixChars.end(), *C) 147 == PrefixChars.end()) 148 PrefixChars.push_back(*C); 149 } 150 } 151 152 OptTable::~OptTable() { 153 } 154 155 const Option OptTable::getOption(OptSpecifier Opt) const { 156 unsigned id = Opt.getID(); 157 if (id == 0) 158 return Option(0, 0); 159 assert((unsigned) (id - 1) < getNumOptions() && "Invalid ID."); 160 return Option(&getInfo(id), this); 161 } 162 163 static bool isInput(const llvm::StringSet<> &Prefixes, StringRef Arg) { 164 if (Arg == "-") 165 return true; 166 for (llvm::StringSet<>::const_iterator I = Prefixes.begin(), 167 E = Prefixes.end(); I != E; ++I) 168 if (Arg.startswith(I->getKey())) 169 return false; 170 return true; 171 } 172 173 /// \returns Matched size. 0 means no match. 174 static unsigned matchOption(const OptTable::Info *I, StringRef Str) { 175 for (const char * const *Pre = I->Prefixes; *Pre != 0; ++Pre) { 176 StringRef Prefix(*Pre); 177 if (Str.startswith(Prefix) && Str.substr(Prefix.size()).startswith(I->Name)) 178 return Prefix.size() + StringRef(I->Name).size(); 179 } 180 return 0; 181 } 182 183 Arg *OptTable::ParseOneArg(const ArgList &Args, unsigned &Index, 184 unsigned FlagsToInclude, 185 unsigned FlagsToExclude) const { 186 unsigned Prev = Index; 187 const char *Str = Args.getArgString(Index); 188 189 // Anything that doesn't start with PrefixesUnion is an input, as is '-' 190 // itself. 191 if (isInput(PrefixesUnion, Str)) 192 return new Arg(getOption(TheInputOptionID), Str, Index++, Str); 193 194 const Info *Start = OptionInfos + FirstSearchableIndex; 195 const Info *End = OptionInfos + getNumOptions(); 196 StringRef Name = StringRef(Str).ltrim(PrefixChars); 197 198 // Search for the first next option which could be a prefix. 199 Start = std::lower_bound(Start, End, Name.data()); 200 201 // Options are stored in sorted order, with '\0' at the end of the 202 // alphabet. Since the only options which can accept a string must 203 // prefix it, we iteratively search for the next option which could 204 // be a prefix. 205 // 206 // FIXME: This is searching much more than necessary, but I am 207 // blanking on the simplest way to make it fast. We can solve this 208 // problem when we move to TableGen. 209 for (; Start != End; ++Start) { 210 unsigned ArgSize = 0; 211 // Scan for first option which is a proper prefix. 212 for (; Start != End; ++Start) 213 if ((ArgSize = matchOption(Start, Str))) 214 break; 215 if (Start == End) 216 break; 217 218 Option Opt(Start, this); 219 220 if (FlagsToInclude && !Opt.hasFlag(FlagsToInclude)) 221 continue; 222 if (Opt.hasFlag(FlagsToExclude)) 223 continue; 224 225 // See if this option matches. 226 if (Arg *A = Opt.accept(Args, Index, ArgSize)) 227 return A; 228 229 // Otherwise, see if this argument was missing values. 230 if (Prev != Index) 231 return 0; 232 } 233 234 // If we failed to find an option and this arg started with /, then it's 235 // probably an input path. 236 if (Str[0] == '/') 237 return new Arg(getOption(TheInputOptionID), Str, Index++, Str); 238 239 return new Arg(getOption(TheUnknownOptionID), Str, Index++, Str); 240 } 241 242 InputArgList *OptTable::ParseArgs(const char *const *ArgBegin, 243 const char *const *ArgEnd, 244 unsigned &MissingArgIndex, 245 unsigned &MissingArgCount, 246 unsigned FlagsToInclude, 247 unsigned FlagsToExclude) const { 248 InputArgList *Args = new InputArgList(ArgBegin, ArgEnd); 249 250 // FIXME: Handle '@' args (or at least error on them). 251 252 MissingArgIndex = MissingArgCount = 0; 253 unsigned Index = 0, End = ArgEnd - ArgBegin; 254 while (Index < End) { 255 // Ignore empty arguments (other things may still take them as arguments). 256 StringRef Str = Args->getArgString(Index); 257 if (Str == "") { 258 ++Index; 259 continue; 260 } 261 262 if (Str == "--") { 263 // Everything after -- is a filename. 264 ++Index; 265 266 assert(TheInputOptionID != 0 && "Invalid input option ID."); 267 while (Index < End) { 268 Args->append(new Arg(getOption(TheInputOptionID), 269 Args->getArgString(Index), Index, 270 Args->getArgString(Index))); 271 ++Index; 272 } 273 break; 274 } 275 276 unsigned Prev = Index; 277 Arg *A = ParseOneArg(*Args, Index, FlagsToInclude, FlagsToExclude); 278 assert(Index > Prev && "Parser failed to consume argument."); 279 280 // Check for missing argument error. 281 if (!A) { 282 assert(Index >= End && "Unexpected parser error."); 283 assert(Index - Prev - 1 && "No missing arguments!"); 284 MissingArgIndex = Prev; 285 MissingArgCount = Index - Prev - 1; 286 break; 287 } 288 289 Args->append(A); 290 } 291 292 return Args; 293 } 294 295 static std::string getOptionHelpName(const OptTable &Opts, OptSpecifier Id) { 296 const Option O = Opts.getOption(Id); 297 std::string Name = O.getPrefixedName(); 298 299 // Add metavar, if used. 300 switch (O.getKind()) { 301 case Option::GroupClass: case Option::InputClass: case Option::UnknownClass: 302 llvm_unreachable("Invalid option with help text."); 303 304 case Option::MultiArgClass: 305 llvm_unreachable("Cannot print metavar for this kind of option."); 306 307 case Option::FlagClass: 308 break; 309 310 case Option::SeparateClass: case Option::JoinedOrSeparateClass: 311 Name += ' '; 312 // FALLTHROUGH 313 case Option::JoinedClass: case Option::CommaJoinedClass: 314 case Option::JoinedAndSeparateClass: 315 if (const char *MetaVarName = Opts.getOptionMetaVar(Id)) 316 Name += MetaVarName; 317 else 318 Name += "<value>"; 319 break; 320 } 321 322 return Name; 323 } 324 325 static void PrintHelpOptionList(raw_ostream &OS, StringRef Title, 326 std::vector<std::pair<std::string, 327 const char*> > &OptionHelp) { 328 OS << Title << ":\n"; 329 330 // Find the maximum option length. 331 unsigned OptionFieldWidth = 0; 332 for (unsigned i = 0, e = OptionHelp.size(); i != e; ++i) { 333 // Skip titles. 334 if (!OptionHelp[i].second) 335 continue; 336 337 // Limit the amount of padding we are willing to give up for alignment. 338 unsigned Length = OptionHelp[i].first.size(); 339 if (Length <= 23) 340 OptionFieldWidth = std::max(OptionFieldWidth, Length); 341 } 342 343 const unsigned InitialPad = 2; 344 for (unsigned i = 0, e = OptionHelp.size(); i != e; ++i) { 345 const std::string &Option = OptionHelp[i].first; 346 int Pad = OptionFieldWidth - int(Option.size()); 347 OS.indent(InitialPad) << Option; 348 349 // Break on long option names. 350 if (Pad < 0) { 351 OS << "\n"; 352 Pad = OptionFieldWidth + InitialPad; 353 } 354 OS.indent(Pad + 1) << OptionHelp[i].second << '\n'; 355 } 356 } 357 358 static const char *getOptionHelpGroup(const OptTable &Opts, OptSpecifier Id) { 359 unsigned GroupID = Opts.getOptionGroupID(Id); 360 361 // If not in a group, return the default help group. 362 if (!GroupID) 363 return "OPTIONS"; 364 365 // Abuse the help text of the option groups to store the "help group" 366 // name. 367 // 368 // FIXME: Split out option groups. 369 if (const char *GroupHelp = Opts.getOptionHelpText(GroupID)) 370 return GroupHelp; 371 372 // Otherwise keep looking. 373 return getOptionHelpGroup(Opts, GroupID); 374 } 375 376 void OptTable::PrintHelp(raw_ostream &OS, const char *Name, const char *Title, 377 bool ShowHidden) const { 378 PrintHelp(OS, Name, Title, /*Include*/ 0, /*Exclude*/ 379 (ShowHidden ? 0 : HelpHidden)); 380 } 381 382 383 void OptTable::PrintHelp(raw_ostream &OS, const char *Name, const char *Title, 384 unsigned FlagsToInclude, 385 unsigned FlagsToExclude) const { 386 OS << "OVERVIEW: " << Title << "\n"; 387 OS << '\n'; 388 OS << "USAGE: " << Name << " [options] <inputs>\n"; 389 OS << '\n'; 390 391 // Render help text into a map of group-name to a list of (option, help) 392 // pairs. 393 typedef std::map<std::string, 394 std::vector<std::pair<std::string, const char*> > > helpmap_ty; 395 helpmap_ty GroupedOptionHelp; 396 397 for (unsigned i = 0, e = getNumOptions(); i != e; ++i) { 398 unsigned Id = i + 1; 399 400 // FIXME: Split out option groups. 401 if (getOptionKind(Id) == Option::GroupClass) 402 continue; 403 404 unsigned Flags = getInfo(Id).Flags; 405 if (FlagsToInclude && !(Flags & FlagsToInclude)) 406 continue; 407 if (Flags & FlagsToExclude) 408 continue; 409 410 if (const char *Text = getOptionHelpText(Id)) { 411 const char *HelpGroup = getOptionHelpGroup(*this, Id); 412 const std::string &OptName = getOptionHelpName(*this, Id); 413 GroupedOptionHelp[HelpGroup].push_back(std::make_pair(OptName, Text)); 414 } 415 } 416 417 for (helpmap_ty::iterator it = GroupedOptionHelp .begin(), 418 ie = GroupedOptionHelp.end(); it != ie; ++it) { 419 if (it != GroupedOptionHelp .begin()) 420 OS << "\n"; 421 PrintHelpOptionList(OS, it->first, it->second); 422 } 423 424 OS.flush(); 425 } 426