1 //===- OptTable.cpp - Option Table Implementation -------------------------===//
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 #include "llvm/Option/OptTable.h"
10 #include "llvm/ADT/STLExtras.h"
11 #include "llvm/ADT/StringRef.h"
12 #include "llvm/ADT/StringSet.h"
13 #include "llvm/Option/Arg.h"
14 #include "llvm/Option/ArgList.h"
15 #include "llvm/Option/OptSpecifier.h"
16 #include "llvm/Option/Option.h"
17 #include "llvm/Support/CommandLine.h" // for expandResponseFiles
18 #include "llvm/Support/Compiler.h"
19 #include "llvm/Support/ErrorHandling.h"
20 #include "llvm/Support/raw_ostream.h"
21 #include <algorithm>
22 #include <cassert>
23 #include <cctype>
24 #include <cstring>
25 #include <map>
26 #include <string>
27 #include <utility>
28 #include <vector>
29 
30 using namespace llvm;
31 using namespace llvm::opt;
32 
33 namespace llvm {
34 namespace opt {
35 
36 // Ordering on Info. The ordering is *almost* case-insensitive lexicographic,
37 // with an exception. '\0' comes at the end of the alphabet instead of the
38 // beginning (thus options precede any other options which prefix them).
39 static int StrCmpOptionNameIgnoreCase(const char *A, const char *B) {
40   const char *X = A, *Y = B;
41   char a = tolower(*A), b = tolower(*B);
42   while (a == b) {
43     if (a == '\0')
44       return 0;
45 
46     a = tolower(*++X);
47     b = tolower(*++Y);
48   }
49 
50   if (a == '\0') // A is a prefix of B.
51     return 1;
52   if (b == '\0') // B is a prefix of A.
53     return -1;
54 
55   // Otherwise lexicographic.
56   return (a < b) ? -1 : 1;
57 }
58 
59 #ifndef NDEBUG
60 static int StrCmpOptionName(const char *A, const char *B) {
61   if (int N = StrCmpOptionNameIgnoreCase(A, B))
62     return N;
63   return strcmp(A, B);
64 }
65 
66 static inline bool operator<(const OptTable::Info &A, const OptTable::Info &B) {
67   if (&A == &B)
68     return false;
69 
70   if (int N = StrCmpOptionName(A.Name, B.Name))
71     return N < 0;
72 
73   for (const char * const *APre = A.Prefixes,
74                   * const *BPre = B.Prefixes;
75                           *APre != nullptr && *BPre != nullptr; ++APre, ++BPre){
76     if (int N = StrCmpOptionName(*APre, *BPre))
77       return N < 0;
78   }
79 
80   // Names are the same, check that classes are in order; exactly one
81   // should be joined, and it should succeed the other.
82   assert(((A.Kind == Option::JoinedClass) ^ (B.Kind == Option::JoinedClass)) &&
83          "Unexpected classes for options with same name.");
84   return B.Kind == Option::JoinedClass;
85 }
86 #endif
87 
88 // Support lower_bound between info and an option name.
89 static inline bool operator<(const OptTable::Info &I, const char *Name) {
90   return StrCmpOptionNameIgnoreCase(I.Name, Name) < 0;
91 }
92 
93 } // end namespace opt
94 } // end namespace llvm
95 
96 OptSpecifier::OptSpecifier(const Option *Opt) : ID(Opt->getID()) {}
97 
98 OptTable::OptTable(ArrayRef<Info> OptionInfos, bool IgnoreCase)
99     : OptionInfos(OptionInfos), IgnoreCase(IgnoreCase) {
100   // Explicitly zero initialize the error to work around a bug in array
101   // value-initialization on MinGW with gcc 4.3.5.
102 
103   // Find start of normal options.
104   for (unsigned i = 0, e = getNumOptions(); i != e; ++i) {
105     unsigned Kind = getInfo(i + 1).Kind;
106     if (Kind == Option::InputClass) {
107       assert(!TheInputOptionID && "Cannot have multiple input options!");
108       TheInputOptionID = getInfo(i + 1).ID;
109     } else if (Kind == Option::UnknownClass) {
110       assert(!TheUnknownOptionID && "Cannot have multiple unknown options!");
111       TheUnknownOptionID = getInfo(i + 1).ID;
112     } else if (Kind != Option::GroupClass) {
113       FirstSearchableIndex = i;
114       break;
115     }
116   }
117   assert(FirstSearchableIndex != 0 && "No searchable options?");
118 
119 #ifndef NDEBUG
120   // Check that everything after the first searchable option is a
121   // regular option class.
122   for (unsigned i = FirstSearchableIndex, e = getNumOptions(); i != e; ++i) {
123     Option::OptionClass Kind = (Option::OptionClass) getInfo(i + 1).Kind;
124     assert((Kind != Option::InputClass && Kind != Option::UnknownClass &&
125             Kind != Option::GroupClass) &&
126            "Special options should be defined first!");
127   }
128 
129   // Check that options are in order.
130   for (unsigned i = FirstSearchableIndex + 1, e = getNumOptions(); i != e; ++i){
131     if (!(getInfo(i) < getInfo(i + 1))) {
132       getOption(i).dump();
133       getOption(i + 1).dump();
134       llvm_unreachable("Options are not in order!");
135     }
136   }
137 #endif
138 
139   // Build prefixes.
140   for (unsigned i = FirstSearchableIndex + 1, e = getNumOptions() + 1;
141                 i != e; ++i) {
142     if (const char *const *P = getInfo(i).Prefixes) {
143       for (; *P != nullptr; ++P) {
144         PrefixesUnion.insert(*P);
145       }
146     }
147   }
148 
149   // Build prefix chars.
150   for (StringSet<>::const_iterator I = PrefixesUnion.begin(),
151                                    E = PrefixesUnion.end(); I != E; ++I) {
152     StringRef Prefix = I->getKey();
153     for (StringRef::const_iterator C = Prefix.begin(), CE = Prefix.end();
154                                    C != CE; ++C)
155       if (!is_contained(PrefixChars, *C))
156         PrefixChars.push_back(*C);
157   }
158 }
159 
160 OptTable::~OptTable() = default;
161 
162 const Option OptTable::getOption(OptSpecifier Opt) const {
163   unsigned id = Opt.getID();
164   if (id == 0)
165     return Option(nullptr, nullptr);
166   assert((unsigned) (id - 1) < getNumOptions() && "Invalid ID.");
167   return Option(&getInfo(id), this);
168 }
169 
170 static bool isInput(const StringSet<> &Prefixes, StringRef Arg) {
171   if (Arg == "-")
172     return true;
173   for (StringSet<>::const_iterator I = Prefixes.begin(),
174                                    E = Prefixes.end(); I != E; ++I)
175     if (Arg.startswith(I->getKey()))
176       return false;
177   return true;
178 }
179 
180 /// \returns Matched size. 0 means no match.
181 static unsigned matchOption(const OptTable::Info *I, StringRef Str,
182                             bool IgnoreCase) {
183   for (const char * const *Pre = I->Prefixes; *Pre != nullptr; ++Pre) {
184     StringRef Prefix(*Pre);
185     if (Str.startswith(Prefix)) {
186       StringRef Rest = Str.substr(Prefix.size());
187       bool Matched = IgnoreCase ? Rest.startswith_insensitive(I->Name)
188                                 : Rest.startswith(I->Name);
189       if (Matched)
190         return Prefix.size() + StringRef(I->Name).size();
191     }
192   }
193   return 0;
194 }
195 
196 // Returns true if one of the Prefixes + In.Names matches Option
197 static bool optionMatches(const OptTable::Info &In, StringRef Option) {
198   if (In.Prefixes) {
199     StringRef InName(In.Name);
200     for (size_t I = 0; In.Prefixes[I]; I++)
201       if (Option.endswith(InName))
202         if (Option.slice(0, Option.size() - InName.size()) == In.Prefixes[I])
203           return true;
204   }
205   return false;
206 }
207 
208 // This function is for flag value completion.
209 // Eg. When "-stdlib=" and "l" was passed to this function, it will return
210 // appropiriate values for stdlib, which starts with l.
211 std::vector<std::string>
212 OptTable::suggestValueCompletions(StringRef Option, StringRef Arg) const {
213   // Search all options and return possible values.
214   for (size_t I = FirstSearchableIndex, E = OptionInfos.size(); I < E; I++) {
215     const Info &In = OptionInfos[I];
216     if (!In.Values || !optionMatches(In, Option))
217       continue;
218 
219     SmallVector<StringRef, 8> Candidates;
220     StringRef(In.Values).split(Candidates, ",", -1, false);
221 
222     std::vector<std::string> Result;
223     for (StringRef Val : Candidates)
224       if (Val.startswith(Arg) && Arg.compare(Val))
225         Result.push_back(std::string(Val));
226     return Result;
227   }
228   return {};
229 }
230 
231 std::vector<std::string>
232 OptTable::findByPrefix(StringRef Cur, unsigned int DisableFlags) const {
233   std::vector<std::string> Ret;
234   for (size_t I = FirstSearchableIndex, E = OptionInfos.size(); I < E; I++) {
235     const Info &In = OptionInfos[I];
236     if (!In.Prefixes || (!In.HelpText && !In.GroupID))
237       continue;
238     if (In.Flags & DisableFlags)
239       continue;
240 
241     for (int I = 0; In.Prefixes[I]; I++) {
242       std::string S = std::string(In.Prefixes[I]) + std::string(In.Name) + "\t";
243       if (In.HelpText)
244         S += In.HelpText;
245       if (StringRef(S).startswith(Cur) && S != std::string(Cur) + "\t")
246         Ret.push_back(S);
247     }
248   }
249   return Ret;
250 }
251 
252 unsigned OptTable::findNearest(StringRef Option, std::string &NearestString,
253                                unsigned FlagsToInclude, unsigned FlagsToExclude,
254                                unsigned MinimumLength) const {
255   assert(!Option.empty());
256 
257   // Consider each [option prefix + option name] pair as a candidate, finding
258   // the closest match.
259   unsigned BestDistance = UINT_MAX;
260   for (const Info &CandidateInfo :
261        ArrayRef<Info>(OptionInfos).drop_front(FirstSearchableIndex)) {
262     StringRef CandidateName = CandidateInfo.Name;
263 
264     // We can eliminate some option prefix/name pairs as candidates right away:
265     // * Ignore option candidates with empty names, such as "--", or names
266     //   that do not meet the minimum length.
267     if (CandidateName.empty() || CandidateName.size() < MinimumLength)
268       continue;
269 
270     // * If FlagsToInclude were specified, ignore options that don't include
271     //   those flags.
272     if (FlagsToInclude && !(CandidateInfo.Flags & FlagsToInclude))
273       continue;
274     // * Ignore options that contain the FlagsToExclude.
275     if (CandidateInfo.Flags & FlagsToExclude)
276       continue;
277 
278     // * Ignore positional argument option candidates (which do not
279     //   have prefixes).
280     if (!CandidateInfo.Prefixes)
281       continue;
282 
283     // Now check if the candidate ends with a character commonly used when
284     // delimiting an option from its value, such as '=' or ':'. If it does,
285     // attempt to split the given option based on that delimiter.
286     StringRef LHS, RHS;
287     char Last = CandidateName.back();
288     bool CandidateHasDelimiter = Last == '=' || Last == ':';
289     std::string NormalizedName = std::string(Option);
290     if (CandidateHasDelimiter) {
291       std::tie(LHS, RHS) = Option.split(Last);
292       NormalizedName = std::string(LHS);
293       if (Option.find(Last) == LHS.size())
294         NormalizedName += Last;
295     }
296 
297     // Consider each possible prefix for each candidate to find the most
298     // appropriate one. For example, if a user asks for "--helm", suggest
299     // "--help" over "-help".
300     for (int P = 0;
301          const char *const CandidatePrefix = CandidateInfo.Prefixes[P]; P++) {
302       std::string Candidate = (CandidatePrefix + CandidateName).str();
303       StringRef CandidateRef = Candidate;
304       unsigned Distance =
305           CandidateRef.edit_distance(NormalizedName, /*AllowReplacements=*/true,
306                                      /*MaxEditDistance=*/BestDistance);
307       if (RHS.empty() && CandidateHasDelimiter) {
308         // The Candidate ends with a = or : delimiter, but the option passed in
309         // didn't contain the delimiter (or doesn't have anything after it).
310         // In that case, penalize the correction: `-nodefaultlibs` is more
311         // likely to be a spello for `-nodefaultlib` than `-nodefaultlib:` even
312         // though both have an unmodified editing distance of 1, since the
313         // latter would need an argument.
314         ++Distance;
315       }
316       if (Distance < BestDistance) {
317         BestDistance = Distance;
318         NearestString = (Candidate + RHS).str();
319       }
320     }
321   }
322   return BestDistance;
323 }
324 
325 bool OptTable::addValues(const char *Option, const char *Values) {
326   for (size_t I = FirstSearchableIndex, E = OptionInfos.size(); I < E; I++) {
327     Info &In = OptionInfos[I];
328     if (optionMatches(In, Option)) {
329       In.Values = Values;
330       return true;
331     }
332   }
333   return false;
334 }
335 
336 // Parse a single argument, return the new argument, and update Index. If
337 // GroupedShortOptions is true, -a matches "-abc" and the argument in Args will
338 // be updated to "-bc". This overload does not support
339 // FlagsToInclude/FlagsToExclude or case insensitive options.
340 std::unique_ptr<Arg> OptTable::parseOneArgGrouped(InputArgList &Args,
341                                                   unsigned &Index) const {
342   // Anything that doesn't start with PrefixesUnion is an input, as is '-'
343   // itself.
344   const char *CStr = Args.getArgString(Index);
345   StringRef Str(CStr);
346   if (isInput(PrefixesUnion, Str))
347     return std::make_unique<Arg>(getOption(TheInputOptionID), Str, Index++,
348                                  CStr);
349 
350   const Info *End = OptionInfos.data() + OptionInfos.size();
351   StringRef Name = Str.ltrim(PrefixChars);
352   const Info *Start = std::lower_bound(
353       OptionInfos.data() + FirstSearchableIndex, End, Name.data());
354   const Info *Fallback = nullptr;
355   unsigned Prev = Index;
356 
357   // Search for the option which matches Str.
358   for (; Start != End; ++Start) {
359     unsigned ArgSize = matchOption(Start, Str, IgnoreCase);
360     if (!ArgSize)
361       continue;
362 
363     Option Opt(Start, this);
364     if (std::unique_ptr<Arg> A = Opt.accept(
365             Args, StringRef(Args.getArgString(Index), ArgSize), false, Index))
366       return A;
367 
368     // If Opt is a Flag of length 2 (e.g. "-a"), we know it is a prefix of
369     // the current argument (e.g. "-abc"). Match it as a fallback if no longer
370     // option (e.g. "-ab") exists.
371     if (ArgSize == 2 && Opt.getKind() == Option::FlagClass)
372       Fallback = Start;
373 
374     // Otherwise, see if the argument is missing.
375     if (Prev != Index)
376       return nullptr;
377   }
378   if (Fallback) {
379     Option Opt(Fallback, this);
380     // Check that the last option isn't a flag wrongly given an argument.
381     if (Str[2] == '=')
382       return std::make_unique<Arg>(getOption(TheUnknownOptionID), Str, Index++,
383                                    CStr);
384 
385     if (std::unique_ptr<Arg> A =
386             Opt.accept(Args, Str.substr(0, 2), true, Index)) {
387       Args.replaceArgString(Index, Twine('-') + Str.substr(2));
388       return A;
389     }
390   }
391 
392   // In the case of an incorrect short option extract the character and move to
393   // the next one.
394   if (Str[1] != '-') {
395     CStr = Args.MakeArgString(Str.substr(0, 2));
396     Args.replaceArgString(Index, Twine('-') + Str.substr(2));
397     return std::make_unique<Arg>(getOption(TheUnknownOptionID), CStr, Index,
398                                  CStr);
399   }
400 
401   return std::make_unique<Arg>(getOption(TheUnknownOptionID), Str, Index++,
402                                CStr);
403 }
404 
405 std::unique_ptr<Arg> OptTable::ParseOneArg(const ArgList &Args, unsigned &Index,
406                                            unsigned FlagsToInclude,
407                                            unsigned FlagsToExclude) const {
408   unsigned Prev = Index;
409   const char *Str = Args.getArgString(Index);
410 
411   // Anything that doesn't start with PrefixesUnion is an input, as is '-'
412   // itself.
413   if (isInput(PrefixesUnion, Str))
414     return std::make_unique<Arg>(getOption(TheInputOptionID), Str, Index++,
415                                  Str);
416 
417   const Info *Start = OptionInfos.data() + FirstSearchableIndex;
418   const Info *End = OptionInfos.data() + OptionInfos.size();
419   StringRef Name = StringRef(Str).ltrim(PrefixChars);
420 
421   // Search for the first next option which could be a prefix.
422   Start = std::lower_bound(Start, End, Name.data());
423 
424   // Options are stored in sorted order, with '\0' at the end of the
425   // alphabet. Since the only options which can accept a string must
426   // prefix it, we iteratively search for the next option which could
427   // be a prefix.
428   //
429   // FIXME: This is searching much more than necessary, but I am
430   // blanking on the simplest way to make it fast. We can solve this
431   // problem when we move to TableGen.
432   for (; Start != End; ++Start) {
433     unsigned ArgSize = 0;
434     // Scan for first option which is a proper prefix.
435     for (; Start != End; ++Start)
436       if ((ArgSize = matchOption(Start, Str, IgnoreCase)))
437         break;
438     if (Start == End)
439       break;
440 
441     Option Opt(Start, this);
442 
443     if (FlagsToInclude && !Opt.hasFlag(FlagsToInclude))
444       continue;
445     if (Opt.hasFlag(FlagsToExclude))
446       continue;
447 
448     // See if this option matches.
449     if (std::unique_ptr<Arg> A = Opt.accept(
450             Args, StringRef(Args.getArgString(Index), ArgSize), false, Index))
451       return A;
452 
453     // Otherwise, see if this argument was missing values.
454     if (Prev != Index)
455       return nullptr;
456   }
457 
458   // If we failed to find an option and this arg started with /, then it's
459   // probably an input path.
460   if (Str[0] == '/')
461     return std::make_unique<Arg>(getOption(TheInputOptionID), Str, Index++,
462                                  Str);
463 
464   return std::make_unique<Arg>(getOption(TheUnknownOptionID), Str, Index++,
465                                Str);
466 }
467 
468 InputArgList OptTable::ParseArgs(ArrayRef<const char *> ArgArr,
469                                  unsigned &MissingArgIndex,
470                                  unsigned &MissingArgCount,
471                                  unsigned FlagsToInclude,
472                                  unsigned FlagsToExclude) const {
473   InputArgList Args(ArgArr.begin(), ArgArr.end());
474 
475   // FIXME: Handle '@' args (or at least error on them).
476 
477   MissingArgIndex = MissingArgCount = 0;
478   unsigned Index = 0, End = ArgArr.size();
479   while (Index < End) {
480     // Ingore nullptrs, they are response file's EOL markers
481     if (Args.getArgString(Index) == nullptr) {
482       ++Index;
483       continue;
484     }
485     // Ignore empty arguments (other things may still take them as arguments).
486     StringRef Str = Args.getArgString(Index);
487     if (Str == "") {
488       ++Index;
489       continue;
490     }
491 
492     unsigned Prev = Index;
493     std::unique_ptr<Arg> A = GroupedShortOptions
494                  ? parseOneArgGrouped(Args, Index)
495                  : ParseOneArg(Args, Index, FlagsToInclude, FlagsToExclude);
496     assert((Index > Prev || GroupedShortOptions) &&
497            "Parser failed to consume argument.");
498 
499     // Check for missing argument error.
500     if (!A) {
501       assert(Index >= End && "Unexpected parser error.");
502       assert(Index - Prev - 1 && "No missing arguments!");
503       MissingArgIndex = Prev;
504       MissingArgCount = Index - Prev - 1;
505       break;
506     }
507 
508     Args.append(A.release());
509   }
510 
511   return Args;
512 }
513 
514 InputArgList OptTable::parseArgs(int Argc, char *const *Argv,
515                                  OptSpecifier Unknown, StringSaver &Saver,
516                                  function_ref<void(StringRef)> ErrorFn) const {
517   SmallVector<const char *, 0> NewArgv;
518   // The environment variable specifies initial options which can be overridden
519   // by commnad line options.
520   cl::expandResponseFiles(Argc, Argv, EnvVar, Saver, NewArgv);
521 
522   unsigned MAI, MAC;
523   opt::InputArgList Args = ParseArgs(makeArrayRef(NewArgv), MAI, MAC);
524   if (MAC)
525     ErrorFn((Twine(Args.getArgString(MAI)) + ": missing argument").str());
526 
527   // For each unknwon option, call ErrorFn with a formatted error message. The
528   // message includes a suggested alternative option spelling if available.
529   std::string Nearest;
530   for (const opt::Arg *A : Args.filtered(Unknown)) {
531     std::string Spelling = A->getAsString(Args);
532     if (findNearest(Spelling, Nearest) > 1)
533       ErrorFn("unknown argument '" + A->getAsString(Args) + "'");
534     else
535       ErrorFn("unknown argument '" + A->getAsString(Args) +
536               "', did you mean '" + Nearest + "'?");
537   }
538   return Args;
539 }
540 
541 static std::string getOptionHelpName(const OptTable &Opts, OptSpecifier Id) {
542   const Option O = Opts.getOption(Id);
543   std::string Name = O.getPrefixedName();
544 
545   // Add metavar, if used.
546   switch (O.getKind()) {
547   case Option::GroupClass: case Option::InputClass: case Option::UnknownClass:
548     llvm_unreachable("Invalid option with help text.");
549 
550   case Option::MultiArgClass:
551     if (const char *MetaVarName = Opts.getOptionMetaVar(Id)) {
552       // For MultiArgs, metavar is full list of all argument names.
553       Name += ' ';
554       Name += MetaVarName;
555     }
556     else {
557       // For MultiArgs<N>, if metavar not supplied, print <value> N times.
558       for (unsigned i=0, e=O.getNumArgs(); i< e; ++i) {
559         Name += " <value>";
560       }
561     }
562     break;
563 
564   case Option::FlagClass:
565     break;
566 
567   case Option::ValuesClass:
568     break;
569 
570   case Option::SeparateClass: case Option::JoinedOrSeparateClass:
571   case Option::RemainingArgsClass: case Option::RemainingArgsJoinedClass:
572     Name += ' ';
573     LLVM_FALLTHROUGH;
574   case Option::JoinedClass: case Option::CommaJoinedClass:
575   case Option::JoinedAndSeparateClass:
576     if (const char *MetaVarName = Opts.getOptionMetaVar(Id))
577       Name += MetaVarName;
578     else
579       Name += "<value>";
580     break;
581   }
582 
583   return Name;
584 }
585 
586 namespace {
587 struct OptionInfo {
588   std::string Name;
589   StringRef HelpText;
590 };
591 } // namespace
592 
593 static void PrintHelpOptionList(raw_ostream &OS, StringRef Title,
594                                 std::vector<OptionInfo> &OptionHelp) {
595   OS << Title << ":\n";
596 
597   // Find the maximum option length.
598   unsigned OptionFieldWidth = 0;
599   for (unsigned i = 0, e = OptionHelp.size(); i != e; ++i) {
600     // Limit the amount of padding we are willing to give up for alignment.
601     unsigned Length = OptionHelp[i].Name.size();
602     if (Length <= 23)
603       OptionFieldWidth = std::max(OptionFieldWidth, Length);
604   }
605 
606   const unsigned InitialPad = 2;
607   for (unsigned i = 0, e = OptionHelp.size(); i != e; ++i) {
608     const std::string &Option = OptionHelp[i].Name;
609     int Pad = OptionFieldWidth - int(Option.size());
610     OS.indent(InitialPad) << Option;
611 
612     // Break on long option names.
613     if (Pad < 0) {
614       OS << "\n";
615       Pad = OptionFieldWidth + InitialPad;
616     }
617     OS.indent(Pad + 1) << OptionHelp[i].HelpText << '\n';
618   }
619 }
620 
621 static const char *getOptionHelpGroup(const OptTable &Opts, OptSpecifier Id) {
622   unsigned GroupID = Opts.getOptionGroupID(Id);
623 
624   // If not in a group, return the default help group.
625   if (!GroupID)
626     return "OPTIONS";
627 
628   // Abuse the help text of the option groups to store the "help group"
629   // name.
630   //
631   // FIXME: Split out option groups.
632   if (const char *GroupHelp = Opts.getOptionHelpText(GroupID))
633     return GroupHelp;
634 
635   // Otherwise keep looking.
636   return getOptionHelpGroup(Opts, GroupID);
637 }
638 
639 void OptTable::printHelp(raw_ostream &OS, const char *Usage, const char *Title,
640                          bool ShowHidden, bool ShowAllAliases) const {
641   printHelp(OS, Usage, Title, /*Include*/ 0, /*Exclude*/
642             (ShowHidden ? 0 : HelpHidden), ShowAllAliases);
643 }
644 
645 void OptTable::printHelp(raw_ostream &OS, const char *Usage, const char *Title,
646                          unsigned FlagsToInclude, unsigned FlagsToExclude,
647                          bool ShowAllAliases) const {
648   OS << "OVERVIEW: " << Title << "\n\n";
649   OS << "USAGE: " << Usage << "\n\n";
650 
651   // Render help text into a map of group-name to a list of (option, help)
652   // pairs.
653   std::map<std::string, std::vector<OptionInfo>> GroupedOptionHelp;
654 
655   for (unsigned Id = 1, e = getNumOptions() + 1; Id != e; ++Id) {
656     // FIXME: Split out option groups.
657     if (getOptionKind(Id) == Option::GroupClass)
658       continue;
659 
660     unsigned Flags = getInfo(Id).Flags;
661     if (FlagsToInclude && !(Flags & FlagsToInclude))
662       continue;
663     if (Flags & FlagsToExclude)
664       continue;
665 
666     // If an alias doesn't have a help text, show a help text for the aliased
667     // option instead.
668     const char *HelpText = getOptionHelpText(Id);
669     if (!HelpText && ShowAllAliases) {
670       const Option Alias = getOption(Id).getAlias();
671       if (Alias.isValid())
672         HelpText = getOptionHelpText(Alias.getID());
673     }
674 
675     if (HelpText && (strlen(HelpText) != 0)) {
676       const char *HelpGroup = getOptionHelpGroup(*this, Id);
677       const std::string &OptName = getOptionHelpName(*this, Id);
678       GroupedOptionHelp[HelpGroup].push_back({OptName, HelpText});
679     }
680   }
681 
682   for (auto& OptionGroup : GroupedOptionHelp) {
683     if (OptionGroup.first != GroupedOptionHelp.begin()->first)
684       OS << "\n";
685     PrintHelpOptionList(OS, OptionGroup.first, OptionGroup.second);
686   }
687 
688   OS.flush();
689 }
690