1 //===-- Options.cpp ---------------------------------------------*- 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 #include "lldb/Interpreter/Options.h"
10 
11 #include <algorithm>
12 #include <bitset>
13 #include <map>
14 #include <set>
15 
16 #include "lldb/Host/OptionParser.h"
17 #include "lldb/Interpreter/CommandCompletions.h"
18 #include "lldb/Interpreter/CommandInterpreter.h"
19 #include "lldb/Interpreter/CommandObject.h"
20 #include "lldb/Interpreter/CommandReturnObject.h"
21 #include "lldb/Target/Target.h"
22 #include "lldb/Utility/StreamString.h"
23 
24 using namespace lldb;
25 using namespace lldb_private;
26 
27 // Options
28 Options::Options() : m_getopt_table() { BuildValidOptionSets(); }
29 
30 Options::~Options() {}
31 
32 void Options::NotifyOptionParsingStarting(ExecutionContext *execution_context) {
33   m_seen_options.clear();
34   // Let the subclass reset its option values
35   OptionParsingStarting(execution_context);
36 }
37 
38 Status
39 Options::NotifyOptionParsingFinished(ExecutionContext *execution_context) {
40   return OptionParsingFinished(execution_context);
41 }
42 
43 void Options::OptionSeen(int option_idx) { m_seen_options.insert(option_idx); }
44 
45 // Returns true is set_a is a subset of set_b;  Otherwise returns false.
46 
47 bool Options::IsASubset(const OptionSet &set_a, const OptionSet &set_b) {
48   bool is_a_subset = true;
49   OptionSet::const_iterator pos_a;
50   OptionSet::const_iterator pos_b;
51 
52   // set_a is a subset of set_b if every member of set_a is also a member of
53   // set_b
54 
55   for (pos_a = set_a.begin(); pos_a != set_a.end() && is_a_subset; ++pos_a) {
56     pos_b = set_b.find(*pos_a);
57     if (pos_b == set_b.end())
58       is_a_subset = false;
59   }
60 
61   return is_a_subset;
62 }
63 
64 // Returns the set difference set_a - set_b, i.e. { x | ElementOf (x, set_a) &&
65 // !ElementOf (x, set_b) }
66 
67 size_t Options::OptionsSetDiff(const OptionSet &set_a, const OptionSet &set_b,
68                                OptionSet &diffs) {
69   size_t num_diffs = 0;
70   OptionSet::const_iterator pos_a;
71   OptionSet::const_iterator pos_b;
72 
73   for (pos_a = set_a.begin(); pos_a != set_a.end(); ++pos_a) {
74     pos_b = set_b.find(*pos_a);
75     if (pos_b == set_b.end()) {
76       ++num_diffs;
77       diffs.insert(*pos_a);
78     }
79   }
80 
81   return num_diffs;
82 }
83 
84 // Returns the union of set_a and set_b.  Does not put duplicate members into
85 // the union.
86 
87 void Options::OptionsSetUnion(const OptionSet &set_a, const OptionSet &set_b,
88                               OptionSet &union_set) {
89   OptionSet::const_iterator pos;
90   OptionSet::iterator pos_union;
91 
92   // Put all the elements of set_a into the union.
93 
94   for (pos = set_a.begin(); pos != set_a.end(); ++pos)
95     union_set.insert(*pos);
96 
97   // Put all the elements of set_b that are not already there into the union.
98   for (pos = set_b.begin(); pos != set_b.end(); ++pos) {
99     pos_union = union_set.find(*pos);
100     if (pos_union == union_set.end())
101       union_set.insert(*pos);
102   }
103 }
104 
105 bool Options::VerifyOptions(CommandReturnObject &result) {
106   bool options_are_valid = false;
107 
108   int num_levels = GetRequiredOptions().size();
109   if (num_levels) {
110     for (int i = 0; i < num_levels && !options_are_valid; ++i) {
111       // This is the correct set of options if:  1). m_seen_options contains
112       // all of m_required_options[i] (i.e. all the required options at this
113       // level are a subset of m_seen_options); AND 2). { m_seen_options -
114       // m_required_options[i] is a subset of m_options_options[i] (i.e. all
115       // the rest of m_seen_options are in the set of optional options at this
116       // level.
117 
118       // Check to see if all of m_required_options[i] are a subset of
119       // m_seen_options
120       if (IsASubset(GetRequiredOptions()[i], m_seen_options)) {
121         // Construct the set difference: remaining_options = {m_seen_options} -
122         // {m_required_options[i]}
123         OptionSet remaining_options;
124         OptionsSetDiff(m_seen_options, GetRequiredOptions()[i],
125                        remaining_options);
126         // Check to see if remaining_options is a subset of
127         // m_optional_options[i]
128         if (IsASubset(remaining_options, GetOptionalOptions()[i]))
129           options_are_valid = true;
130       }
131     }
132   } else {
133     options_are_valid = true;
134   }
135 
136   if (options_are_valid) {
137     result.SetStatus(eReturnStatusSuccessFinishNoResult);
138   } else {
139     result.AppendError("invalid combination of options for the given command");
140     result.SetStatus(eReturnStatusFailed);
141   }
142 
143   return options_are_valid;
144 }
145 
146 // This is called in the Options constructor, though we could call it lazily if
147 // that ends up being a performance problem.
148 
149 void Options::BuildValidOptionSets() {
150   // Check to see if we already did this.
151   if (m_required_options.size() != 0)
152     return;
153 
154   // Check to see if there are any options.
155   int num_options = NumCommandOptions();
156   if (num_options == 0)
157     return;
158 
159   auto opt_defs = GetDefinitions();
160   m_required_options.resize(1);
161   m_optional_options.resize(1);
162 
163   // First count the number of option sets we've got.  Ignore
164   // LLDB_ALL_OPTION_SETS...
165 
166   uint32_t num_option_sets = 0;
167 
168   for (const auto &def : opt_defs) {
169     uint32_t this_usage_mask = def.usage_mask;
170     if (this_usage_mask == LLDB_OPT_SET_ALL) {
171       if (num_option_sets == 0)
172         num_option_sets = 1;
173     } else {
174       for (uint32_t j = 0; j < LLDB_MAX_NUM_OPTION_SETS; j++) {
175         if (this_usage_mask & (1 << j)) {
176           if (num_option_sets <= j)
177             num_option_sets = j + 1;
178         }
179       }
180     }
181   }
182 
183   if (num_option_sets > 0) {
184     m_required_options.resize(num_option_sets);
185     m_optional_options.resize(num_option_sets);
186 
187     for (const auto &def : opt_defs) {
188       for (uint32_t j = 0; j < num_option_sets; j++) {
189         if (def.usage_mask & 1 << j) {
190           if (def.required)
191             m_required_options[j].insert(def.short_option);
192           else
193             m_optional_options[j].insert(def.short_option);
194         }
195       }
196     }
197   }
198 }
199 
200 uint32_t Options::NumCommandOptions() { return GetDefinitions().size(); }
201 
202 Option *Options::GetLongOptions() {
203   // Check to see if this has already been done.
204   if (m_getopt_table.empty()) {
205     auto defs = GetDefinitions();
206     if (defs.empty())
207       return nullptr;
208 
209     std::map<int, uint32_t> option_seen;
210 
211     m_getopt_table.resize(defs.size() + 1);
212     for (size_t i = 0; i < defs.size(); ++i) {
213       const int short_opt = defs[i].short_option;
214 
215       m_getopt_table[i].definition = &defs[i];
216       m_getopt_table[i].flag = nullptr;
217       m_getopt_table[i].val = short_opt;
218 
219       if (option_seen.find(short_opt) == option_seen.end()) {
220         option_seen[short_opt] = i;
221       } else if (short_opt) {
222         m_getopt_table[i].val = 0;
223         std::map<int, uint32_t>::const_iterator pos =
224             option_seen.find(short_opt);
225         StreamString strm;
226         if (isprint8(short_opt))
227           Host::SystemLog(Host::eSystemLogError,
228                           "option[%u] --%s has a short option -%c that "
229                           "conflicts with option[%u] --%s, short option won't "
230                           "be used for --%s\n",
231                           (int)i, defs[i].long_option, short_opt, pos->second,
232                           m_getopt_table[pos->second].definition->long_option,
233                           defs[i].long_option);
234         else
235           Host::SystemLog(Host::eSystemLogError,
236                           "option[%u] --%s has a short option 0x%x that "
237                           "conflicts with option[%u] --%s, short option won't "
238                           "be used for --%s\n",
239                           (int)i, defs[i].long_option, short_opt, pos->second,
240                           m_getopt_table[pos->second].definition->long_option,
241                           defs[i].long_option);
242       }
243     }
244 
245     // getopt_long_only requires a NULL final entry in the table:
246 
247     m_getopt_table.back().definition = nullptr;
248     m_getopt_table.back().flag = nullptr;
249     m_getopt_table.back().val = 0;
250   }
251 
252   if (m_getopt_table.empty())
253     return nullptr;
254 
255   return &m_getopt_table.front();
256 }
257 
258 // This function takes INDENT, which tells how many spaces to output at the
259 // front of each line; SPACES, which is a string containing 80 spaces; and
260 // TEXT, which is the text that is to be output.   It outputs the text, on
261 // multiple lines if necessary, to RESULT, with INDENT spaces at the front of
262 // each line.  It breaks lines on spaces, tabs or newlines, shortening the line
263 // if necessary to not break in the middle of a word.  It assumes that each
264 // output line should contain a maximum of OUTPUT_MAX_COLUMNS characters.
265 
266 void Options::OutputFormattedUsageText(Stream &strm,
267                                        const OptionDefinition &option_def,
268                                        uint32_t output_max_columns) {
269   std::string actual_text;
270   if (option_def.validator) {
271     const char *condition = option_def.validator->ShortConditionString();
272     if (condition) {
273       actual_text = "[";
274       actual_text.append(condition);
275       actual_text.append("] ");
276     }
277   }
278   actual_text.append(option_def.usage_text);
279 
280   // Will it all fit on one line?
281 
282   if (static_cast<uint32_t>(actual_text.length() + strm.GetIndentLevel()) <
283       output_max_columns) {
284     // Output it as a single line.
285     strm.Indent(actual_text.c_str());
286     strm.EOL();
287   } else {
288     // We need to break it up into multiple lines.
289 
290     int text_width = output_max_columns - strm.GetIndentLevel() - 1;
291     int start = 0;
292     int end = start;
293     int final_end = actual_text.length();
294     int sub_len;
295 
296     while (end < final_end) {
297       // Don't start the 'text' on a space, since we're already outputting the
298       // indentation.
299       while ((start < final_end) && (actual_text[start] == ' '))
300         start++;
301 
302       end = start + text_width;
303       if (end > final_end)
304         end = final_end;
305       else {
306         // If we're not at the end of the text, make sure we break the line on
307         // white space.
308         while (end > start && actual_text[end] != ' ' &&
309                actual_text[end] != '\t' && actual_text[end] != '\n')
310           end--;
311       }
312 
313       sub_len = end - start;
314       if (start != 0)
315         strm.EOL();
316       strm.Indent();
317       assert(start < final_end);
318       assert(start + sub_len <= final_end);
319       strm.Write(actual_text.c_str() + start, sub_len);
320       start = end + 1;
321     }
322     strm.EOL();
323   }
324 }
325 
326 bool Options::SupportsLongOption(const char *long_option) {
327   if (!long_option || !long_option[0])
328     return false;
329 
330   auto opt_defs = GetDefinitions();
331   if (opt_defs.empty())
332     return false;
333 
334   const char *long_option_name = long_option;
335   if (long_option[0] == '-' && long_option[1] == '-')
336     long_option_name += 2;
337 
338   for (auto &def : opt_defs) {
339     if (!def.long_option)
340       continue;
341 
342     if (strcmp(def.long_option, long_option_name) == 0)
343       return true;
344   }
345 
346   return false;
347 }
348 
349 enum OptionDisplayType {
350   eDisplayBestOption,
351   eDisplayShortOption,
352   eDisplayLongOption
353 };
354 
355 static bool PrintOption(const OptionDefinition &opt_def,
356                         OptionDisplayType display_type, const char *header,
357                         const char *footer, bool show_optional, Stream &strm) {
358   const bool has_short_option = isprint8(opt_def.short_option) != 0;
359 
360   if (display_type == eDisplayShortOption && !has_short_option)
361     return false;
362 
363   if (header && header[0])
364     strm.PutCString(header);
365 
366   if (show_optional && !opt_def.required)
367     strm.PutChar('[');
368   const bool show_short_option =
369       has_short_option && display_type != eDisplayLongOption;
370   if (show_short_option)
371     strm.Printf("-%c", opt_def.short_option);
372   else
373     strm.Printf("--%s", opt_def.long_option);
374   switch (opt_def.option_has_arg) {
375   case OptionParser::eNoArgument:
376     break;
377   case OptionParser::eRequiredArgument:
378     strm.Printf(" <%s>", CommandObject::GetArgumentName(opt_def.argument_type));
379     break;
380 
381   case OptionParser::eOptionalArgument:
382     strm.Printf("%s[<%s>]", show_short_option ? "" : "=",
383                 CommandObject::GetArgumentName(opt_def.argument_type));
384     break;
385   }
386   if (show_optional && !opt_def.required)
387     strm.PutChar(']');
388   if (footer && footer[0])
389     strm.PutCString(footer);
390   return true;
391 }
392 
393 void Options::GenerateOptionUsage(Stream &strm, CommandObject *cmd,
394                                   uint32_t screen_width) {
395   const bool only_print_args = cmd->IsDashDashCommand();
396 
397   auto opt_defs = GetDefinitions();
398   const uint32_t save_indent_level = strm.GetIndentLevel();
399   llvm::StringRef name;
400 
401   StreamString arguments_str;
402 
403   if (cmd) {
404     name = cmd->GetCommandName();
405     cmd->GetFormattedCommandArguments(arguments_str);
406   } else
407     name = "";
408 
409   strm.PutCString("\nCommand Options Usage:\n");
410 
411   strm.IndentMore(2);
412 
413   // First, show each usage level set of options, e.g. <cmd> [options-for-
414   // level-0]
415   //                                                   <cmd>
416   //                                                   [options-for-level-1]
417   //                                                   etc.
418 
419   const uint32_t num_options = NumCommandOptions();
420   if (num_options == 0)
421     return;
422 
423   uint32_t num_option_sets = GetRequiredOptions().size();
424 
425   uint32_t i;
426 
427   if (!only_print_args) {
428     for (uint32_t opt_set = 0; opt_set < num_option_sets; ++opt_set) {
429       uint32_t opt_set_mask;
430 
431       opt_set_mask = 1 << opt_set;
432       if (opt_set > 0)
433         strm.Printf("\n");
434       strm.Indent(name);
435 
436       // Different option sets may require different args.
437       StreamString args_str;
438       if (cmd)
439         cmd->GetFormattedCommandArguments(args_str, opt_set_mask);
440 
441       // First go through and print all options that take no arguments as a
442       // single string. If a command has "-a" "-b" and "-c", this will show up
443       // as [-abc]
444 
445       std::set<int> options;
446       std::set<int>::const_iterator options_pos, options_end;
447       for (auto &def : opt_defs) {
448         if (def.usage_mask & opt_set_mask && isprint8(def.short_option)) {
449           // Add current option to the end of out_stream.
450 
451           if (def.required && def.option_has_arg == OptionParser::eNoArgument) {
452             options.insert(def.short_option);
453           }
454         }
455       }
456 
457       if (!options.empty()) {
458         // We have some required options with no arguments
459         strm.PutCString(" -");
460         for (i = 0; i < 2; ++i)
461           for (options_pos = options.begin(), options_end = options.end();
462                options_pos != options_end; ++options_pos) {
463             if (i == 0 && ::islower(*options_pos))
464               continue;
465             if (i == 1 && ::isupper(*options_pos))
466               continue;
467             strm << (char)*options_pos;
468           }
469       }
470 
471       options.clear();
472       for (auto &def : opt_defs) {
473         if (def.usage_mask & opt_set_mask && isprint8(def.short_option)) {
474           // Add current option to the end of out_stream.
475 
476           if (!def.required &&
477               def.option_has_arg == OptionParser::eNoArgument) {
478             options.insert(def.short_option);
479           }
480         }
481       }
482 
483       if (!options.empty()) {
484         // We have some required options with no arguments
485         strm.PutCString(" [-");
486         for (i = 0; i < 2; ++i)
487           for (options_pos = options.begin(), options_end = options.end();
488                options_pos != options_end; ++options_pos) {
489             if (i == 0 && ::islower(*options_pos))
490               continue;
491             if (i == 1 && ::isupper(*options_pos))
492               continue;
493             strm << (char)*options_pos;
494           }
495         strm.PutChar(']');
496       }
497 
498       // First go through and print the required options (list them up front).
499 
500       for (auto &def : opt_defs) {
501         if (def.usage_mask & opt_set_mask && isprint8(def.short_option)) {
502           if (def.required && def.option_has_arg != OptionParser::eNoArgument)
503             PrintOption(def, eDisplayBestOption, " ", nullptr, true, strm);
504         }
505       }
506 
507       // Now go through again, and this time only print the optional options.
508 
509       for (auto &def : opt_defs) {
510         if (def.usage_mask & opt_set_mask) {
511           // Add current option to the end of out_stream.
512 
513           if (!def.required && def.option_has_arg != OptionParser::eNoArgument)
514             PrintOption(def, eDisplayBestOption, " ", nullptr, true, strm);
515         }
516       }
517 
518       if (args_str.GetSize() > 0) {
519         if (cmd->WantsRawCommandString() && !only_print_args)
520           strm.Printf(" --");
521 
522         strm << " " << args_str.GetString();
523         if (only_print_args)
524           break;
525       }
526     }
527   }
528 
529   if (cmd && (only_print_args || cmd->WantsRawCommandString()) &&
530       arguments_str.GetSize() > 0) {
531     if (!only_print_args)
532       strm.PutChar('\n');
533     strm.Indent(name);
534     strm << " " << arguments_str.GetString();
535   }
536 
537   strm.Printf("\n\n");
538 
539   if (!only_print_args) {
540     // Now print out all the detailed information about the various options:
541     // long form, short form and help text:
542     //   -short <argument> ( --long_name <argument> )
543     //   help text
544 
545     // This variable is used to keep track of which options' info we've printed
546     // out, because some options can be in more than one usage level, but we
547     // only want to print the long form of its information once.
548 
549     std::multimap<int, uint32_t> options_seen;
550     strm.IndentMore(5);
551 
552     // Put the unique command options in a vector & sort it, so we can output
553     // them alphabetically (by short_option) when writing out detailed help for
554     // each option.
555 
556     i = 0;
557     for (auto &def : opt_defs)
558       options_seen.insert(std::make_pair(def.short_option, i++));
559 
560     // Go through the unique'd and alphabetically sorted vector of options,
561     // find the table entry for each option and write out the detailed help
562     // information for that option.
563 
564     bool first_option_printed = false;
565 
566     for (auto pos : options_seen) {
567       i = pos.second;
568       // Print out the help information for this option.
569 
570       // Put a newline separation between arguments
571       if (first_option_printed)
572         strm.EOL();
573       else
574         first_option_printed = true;
575 
576       CommandArgumentType arg_type = opt_defs[i].argument_type;
577 
578       StreamString arg_name_str;
579       arg_name_str.Printf("<%s>", CommandObject::GetArgumentName(arg_type));
580 
581       strm.Indent();
582       if (opt_defs[i].short_option && isprint8(opt_defs[i].short_option)) {
583         PrintOption(opt_defs[i], eDisplayShortOption, nullptr, nullptr, false,
584                     strm);
585         PrintOption(opt_defs[i], eDisplayLongOption, " ( ", " )", false, strm);
586       } else {
587         // Short option is not printable, just print long option
588         PrintOption(opt_defs[i], eDisplayLongOption, nullptr, nullptr, false,
589                     strm);
590       }
591       strm.EOL();
592 
593       strm.IndentMore(5);
594 
595       if (opt_defs[i].usage_text)
596         OutputFormattedUsageText(strm, opt_defs[i], screen_width);
597       if (!opt_defs[i].enum_values.empty()) {
598         strm.Indent();
599         strm.Printf("Values: ");
600         bool is_first = true;
601         for (const auto &enum_value : opt_defs[i].enum_values) {
602           if (is_first) {
603             strm.Printf("%s", enum_value.string_value);
604             is_first = false;
605           }
606           else
607             strm.Printf(" | %s", enum_value.string_value);
608         }
609         strm.EOL();
610       }
611       strm.IndentLess(5);
612     }
613   }
614 
615   // Restore the indent level
616   strm.SetIndentLevel(save_indent_level);
617 }
618 
619 // This function is called when we have been given a potentially incomplete set
620 // of options, such as when an alias has been defined (more options might be
621 // added at at the time the alias is invoked).  We need to verify that the
622 // options in the set m_seen_options are all part of a set that may be used
623 // together, but m_seen_options may be missing some of the "required" options.
624 
625 bool Options::VerifyPartialOptions(CommandReturnObject &result) {
626   bool options_are_valid = false;
627 
628   int num_levels = GetRequiredOptions().size();
629   if (num_levels) {
630     for (int i = 0; i < num_levels && !options_are_valid; ++i) {
631       // In this case we are treating all options as optional rather than
632       // required. Therefore a set of options is correct if m_seen_options is a
633       // subset of the union of m_required_options and m_optional_options.
634       OptionSet union_set;
635       OptionsSetUnion(GetRequiredOptions()[i], GetOptionalOptions()[i],
636                       union_set);
637       if (IsASubset(m_seen_options, union_set))
638         options_are_valid = true;
639     }
640   }
641 
642   return options_are_valid;
643 }
644 
645 bool Options::HandleOptionCompletion(CompletionRequest &request,
646                                      OptionElementVector &opt_element_vector,
647                                      CommandInterpreter &interpreter) {
648   // For now we just scan the completions to see if the cursor position is in
649   // an option or its argument.  Otherwise we'll call HandleArgumentCompletion.
650   // In the future we can use completion to validate options as well if we
651   // want.
652 
653   auto opt_defs = GetDefinitions();
654 
655   llvm::StringRef cur_opt_str = request.GetCursorArgumentPrefix();
656 
657   for (size_t i = 0; i < opt_element_vector.size(); i++) {
658     int opt_pos = opt_element_vector[i].opt_pos;
659     int opt_arg_pos = opt_element_vector[i].opt_arg_pos;
660     int opt_defs_index = opt_element_vector[i].opt_defs_index;
661     if (opt_pos == request.GetCursorIndex()) {
662       // We're completing the option itself.
663 
664       if (opt_defs_index == OptionArgElement::eBareDash) {
665         // We're completing a bare dash.  That means all options are open.
666         // FIXME: We should scan the other options provided and only complete
667         // options
668         // within the option group they belong to.
669         std::string opt_str = "-a";
670 
671         for (auto &def : opt_defs) {
672           if (!def.short_option)
673             continue;
674           opt_str[1] = def.short_option;
675           request.AddCompletion(opt_str, def.usage_text);
676         }
677 
678         return true;
679       } else if (opt_defs_index == OptionArgElement::eBareDoubleDash) {
680         std::string full_name("--");
681         for (auto &def : opt_defs) {
682           if (!def.short_option)
683             continue;
684 
685           full_name.erase(full_name.begin() + 2, full_name.end());
686           full_name.append(def.long_option);
687           request.AddCompletion(full_name, def.usage_text);
688         }
689         return true;
690       } else if (opt_defs_index != OptionArgElement::eUnrecognizedArg) {
691         // We recognized it, if it an incomplete long option, complete it
692         // anyway (getopt_long_only is happy with shortest unique string, but
693         // it's still a nice thing to do.)  Otherwise return The string so the
694         // upper level code will know this is a full match and add the " ".
695         const OptionDefinition &opt = opt_defs[opt_defs_index];
696         llvm::StringRef long_option = opt.long_option;
697         if (cur_opt_str.startswith("--") && cur_opt_str != long_option) {
698           request.AddCompletion("--" + long_option.str(), opt.usage_text);
699           return true;
700         } else
701           request.AddCompletion(request.GetCursorArgument());
702         return true;
703       } else {
704         // FIXME - not handling wrong options yet:
705         // Check to see if they are writing a long option & complete it.
706         // I think we will only get in here if the long option table has two
707         // elements
708         // that are not unique up to this point.  getopt_long_only does
709         // shortest unique match for long options already.
710         if (cur_opt_str.consume_front("--")) {
711           for (auto &def : opt_defs) {
712             llvm::StringRef long_option(def.long_option);
713             if (long_option.startswith(cur_opt_str))
714               request.AddCompletion("--" + long_option.str(), def.usage_text);
715           }
716         }
717         return true;
718       }
719 
720     } else if (opt_arg_pos == request.GetCursorIndex()) {
721       // Okay the cursor is on the completion of an argument. See if it has a
722       // completion, otherwise return no matches.
723 
724       CompletionRequest subrequest = request;
725       subrequest.SetCursorCharPosition(subrequest.GetCursorArgument().size());
726       if (opt_defs_index != -1) {
727         HandleOptionArgumentCompletion(subrequest, opt_element_vector, i,
728                                        interpreter);
729         return true;
730       } else {
731         // No completion callback means no completions...
732         return true;
733       }
734 
735     } else {
736       // Not the last element, keep going.
737       continue;
738     }
739   }
740   return false;
741 }
742 
743 void Options::HandleOptionArgumentCompletion(
744     CompletionRequest &request, OptionElementVector &opt_element_vector,
745     int opt_element_index, CommandInterpreter &interpreter) {
746   auto opt_defs = GetDefinitions();
747   std::unique_ptr<SearchFilter> filter_up;
748 
749   int opt_arg_pos = opt_element_vector[opt_element_index].opt_arg_pos;
750   int opt_defs_index = opt_element_vector[opt_element_index].opt_defs_index;
751 
752   // See if this is an enumeration type option, and if so complete it here:
753 
754   const auto &enum_values = opt_defs[opt_defs_index].enum_values;
755   if (!enum_values.empty()) {
756     std::string match_string(
757         request.GetParsedLine().GetArgumentAtIndex(opt_arg_pos),
758         request.GetParsedLine().GetArgumentAtIndex(opt_arg_pos) +
759             request.GetCursorCharPosition());
760 
761     for (const auto &enum_value : enum_values) {
762       if (strstr(enum_value.string_value, match_string.c_str()) ==
763           enum_value.string_value) {
764         request.AddCompletion(enum_value.string_value);
765       }
766     }
767   }
768 
769   // If this is a source file or symbol type completion, and  there is a -shlib
770   // option somewhere in the supplied arguments, then make a search filter for
771   // that shared library.
772   // FIXME: Do we want to also have an "OptionType" so we don't have to match
773   // string names?
774 
775   uint32_t completion_mask = opt_defs[opt_defs_index].completion_type;
776 
777   if (completion_mask == 0) {
778     lldb::CommandArgumentType option_arg_type =
779         opt_defs[opt_defs_index].argument_type;
780     if (option_arg_type != eArgTypeNone) {
781       const CommandObject::ArgumentTableEntry *arg_entry =
782           CommandObject::FindArgumentDataByType(
783               opt_defs[opt_defs_index].argument_type);
784       if (arg_entry)
785         completion_mask = arg_entry->completion_type;
786     }
787   }
788 
789   if (completion_mask & CommandCompletions::eSourceFileCompletion ||
790       completion_mask & CommandCompletions::eSymbolCompletion) {
791     for (size_t i = 0; i < opt_element_vector.size(); i++) {
792       int cur_defs_index = opt_element_vector[i].opt_defs_index;
793 
794       // trying to use <0 indices will definitely cause problems
795       if (cur_defs_index == OptionArgElement::eUnrecognizedArg ||
796           cur_defs_index == OptionArgElement::eBareDash ||
797           cur_defs_index == OptionArgElement::eBareDoubleDash)
798         continue;
799 
800       int cur_arg_pos = opt_element_vector[i].opt_arg_pos;
801       const char *cur_opt_name = opt_defs[cur_defs_index].long_option;
802 
803       // If this is the "shlib" option and there was an argument provided,
804       // restrict it to that shared library.
805       if (cur_opt_name && strcmp(cur_opt_name, "shlib") == 0 &&
806           cur_arg_pos != -1) {
807         const char *module_name =
808             request.GetParsedLine().GetArgumentAtIndex(cur_arg_pos);
809         if (module_name) {
810           FileSpec module_spec(module_name);
811           lldb::TargetSP target_sp =
812               interpreter.GetDebugger().GetSelectedTarget();
813           // Search filters require a target...
814           if (target_sp)
815             filter_up.reset(new SearchFilterByModule(target_sp, module_spec));
816         }
817         break;
818       }
819     }
820   }
821 
822   CommandCompletions::InvokeCommonCompletionCallbacks(
823       interpreter, completion_mask, request, filter_up.get());
824 }
825 
826 void OptionGroupOptions::Append(OptionGroup *group) {
827   auto group_option_defs = group->GetDefinitions();
828   for (uint32_t i = 0; i < group_option_defs.size(); ++i) {
829     m_option_infos.push_back(OptionInfo(group, i));
830     m_option_defs.push_back(group_option_defs[i]);
831   }
832 }
833 
834 const OptionGroup *OptionGroupOptions::GetGroupWithOption(char short_opt) {
835   for (uint32_t i = 0; i < m_option_defs.size(); i++) {
836     OptionDefinition opt_def = m_option_defs[i];
837     if (opt_def.short_option == short_opt)
838       return m_option_infos[i].option_group;
839   }
840   return nullptr;
841 }
842 
843 void OptionGroupOptions::Append(OptionGroup *group, uint32_t src_mask,
844                                 uint32_t dst_mask) {
845   auto group_option_defs = group->GetDefinitions();
846   for (uint32_t i = 0; i < group_option_defs.size(); ++i) {
847     if (group_option_defs[i].usage_mask & src_mask) {
848       m_option_infos.push_back(OptionInfo(group, i));
849       m_option_defs.push_back(group_option_defs[i]);
850       m_option_defs.back().usage_mask = dst_mask;
851     }
852   }
853 }
854 
855 void OptionGroupOptions::Finalize() {
856   m_did_finalize = true;
857 }
858 
859 Status OptionGroupOptions::SetOptionValue(uint32_t option_idx,
860                                           llvm::StringRef option_value,
861                                           ExecutionContext *execution_context) {
862   // After calling OptionGroupOptions::Append(...), you must finalize the
863   // groups by calling OptionGroupOptions::Finlize()
864   assert(m_did_finalize);
865   Status error;
866   if (option_idx < m_option_infos.size()) {
867     error = m_option_infos[option_idx].option_group->SetOptionValue(
868         m_option_infos[option_idx].option_index, option_value,
869         execution_context);
870 
871   } else {
872     error.SetErrorString("invalid option index"); // Shouldn't happen...
873   }
874   return error;
875 }
876 
877 void OptionGroupOptions::OptionParsingStarting(
878     ExecutionContext *execution_context) {
879   std::set<OptionGroup *> group_set;
880   OptionInfos::iterator pos, end = m_option_infos.end();
881   for (pos = m_option_infos.begin(); pos != end; ++pos) {
882     OptionGroup *group = pos->option_group;
883     if (group_set.find(group) == group_set.end()) {
884       group->OptionParsingStarting(execution_context);
885       group_set.insert(group);
886     }
887   }
888 }
889 Status
890 OptionGroupOptions::OptionParsingFinished(ExecutionContext *execution_context) {
891   std::set<OptionGroup *> group_set;
892   Status error;
893   OptionInfos::iterator pos, end = m_option_infos.end();
894   for (pos = m_option_infos.begin(); pos != end; ++pos) {
895     OptionGroup *group = pos->option_group;
896     if (group_set.find(group) == group_set.end()) {
897       error = group->OptionParsingFinished(execution_context);
898       group_set.insert(group);
899       if (error.Fail())
900         return error;
901     }
902   }
903   return error;
904 }
905 
906 // OptionParser permutes the arguments while processing them, so we create a
907 // temporary array holding to avoid modification of the input arguments. The
908 // options themselves are never modified, but the API expects a char * anyway,
909 // hence the const_cast.
910 static std::vector<char *> GetArgvForParsing(const Args &args) {
911   std::vector<char *> result;
912   // OptionParser always skips the first argument as it is based on getopt().
913   result.push_back(const_cast<char *>("<FAKE-ARG0>"));
914   for (const Args::ArgEntry &entry : args)
915     result.push_back(const_cast<char *>(entry.c_str()));
916   result.push_back(nullptr);
917   return result;
918 }
919 
920 // Given a permuted argument, find it's position in the original Args vector.
921 static Args::const_iterator FindOriginalIter(const char *arg,
922                                              const Args &original) {
923   return llvm::find_if(
924       original, [arg](const Args::ArgEntry &D) { return D.c_str() == arg; });
925 }
926 
927 // Given a permuted argument, find it's index in the original Args vector.
928 static size_t FindOriginalIndex(const char *arg, const Args &original) {
929   return std::distance(original.begin(), FindOriginalIter(arg, original));
930 }
931 
932 // Construct a new Args object, consisting of the entries from the original
933 // arguments, but in the permuted order.
934 static Args ReconstituteArgsAfterParsing(llvm::ArrayRef<char *> parsed,
935                                          const Args &original) {
936   Args result;
937   for (const char *arg : parsed) {
938     auto pos = FindOriginalIter(arg, original);
939     assert(pos != original.end());
940     result.AppendArgument(pos->ref(), pos->GetQuoteChar());
941   }
942   return result;
943 }
944 
945 static size_t FindArgumentIndexForOption(const Args &args,
946                                          const Option &long_option) {
947   std::string short_opt = llvm::formatv("-{0}", char(long_option.val)).str();
948   std::string long_opt =
949       llvm::formatv("--{0}", long_option.definition->long_option);
950   for (const auto &entry : llvm::enumerate(args)) {
951     if (entry.value().ref().startswith(short_opt) ||
952         entry.value().ref().startswith(long_opt))
953       return entry.index();
954   }
955 
956   return size_t(-1);
957 }
958 
959 static std::string BuildShortOptions(const Option *long_options) {
960   std::string storage;
961   llvm::raw_string_ostream sstr(storage);
962 
963   // Leading : tells getopt to return a : for a missing option argument AND to
964   // suppress error messages.
965   sstr << ":";
966 
967   for (size_t i = 0; long_options[i].definition != nullptr; ++i) {
968     if (long_options[i].flag == nullptr) {
969       sstr << (char)long_options[i].val;
970       switch (long_options[i].definition->option_has_arg) {
971       default:
972       case OptionParser::eNoArgument:
973         break;
974       case OptionParser::eRequiredArgument:
975         sstr << ":";
976         break;
977       case OptionParser::eOptionalArgument:
978         sstr << "::";
979         break;
980       }
981     }
982   }
983   return std::move(sstr.str());
984 }
985 
986 llvm::Expected<Args> Options::ParseAlias(const Args &args,
987                                          OptionArgVector *option_arg_vector,
988                                          std::string &input_line) {
989   Option *long_options = GetLongOptions();
990 
991   if (long_options == nullptr) {
992     return llvm::make_error<llvm::StringError>("Invalid long options",
993                                                llvm::inconvertibleErrorCode());
994   }
995 
996   std::string short_options = BuildShortOptions(long_options);
997 
998   Args args_copy = args;
999   std::vector<char *> argv = GetArgvForParsing(args);
1000 
1001   std::unique_lock<std::mutex> lock;
1002   OptionParser::Prepare(lock);
1003   int val;
1004   while (true) {
1005     int long_options_index = -1;
1006     val = OptionParser::Parse(argv, short_options, long_options,
1007                               &long_options_index);
1008 
1009     if (val == ':') {
1010       return llvm::createStringError(llvm::inconvertibleErrorCode(),
1011                                      "last option requires an argument");
1012     }
1013 
1014     if (val == -1)
1015       break;
1016 
1017     if (val == '?') {
1018       return llvm::make_error<llvm::StringError>(
1019           "Unknown or ambiguous option", llvm::inconvertibleErrorCode());
1020     }
1021 
1022     if (val == 0)
1023       continue;
1024 
1025     OptionSeen(val);
1026 
1027     // Look up the long option index
1028     if (long_options_index == -1) {
1029       for (int j = 0; long_options[j].definition || long_options[j].flag ||
1030                       long_options[j].val;
1031            ++j) {
1032         if (long_options[j].val == val) {
1033           long_options_index = j;
1034           break;
1035         }
1036       }
1037     }
1038 
1039     // See if the option takes an argument, and see if one was supplied.
1040     if (long_options_index == -1) {
1041       return llvm::make_error<llvm::StringError>(
1042           llvm::formatv("Invalid option with value '{0}'.", char(val)).str(),
1043           llvm::inconvertibleErrorCode());
1044     }
1045 
1046     StreamString option_str;
1047     option_str.Printf("-%c", val);
1048     const OptionDefinition *def = long_options[long_options_index].definition;
1049     int has_arg =
1050         (def == nullptr) ? OptionParser::eNoArgument : def->option_has_arg;
1051 
1052     const char *option_arg = nullptr;
1053     switch (has_arg) {
1054     case OptionParser::eRequiredArgument:
1055       if (OptionParser::GetOptionArgument() == nullptr) {
1056         return llvm::make_error<llvm::StringError>(
1057             llvm::formatv("Option '{0}' is missing argument specifier.",
1058                           option_str.GetString())
1059                 .str(),
1060             llvm::inconvertibleErrorCode());
1061       }
1062       LLVM_FALLTHROUGH;
1063     case OptionParser::eOptionalArgument:
1064       option_arg = OptionParser::GetOptionArgument();
1065       LLVM_FALLTHROUGH;
1066     case OptionParser::eNoArgument:
1067       break;
1068     default:
1069       return llvm::make_error<llvm::StringError>(
1070           llvm::formatv("error with options table; invalid value in has_arg "
1071                         "field for option '{0}'.",
1072                         char(val))
1073               .str(),
1074           llvm::inconvertibleErrorCode());
1075     }
1076     if (!option_arg)
1077       option_arg = "<no-argument>";
1078     option_arg_vector->emplace_back(option_str.GetString(), has_arg,
1079                                     option_arg);
1080 
1081     // Find option in the argument list; also see if it was supposed to take an
1082     // argument and if one was supplied.  Remove option (and argument, if
1083     // given) from the argument list.  Also remove them from the
1084     // raw_input_string, if one was passed in.
1085     size_t idx =
1086         FindArgumentIndexForOption(args_copy, long_options[long_options_index]);
1087     if (idx == size_t(-1))
1088       continue;
1089 
1090     if (!input_line.empty()) {
1091       auto tmp_arg = args_copy[idx].ref();
1092       size_t pos = input_line.find(tmp_arg);
1093       if (pos != std::string::npos)
1094         input_line.erase(pos, tmp_arg.size());
1095     }
1096     args_copy.DeleteArgumentAtIndex(idx);
1097     if ((long_options[long_options_index].definition->option_has_arg !=
1098          OptionParser::eNoArgument) &&
1099         (OptionParser::GetOptionArgument() != nullptr) &&
1100         (idx < args_copy.GetArgumentCount()) &&
1101         (args_copy[idx].ref() == OptionParser::GetOptionArgument())) {
1102       if (input_line.size() > 0) {
1103         auto tmp_arg = args_copy[idx].ref();
1104         size_t pos = input_line.find(tmp_arg);
1105         if (pos != std::string::npos)
1106           input_line.erase(pos, tmp_arg.size());
1107       }
1108       args_copy.DeleteArgumentAtIndex(idx);
1109     }
1110   }
1111 
1112   return std::move(args_copy);
1113 }
1114 
1115 OptionElementVector Options::ParseForCompletion(const Args &args,
1116                                                 uint32_t cursor_index) {
1117   OptionElementVector option_element_vector;
1118   Option *long_options = GetLongOptions();
1119   option_element_vector.clear();
1120 
1121   if (long_options == nullptr)
1122     return option_element_vector;
1123 
1124   std::string short_options = BuildShortOptions(long_options);
1125 
1126   std::unique_lock<std::mutex> lock;
1127   OptionParser::Prepare(lock);
1128   OptionParser::EnableError(false);
1129 
1130   int val;
1131   auto opt_defs = GetDefinitions();
1132 
1133   std::vector<char *> dummy_vec = GetArgvForParsing(args);
1134 
1135   bool failed_once = false;
1136   uint32_t dash_dash_pos = -1;
1137 
1138   while (true) {
1139     bool missing_argument = false;
1140     int long_options_index = -1;
1141 
1142     val = OptionParser::Parse(dummy_vec, short_options, long_options,
1143                               &long_options_index);
1144 
1145     if (val == -1) {
1146       // When we're completing a "--" which is the last option on line,
1147       if (failed_once)
1148         break;
1149 
1150       failed_once = true;
1151 
1152       // If this is a bare  "--" we mark it as such so we can complete it
1153       // successfully later.  Handling the "--" is a little tricky, since that
1154       // may mean end of options or arguments, or the user might want to
1155       // complete options by long name.  I make this work by checking whether
1156       // the cursor is in the "--" argument, and if so I assume we're
1157       // completing the long option, otherwise I let it pass to
1158       // OptionParser::Parse which will terminate the option parsing.  Note, in
1159       // either case we continue parsing the line so we can figure out what
1160       // other options were passed.  This will be useful when we come to
1161       // restricting completions based on what other options we've seen on the
1162       // line.
1163 
1164       if (static_cast<size_t>(OptionParser::GetOptionIndex()) <
1165               dummy_vec.size() &&
1166           (strcmp(dummy_vec[OptionParser::GetOptionIndex() - 1], "--") == 0)) {
1167         dash_dash_pos = FindOriginalIndex(
1168             dummy_vec[OptionParser::GetOptionIndex() - 1], args);
1169         if (dash_dash_pos == cursor_index) {
1170           option_element_vector.push_back(
1171               OptionArgElement(OptionArgElement::eBareDoubleDash, dash_dash_pos,
1172                                OptionArgElement::eBareDoubleDash));
1173           continue;
1174         } else
1175           break;
1176       } else
1177         break;
1178     } else if (val == '?') {
1179       option_element_vector.push_back(OptionArgElement(
1180           OptionArgElement::eUnrecognizedArg,
1181           FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1182                             args),
1183           OptionArgElement::eUnrecognizedArg));
1184       continue;
1185     } else if (val == 0) {
1186       continue;
1187     } else if (val == ':') {
1188       // This is a missing argument.
1189       val = OptionParser::GetOptionErrorCause();
1190       missing_argument = true;
1191     }
1192 
1193     OptionSeen(val);
1194 
1195     // Look up the long option index
1196     if (long_options_index == -1) {
1197       for (int j = 0; long_options[j].definition || long_options[j].flag ||
1198                       long_options[j].val;
1199            ++j) {
1200         if (long_options[j].val == val) {
1201           long_options_index = j;
1202           break;
1203         }
1204       }
1205     }
1206 
1207     // See if the option takes an argument, and see if one was supplied.
1208     if (long_options_index >= 0) {
1209       int opt_defs_index = -1;
1210       for (size_t i = 0; i < opt_defs.size(); i++) {
1211         if (opt_defs[i].short_option != val)
1212           continue;
1213         opt_defs_index = i;
1214         break;
1215       }
1216 
1217       const OptionDefinition *def = long_options[long_options_index].definition;
1218       int has_arg =
1219           (def == nullptr) ? OptionParser::eNoArgument : def->option_has_arg;
1220       switch (has_arg) {
1221       case OptionParser::eNoArgument:
1222         option_element_vector.push_back(OptionArgElement(
1223             opt_defs_index,
1224             FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1225                               args),
1226             0));
1227         break;
1228       case OptionParser::eRequiredArgument:
1229         if (OptionParser::GetOptionArgument() != nullptr) {
1230           int arg_index;
1231           if (missing_argument)
1232             arg_index = -1;
1233           else
1234             arg_index = OptionParser::GetOptionIndex() - 2;
1235 
1236           option_element_vector.push_back(OptionArgElement(
1237               opt_defs_index,
1238               FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 2],
1239                                 args),
1240               arg_index));
1241         } else {
1242           option_element_vector.push_back(OptionArgElement(
1243               opt_defs_index,
1244               FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1245                                 args),
1246               -1));
1247         }
1248         break;
1249       case OptionParser::eOptionalArgument:
1250         if (OptionParser::GetOptionArgument() != nullptr) {
1251           option_element_vector.push_back(OptionArgElement(
1252               opt_defs_index,
1253               FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 2],
1254                                 args),
1255               FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1256                                 args)));
1257         } else {
1258           option_element_vector.push_back(OptionArgElement(
1259               opt_defs_index,
1260               FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 2],
1261                                 args),
1262               FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1263                                 args)));
1264         }
1265         break;
1266       default:
1267         // The options table is messed up.  Here we'll just continue
1268         option_element_vector.push_back(OptionArgElement(
1269             OptionArgElement::eUnrecognizedArg,
1270             FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1271                               args),
1272             OptionArgElement::eUnrecognizedArg));
1273         break;
1274       }
1275     } else {
1276       option_element_vector.push_back(OptionArgElement(
1277           OptionArgElement::eUnrecognizedArg,
1278           FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
1279                             args),
1280           OptionArgElement::eUnrecognizedArg));
1281     }
1282   }
1283 
1284   // Finally we have to handle the case where the cursor index points at a
1285   // single "-".  We want to mark that in the option_element_vector, but only
1286   // if it is not after the "--".  But it turns out that OptionParser::Parse
1287   // just ignores an isolated "-".  So we have to look it up by hand here.  We
1288   // only care if it is AT the cursor position. Note, a single quoted dash is
1289   // not the same as a single dash...
1290 
1291   const Args::ArgEntry &cursor = args[cursor_index];
1292   if ((static_cast<int32_t>(dash_dash_pos) == -1 ||
1293        cursor_index < dash_dash_pos) &&
1294       !cursor.IsQuoted() && cursor.ref() == "-") {
1295     option_element_vector.push_back(
1296         OptionArgElement(OptionArgElement::eBareDash, cursor_index,
1297                          OptionArgElement::eBareDash));
1298   }
1299   return option_element_vector;
1300 }
1301 
1302 llvm::Expected<Args> Options::Parse(const Args &args,
1303                                     ExecutionContext *execution_context,
1304                                     lldb::PlatformSP platform_sp,
1305                                     bool require_validation) {
1306   Status error;
1307   Option *long_options = GetLongOptions();
1308   if (long_options == nullptr) {
1309     return llvm::make_error<llvm::StringError>("Invalid long options.",
1310                                                llvm::inconvertibleErrorCode());
1311   }
1312 
1313   std::string short_options = BuildShortOptions(long_options);
1314   std::vector<char *> argv = GetArgvForParsing(args);
1315   std::unique_lock<std::mutex> lock;
1316   OptionParser::Prepare(lock);
1317   int val;
1318   while (true) {
1319     int long_options_index = -1;
1320     val = OptionParser::Parse(argv, short_options, long_options,
1321                               &long_options_index);
1322 
1323     if (val == ':') {
1324       error.SetErrorStringWithFormat("last option requires an argument");
1325       break;
1326     }
1327 
1328     if (val == -1)
1329       break;
1330 
1331     // Did we get an error?
1332     if (val == '?') {
1333       error.SetErrorStringWithFormat("unknown or ambiguous option");
1334       break;
1335     }
1336     // The option auto-set itself
1337     if (val == 0)
1338       continue;
1339 
1340     OptionSeen(val);
1341 
1342     // Lookup the long option index
1343     if (long_options_index == -1) {
1344       for (int i = 0; long_options[i].definition || long_options[i].flag ||
1345                       long_options[i].val;
1346            ++i) {
1347         if (long_options[i].val == val) {
1348           long_options_index = i;
1349           break;
1350         }
1351       }
1352     }
1353     // Call the callback with the option
1354     if (long_options_index >= 0 &&
1355         long_options[long_options_index].definition) {
1356       const OptionDefinition *def = long_options[long_options_index].definition;
1357 
1358       if (!platform_sp) {
1359         // User did not pass in an explicit platform.  Try to grab from the
1360         // execution context.
1361         TargetSP target_sp =
1362             execution_context ? execution_context->GetTargetSP() : TargetSP();
1363         platform_sp = target_sp ? target_sp->GetPlatform() : PlatformSP();
1364       }
1365       OptionValidator *validator = def->validator;
1366 
1367       if (!platform_sp && require_validation) {
1368         // Caller requires validation but we cannot validate as we don't have
1369         // the mandatory platform against which to validate.
1370         return llvm::make_error<llvm::StringError>(
1371             "cannot validate options: no platform available",
1372             llvm::inconvertibleErrorCode());
1373       }
1374 
1375       bool validation_failed = false;
1376       if (platform_sp) {
1377         // Ensure we have an execution context, empty or not.
1378         ExecutionContext dummy_context;
1379         ExecutionContext *exe_ctx_p =
1380             execution_context ? execution_context : &dummy_context;
1381         if (validator && !validator->IsValid(*platform_sp, *exe_ctx_p)) {
1382           validation_failed = true;
1383           error.SetErrorStringWithFormat("Option \"%s\" invalid.  %s",
1384                                          def->long_option,
1385                                          def->validator->LongConditionString());
1386         }
1387       }
1388 
1389       // As long as validation didn't fail, we set the option value.
1390       if (!validation_failed)
1391         error =
1392             SetOptionValue(long_options_index,
1393                            (def->option_has_arg == OptionParser::eNoArgument)
1394                                ? nullptr
1395                                : OptionParser::GetOptionArgument(),
1396                            execution_context);
1397     } else {
1398       error.SetErrorStringWithFormat("invalid option with value '%i'", val);
1399     }
1400   }
1401 
1402   if (error.Fail())
1403     return error.ToError();
1404 
1405   argv.pop_back();
1406   argv.erase(argv.begin(), argv.begin() + OptionParser::GetOptionIndex());
1407   return ReconstituteArgsAfterParsing(argv, args);
1408 }
1409