#include "lldb/Interpreter/Options.h"
#include <algorithm>
#include <bitset>
#include <map>
#include <set>
#include "lldb/Host/OptionParser.h"
#include "lldb/Interpreter/CommandCompletions.h"
#include "lldb/Interpreter/CommandInterpreter.h"
#include "lldb/Interpreter/CommandObject.h"
#include "lldb/Interpreter/CommandReturnObject.h"
#include "lldb/Target/Target.h"
#include "lldb/Utility/StreamString.h"
#include "llvm/ADT/STLExtras.h"
using namespace lldb;
using namespace lldb_private;
Options::Options() { BuildValidOptionSets(); }
Options::~Options() = default;
void Options::NotifyOptionParsingStarting(ExecutionContext *execution_context) {
m_seen_options.clear();
OptionParsingStarting(execution_context);
}
Status
Options::NotifyOptionParsingFinished(ExecutionContext *execution_context) {
return OptionParsingFinished(execution_context);
}
void Options::OptionSeen(int option_idx) { m_seen_options.insert(option_idx); }
bool Options::IsASubset(const OptionSet &set_a, const OptionSet &set_b) {
bool is_a_subset = true;
OptionSet::const_iterator pos_a;
OptionSet::const_iterator pos_b;
for (pos_a = set_a.begin(); pos_a != set_a.end() && is_a_subset; ++pos_a) {
pos_b = set_b.find(*pos_a);
if (pos_b == set_b.end())
is_a_subset = false;
}
return is_a_subset;
}
size_t Options::OptionsSetDiff(const OptionSet &set_a, const OptionSet &set_b,
OptionSet &diffs) {
size_t num_diffs = 0;
OptionSet::const_iterator pos_a;
OptionSet::const_iterator pos_b;
for (pos_a = set_a.begin(); pos_a != set_a.end(); ++pos_a) {
pos_b = set_b.find(*pos_a);
if (pos_b == set_b.end()) {
++num_diffs;
diffs.insert(*pos_a);
}
}
return num_diffs;
}
void Options::OptionsSetUnion(const OptionSet &set_a, const OptionSet &set_b,
OptionSet &union_set) {
OptionSet::const_iterator pos;
OptionSet::iterator pos_union;
for (pos = set_a.begin(); pos != set_a.end(); ++pos)
union_set.insert(*pos);
for (pos = set_b.begin(); pos != set_b.end(); ++pos) {
pos_union = union_set.find(*pos);
if (pos_union == union_set.end())
union_set.insert(*pos);
}
}
bool Options::VerifyOptions(CommandReturnObject &result) {
bool options_are_valid = false;
int num_levels = GetRequiredOptions().size();
if (num_levels) {
for (int i = 0; i < num_levels && !options_are_valid; ++i) {
if (IsASubset(GetRequiredOptions()[i], m_seen_options)) {
OptionSet remaining_options;
OptionsSetDiff(m_seen_options, GetRequiredOptions()[i],
remaining_options);
if (IsASubset(remaining_options, GetOptionalOptions()[i]))
options_are_valid = true;
}
}
} else {
options_are_valid = true;
}
if (options_are_valid) {
result.SetStatus(eReturnStatusSuccessFinishNoResult);
} else {
result.AppendError("invalid combination of options for the given command");
}
return options_are_valid;
}
void Options::BuildValidOptionSets() {
if (m_required_options.size() != 0)
return;
int num_options = NumCommandOptions();
if (num_options == 0)
return;
auto opt_defs = GetDefinitions();
m_required_options.resize(1);
m_optional_options.resize(1);
uint32_t num_option_sets = 0;
for (const auto &def : opt_defs) {
uint32_t this_usage_mask = def.usage_mask;
if (this_usage_mask == LLDB_OPT_SET_ALL) {
if (num_option_sets == 0)
num_option_sets = 1;
} else {
for (uint32_t j = 0; j < LLDB_MAX_NUM_OPTION_SETS; j++) {
if (this_usage_mask & (1 << j)) {
if (num_option_sets <= j)
num_option_sets = j + 1;
}
}
}
}
if (num_option_sets > 0) {
m_required_options.resize(num_option_sets);
m_optional_options.resize(num_option_sets);
for (const auto &def : opt_defs) {
for (uint32_t j = 0; j < num_option_sets; j++) {
if (def.usage_mask & 1 << j) {
if (def.required)
m_required_options[j].insert(def.short_option);
else
m_optional_options[j].insert(def.short_option);
}
}
}
}
}
uint32_t Options::NumCommandOptions() { return GetDefinitions().size(); }
Option *Options::GetLongOptions() {
if (m_getopt_table.empty()) {
auto defs = GetDefinitions();
if (defs.empty())
return nullptr;
std::map<int, uint32_t> option_seen;
m_getopt_table.resize(defs.size() + 1);
for (size_t i = 0; i < defs.size(); ++i) {
const int short_opt = defs[i].short_option;
m_getopt_table[i].definition = &defs[i];
m_getopt_table[i].flag = nullptr;
m_getopt_table[i].val = short_opt;
if (option_seen.find(short_opt) == option_seen.end()) {
option_seen[short_opt] = i;
} else if (short_opt) {
m_getopt_table[i].val = 0;
std::map<int, uint32_t>::const_iterator pos =
option_seen.find(short_opt);
StreamString strm;
if (defs[i].HasShortOption())
Debugger::ReportError(
llvm::formatv(
"option[{0}] --{1} has a short option -{2} that "
"conflicts with option[{3}] --{4}, short option won't "
"be used for --{5}",
i, defs[i].long_option, short_opt, pos->second,
m_getopt_table[pos->second].definition->long_option,
defs[i].long_option)
.str());
else
Debugger::ReportError(
llvm::formatv(
"option[{0}] --{1} has a short option {2:x} that "
"conflicts with option[{3}] --{4}, short option won't "
"be used for --{5}",
(int)i, defs[i].long_option, short_opt, pos->second,
m_getopt_table[pos->second].definition->long_option,
defs[i].long_option)
.str());
}
}
m_getopt_table.back().definition = nullptr;
m_getopt_table.back().flag = nullptr;
m_getopt_table.back().val = 0;
}
if (m_getopt_table.empty())
return nullptr;
return &m_getopt_table.front();
}
void Options::OutputFormattedUsageText(Stream &strm,
const OptionDefinition &option_def,
uint32_t output_max_columns) {
std::string actual_text;
if (option_def.validator) {
const char *condition = option_def.validator->ShortConditionString();
if (condition) {
actual_text = "[";
actual_text.append(condition);
actual_text.append("] ");
}
}
actual_text.append(option_def.usage_text);
if (static_cast<uint32_t>(actual_text.length() + strm.GetIndentLevel()) <
output_max_columns) {
strm.Indent(actual_text);
strm.EOL();
} else {
int text_width = output_max_columns - strm.GetIndentLevel() - 1;
int start = 0;
int end = start;
int final_end = actual_text.length();
int sub_len;
while (end < final_end) {
while ((start < final_end) && (actual_text[start] == ' '))
start++;
end = start + text_width;
if (end > final_end)
end = final_end;
else {
while (end > start && actual_text[end] != ' ' &&
actual_text[end] != '\t' && actual_text[end] != '\n')
end--;
}
sub_len = end - start;
if (start != 0)
strm.EOL();
strm.Indent();
assert(start < final_end);
assert(start + sub_len <= final_end);
strm.Write(actual_text.c_str() + start, sub_len);
start = end + 1;
}
strm.EOL();
}
}
bool Options::SupportsLongOption(const char *long_option) {
if (!long_option || !long_option[0])
return false;
auto opt_defs = GetDefinitions();
if (opt_defs.empty())
return false;
const char *long_option_name = long_option;
if (long_option[0] == '-' && long_option[1] == '-')
long_option_name += 2;
for (auto &def : opt_defs) {
if (!def.long_option)
continue;
if (strcmp(def.long_option, long_option_name) == 0)
return true;
}
return false;
}
enum OptionDisplayType {
eDisplayBestOption,
eDisplayShortOption,
eDisplayLongOption
};
static bool PrintOption(const OptionDefinition &opt_def,
OptionDisplayType display_type, const char *header,
const char *footer, bool show_optional, Stream &strm) {
if (display_type == eDisplayShortOption && !opt_def.HasShortOption())
return false;
if (header && header[0])
strm.PutCString(header);
if (show_optional && !opt_def.required)
strm.PutChar('[');
const bool show_short_option =
opt_def.HasShortOption() && display_type != eDisplayLongOption;
if (show_short_option)
strm.Printf("-%c", opt_def.short_option);
else
strm.Printf("--%s", opt_def.long_option);
switch (opt_def.option_has_arg) {
case OptionParser::eNoArgument:
break;
case OptionParser::eRequiredArgument:
strm.Printf(" <%s>", CommandObject::GetArgumentName(opt_def.argument_type));
break;
case OptionParser::eOptionalArgument:
strm.Printf("%s[<%s>]", show_short_option ? "" : "=",
CommandObject::GetArgumentName(opt_def.argument_type));
break;
}
if (show_optional && !opt_def.required)
strm.PutChar(']');
if (footer && footer[0])
strm.PutCString(footer);
return true;
}
void Options::GenerateOptionUsage(Stream &strm, CommandObject &cmd,
uint32_t screen_width) {
auto opt_defs = GetDefinitions();
const uint32_t save_indent_level = strm.GetIndentLevel();
llvm::StringRef name = cmd.GetCommandName();
StreamString arguments_str;
cmd.GetFormattedCommandArguments(arguments_str);
const uint32_t num_options = NumCommandOptions();
if (num_options == 0)
return;
const bool only_print_args = cmd.IsDashDashCommand();
if (!only_print_args)
strm.PutCString("\nCommand Options Usage:\n");
strm.IndentMore(2);
if (!only_print_args) {
uint32_t num_option_sets = GetRequiredOptions().size();
for (uint32_t opt_set = 0; opt_set < num_option_sets; ++opt_set) {
if (opt_set > 0)
strm.Printf("\n");
strm.Indent(name);
StreamString args_str;
uint32_t opt_set_mask = 1 << opt_set;
cmd.GetFormattedCommandArguments(args_str, opt_set_mask);
std::set<int> required_options;
std::set<int> optional_options;
for (auto &def : opt_defs) {
if (def.usage_mask & opt_set_mask && def.HasShortOption() &&
def.option_has_arg == OptionParser::eNoArgument) {
if (def.required) {
required_options.insert(def.short_option);
} else {
optional_options.insert(def.short_option);
}
}
}
if (!required_options.empty()) {
strm.PutCString(" -");
for (int short_option : required_options)
strm.PutChar(short_option);
}
if (!optional_options.empty()) {
strm.PutCString(" [-");
for (int short_option : optional_options)
strm.PutChar(short_option);
strm.PutChar(']');
}
for (auto &def : opt_defs) {
if (def.usage_mask & opt_set_mask && def.HasShortOption() &&
def.required && def.option_has_arg != OptionParser::eNoArgument)
PrintOption(def, eDisplayBestOption, " ", nullptr, true, strm);
}
for (auto &def : opt_defs) {
if (def.usage_mask & opt_set_mask && !def.required &&
def.option_has_arg != OptionParser::eNoArgument)
PrintOption(def, eDisplayBestOption, " ", nullptr, true, strm);
}
if (args_str.GetSize() > 0) {
if (cmd.WantsRawCommandString())
strm.Printf(" --");
strm << " " << args_str.GetString();
}
}
}
if ((only_print_args || cmd.WantsRawCommandString()) &&
arguments_str.GetSize() > 0) {
if (!only_print_args)
strm.PutChar('\n');
strm.Indent(name);
strm << " " << arguments_str.GetString();
}
if (!only_print_args) {
strm.Printf("\n\n");
strm.IndentMore(5);
std::multimap<int, uint32_t> options_ordered;
for (auto def : llvm::enumerate(opt_defs))
options_ordered.insert(
std::make_pair(def.value().short_option, def.index()));
bool first_option_printed = false;
for (auto pos : options_ordered) {
if (first_option_printed)
strm.EOL();
else
first_option_printed = true;
OptionDefinition opt_def = opt_defs[pos.second];
strm.Indent();
if (opt_def.short_option && opt_def.HasShortOption()) {
PrintOption(opt_def, eDisplayShortOption, nullptr, nullptr, false,
strm);
PrintOption(opt_def, eDisplayLongOption, " ( ", " )", false, strm);
} else {
PrintOption(opt_def, eDisplayLongOption, nullptr, nullptr, false, strm);
}
strm.EOL();
strm.IndentMore(5);
if (opt_def.usage_text)
OutputFormattedUsageText(strm, opt_def, screen_width);
if (!opt_def.enum_values.empty()) {
strm.Indent();
strm.Printf("Values: ");
bool is_first = true;
for (const auto &enum_value : opt_def.enum_values) {
if (is_first) {
strm.Printf("%s", enum_value.string_value);
is_first = false;
}
else
strm.Printf(" | %s", enum_value.string_value);
}
strm.EOL();
}
strm.IndentLess(5);
}
}
strm.SetIndentLevel(save_indent_level);
}
bool Options::VerifyPartialOptions(CommandReturnObject &result) {
bool options_are_valid = false;
int num_levels = GetRequiredOptions().size();
if (num_levels) {
for (int i = 0; i < num_levels && !options_are_valid; ++i) {
OptionSet union_set;
OptionsSetUnion(GetRequiredOptions()[i], GetOptionalOptions()[i],
union_set);
if (IsASubset(m_seen_options, union_set))
options_are_valid = true;
}
}
return options_are_valid;
}
bool Options::HandleOptionCompletion(CompletionRequest &request,
OptionElementVector &opt_element_vector,
CommandInterpreter &interpreter) {
auto opt_defs = GetDefinitions();
llvm::StringRef cur_opt_str = request.GetCursorArgumentPrefix();
for (size_t i = 0; i < opt_element_vector.size(); i++) {
size_t opt_pos = static_cast<size_t>(opt_element_vector[i].opt_pos);
size_t opt_arg_pos = static_cast<size_t>(opt_element_vector[i].opt_arg_pos);
int opt_defs_index = opt_element_vector[i].opt_defs_index;
if (opt_pos == request.GetCursorIndex()) {
if (opt_defs_index == OptionArgElement::eBareDash) {
std::string opt_str = "-a";
for (auto &def : opt_defs) {
if (!def.short_option)
continue;
opt_str[1] = def.short_option;
request.AddCompletion(opt_str, def.usage_text);
}
return true;
} else if (opt_defs_index == OptionArgElement::eBareDoubleDash) {
std::string full_name("--");
for (auto &def : opt_defs) {
if (!def.short_option)
continue;
full_name.erase(full_name.begin() + 2, full_name.end());
full_name.append(def.long_option);
request.AddCompletion(full_name, def.usage_text);
}
return true;
} else if (opt_defs_index != OptionArgElement::eUnrecognizedArg) {
const OptionDefinition &opt = opt_defs[opt_defs_index];
llvm::StringRef long_option = opt.long_option;
if (cur_opt_str.starts_with("--") && cur_opt_str != long_option) {
request.AddCompletion("--" + long_option.str(), opt.usage_text);
return true;
} else
request.AddCompletion(request.GetCursorArgumentPrefix());
return true;
} else {
if (cur_opt_str.consume_front("--")) {
for (auto &def : opt_defs) {
llvm::StringRef long_option(def.long_option);
if (long_option.starts_with(cur_opt_str))
request.AddCompletion("--" + long_option.str(), def.usage_text);
}
}
return true;
}
} else if (opt_arg_pos == request.GetCursorIndex()) {
if (opt_defs_index != -1) {
HandleOptionArgumentCompletion(request, opt_element_vector, i,
interpreter);
return true;
} else {
return true;
}
} else {
continue;
}
}
return false;
}
void Options::HandleOptionArgumentCompletion(
CompletionRequest &request, OptionElementVector &opt_element_vector,
int opt_element_index, CommandInterpreter &interpreter) {
auto opt_defs = GetDefinitions();
std::unique_ptr<SearchFilter> filter_up;
int opt_defs_index = opt_element_vector[opt_element_index].opt_defs_index;
const auto &enum_values = opt_defs[opt_defs_index].enum_values;
if (!enum_values.empty())
for (const auto &enum_value : enum_values)
request.TryCompleteCurrentArg(enum_value.string_value);
uint32_t completion_mask = opt_defs[opt_defs_index].completion_type;
if (completion_mask == 0) {
lldb::CommandArgumentType option_arg_type =
opt_defs[opt_defs_index].argument_type;
if (option_arg_type != eArgTypeNone) {
const CommandObject::ArgumentTableEntry *arg_entry =
CommandObject::FindArgumentDataByType(
opt_defs[opt_defs_index].argument_type);
if (arg_entry)
completion_mask = arg_entry->completion_type;
}
}
if (completion_mask & lldb::eSourceFileCompletion ||
completion_mask & lldb::eSymbolCompletion) {
for (size_t i = 0; i < opt_element_vector.size(); i++) {
int cur_defs_index = opt_element_vector[i].opt_defs_index;
if (cur_defs_index == OptionArgElement::eUnrecognizedArg ||
cur_defs_index == OptionArgElement::eBareDash ||
cur_defs_index == OptionArgElement::eBareDoubleDash)
continue;
int cur_arg_pos = opt_element_vector[i].opt_arg_pos;
const char *cur_opt_name = opt_defs[cur_defs_index].long_option;
if (cur_opt_name && strcmp(cur_opt_name, "shlib") == 0 &&
cur_arg_pos != -1) {
const char *module_name =
request.GetParsedLine().GetArgumentAtIndex(cur_arg_pos);
if (module_name) {
FileSpec module_spec(module_name);
lldb::TargetSP target_sp =
interpreter.GetDebugger().GetSelectedTarget();
if (target_sp)
filter_up =
std::make_unique<SearchFilterByModule>(target_sp, module_spec);
}
break;
}
}
}
lldb_private::CommandCompletions::InvokeCommonCompletionCallbacks(
interpreter, completion_mask, request, filter_up.get());
}
void OptionGroupOptions::Append(OptionGroup *group) {
auto group_option_defs = group->GetDefinitions();
for (uint32_t i = 0; i < group_option_defs.size(); ++i) {
m_option_infos.push_back(OptionInfo(group, i));
m_option_defs.push_back(group_option_defs[i]);
}
}
const OptionGroup *OptionGroupOptions::GetGroupWithOption(char short_opt) {
for (uint32_t i = 0; i < m_option_defs.size(); i++) {
OptionDefinition opt_def = m_option_defs[i];
if (opt_def.short_option == short_opt)
return m_option_infos[i].option_group;
}
return nullptr;
}
void OptionGroupOptions::Append(OptionGroup *group, uint32_t src_mask,
uint32_t dst_mask) {
auto group_option_defs = group->GetDefinitions();
for (uint32_t i = 0; i < group_option_defs.size(); ++i) {
if (group_option_defs[i].usage_mask & src_mask) {
m_option_infos.push_back(OptionInfo(group, i));
m_option_defs.push_back(group_option_defs[i]);
m_option_defs.back().usage_mask = dst_mask;
}
}
}
void OptionGroupOptions::Append(
OptionGroup *group, llvm::ArrayRef<llvm::StringRef> exclude_long_options) {
auto group_option_defs = group->GetDefinitions();
for (uint32_t i = 0; i < group_option_defs.size(); ++i) {
const auto &definition = group_option_defs[i];
if (llvm::is_contained(exclude_long_options, definition.long_option))
continue;
m_option_infos.push_back(OptionInfo(group, i));
m_option_defs.push_back(definition);
}
}
void OptionGroupOptions::Finalize() {
m_did_finalize = true;
}
Status OptionGroupOptions::SetOptionValue(uint32_t option_idx,
llvm::StringRef option_value,
ExecutionContext *execution_context) {
assert(m_did_finalize);
Status error;
if (option_idx < m_option_infos.size()) {
error = m_option_infos[option_idx].option_group->SetOptionValue(
m_option_infos[option_idx].option_index, option_value,
execution_context);
} else {
error.SetErrorString("invalid option index");
}
return error;
}
void OptionGroupOptions::OptionParsingStarting(
ExecutionContext *execution_context) {
std::set<OptionGroup *> group_set;
OptionInfos::iterator pos, end = m_option_infos.end();
for (pos = m_option_infos.begin(); pos != end; ++pos) {
OptionGroup *group = pos->option_group;
if (group_set.find(group) == group_set.end()) {
group->OptionParsingStarting(execution_context);
group_set.insert(group);
}
}
}
Status
OptionGroupOptions::OptionParsingFinished(ExecutionContext *execution_context) {
std::set<OptionGroup *> group_set;
Status error;
OptionInfos::iterator pos, end = m_option_infos.end();
for (pos = m_option_infos.begin(); pos != end; ++pos) {
OptionGroup *group = pos->option_group;
if (group_set.find(group) == group_set.end()) {
error = group->OptionParsingFinished(execution_context);
group_set.insert(group);
if (error.Fail())
return error;
}
}
return error;
}
static std::vector<char *> GetArgvForParsing(const Args &args) {
std::vector<char *> result;
result.push_back(const_cast<char *>("<FAKE-ARG0>"));
for (const Args::ArgEntry &entry : args)
result.push_back(const_cast<char *>(entry.c_str()));
result.push_back(nullptr);
return result;
}
static Args::const_iterator FindOriginalIter(const char *arg,
const Args &original) {
return llvm::find_if(
original, [arg](const Args::ArgEntry &D) { return D.c_str() == arg; });
}
static size_t FindOriginalIndex(const char *arg, const Args &original) {
return std::distance(original.begin(), FindOriginalIter(arg, original));
}
static Args ReconstituteArgsAfterParsing(llvm::ArrayRef<char *> parsed,
const Args &original) {
Args result;
for (const char *arg : parsed) {
auto pos = FindOriginalIter(arg, original);
assert(pos != original.end());
result.AppendArgument(pos->ref(), pos->GetQuoteChar());
}
return result;
}
static size_t FindArgumentIndexForOption(const Args &args,
const Option &long_option) {
std::string short_opt = llvm::formatv("-{0}", char(long_option.val)).str();
std::string long_opt =
std::string(llvm::formatv("--{0}", long_option.definition->long_option));
for (const auto &entry : llvm::enumerate(args)) {
if (entry.value().ref().starts_with(short_opt) ||
entry.value().ref().starts_with(long_opt))
return entry.index();
}
return size_t(-1);
}
static std::string BuildShortOptions(const Option *long_options) {
std::string storage;
llvm::raw_string_ostream sstr(storage);
sstr << ":";
for (size_t i = 0; long_options[i].definition != nullptr; ++i) {
if (long_options[i].flag == nullptr) {
sstr << (char)long_options[i].val;
switch (long_options[i].definition->option_has_arg) {
default:
case OptionParser::eNoArgument:
break;
case OptionParser::eRequiredArgument:
sstr << ":";
break;
case OptionParser::eOptionalArgument:
sstr << "::";
break;
}
}
}
return std::move(sstr.str());
}
llvm::Expected<Args> Options::ParseAlias(const Args &args,
OptionArgVector *option_arg_vector,
std::string &input_line) {
Option *long_options = GetLongOptions();
if (long_options == nullptr) {
return llvm::createStringError("Invalid long options");
}
std::string short_options = BuildShortOptions(long_options);
Args args_copy = args;
std::vector<char *> argv = GetArgvForParsing(args);
std::unique_lock<std::mutex> lock;
OptionParser::Prepare(lock);
int val;
while (true) {
int long_options_index = -1;
val = OptionParser::Parse(argv, short_options, long_options,
&long_options_index);
if (val == ':') {
return llvm::createStringError(llvm::inconvertibleErrorCode(),
"last option requires an argument");
}
if (val == -1)
break;
if (val == '?') {
return llvm::createStringError("Unknown or ambiguous option");
}
if (val == 0)
continue;
OptionSeen(val);
if (long_options_index == -1) {
for (int j = 0; long_options[j].definition || long_options[j].flag ||
long_options[j].val;
++j) {
if (long_options[j].val == val) {
long_options_index = j;
break;
}
}
}
if (long_options_index == -1) {
return llvm::createStringError(
llvm::formatv("Invalid option with value '{0}'.", char(val)).str());
}
StreamString option_str;
option_str.Printf("-%c", val);
const OptionDefinition *def = long_options[long_options_index].definition;
int has_arg =
(def == nullptr) ? OptionParser::eNoArgument : def->option_has_arg;
const char *option_arg = nullptr;
switch (has_arg) {
case OptionParser::eRequiredArgument:
if (OptionParser::GetOptionArgument() == nullptr) {
return llvm::createStringError(
llvm::formatv("Option '{0}' is missing argument specifier.",
option_str.GetString())
.str());
}
[[fallthrough]];
case OptionParser::eOptionalArgument:
option_arg = OptionParser::GetOptionArgument();
[[fallthrough]];
case OptionParser::eNoArgument:
break;
default:
return llvm::createStringError(
llvm::formatv("error with options table; invalid value in has_arg "
"field for option '{0}'.",
char(val))
.str());
}
size_t idx =
FindArgumentIndexForOption(args_copy, long_options[long_options_index]);
std::string option_to_insert;
if (option_arg) {
if (idx != size_t(-1) && has_arg) {
bool arg_has_backtick = args_copy[idx + 1].GetQuoteChar() == '`';
if (arg_has_backtick)
option_to_insert = "`";
option_to_insert += option_arg;
if (arg_has_backtick)
option_to_insert += "`";
} else
option_to_insert = option_arg;
} else
option_to_insert = CommandInterpreter::g_no_argument;
option_arg_vector->emplace_back(std::string(option_str.GetString()),
has_arg, option_to_insert);
if (idx == size_t(-1))
continue;
if (!input_line.empty()) {
llvm::StringRef tmp_arg = args_copy[idx].ref();
size_t pos = input_line.find(std::string(tmp_arg));
if (pos != std::string::npos)
input_line.erase(pos, tmp_arg.size());
}
args_copy.DeleteArgumentAtIndex(idx);
if ((option_to_insert != CommandInterpreter::g_no_argument) &&
(OptionParser::GetOptionArgument() != nullptr) &&
(idx < args_copy.GetArgumentCount()) &&
(args_copy[idx].ref() == OptionParser::GetOptionArgument())) {
if (input_line.size() > 0) {
size_t pos = input_line.find(option_to_insert);
if (pos != std::string::npos)
input_line.erase(pos, option_to_insert.size());
}
args_copy.DeleteArgumentAtIndex(idx);
}
}
return std::move(args_copy);
}
OptionElementVector Options::ParseForCompletion(const Args &args,
uint32_t cursor_index) {
OptionElementVector option_element_vector;
Option *long_options = GetLongOptions();
option_element_vector.clear();
if (long_options == nullptr)
return option_element_vector;
std::string short_options = BuildShortOptions(long_options);
std::unique_lock<std::mutex> lock;
OptionParser::Prepare(lock);
OptionParser::EnableError(false);
int val;
auto opt_defs = GetDefinitions();
std::vector<char *> dummy_vec = GetArgvForParsing(args);
bool failed_once = false;
uint32_t dash_dash_pos = -1;
while (true) {
bool missing_argument = false;
int long_options_index = -1;
val = OptionParser::Parse(dummy_vec, short_options, long_options,
&long_options_index);
if (val == -1) {
if (failed_once)
break;
failed_once = true;
if (static_cast<size_t>(OptionParser::GetOptionIndex()) <
dummy_vec.size() &&
(strcmp(dummy_vec[OptionParser::GetOptionIndex() - 1], "--") == 0)) {
dash_dash_pos = FindOriginalIndex(
dummy_vec[OptionParser::GetOptionIndex() - 1], args);
if (dash_dash_pos == cursor_index) {
option_element_vector.push_back(
OptionArgElement(OptionArgElement::eBareDoubleDash, dash_dash_pos,
OptionArgElement::eBareDoubleDash));
continue;
} else
break;
} else
break;
} else if (val == '?') {
option_element_vector.push_back(OptionArgElement(
OptionArgElement::eUnrecognizedArg,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
args),
OptionArgElement::eUnrecognizedArg));
continue;
} else if (val == 0) {
continue;
} else if (val == ':') {
val = OptionParser::GetOptionErrorCause();
missing_argument = true;
}
OptionSeen(val);
if (long_options_index == -1) {
for (int j = 0; long_options[j].definition || long_options[j].flag ||
long_options[j].val;
++j) {
if (long_options[j].val == val) {
long_options_index = j;
break;
}
}
}
if (long_options_index >= 0) {
int opt_defs_index = -1;
for (size_t i = 0; i < opt_defs.size(); i++) {
if (opt_defs[i].short_option != val)
continue;
opt_defs_index = i;
break;
}
const OptionDefinition *def = long_options[long_options_index].definition;
int has_arg =
(def == nullptr) ? OptionParser::eNoArgument : def->option_has_arg;
switch (has_arg) {
case OptionParser::eNoArgument:
option_element_vector.push_back(OptionArgElement(
opt_defs_index,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
args),
0));
break;
case OptionParser::eRequiredArgument:
if (OptionParser::GetOptionArgument() != nullptr) {
int arg_index;
if (missing_argument)
arg_index = -1;
else
arg_index = OptionParser::GetOptionIndex() - 2;
option_element_vector.push_back(OptionArgElement(
opt_defs_index,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 2],
args),
arg_index));
} else {
option_element_vector.push_back(OptionArgElement(
opt_defs_index,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
args),
-1));
}
break;
case OptionParser::eOptionalArgument:
option_element_vector.push_back(OptionArgElement(
opt_defs_index,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 2],
args),
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
args)));
break;
default:
option_element_vector.push_back(OptionArgElement(
OptionArgElement::eUnrecognizedArg,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
args),
OptionArgElement::eUnrecognizedArg));
break;
}
} else {
option_element_vector.push_back(OptionArgElement(
OptionArgElement::eUnrecognizedArg,
FindOriginalIndex(dummy_vec[OptionParser::GetOptionIndex() - 1],
args),
OptionArgElement::eUnrecognizedArg));
}
}
const Args::ArgEntry &cursor = args[cursor_index];
if ((static_cast<int32_t>(dash_dash_pos) == -1 ||
cursor_index < dash_dash_pos) &&
!cursor.IsQuoted() && cursor.ref() == "-") {
option_element_vector.push_back(
OptionArgElement(OptionArgElement::eBareDash, cursor_index,
OptionArgElement::eBareDash));
}
return option_element_vector;
}
llvm::Expected<Args> Options::Parse(const Args &args,
ExecutionContext *execution_context,
lldb::PlatformSP platform_sp,
bool require_validation) {
Status error;
Option *long_options = GetLongOptions();
if (long_options == nullptr) {
return llvm::createStringError("Invalid long options.");
}
std::string short_options = BuildShortOptions(long_options);
std::vector<char *> argv = GetArgvForParsing(args);
std::unique_lock<std::mutex> lock;
OptionParser::Prepare(lock);
int val;
while (true) {
int long_options_index = -1;
val = OptionParser::Parse(argv, short_options, long_options,
&long_options_index);
if (val == ':') {
error.SetErrorString("last option requires an argument");
break;
}
if (val == -1)
break;
if (val == '?') {
error.SetErrorString("unknown or ambiguous option");
break;
}
if (val == 0)
continue;
OptionSeen(val);
if (long_options_index == -1) {
for (int i = 0; long_options[i].definition || long_options[i].flag ||
long_options[i].val;
++i) {
if (long_options[i].val == val) {
long_options_index = i;
break;
}
}
}
if (long_options_index >= 0 &&
long_options[long_options_index].definition) {
const OptionDefinition *def = long_options[long_options_index].definition;
if (!platform_sp) {
TargetSP target_sp =
execution_context ? execution_context->GetTargetSP() : TargetSP();
platform_sp = target_sp ? target_sp->GetPlatform() : PlatformSP();
}
OptionValidator *validator = def->validator;
if (!platform_sp && require_validation) {
return llvm::createStringError(
"cannot validate options: no platform available");
}
bool validation_failed = false;
if (platform_sp) {
ExecutionContext dummy_context;
ExecutionContext *exe_ctx_p =
execution_context ? execution_context : &dummy_context;
if (validator && !validator->IsValid(*platform_sp, *exe_ctx_p)) {
validation_failed = true;
error.SetErrorStringWithFormat("Option \"%s\" invalid. %s",
def->long_option,
def->validator->LongConditionString());
}
}
if (!validation_failed)
error =
SetOptionValue(long_options_index,
(def->option_has_arg == OptionParser::eNoArgument)
? nullptr
: OptionParser::GetOptionArgument(),
execution_context);
if (error.Fail())
break;
} else {
error.SetErrorStringWithFormat("invalid option with value '%i'", val);
}
}
if (error.Fail())
return error.ToError();
argv.pop_back();
argv.erase(argv.begin(), argv.begin() + OptionParser::GetOptionIndex());
return ReconstituteArgsAfterParsing(argv, args);
}
llvm::Error lldb_private::CreateOptionParsingError(
llvm::StringRef option_arg, const char short_option,
llvm::StringRef long_option, llvm::StringRef additional_context) {
std::string buffer;
llvm::raw_string_ostream stream(buffer);
stream << "Invalid value ('" << option_arg << "') for -" << short_option;
if (!long_option.empty())
stream << " (" << long_option << ")";
if (!additional_context.empty())
stream << ": " << additional_context;
return llvm::createStringError(llvm::inconvertibleErrorCode(), buffer);
}