#ifndef LLVM_SUPPORT_COMMANDLINE_H
#define LLVM_SUPPORT_COMMANDLINE_H
#include "llvm/ADT/ArrayRef.h"
#include "llvm/ADT/None.h"
#include "llvm/ADT/Optional.h"
#include "llvm/ADT/STLExtras.h"
#include "llvm/ADT/SmallPtrSet.h"
#include "llvm/ADT/SmallVector.h"
#include "llvm/ADT/StringMap.h"
#include "llvm/ADT/StringRef.h"
#include "llvm/ADT/Twine.h"
#include "llvm/ADT/iterator_range.h"
#include "llvm/Support/ErrorHandling.h"
#include "llvm/Support/ManagedStatic.h"
#include "llvm/Support/raw_ostream.h"
#include <cassert>
#include <climits>
#include <cstddef>
#include <functional>
#include <initializer_list>
#include <string>
#include <type_traits>
#include <vector>
namespace llvm {
namespace vfs {
class FileSystem;
}
class StringSaver;
namespace cl {
bool ParseCommandLineOptions(int argc, const char *const *argv,
StringRef Overview = "",
raw_ostream *Errs = nullptr,
const char *EnvVar = nullptr,
bool LongOptionsUseDoubleDash = false);
using VersionPrinterTy = std::function<void(raw_ostream &)>;
void SetVersionPrinter(VersionPrinterTy func);
void AddExtraVersionPrinter(VersionPrinterTy func);
void PrintOptionValues();
class Option;
void AddLiteralOption(Option &O, StringRef Name);
enum NumOccurrencesFlag { Optional = 0x00, ZeroOrMore = 0x01, Required = 0x02, OneOrMore = 0x03,
ConsumeAfter = 0x04
};
enum ValueExpected { ValueOptional = 0x01, ValueRequired = 0x02, ValueDisallowed = 0x03 };
enum OptionHidden { NotHidden = 0x00, Hidden = 0x01, ReallyHidden = 0x02 };
enum FormattingFlags {
NormalFormatting = 0x00, Positional = 0x01, Prefix = 0x02, AlwaysPrefix = 0x03 };
enum MiscFlags { CommaSeparated = 0x01, PositionalEatsArgs = 0x02, Sink = 0x04,
Grouping = 0x08,
DefaultOption = 0x10
};
class OptionCategory {
private:
StringRef const Name;
StringRef const Description;
void registerCategory();
public:
OptionCategory(StringRef const Name,
StringRef const Description = "")
: Name(Name), Description(Description) {
registerCategory();
}
StringRef getName() const { return Name; }
StringRef getDescription() const { return Description; }
};
OptionCategory &getGeneralCategory();
class SubCommand {
private:
StringRef Name;
StringRef Description;
protected:
void registerSubCommand();
void unregisterSubCommand();
public:
SubCommand(StringRef Name, StringRef Description = "")
: Name(Name), Description(Description) {
registerSubCommand();
}
SubCommand() = default;
void reset();
explicit operator bool() const;
StringRef getName() const { return Name; }
StringRef getDescription() const { return Description; }
SmallVector<Option *, 4> PositionalOpts;
SmallVector<Option *, 4> SinkOpts;
StringMap<Option *> OptionsMap;
Option *ConsumeAfterOpt = nullptr; };
extern ManagedStatic<SubCommand> TopLevelSubCommand;
extern ManagedStatic<SubCommand> AllSubCommands;
class Option {
friend class alias;
virtual bool handleOccurrence(unsigned pos, StringRef ArgName,
StringRef Arg) = 0;
virtual enum ValueExpected getValueExpectedFlagDefault() const {
return ValueOptional;
}
virtual void anchor();
uint16_t NumOccurrences; uint16_t Occurrences : 3; uint16_t Value : 2;
uint16_t HiddenFlag : 2; uint16_t Formatting : 2; uint16_t Misc : 5;
uint16_t FullyInitialized : 1; uint16_t Position; uint16_t AdditionalVals;
public:
StringRef ArgStr; StringRef HelpStr; StringRef ValueStr; SmallVector<OptionCategory *, 1>
Categories; SmallPtrSet<SubCommand *, 1> Subs;
inline enum NumOccurrencesFlag getNumOccurrencesFlag() const {
return (enum NumOccurrencesFlag)Occurrences;
}
inline enum ValueExpected getValueExpectedFlag() const {
return Value ? ((enum ValueExpected)Value) : getValueExpectedFlagDefault();
}
inline enum OptionHidden getOptionHiddenFlag() const {
return (enum OptionHidden)HiddenFlag;
}
inline enum FormattingFlags getFormattingFlag() const {
return (enum FormattingFlags)Formatting;
}
inline unsigned getMiscFlags() const { return Misc; }
inline unsigned getPosition() const { return Position; }
inline unsigned getNumAdditionalVals() const { return AdditionalVals; }
bool hasArgStr() const { return !ArgStr.empty(); }
bool isPositional() const { return getFormattingFlag() == cl::Positional; }
bool isSink() const { return getMiscFlags() & cl::Sink; }
bool isDefaultOption() const { return getMiscFlags() & cl::DefaultOption; }
bool isConsumeAfter() const {
return getNumOccurrencesFlag() == cl::ConsumeAfter;
}
bool isInAllSubCommands() const {
return llvm::is_contained(Subs, &*AllSubCommands);
}
void setArgStr(StringRef S);
void setDescription(StringRef S) { HelpStr = S; }
void setValueStr(StringRef S) { ValueStr = S; }
void setNumOccurrencesFlag(enum NumOccurrencesFlag Val) { Occurrences = Val; }
void setValueExpectedFlag(enum ValueExpected Val) { Value = Val; }
void setHiddenFlag(enum OptionHidden Val) { HiddenFlag = Val; }
void setFormattingFlag(enum FormattingFlags V) { Formatting = V; }
void setMiscFlag(enum MiscFlags M) { Misc |= M; }
void setPosition(unsigned pos) { Position = pos; }
void addCategory(OptionCategory &C);
void addSubCommand(SubCommand &S) { Subs.insert(&S); }
protected:
explicit Option(enum NumOccurrencesFlag OccurrencesFlag,
enum OptionHidden Hidden)
: NumOccurrences(0), Occurrences(OccurrencesFlag), Value(0),
HiddenFlag(Hidden), Formatting(NormalFormatting), Misc(0),
FullyInitialized(false), Position(0), AdditionalVals(0) {
Categories.push_back(&getGeneralCategory());
}
inline void setNumAdditionalVals(unsigned n) { AdditionalVals = n; }
public:
virtual ~Option() = default;
void addArgument();
void removeArgument();
virtual size_t getOptionWidth() const = 0;
virtual void printOptionInfo(size_t GlobalWidth) const = 0;
virtual void printOptionValue(size_t GlobalWidth, bool Force) const = 0;
virtual void setDefault() = 0;
static void printHelpStr(StringRef HelpStr, size_t Indent,
size_t FirstLineIndentedBy);
static void printEnumValHelpStr(StringRef HelpStr, size_t Indent,
size_t FirstLineIndentedBy);
virtual void getExtraOptionNames(SmallVectorImpl<StringRef> &) {}
virtual bool addOccurrence(unsigned pos, StringRef ArgName, StringRef Value,
bool MultiArg = false);
bool error(const Twine &Message, StringRef ArgName = StringRef(), raw_ostream &Errs = llvm::errs());
bool error(const Twine &Message, raw_ostream &Errs) {
return error(Message, StringRef(), Errs);
}
inline int getNumOccurrences() const { return NumOccurrences; }
void reset();
};
struct desc {
StringRef Desc;
desc(StringRef Str) : Desc(Str) {}
void apply(Option &O) const { O.setDescription(Desc); }
};
struct value_desc {
StringRef Desc;
value_desc(StringRef Str) : Desc(Str) {}
void apply(Option &O) const { O.setValueStr(Desc); }
};
template <class Ty> struct initializer {
const Ty &Init;
initializer(const Ty &Val) : Init(Val) {}
template <class Opt> void apply(Opt &O) const { O.setInitialValue(Init); }
};
template <class Ty> initializer<Ty> init(const Ty &Val) {
return initializer<Ty>(Val);
}
template <class Ty> struct LocationClass {
Ty &Loc;
LocationClass(Ty &L) : Loc(L) {}
template <class Opt> void apply(Opt &O) const { O.setLocation(O, Loc); }
};
template <class Ty> LocationClass<Ty> location(Ty &L) {
return LocationClass<Ty>(L);
}
struct cat {
OptionCategory &Category;
cat(OptionCategory &c) : Category(c) {}
template <class Opt> void apply(Opt &O) const { O.addCategory(Category); }
};
struct sub {
SubCommand ⋐
sub(SubCommand &S) : Sub(S) {}
template <class Opt> void apply(Opt &O) const { O.addSubCommand(Sub); }
};
template <typename R, typename Ty> struct cb {
std::function<R(Ty)> CB;
cb(std::function<R(Ty)> CB) : CB(CB) {}
template <typename Opt> void apply(Opt &O) const { O.setCallback(CB); }
};
namespace detail {
template <typename F>
struct callback_traits : public callback_traits<decltype(&F::operator())> {};
template <typename R, typename C, typename... Args>
struct callback_traits<R (C::*)(Args...) const> {
using result_type = R;
using arg_type = std::tuple_element_t<0, std::tuple<Args...>>;
static_assert(sizeof...(Args) == 1, "callback function must have one and only one parameter");
static_assert(std::is_same<result_type, void>::value,
"callback return type must be void");
static_assert(std::is_lvalue_reference<arg_type>::value &&
std::is_const<std::remove_reference_t<arg_type>>::value,
"callback arg_type must be a const lvalue reference");
};
}
template <typename F>
cb<typename detail::callback_traits<F>::result_type,
typename detail::callback_traits<F>::arg_type>
callback(F CB) {
using result_type = typename detail::callback_traits<F>::result_type;
using arg_type = typename detail::callback_traits<F>::arg_type;
return cb<result_type, arg_type>(CB);
}
struct GenericOptionValue {
virtual bool compare(const GenericOptionValue &V) const = 0;
protected:
GenericOptionValue() = default;
GenericOptionValue(const GenericOptionValue&) = default;
GenericOptionValue &operator=(const GenericOptionValue &) = default;
~GenericOptionValue() = default;
private:
virtual void anchor();
};
template <class DataType> struct OptionValue;
template <class DataType, bool isClass>
struct OptionValueBase : public GenericOptionValue {
using WrapperType = OptionValue<DataType>;
bool hasValue() const { return false; }
const DataType &getValue() const { llvm_unreachable("no default value"); }
template <class DT> void setValue(const DT & ) {}
bool compare(const DataType & ) const { return false; }
bool compare(const GenericOptionValue & ) const override {
return false;
}
protected:
~OptionValueBase() = default;
};
template <class DataType> class OptionValueCopy : public GenericOptionValue {
DataType Value;
bool Valid = false;
protected:
OptionValueCopy(const OptionValueCopy&) = default;
OptionValueCopy &operator=(const OptionValueCopy &) = default;
~OptionValueCopy() = default;
public:
OptionValueCopy() = default;
bool hasValue() const { return Valid; }
const DataType &getValue() const {
assert(Valid && "invalid option value");
return Value;
}
void setValue(const DataType &V) {
Valid = true;
Value = V;
}
bool compare(const DataType &V) const { return Valid && (Value != V); }
bool compare(const GenericOptionValue &V) const override {
const OptionValueCopy<DataType> &VC =
static_cast<const OptionValueCopy<DataType> &>(V);
if (!VC.hasValue())
return false;
return compare(VC.getValue());
}
};
template <class DataType>
struct OptionValueBase<DataType, false> : OptionValueCopy<DataType> {
using WrapperType = DataType;
protected:
OptionValueBase() = default;
OptionValueBase(const OptionValueBase&) = default;
OptionValueBase &operator=(const OptionValueBase &) = default;
~OptionValueBase() = default;
};
template <class DataType>
struct OptionValue final
: OptionValueBase<DataType, std::is_class<DataType>::value> {
OptionValue() = default;
OptionValue(const DataType &V) { this->setValue(V); }
template <class DT> OptionValue<DataType> &operator=(const DT &V) {
this->setValue(V);
return *this;
}
};
enum boolOrDefault { BOU_UNSET, BOU_TRUE, BOU_FALSE };
template <>
struct OptionValue<cl::boolOrDefault> final
: OptionValueCopy<cl::boolOrDefault> {
using WrapperType = cl::boolOrDefault;
OptionValue() = default;
OptionValue(const cl::boolOrDefault &V) { this->setValue(V); }
OptionValue<cl::boolOrDefault> &operator=(const cl::boolOrDefault &V) {
setValue(V);
return *this;
}
private:
void anchor() override;
};
template <>
struct OptionValue<std::string> final : OptionValueCopy<std::string> {
using WrapperType = StringRef;
OptionValue() = default;
OptionValue(const std::string &V) { this->setValue(V); }
OptionValue<std::string> &operator=(const std::string &V) {
setValue(V);
return *this;
}
private:
void anchor() override;
};
struct OptionEnumValue {
StringRef Name;
int Value;
StringRef Description;
};
#define clEnumVal(ENUMVAL, DESC) \
llvm::cl::OptionEnumValue { #ENUMVAL, int(ENUMVAL), DESC }
#define clEnumValN(ENUMVAL, FLAGNAME, DESC) \
llvm::cl::OptionEnumValue { FLAGNAME, int(ENUMVAL), DESC }
class ValuesClass {
SmallVector<OptionEnumValue, 4> Values;
public:
ValuesClass(std::initializer_list<OptionEnumValue> Options)
: Values(Options) {}
template <class Opt> void apply(Opt &O) const {
for (const auto &Value : Values)
O.getParser().addLiteralOption(Value.Name, Value.Value,
Value.Description);
}
};
template <typename... OptsTy> ValuesClass values(OptsTy... Options) {
return ValuesClass({Options...});
}
class generic_parser_base {
protected:
class GenericOptionInfo {
public:
GenericOptionInfo(StringRef name, StringRef helpStr)
: Name(name), HelpStr(helpStr) {}
StringRef Name;
StringRef HelpStr;
};
public:
generic_parser_base(Option &O) : Owner(O) {}
virtual ~generic_parser_base() = default;
virtual unsigned getNumOptions() const = 0;
virtual StringRef getOption(unsigned N) const = 0;
virtual StringRef getDescription(unsigned N) const = 0;
virtual size_t getOptionWidth(const Option &O) const;
virtual const GenericOptionValue &getOptionValue(unsigned N) const = 0;
virtual void printOptionInfo(const Option &O, size_t GlobalWidth) const;
void printGenericOptionDiff(const Option &O, const GenericOptionValue &V,
const GenericOptionValue &Default,
size_t GlobalWidth) const;
template <class AnyOptionValue>
void printOptionDiff(const Option &O, const AnyOptionValue &V,
const AnyOptionValue &Default,
size_t GlobalWidth) const {
printGenericOptionDiff(O, V, Default, GlobalWidth);
}
void initialize() {}
void getExtraOptionNames(SmallVectorImpl<StringRef> &OptionNames) {
if (!Owner.hasArgStr())
for (unsigned i = 0, e = getNumOptions(); i != e; ++i)
OptionNames.push_back(getOption(i));
}
enum ValueExpected getValueExpectedFlagDefault() const {
if (Owner.hasArgStr())
return ValueRequired;
else
return ValueDisallowed;
}
unsigned findOption(StringRef Name);
protected:
Option &Owner;
};
template <class DataType> class parser : public generic_parser_base {
protected:
class OptionInfo : public GenericOptionInfo {
public:
OptionInfo(StringRef name, DataType v, StringRef helpStr)
: GenericOptionInfo(name, helpStr), V(v) {}
OptionValue<DataType> V;
};
SmallVector<OptionInfo, 8> Values;
public:
parser(Option &O) : generic_parser_base(O) {}
using parser_data_type = DataType;
unsigned getNumOptions() const override { return unsigned(Values.size()); }
StringRef getOption(unsigned N) const override { return Values[N].Name; }
StringRef getDescription(unsigned N) const override {
return Values[N].HelpStr;
}
const GenericOptionValue &getOptionValue(unsigned N) const override {
return Values[N].V;
}
bool parse(Option &O, StringRef ArgName, StringRef Arg, DataType &V) {
StringRef ArgVal;
if (Owner.hasArgStr())
ArgVal = Arg;
else
ArgVal = ArgName;
for (size_t i = 0, e = Values.size(); i != e; ++i)
if (Values[i].Name == ArgVal) {
V = Values[i].V.getValue();
return false;
}
return O.error("Cannot find option named '" + ArgVal + "'!");
}
template <class DT>
void addLiteralOption(StringRef Name, const DT &V, StringRef HelpStr) {
assert(findOption(Name) == Values.size() && "Option already exists!");
OptionInfo X(Name, static_cast<DataType>(V), HelpStr);
Values.push_back(X);
AddLiteralOption(Owner, Name);
}
void removeLiteralOption(StringRef Name) {
unsigned N = findOption(Name);
assert(N != Values.size() && "Option not found!");
Values.erase(Values.begin() + N);
}
};
class basic_parser_impl { public:
basic_parser_impl(Option &) {}
virtual ~basic_parser_impl() = default;
enum ValueExpected getValueExpectedFlagDefault() const {
return ValueRequired;
}
void getExtraOptionNames(SmallVectorImpl<StringRef> &) {}
void initialize() {}
size_t getOptionWidth(const Option &O) const;
void printOptionInfo(const Option &O, size_t GlobalWidth) const;
void printOptionNoValue(const Option &O, size_t GlobalWidth) const;
virtual StringRef getValueName() const { return "value"; }
virtual void anchor();
protected:
void printOptionName(const Option &O, size_t GlobalWidth) const;
};
template <class DataType> class basic_parser : public basic_parser_impl {
public:
using parser_data_type = DataType;
using OptVal = OptionValue<DataType>;
basic_parser(Option &O) : basic_parser_impl(O) {}
};
extern template class basic_parser<bool>;
template <> class parser<bool> : public basic_parser<bool> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, bool &Val);
void initialize() {}
enum ValueExpected getValueExpectedFlagDefault() const {
return ValueOptional;
}
StringRef getValueName() const override { return StringRef(); }
void printOptionDiff(const Option &O, bool V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<boolOrDefault>;
template <> class parser<boolOrDefault> : public basic_parser<boolOrDefault> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, boolOrDefault &Val);
enum ValueExpected getValueExpectedFlagDefault() const {
return ValueOptional;
}
StringRef getValueName() const override { return StringRef(); }
void printOptionDiff(const Option &O, boolOrDefault V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<int>;
template <> class parser<int> : public basic_parser<int> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, int &Val);
StringRef getValueName() const override { return "int"; }
void printOptionDiff(const Option &O, int V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<long>;
template <> class parser<long> final : public basic_parser<long> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, long &Val);
StringRef getValueName() const override { return "long"; }
void printOptionDiff(const Option &O, long V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<long long>;
template <> class parser<long long> : public basic_parser<long long> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, long long &Val);
StringRef getValueName() const override { return "long"; }
void printOptionDiff(const Option &O, long long V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<unsigned>;
template <> class parser<unsigned> : public basic_parser<unsigned> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, unsigned &Val);
StringRef getValueName() const override { return "uint"; }
void printOptionDiff(const Option &O, unsigned V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<unsigned long>;
template <>
class parser<unsigned long> final : public basic_parser<unsigned long> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, unsigned long &Val);
StringRef getValueName() const override { return "ulong"; }
void printOptionDiff(const Option &O, unsigned long V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<unsigned long long>;
template <>
class parser<unsigned long long> : public basic_parser<unsigned long long> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg,
unsigned long long &Val);
StringRef getValueName() const override { return "ulong"; }
void printOptionDiff(const Option &O, unsigned long long V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<double>;
template <> class parser<double> : public basic_parser<double> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, double &Val);
StringRef getValueName() const override { return "number"; }
void printOptionDiff(const Option &O, double V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<float>;
template <> class parser<float> : public basic_parser<float> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &O, StringRef ArgName, StringRef Arg, float &Val);
StringRef getValueName() const override { return "number"; }
void printOptionDiff(const Option &O, float V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<std::string>;
template <> class parser<std::string> : public basic_parser<std::string> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &, StringRef, StringRef Arg, std::string &Value) {
Value = Arg.str();
return false;
}
StringRef getValueName() const override { return "string"; }
void printOptionDiff(const Option &O, StringRef V, const OptVal &Default,
size_t GlobalWidth) const;
void anchor() override;
};
extern template class basic_parser<char>;
template <> class parser<char> : public basic_parser<char> {
public:
parser(Option &O) : basic_parser(O) {}
bool parse(Option &, StringRef, StringRef Arg, char &Value) {
Value = Arg[0];
return false;
}
StringRef getValueName() const override { return "char"; }
void printOptionDiff(const Option &O, char V, OptVal Default,
size_t GlobalWidth) const;
void anchor() override;
};
template <class ParserClass, class DT>
void printOptionDiff(const Option &O, const generic_parser_base &P, const DT &V,
const OptionValue<DT> &Default, size_t GlobalWidth) {
OptionValue<DT> OV = V;
P.printOptionDiff(O, OV, Default, GlobalWidth);
}
template <class ParserDT, class ValDT> struct OptionDiffPrinter {
void print(const Option &O, const parser<ParserDT> &P, const ValDT & ,
const OptionValue<ValDT> & , size_t GlobalWidth) {
P.printOptionNoValue(O, GlobalWidth);
}
};
template <class DT> struct OptionDiffPrinter<DT, DT> {
void print(const Option &O, const parser<DT> &P, const DT &V,
const OptionValue<DT> &Default, size_t GlobalWidth) {
P.printOptionDiff(O, V, Default, GlobalWidth);
}
};
template <class ParserClass, class ValDT>
void printOptionDiff(
const Option &O,
const basic_parser<typename ParserClass::parser_data_type> &P,
const ValDT &V, const OptionValue<ValDT> &Default, size_t GlobalWidth) {
OptionDiffPrinter<typename ParserClass::parser_data_type, ValDT> printer;
printer.print(O, static_cast<const ParserClass &>(P), V, Default,
GlobalWidth);
}
template <class Mod> struct applicator {
template <class Opt> static void opt(const Mod &M, Opt &O) { M.apply(O); }
};
template <unsigned n> struct applicator<char[n]> {
template <class Opt> static void opt(StringRef Str, Opt &O) {
O.setArgStr(Str);
}
};
template <unsigned n> struct applicator<const char[n]> {
template <class Opt> static void opt(StringRef Str, Opt &O) {
O.setArgStr(Str);
}
};
template <> struct applicator<StringRef > {
template <class Opt> static void opt(StringRef Str, Opt &O) {
O.setArgStr(Str);
}
};
template <> struct applicator<NumOccurrencesFlag> {
static void opt(NumOccurrencesFlag N, Option &O) {
O.setNumOccurrencesFlag(N);
}
};
template <> struct applicator<ValueExpected> {
static void opt(ValueExpected VE, Option &O) { O.setValueExpectedFlag(VE); }
};
template <> struct applicator<OptionHidden> {
static void opt(OptionHidden OH, Option &O) { O.setHiddenFlag(OH); }
};
template <> struct applicator<FormattingFlags> {
static void opt(FormattingFlags FF, Option &O) { O.setFormattingFlag(FF); }
};
template <> struct applicator<MiscFlags> {
static void opt(MiscFlags MF, Option &O) {
assert((MF != Grouping || O.ArgStr.size() == 1) &&
"cl::Grouping can only apply to single charater Options.");
O.setMiscFlag(MF);
}
};
template <class Opt, class Mod, class... Mods>
void apply(Opt *O, const Mod &M, const Mods &... Ms) {
applicator<Mod>::opt(M, *O);
apply(O, Ms...);
}
template <class Opt, class Mod> void apply(Opt *O, const Mod &M) {
applicator<Mod>::opt(M, *O);
}
template <class DataType, bool ExternalStorage, bool isClass>
class opt_storage {
DataType *Location = nullptr; OptionValue<DataType> Default;
void check_location() const {
assert(Location && "cl::location(...) not specified for a command "
"line option with external storage, "
"or cl::init specified before cl::location()!!");
}
public:
opt_storage() = default;
bool setLocation(Option &O, DataType &L) {
if (Location)
return O.error("cl::location(x) specified more than once!");
Location = &L;
Default = L;
return false;
}
template <class T> void setValue(const T &V, bool initial = false) {
check_location();
*Location = V;
if (initial)
Default = V;
}
DataType &getValue() {
check_location();
return *Location;
}
const DataType &getValue() const {
check_location();
return *Location;
}
operator DataType() const { return this->getValue(); }
const OptionValue<DataType> &getDefault() const { return Default; }
};
template <class DataType>
class opt_storage<DataType, false, true> : public DataType {
public:
OptionValue<DataType> Default;
template <class T> void setValue(const T &V, bool initial = false) {
DataType::operator=(V);
if (initial)
Default = V;
}
DataType &getValue() { return *this; }
const DataType &getValue() const { return *this; }
const OptionValue<DataType> &getDefault() const { return Default; }
};
template <class DataType> class opt_storage<DataType, false, false> {
public:
DataType Value;
OptionValue<DataType> Default;
opt_storage() : Value(DataType()), Default() {}
template <class T> void setValue(const T &V, bool initial = false) {
Value = V;
if (initial)
Default = V;
}
DataType &getValue() { return Value; }
DataType getValue() const { return Value; }
const OptionValue<DataType> &getDefault() const { return Default; }
operator DataType() const { return getValue(); }
DataType operator->() const { return Value; }
};
template <class DataType, bool ExternalStorage = false,
class ParserClass = parser<DataType>>
class opt : public Option,
public opt_storage<DataType, ExternalStorage,
std::is_class<DataType>::value> {
ParserClass Parser;
bool handleOccurrence(unsigned pos, StringRef ArgName,
StringRef Arg) override {
typename ParserClass::parser_data_type Val =
typename ParserClass::parser_data_type();
if (Parser.parse(*this, ArgName, Arg, Val))
return true; this->setValue(Val);
this->setPosition(pos);
Callback(Val);
return false;
}
enum ValueExpected getValueExpectedFlagDefault() const override {
return Parser.getValueExpectedFlagDefault();
}
void getExtraOptionNames(SmallVectorImpl<StringRef> &OptionNames) override {
return Parser.getExtraOptionNames(OptionNames);
}
size_t getOptionWidth() const override {
return Parser.getOptionWidth(*this);
}
void printOptionInfo(size_t GlobalWidth) const override {
Parser.printOptionInfo(*this, GlobalWidth);
}
void printOptionValue(size_t GlobalWidth, bool Force) const override {
if (Force || this->getDefault().compare(this->getValue())) {
cl::printOptionDiff<ParserClass>(*this, Parser, this->getValue(),
this->getDefault(), GlobalWidth);
}
}
template <class T,
class = std::enable_if_t<std::is_assignable<T &, T>::value>>
void setDefaultImpl() {
const OptionValue<DataType> &V = this->getDefault();
if (V.hasValue())
this->setValue(V.getValue());
else
this->setValue(T());
}
template <class T,
class = std::enable_if_t<!std::is_assignable<T &, T>::value>>
void setDefaultImpl(...) {}
void setDefault() override { setDefaultImpl<DataType>(); }
void done() {
addArgument();
Parser.initialize();
}
public:
opt(const opt &) = delete;
opt &operator=(const opt &) = delete;
void setInitialValue(const DataType &V) { this->setValue(V, true); }
ParserClass &getParser() { return Parser; }
template <class T> DataType &operator=(const T &Val) {
this->setValue(Val);
Callback(Val);
return this->getValue();
}
template <class... Mods>
explicit opt(const Mods &... Ms)
: Option(llvm::cl::Optional, NotHidden), Parser(*this) {
apply(this, Ms...);
done();
}
void setCallback(
std::function<void(const typename ParserClass::parser_data_type &)> CB) {
Callback = CB;
}
std::function<void(const typename ParserClass::parser_data_type &)> Callback =
[](const typename ParserClass::parser_data_type &) {};
};
extern template class opt<unsigned>;
extern template class opt<int>;
extern template class opt<std::string>;
extern template class opt<char>;
extern template class opt<bool>;
template <class DataType, class StorageClass> class list_storage {
StorageClass *Location = nullptr;
public:
list_storage() = default;
void clear() {}
bool setLocation(Option &O, StorageClass &L) {
if (Location)
return O.error("cl::location(x) specified more than once!");
Location = &L;
return false;
}
template <class T> void addValue(const T &V) {
assert(Location != nullptr &&
"cl::location(...) not specified for a command "
"line option with external storage!");
Location->push_back(V);
}
};
template <class DataType> class list_storage<DataType, bool> {
std::vector<DataType> Storage;
public:
using iterator = typename std::vector<DataType>::iterator;
iterator begin() { return Storage.begin(); }
iterator end() { return Storage.end(); }
using const_iterator = typename std::vector<DataType>::const_iterator;
const_iterator begin() const { return Storage.begin(); }
const_iterator end() const { return Storage.end(); }
using size_type = typename std::vector<DataType>::size_type;
size_type size() const { return Storage.size(); }
bool empty() const { return Storage.empty(); }
void push_back(const DataType &value) { Storage.push_back(value); }
void push_back(DataType &&value) { Storage.push_back(value); }
using reference = typename std::vector<DataType>::reference;
using const_reference = typename std::vector<DataType>::const_reference;
reference operator[](size_type pos) { return Storage[pos]; }
const_reference operator[](size_type pos) const { return Storage[pos]; }
void clear() {
Storage.clear();
}
iterator erase(const_iterator pos) { return Storage.erase(pos); }
iterator erase(const_iterator first, const_iterator last) {
return Storage.erase(first, last);
}
iterator erase(iterator pos) { return Storage.erase(pos); }
iterator erase(iterator first, iterator last) {
return Storage.erase(first, last);
}
iterator insert(const_iterator pos, const DataType &value) {
return Storage.insert(pos, value);
}
iterator insert(const_iterator pos, DataType &&value) {
return Storage.insert(pos, value);
}
iterator insert(iterator pos, const DataType &value) {
return Storage.insert(pos, value);
}
iterator insert(iterator pos, DataType &&value) {
return Storage.insert(pos, value);
}
reference front() { return Storage.front(); }
const_reference front() const { return Storage.front(); }
operator std::vector<DataType> &() { return Storage; }
operator ArrayRef<DataType>() const { return Storage; }
std::vector<DataType> *operator&() { return &Storage; }
const std::vector<DataType> *operator&() const { return &Storage; }
template <class T> void addValue(const T &V) { Storage.push_back(V); }
};
template <class DataType, class StorageClass = bool,
class ParserClass = parser<DataType>>
class list : public Option, public list_storage<DataType, StorageClass> {
std::vector<unsigned> Positions;
ParserClass Parser;
enum ValueExpected getValueExpectedFlagDefault() const override {
return Parser.getValueExpectedFlagDefault();
}
void getExtraOptionNames(SmallVectorImpl<StringRef> &OptionNames) override {
return Parser.getExtraOptionNames(OptionNames);
}
bool handleOccurrence(unsigned pos, StringRef ArgName,
StringRef Arg) override {
typename ParserClass::parser_data_type Val =
typename ParserClass::parser_data_type();
if (Parser.parse(*this, ArgName, Arg, Val))
return true; list_storage<DataType, StorageClass>::addValue(Val);
setPosition(pos);
Positions.push_back(pos);
Callback(Val);
return false;
}
size_t getOptionWidth() const override {
return Parser.getOptionWidth(*this);
}
void printOptionInfo(size_t GlobalWidth) const override {
Parser.printOptionInfo(*this, GlobalWidth);
}
void printOptionValue(size_t , bool ) const override {
}
void setDefault() override {
Positions.clear();
list_storage<DataType, StorageClass>::clear();
}
void done() {
addArgument();
Parser.initialize();
}
public:
list(const list &) = delete;
list &operator=(const list &) = delete;
ParserClass &getParser() { return Parser; }
unsigned getPosition(unsigned optnum) const {
assert(optnum < this->size() && "Invalid option index");
return Positions[optnum];
}
void setNumAdditionalVals(unsigned n) { Option::setNumAdditionalVals(n); }
template <class... Mods>
explicit list(const Mods &... Ms)
: Option(ZeroOrMore, NotHidden), Parser(*this) {
apply(this, Ms...);
done();
}
void setCallback(
std::function<void(const typename ParserClass::parser_data_type &)> CB) {
Callback = CB;
}
std::function<void(const typename ParserClass::parser_data_type &)> Callback =
[](const typename ParserClass::parser_data_type &) {};
};
struct multi_val {
unsigned AdditionalVals;
explicit multi_val(unsigned N) : AdditionalVals(N) {}
template <typename D, typename S, typename P>
void apply(list<D, S, P> &L) const {
L.setNumAdditionalVals(AdditionalVals);
}
};
template <class DataType, class StorageClass> class bits_storage {
unsigned *Location = nullptr;
template <class T> static unsigned Bit(const T &V) {
unsigned BitPos = static_cast<unsigned>(V);
assert(BitPos < sizeof(unsigned) * CHAR_BIT &&
"enum exceeds width of bit vector!");
return 1 << BitPos;
}
public:
bits_storage() = default;
bool setLocation(Option &O, unsigned &L) {
if (Location)
return O.error("cl::location(x) specified more than once!");
Location = &L;
return false;
}
template <class T> void addValue(const T &V) {
assert(Location != nullptr &&
"cl::location(...) not specified for a command "
"line option with external storage!");
*Location |= Bit(V);
}
unsigned getBits() { return *Location; }
void clear() {
if (Location)
*Location = 0;
}
template <class T> bool isSet(const T &V) {
return (*Location & Bit(V)) != 0;
}
};
template <class DataType> class bits_storage<DataType, bool> {
unsigned Bits{0};
template <class T> static unsigned Bit(const T &V) {
unsigned BitPos = static_cast<unsigned>(V);
assert(BitPos < sizeof(unsigned) * CHAR_BIT &&
"enum exceeds width of bit vector!");
return 1 << BitPos;
}
public:
template <class T> void addValue(const T &V) { Bits |= Bit(V); }
unsigned getBits() { return Bits; }
void clear() { Bits = 0; }
template <class T> bool isSet(const T &V) { return (Bits & Bit(V)) != 0; }
};
template <class DataType, class Storage = bool,
class ParserClass = parser<DataType>>
class bits : public Option, public bits_storage<DataType, Storage> {
std::vector<unsigned> Positions;
ParserClass Parser;
enum ValueExpected getValueExpectedFlagDefault() const override {
return Parser.getValueExpectedFlagDefault();
}
void getExtraOptionNames(SmallVectorImpl<StringRef> &OptionNames) override {
return Parser.getExtraOptionNames(OptionNames);
}
bool handleOccurrence(unsigned pos, StringRef ArgName,
StringRef Arg) override {
typename ParserClass::parser_data_type Val =
typename ParserClass::parser_data_type();
if (Parser.parse(*this, ArgName, Arg, Val))
return true; this->addValue(Val);
setPosition(pos);
Positions.push_back(pos);
Callback(Val);
return false;
}
size_t getOptionWidth() const override {
return Parser.getOptionWidth(*this);
}
void printOptionInfo(size_t GlobalWidth) const override {
Parser.printOptionInfo(*this, GlobalWidth);
}
void printOptionValue(size_t , bool ) const override {
}
void setDefault() override { bits_storage<DataType, Storage>::clear(); }
void done() {
addArgument();
Parser.initialize();
}
public:
bits(const bits &) = delete;
bits &operator=(const bits &) = delete;
ParserClass &getParser() { return Parser; }
unsigned getPosition(unsigned optnum) const {
assert(optnum < this->size() && "Invalid option index");
return Positions[optnum];
}
template <class... Mods>
explicit bits(const Mods &... Ms)
: Option(ZeroOrMore, NotHidden), Parser(*this) {
apply(this, Ms...);
done();
}
void setCallback(
std::function<void(const typename ParserClass::parser_data_type &)> CB) {
Callback = CB;
}
std::function<void(const typename ParserClass::parser_data_type &)> Callback =
[](const typename ParserClass::parser_data_type &) {};
};
class alias : public Option {
Option *AliasFor;
bool handleOccurrence(unsigned pos, StringRef ,
StringRef Arg) override {
return AliasFor->handleOccurrence(pos, AliasFor->ArgStr, Arg);
}
bool addOccurrence(unsigned pos, StringRef , StringRef Value,
bool MultiArg = false) override {
return AliasFor->addOccurrence(pos, AliasFor->ArgStr, Value, MultiArg);
}
size_t getOptionWidth() const override;
void printOptionInfo(size_t GlobalWidth) const override;
void printOptionValue(size_t , bool ) const override {
}
void setDefault() override { AliasFor->setDefault(); }
ValueExpected getValueExpectedFlagDefault() const override {
return AliasFor->getValueExpectedFlag();
}
void done() {
if (!hasArgStr())
error("cl::alias must have argument name specified!");
if (!AliasFor)
error("cl::alias must have an cl::aliasopt(option) specified!");
if (!Subs.empty())
error("cl::alias must not have cl::sub(), aliased option's cl::sub() will be used!");
Subs = AliasFor->Subs;
Categories = AliasFor->Categories;
addArgument();
}
public:
alias(const alias &) = delete;
alias &operator=(const alias &) = delete;
void setAliasFor(Option &O) {
if (AliasFor)
error("cl::alias must only have one cl::aliasopt(...) specified!");
AliasFor = &O;
}
template <class... Mods>
explicit alias(const Mods &... Ms)
: Option(Optional, Hidden), AliasFor(nullptr) {
apply(this, Ms...);
done();
}
};
struct aliasopt {
Option &Opt;
explicit aliasopt(Option &O) : Opt(O) {}
void apply(alias &A) const { A.setAliasFor(Opt); }
};
struct extrahelp {
StringRef morehelp;
explicit extrahelp(StringRef help);
};
void PrintVersionMessage();
void PrintHelpMessage(bool Hidden = false, bool Categorized = false);
StringMap<Option *> &getRegisteredOptions(SubCommand &Sub = *TopLevelSubCommand);
iterator_range<typename SmallPtrSet<SubCommand *, 4>::iterator>
getRegisteredSubcommands();
void TokenizeGNUCommandLine(StringRef Source, StringSaver &Saver,
SmallVectorImpl<const char *> &NewArgv,
bool MarkEOLs = false);
void TokenizeWindowsCommandLine(StringRef Source, StringSaver &Saver,
SmallVectorImpl<const char *> &NewArgv,
bool MarkEOLs = false);
void TokenizeWindowsCommandLineNoCopy(StringRef Source, StringSaver &Saver,
SmallVectorImpl<StringRef> &NewArgv);
void TokenizeWindowsCommandLineFull(StringRef Source, StringSaver &Saver,
SmallVectorImpl<const char *> &NewArgv,
bool MarkEOLs = false);
using TokenizerCallback = void (*)(StringRef Source, StringSaver &Saver,
SmallVectorImpl<const char *> &NewArgv,
bool MarkEOLs);
void tokenizeConfigFile(StringRef Source, StringSaver &Saver,
SmallVectorImpl<const char *> &NewArgv,
bool MarkEOLs = false);
bool readConfigFile(StringRef CfgFileName, StringSaver &Saver,
SmallVectorImpl<const char *> &Argv);
bool ExpandResponseFiles(StringSaver &Saver, TokenizerCallback Tokenizer,
SmallVectorImpl<const char *> &Argv, bool MarkEOLs,
bool RelativeNames, bool ExpandBasePath,
llvm::Optional<llvm::StringRef> CurrentDir,
llvm::vfs::FileSystem &FS);
bool ExpandResponseFiles(
StringSaver &Saver, TokenizerCallback Tokenizer,
SmallVectorImpl<const char *> &Argv, bool MarkEOLs = false,
bool RelativeNames = false, bool ExpandBasePath = false,
llvm::Optional<llvm::StringRef> CurrentDir = llvm::None);
bool expandResponseFiles(int Argc, const char *const *Argv, const char *EnvVar,
StringSaver &Saver,
SmallVectorImpl<const char *> &NewArgv);
void HideUnrelatedOptions(cl::OptionCategory &Category,
SubCommand &Sub = *TopLevelSubCommand);
void HideUnrelatedOptions(ArrayRef<const cl::OptionCategory *> Categories,
SubCommand &Sub = *TopLevelSubCommand);
void ResetAllOptionOccurrences();
void ResetCommandLineParser();
bool ProvidePositionalOption(Option *Handler, StringRef Arg, int i);
}
}
#endif