#pragma once
/*
* Copyright (C) 2024 Brett Terpstra
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see .
*/
#ifndef BLT_PARSE_ARGPARSE_V2_H
#define BLT_PARSE_ARGPARSE_V2_H
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
namespace blt::argparse
{
class argument_string_t;
class argument_consumer_t;
class argument_parser_t;
class argument_subparser_t;
class parsed_argset_t;
class argument_builder_t;
namespace detail
{
inline hashset_t allowed_flag_prefixes = {"-", "--", "+"};
std::string flag_prefixes_as_string();
hashset_t prefix_characters();
inline std::string flag_prefix_list_string = flag_prefixes_as_string();
inline auto prefix_characters_set = prefix_characters();
class bad_flag final : public std::runtime_error
{
public:
explicit bad_flag(const std::string& message): std::runtime_error(message)
{
}
explicit bad_flag(const char* message): std::runtime_error(message)
{
}
};
template
struct arg_data_helper_t
{
using arg_primitive_data_t = std::variant;
using arg_list_data_t = std::variant...>;
};
using data_helper_t = arg_data_helper_t;
using arg_primitive_data_t = data_helper_t::arg_primitive_data_t;
using arg_list_data_t = data_helper_t::arg_list_data_t;
using arg_data_t = std::variant;
template
struct arg_type_t
{
static T convert(const std::string_view value)
{
static_assert(std::is_arithmetic_v, "Type must be arithmetic!");
const std::string temp{value};
if constexpr (std::is_same_v)
{
return std::stof(temp);
}
else if constexpr (std::is_same_v)
{
return std::stod(temp);
}
else if constexpr (std::is_unsigned_v)
{
return static_cast(std::stoull(temp));
}
else if constexpr (std::is_signed_v)
{
return static_cast(std::stoll(temp));
}
BLT_UNREACHABLE;
}
};
void test();
}
class argument_string_t
{
public:
explicit argument_string_t(const char* input): m_argument(input)
{
if (input == nullptr)
throw detail::bad_flag("Argument cannot be null!");
}
[[nodiscard]] std::string_view get_flag() const
{
if (!m_flag_section)
process_argument();
return *m_flag_section;
}
[[nodiscard]] std::string_view get_name() const
{
if (!m_name_section)
process_argument();
return *m_name_section;
}
[[nodiscard]] std::string_view value() const
{
return get_name();
}
[[nodiscard]] bool is_flag() const
{
if (!m_is_flag)
process_argument();
return *m_is_flag;
}
[[nodiscard]] std::string_view get_argument() const
{
return m_argument;
}
private:
void process_argument() const
{
size_t start = m_argument.size();
for (auto [i, c] : enumerate(m_argument))
{
if (!detail::prefix_characters_set.contains(c))
{
start = i;
break;
}
}
m_is_flag = (start != 0);
m_flag_section = {m_argument.data(), start};
m_name_section = {m_argument.data() + start, m_argument.size() - start};
if (!m_flag_section->empty() && !detail::allowed_flag_prefixes.contains(*m_flag_section))
throw detail::bad_flag(
"Invalid flag " + std::string(*m_flag_section) + " detected, flag is not in allowed list of flags! Must be one of " +
detail::flag_prefix_list_string);
}
std::string_view m_argument;
mutable std::optional m_is_flag;
mutable std::optional m_flag_section;
mutable std::optional m_name_section;
};
class argument_consumer_t
{
public:
explicit argument_consumer_t(const span& args): m_args(args)
{
}
[[nodiscard]] argument_string_t peek(const i32 offset = 0) const
{
return m_args[m_forward_index + offset];
}
argument_string_t consume()
{
return m_args[m_forward_index++];
}
[[nodiscard]] i32 position() const
{
return m_forward_index;
}
[[nodiscard]] i32 remaining() const
{
return static_cast(m_args.size()) - m_forward_index;
}
[[nodiscard]] bool has_next(const i32 offset = 0) const
{
return (offset + m_forward_index) < m_args.size();
}
private:
span m_args;
i32 m_forward_index = 0;
};
class argument_builder_t
{
public:
private:
};
class parsed_argset_t
{
public:
private:
};
class argument_parser_t
{
public:
argument_parser_t(const std::optional name = {}, const std::optional usage = {}):
m_name(name.value_or(std::optional{})), m_usage(usage.value_or(std::optional{}))
{
}
argument_parser_t& set_name(const std::string_view name)
{
m_name = name;
return *this;
}
private:
std::optional m_name;
std::optional m_usage;
std::optional m_description;
std::optional m_epilogue;
};
class argument_subparser_t
{
public:
private:
};
}
#endif //BLT_PARSE_ARGPARSE_V2_H