rpcs3/Utilities/StrFmt.h

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#pragma once
#include <cstdarg>
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#include <string>
#include <vector>
#include <functional>
#include "Platform.h"
#include "types.h"
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// Copy null-terminated string from std::string to char array with truncation
template<std::size_t N>
force_inline void strcpy_trunc(char(&dst)[N], const std::string& src)
{
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const std::size_t count = src.size() >= N ? N - 1 : src.size();
std::memcpy(dst, src.c_str(), count);
dst[count] = '\0';
}
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// Copy null-terminated string from char array to another char array with truncation
template<std::size_t N, std::size_t N2>
force_inline void strcpy_trunc(char(&dst)[N], const char(&src)[N2])
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{
const std::size_t count = N2 >= N ? N - 1 : N2;
std::memcpy(dst, src, count);
dst[count] = '\0';
}
// Formatting helper, type-specific preprocessing for improving safety and functionality
template<typename T, typename>
struct unveil
{
// TODO
static inline const T& get(const T& arg)
{
return arg;
}
};
template<>
struct unveil<std::string, void>
{
static inline const char* get(const std::string& arg)
{
return arg.c_str();
}
};
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namespace fmt
{
std::string replace_first(const std::string& src, const std::string& from, const std::string& to);
std::string replace_all(const std::string &src, const std::string& from, const std::string& to);
template<size_t list_size>
std::string replace_all(std::string src, const std::pair<std::string, std::string>(&list)[list_size])
{
for (size_t pos = 0; pos < src.length(); ++pos)
{
for (size_t i = 0; i < list_size; ++i)
{
const size_t comp_length = list[i].first.length();
if (src.length() - pos < comp_length)
continue;
if (src.substr(pos, comp_length) == list[i].first)
{
src = (pos ? src.substr(0, pos) + list[i].second : list[i].second) + src.substr(pos + comp_length);
pos += list[i].second.length() - 1;
break;
}
}
}
return src;
}
template<size_t list_size>
std::string replace_all(std::string src, const std::pair<std::string, std::function<std::string()>>(&list)[list_size])
{
for (size_t pos = 0; pos < src.length(); ++pos)
{
for (size_t i = 0; i < list_size; ++i)
{
const size_t comp_length = list[i].first.length();
if (src.length() - pos < comp_length)
continue;
if (src.substr(pos, comp_length) == list[i].first)
{
src = (pos ? src.substr(0, pos) + list[i].second() : list[i].second()) + src.substr(pos + comp_length);
pos += list[i].second().length() - 1;
break;
}
}
}
return src;
}
std::string to_hex(u64 value, u64 count = 1);
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std::string to_udec(u64 value);
std::string to_sdec(s64 value);
std::string _format(const char* fmt...) noexcept;
std::string _vformat(const char*, va_list) noexcept;
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// Formatting function with special functionality (fmt::unveil)
template<typename... Args>
force_inline std::string format(const char* fmt, const Args&... args) noexcept
{
return _format(fmt, ::unveil<Args>::get(args)...);
}
// Helper class
class exception_base : public std::runtime_error
{
// Helper (there is no other room)
va_list m_args;
protected:
// Internal formatting constructor
exception_base(const char* fmt...);
};
// Exception type derived from std::runtime_error with formatting constructor
class exception : public exception_base
{
public:
// Formatting constructor
template<typename... Args>
exception(const char* fmt, const Args&... args)
: exception_base(fmt, ::unveil<Args>::get(args)...)
{
}
};
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// Narrow cast (similar to gsl::narrow) with exception message formatting
template<typename To, typename From, typename... Args>
inline auto narrow(const char* format_str, const From& value, const Args&... args) -> decltype(static_cast<To>(static_cast<From>(std::declval<To>())))
{
const auto result = static_cast<To>(value);
if (static_cast<From>(result) != value) throw fmt::exception(format_str, value, args...);
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return result;
}
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std::vector<std::string> split(const std::string& source, std::initializer_list<std::string> separators, bool is_skip_empty = true);
std::string trim(const std::string& source, const std::string& values = " \t");
template<typename T>
std::string merge(const T& source, const std::string& separator)
{
if (!source.size())
{
return{};
}
std::string result;
auto it = source.begin();
auto end = source.end();
for (--end; it != end; ++it)
{
result += *it + separator;
}
return result + source.back();
}
template<typename T>
std::string merge(std::initializer_list<T> sources, const std::string& separator)
{
if (!sources.size())
{
return{};
}
std::string result;
bool first = true;
for (auto &v : sources)
{
if (first)
{
result = fmt::merge(v, separator);
first = false;
}
else
{
result += separator + fmt::merge(v, separator);
}
}
return result;
}
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template<typename IT>
std::string to_lower(IT _begin, IT _end)
{
std::string result; result.resize(_end - _begin);
std::transform(_begin, _end, result.begin(), ::tolower);
return result;
}
template<typename T>
std::string to_lower(const T& string)
{
return to_lower(std::begin(string), std::end(string));
}
template<typename IT>
std::string to_upper(IT _begin, IT _end)
{
std::string result; result.resize(_end - _begin);
std::transform(_begin, _end, result.begin(), ::toupper);
return result;
}
template<typename T>
std::string to_upper(const T& string)
{
return to_upper(std::begin(string), std::end(string));
}
std::string escape(const std::string& source, std::initializer_list<char> more = {});
std::string unescape(const std::string& source);
bool match(const std::string &source, const std::string &mask);
}