Files
tdesktop/Telegram/lib_base/base/overload.h
allhaileris afb81b8278
Some checks failed
Docker. / Ubuntu (push) Has been cancelled
User-agent updater. / User-agent (push) Failing after 15s
Lock Threads / lock (push) Failing after 10s
Waiting for answer. / waiting-for-answer (push) Failing after 22s
Close stale issues and PRs / stale (push) Successful in 13s
Needs user action. / needs-user-action (push) Failing after 8s
Can't reproduce. / cant-reproduce (push) Failing after 8s
init
2026-02-16 15:50:16 +03:00

89 lines
2.4 KiB
C++

// This file is part of Desktop App Toolkit,
// a set of libraries for developing nice desktop applications.
//
// For license and copyright information please follow this link:
// https://github.com/desktop-app/legal/blob/master/LEGAL
//
#pragma once
namespace base {
namespace details {
// This implementation was taken from range-v3 library.
// It was modified so that more than one of passed function objects
// could be called with an argument list and the first one that
// matches gets used instead of a compile-time ambiguity error.
//
// This allows to write "default" visitor handlers with [](auto&&) syntax.
template <typename ...Args>
constexpr bool is_callable_v = rpl::details::is_callable_plain_v<Args...>;
template <typename ...Args>
struct overloaded;
template <>
struct overloaded<> {
};
template <typename First, typename ...Rest>
struct overloaded<First, Rest...>
: private First
, private overloaded<Rest...> {
private:
using Others = overloaded<Rest...>;
public:
overloaded() = default;
constexpr overloaded(First first, Rest... rest)
: First(std::move(first))
, Others(std::move(rest)...) {
}
template <typename... Args>
auto operator()(Args&&... args)
-> decltype(std::declval<First&>()(std::forward<Args>(args)...)) {
return static_cast<First&>(*this)(std::forward<Args>(args)...);
}
template <typename... Args>
auto operator()(Args&&... args) const
-> decltype(std::declval<const First&>()(std::forward<Args>(args)...)) {
return static_cast<const First&>(*this)(std::forward<Args>(args)...);
}
template <
typename... Args,
typename = std::enable_if_t<!is_callable_v<First&, Args&&...>>>
auto operator()(Args&&... args)
-> decltype(std::declval<Others&>()(std::forward<Args>(args)...)) {
return static_cast<Others&>(*this)(std::forward<Args>(args)...);
}
template <
typename... Args,
typename = std::enable_if_t<!is_callable_v<const First&, Args&&...>>>
auto operator()(Args&&... args) const
-> decltype(std::declval<const Others&>()(std::forward<Args>(args)...)) {
return static_cast<const Others&>(*this)(std::forward<Args>(args)...);
}
};
} // namespace details
template <typename Function>
Function overload(Function &&function) {
return std::forward<Function>(function);
}
template <typename ...Functions, typename = std::enable_if_t<(sizeof...(Functions) > 1)>>
auto overload(Functions ...functions) {
return details::overloaded<Functions...>(std::move(functions)...);
}
} // namespace base