636 lines
14 KiB
C++
636 lines
14 KiB
C++
/*
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This file is part of Telegram Desktop,
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the official desktop application for the Telegram messaging service.
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For license and copyright information please follow this link:
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https://github.com/telegramdesktop/tdesktop/blob/master/LEGAL
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*/
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#pragma once
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#include <gsl/gsl_assert>
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#include <rpl/lifetime.h>
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#include <rpl/details/callable.h>
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// GCC 7.2 can't handle not type-erased consumers.
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// It eats up 4GB RAM + 16GB swap on the unittest and dies.
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// Clang and Visual C++ both handle it without such problems.
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#if defined _DEBUG || defined COMPILER_GCC
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#define RPL_CONSUMER_TYPE_ERASED_ALWAYS
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#endif // _DEBUG || COMPILER_GCC
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namespace rpl {
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namespace details {
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template <
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typename Value,
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typename Error,
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typename OnNext,
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typename OnError,
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typename OnDone>
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class consumer_handlers;
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template <typename Value, typename Error>
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class type_erased_handlers {
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public:
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virtual bool put_next(Value &&value) = 0;
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virtual bool put_next_copy(const Value &value) = 0;
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virtual void put_error(Error &&error) = 0;
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virtual void put_error_copy(const Error &error) = 0;
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virtual void put_done() = 0;
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bool add_lifetime(lifetime &&lifetime);
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template <typename Type, typename... Args>
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Type *make_state(Args&& ...args);
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void terminate();
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virtual ~type_erased_handlers() = default;
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protected:
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lifetime _lifetime;
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bool _terminated = false;
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};
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template <typename Handlers>
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struct is_type_erased_handlers
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: std::false_type {
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};
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template <typename Value, typename Error>
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struct is_type_erased_handlers<type_erased_handlers<Value, Error>>
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: std::true_type {
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};
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template <typename Handlers>
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constexpr bool is_type_erased_handlers_v
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= is_type_erased_handlers<Handlers>::value;
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template <typename Value, typename Error, typename OnNext, typename OnError, typename OnDone>
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class consumer_handlers final
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: public type_erased_handlers<Value, Error> {
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public:
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template <
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typename OnNextOther,
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typename OnErrorOther,
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typename OnDoneOther>
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consumer_handlers(
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OnNextOther &&next,
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OnErrorOther &&error,
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OnDoneOther &&done)
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: _next(std::forward<OnNextOther>(next))
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, _error(std::forward<OnErrorOther>(error))
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, _done(std::forward<OnDoneOther>(done)) {
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}
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bool put_next(Value &&value) final override;
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bool put_next_copy(const Value &value) final override;
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void put_error(Error &&error) final override;
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void put_error_copy(const Error &error) final override;
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void put_done() final override;
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private:
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OnNext _next;
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OnError _error;
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OnDone _done;
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};
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template <typename Value, typename Error>
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inline bool type_erased_handlers<Value, Error>::add_lifetime(
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lifetime &&lifetime) {
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if (_terminated) {
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lifetime.destroy();
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return false;
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}
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_lifetime.add(std::move(lifetime));
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return true;
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}
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template <typename Value, typename Error>
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template <typename Type, typename... Args>
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inline Type *type_erased_handlers<Value, Error>::make_state(
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Args&& ...args) {
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if (_terminated) {
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return nullptr;
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}
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return _lifetime.make_state<Type>(std::forward<Args>(args)...);
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}
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template <typename Value, typename Error>
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inline void type_erased_handlers<Value, Error>::terminate() {
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if (!_terminated) {
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_terminated = true;
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_lifetime.destroy();
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}
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}
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template <
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typename Value,
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typename Error,
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typename OnNext,
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typename OnError,
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typename OnDone>
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bool consumer_handlers<
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Value,
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Error,
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OnNext,
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OnError,
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OnDone
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>::put_next(Value &&value) {
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if (this->_terminated) {
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return false;
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}
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auto handler = this->_next;
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details::callable_invoke(std::move(handler), std::move(value));
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return true;
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}
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template <
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typename Value,
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typename Error,
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typename OnNext,
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typename OnError,
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typename OnDone>
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bool consumer_handlers<
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Value,
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Error,
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OnNext,
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OnError,
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OnDone
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>::put_next_copy(const Value &value) {
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if (this->_terminated) {
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return false;
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}
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auto handler = this->_next;
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details::const_ref_call_invoke(std::move(handler), value);
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return true;
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}
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template <
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typename Value,
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typename Error,
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typename OnNext,
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typename OnError,
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typename OnDone>
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void consumer_handlers<
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Value,
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Error,
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OnNext,
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OnError,
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OnDone
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>::put_error(Error &&error) {
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if (!this->_terminated) {
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details::callable_invoke(
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std::move(this->_error),
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std::move(error));
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this->terminate();
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}
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}
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template <
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typename Value,
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typename Error,
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typename OnNext,
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typename OnError,
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typename OnDone>
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void consumer_handlers<
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Value,
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Error,
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OnNext,
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OnError,
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OnDone
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>::put_error_copy(const Error &error) {
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if (!this->_terminated) {
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details::const_ref_call_invoke(
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std::move(this->_error),
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error);
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this->terminate();
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}
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}
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template <
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typename Value,
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typename Error,
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typename OnNext,
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typename OnError,
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typename OnDone>
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void consumer_handlers<
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Value,
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Error,
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OnNext,
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OnError,
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OnDone
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>::put_done() {
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if (!this->_terminated) {
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std::move(this->_done)();
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this->terminate();
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}
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}
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} // namespace details
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struct no_value {
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no_value() = delete;
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};
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struct no_error {
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no_error() = delete;
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};
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struct empty_value {
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};
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struct empty_error {
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};
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template <
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typename Value = empty_value,
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typename Error = no_error,
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typename Handlers = details::type_erased_handlers<Value, Error>>
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class consumer;
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namespace details {
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template <typename Value, typename Error, typename Handlers>
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class consumer_base {
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static constexpr bool is_type_erased
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= is_type_erased_handlers_v<Handlers>;
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public:
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template <
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typename OnNext,
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typename OnError,
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typename OnDone>
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consumer_base(
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OnNext &&next,
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OnError &&error,
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OnDone &&done);
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bool put_next(Value &&value) const;
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bool put_next_copy(const Value &value) const;
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bool put_next_forward(Value &&value) const {
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return put_next(std::move(value));
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}
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bool put_next_forward(const Value &value) const {
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return put_next_copy(value);
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}
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void put_error(Error &&error) const;
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void put_error_copy(const Error &error) const;
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void put_error_forward(Error &&error) const {
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return put_error(std::move(error));
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}
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void put_error_forward(const Error &error) const {
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return put_error_copy(error);
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}
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void put_done() const;
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bool add_lifetime(lifetime &&lifetime) const;
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template <typename Type, typename... Args>
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Type *make_state(Args&& ...args) const;
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void terminate() const;
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auto terminator() const {
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return [self = *this] {
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self.terminate();
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};
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}
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const details::type_erased_handlers<Value, Error> *comparable() const {
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return _handlers.get();
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}
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private:
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template <
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typename OtherHandlers,
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typename = std::enable_if_t<
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std::is_base_of_v<Handlers, OtherHandlers>>>
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consumer_base(const std::shared_ptr<OtherHandlers> &handlers)
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: _handlers(handlers) {
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}
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template <
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typename OtherHandlers,
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typename = std::enable_if_t<
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std::is_base_of_v<Handlers, OtherHandlers>>>
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consumer_base(std::shared_ptr<OtherHandlers> &&handlers)
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: _handlers(std::move(handlers)) {
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}
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mutable std::shared_ptr<Handlers> _handlers;
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bool handlers_put_next(Value &&value) const {
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if constexpr (is_type_erased) {
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return _handlers->put_next(std::move(value));
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} else {
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return _handlers->Handlers::put_next(std::move(value));
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}
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}
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bool handlers_put_next_copy(const Value &value) const {
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if constexpr (is_type_erased) {
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return _handlers->put_next_copy(value);
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} else {
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return _handlers->Handlers::put_next_copy(value);
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}
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}
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std::shared_ptr<Handlers> take_handlers() const {
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return std::exchange(_handlers, nullptr);
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}
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template <
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typename OtherValue,
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typename OtherError,
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typename OtherHandlers>
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friend class ::rpl::consumer;
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};
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template <typename Value, typename Error, typename Handlers>
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template <typename OnNext, typename OnError, typename OnDone>
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inline consumer_base<Value, Error, Handlers>::consumer_base(
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OnNext &&next,
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OnError &&error,
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OnDone &&done)
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: _handlers(std::make_shared<consumer_handlers<
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Value,
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Error,
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std::decay_t<OnNext>,
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std::decay_t<OnError>,
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std::decay_t<OnDone>>>(
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std::forward<OnNext>(next),
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std::forward<OnError>(error),
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std::forward<OnDone>(done))) {
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}
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template <typename Value, typename Error, typename Handlers>
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inline bool consumer_base<Value, Error, Handlers>::put_next(
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Value &&value) const {
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if (_handlers) {
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if (handlers_put_next(std::move(value))) {
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return true;
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}
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_handlers = nullptr;
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}
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return false;
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}
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template <typename Value, typename Error, typename Handlers>
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inline bool consumer_base<Value, Error, Handlers>::put_next_copy(
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const Value &value) const {
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if (_handlers) {
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if (handlers_put_next_copy(value)) {
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return true;
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}
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_handlers = nullptr;
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}
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return false;
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}
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template <typename Value, typename Error, typename Handlers>
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inline void consumer_base<Value, Error, Handlers>::put_error(
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Error &&error) const {
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if (_handlers) {
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if constexpr (is_type_erased) {
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take_handlers()->put_error(std::move(error));
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} else {
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take_handlers()->Handlers::put_error(std::move(error));
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}
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}
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}
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template <typename Value, typename Error, typename Handlers>
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inline void consumer_base<Value, Error, Handlers>::put_error_copy(
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const Error &error) const {
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if (_handlers) {
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if constexpr (is_type_erased) {
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take_handlers()->put_error_copy(error);
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} else {
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take_handlers()->Handlers::put_error_copy(error);
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}
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}
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}
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template <typename Value, typename Error, typename Handlers>
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inline void consumer_base<Value, Error, Handlers>::put_done() const {
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if (_handlers) {
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if constexpr (is_type_erased) {
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take_handlers()->put_done();
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} else {
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take_handlers()->Handlers::put_done();
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}
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}
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}
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template <typename Value, typename Error, typename Handlers>
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inline bool consumer_base<Value, Error, Handlers>::add_lifetime(
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lifetime &&lifetime) const {
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if (!_handlers) {
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lifetime.destroy();
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return false;
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}
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if (_handlers->add_lifetime(std::move(lifetime))) {
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return true;
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}
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_handlers = nullptr;
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return false;
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}
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template <typename Value, typename Error, typename Handlers>
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template <typename Type, typename... Args>
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inline Type *consumer_base<Value, Error, Handlers>::make_state(
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Args&& ...args) const {
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if (!_handlers) {
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return nullptr;
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}
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if (auto result = _handlers->template make_state<Type>(
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std::forward<Args>(args)...)) {
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return result;
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}
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_handlers = nullptr;
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return nullptr;
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}
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template <typename Value, typename Error, typename Handlers>
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inline void consumer_base<Value, Error, Handlers>::terminate() const {
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if (_handlers) {
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std::exchange(_handlers, nullptr)->terminate();
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}
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}
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template <typename Value, typename Error>
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using consumer_base_type_erased = consumer_base<
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Value,
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Error,
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details::type_erased_handlers<Value, Error>>;
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template <typename Value, typename Error, typename Handlers>
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constexpr bool is_specific_handlers_v = !std::is_same_v<
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details::type_erased_handlers<Value, Error>,
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Handlers
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> && std::is_base_of_v<
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details::type_erased_handlers<Value, Error>,
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Handlers
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>;
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} // namespace details
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template <typename Value, typename Error, typename Handlers>
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class consumer final
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: public details::consumer_base<Value, Error, Handlers> {
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using parent_type = details::consumer_base<
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Value,
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Error,
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Handlers>;
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public:
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using parent_type::parent_type;
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};
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template <typename Value, typename Error>
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class consumer<Value, Error, details::type_erased_handlers<Value, Error>> final
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: public details::consumer_base_type_erased<Value, Error> {
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using parent_type = details::consumer_base_type_erased<
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Value,
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Error>;
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public:
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using parent_type::parent_type;
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template <
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typename Handlers,
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typename = std::enable_if_t<
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details::is_specific_handlers_v<Value, Error, Handlers>>>
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consumer(const details::consumer_base<Value, Error, Handlers> &other)
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: parent_type(other._handlers) {
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}
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template <
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typename Handlers,
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typename = std::enable_if_t<
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details::is_specific_handlers_v<Value, Error, Handlers>>>
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consumer(details::consumer_base<Value, Error, Handlers> &&other)
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: parent_type(std::move(other._handlers)) {
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}
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template <
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typename Handlers,
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typename = std::enable_if_t<
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details::is_specific_handlers_v<Value, Error, Handlers>>>
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consumer &operator=(
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const details::consumer_base<Value, Error, Handlers> &other) {
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this->_handlers = other._handlers;
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return *this;
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}
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template <
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typename Handlers,
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typename = std::enable_if_t<
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details::is_specific_handlers_v<Value, Error, Handlers>>>
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consumer &operator=(
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details::consumer_base<Value, Error, Handlers> &&other) {
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this->_handlers = std::move(other._handlers);
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return *this;
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}
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};
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template <
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typename Value,
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typename Error,
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typename Handlers1,
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typename Handlers2>
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inline bool operator==(
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const consumer<Value, Error, Handlers1> &a,
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const consumer<Value, Error, Handlers2> &b) {
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return a.comparable() == b.comparable();
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}
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template <
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typename Value,
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typename Error,
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typename Handlers1,
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typename Handlers2>
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inline bool operator<(
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const consumer<Value, Error, Handlers1> &a,
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const consumer<Value, Error, Handlers2> &b) {
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return a.comparable() < b.comparable();
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}
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template <
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typename Value,
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typename Error,
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typename Handlers1,
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typename Handlers2>
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inline bool operator!=(
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const consumer<Value, Error, Handlers1> &a,
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const consumer<Value, Error, Handlers2> &b) {
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return !(a == b);
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}
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template <
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typename Value,
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typename Error,
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typename Handlers1,
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typename Handlers2>
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inline bool operator>(
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const consumer<Value, Error, Handlers1> &a,
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const consumer<Value, Error, Handlers2> &b) {
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return b < a;
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}
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template <
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typename Value,
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typename Error,
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typename Handlers1,
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typename Handlers2>
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inline bool operator<=(
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const consumer<Value, Error, Handlers1> &a,
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const consumer<Value, Error, Handlers2> &b) {
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return !(b < a);
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}
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|
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template <
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typename Value,
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typename Error,
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typename Handlers1,
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typename Handlers2>
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inline bool operator>=(
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const consumer<Value, Error, Handlers1> &a,
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const consumer<Value, Error, Handlers2> &b) {
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|
return !(a < b);
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|
}
|
|
|
|
template <
|
|
typename Value,
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|
typename Error,
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|
typename OnNext,
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|
typename OnError,
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|
typename OnDone,
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|
typename = std::enable_if_t<
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|
details::is_callable_v<OnNext, Value> &&
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|
details::is_callable_v<OnError, Error> &&
|
|
details::is_callable_v<OnDone>>>
|
|
#ifdef RPL_CONSUMER_TYPE_ERASED_ALWAYS
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|
inline consumer<Value, Error> make_consumer(
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|
#else // RPL_CONSUMER_TYPE_ERASED_ALWAYS
|
|
inline auto make_consumer(
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|
#endif // !RPL_CONSUMER_TYPE_ERASED_ALWAYS
|
|
OnNext &&next,
|
|
OnError &&error,
|
|
OnDone &&done) {
|
|
return consumer<Value, Error, details::consumer_handlers<
|
|
Value,
|
|
Error,
|
|
std::decay_t<OnNext>,
|
|
std::decay_t<OnError>,
|
|
std::decay_t<OnDone>>>(
|
|
std::forward<OnNext>(next),
|
|
std::forward<OnError>(error),
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|
std::forward<OnDone>(done));
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|
}
|
|
|
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} // namespace rpl
|