mirror of
https://github.com/matrix-construct/construct
synced 2024-11-30 02:32:43 +01:00
314 lines
7.4 KiB
C++
314 lines
7.4 KiB
C++
// Matrix Construct
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//
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// Copyright (C) Matrix Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2018 Jason Volk <jason@zemos.net>
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice is present in all copies. The
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// full license for this software is available in the LICENSE file.
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#pragma once
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#define HAVE_IRCD_NET_SOCKET_H
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// This file is not included with the IRCd standard include stack because
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// it requires symbols we can't forward declare without boost headers. It
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// is part of the <ircd/asio.h> stack which can be included in your
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// definition file if you need low level access to this socket API.
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namespace ircd::net
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{
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extern asio::ssl::context sslv23_client;
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}
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/// Internal socket interface
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///
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struct ircd::net::socket
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:std::enable_shared_from_this<ircd::net::socket>
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{
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struct io;
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struct stat;
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struct xfer;
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using endpoint = ip::tcp::endpoint;
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using wait_type = ip::tcp::socket::wait_type;
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using message_flags = asio::socket_base::message_flags;
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using handshake_type = asio::ssl::stream<ip::tcp::socket>::handshake_type;
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using ec_handler = std::function<void (const error_code &)>;
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using eptr_handler = std::function<void (std::exception_ptr)>;
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struct stat
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{
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size_t bytes {0};
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size_t calls {0};
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};
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static uint64_t count; // monotonic
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static uint64_t instances; // current socket count
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ip::tcp::socket sd;
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asio::ssl::stream<ip::tcp::socket &> ssl;
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stat in, out;
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steady_timer timer;
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uint64_t timer_sem[2] {0}; // handler, sender
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bool timer_set {false}; // boolean lockout
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bool timedout {false};
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bool fini {false};
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void call_user(const eptr_handler &, const error_code &) noexcept;
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void call_user(const ec_handler &, const error_code &) noexcept;
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bool handle_verify(bool, asio::ssl::verify_context &, const open_opts &) noexcept;
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void handle_disconnect(std::shared_ptr<socket>, eptr_handler, error_code) noexcept;
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void handle_handshake(std::weak_ptr<socket>, eptr_handler, error_code) noexcept;
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void handle_connect(std::weak_ptr<socket>, open_opts, eptr_handler, error_code) noexcept;
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void handle_timeout(std::weak_ptr<socket>, ec_handler, error_code) noexcept;
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void handle_ready(std::weak_ptr<socket>, ready, ec_handler, error_code, size_t) noexcept;
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public:
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operator const ip::tcp::socket &() const { return sd; }
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operator ip::tcp::socket &() { return sd; }
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operator const SSL &() const;
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operator SSL &();
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endpoint remote() const; // getpeername(); throws if not conn
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endpoint local() const; // getsockname(); throws if not conn/bound
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// Timer for this socket
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void set_timeout(const milliseconds &, ec_handler);
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void set_timeout(const milliseconds &);
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milliseconds cancel_timeout() noexcept;
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// low level write suite
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template<class iov> size_t write_one(iov&&); // non-blocking
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template<class iov> size_t write_any(iov&&); // non-blocking
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template<class iov> size_t write_few(iov&&); // yielding
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template<class iov> size_t write_all(iov&&); // yielding
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// low level read suite
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template<class iov> size_t read_one(iov&&); // non-blocking
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template<class iov> size_t read_any(iov&&); // non-blocking
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template<class iov> size_t read_few(iov&&); // yielding
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template<class iov> size_t read_all(iov&&); // yielding
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// low level wait suite
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void wait(const wait_opts &);
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void wait(const wait_opts &, wait_callback_ec);
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void wait(const wait_opts &, wait_callback_eptr);
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void cancel() noexcept;
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// Alias to wait()
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template<class... args> auto operator()(args&&...);
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void disconnect(const close_opts &, eptr_handler);
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void handshake(const open_opts &, eptr_handler);
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void connect(const endpoint &, const open_opts &, eptr_handler);
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socket(asio::ssl::context &ssl = sslv23_client,
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boost::asio::io_service *const &ios = ircd::ios);
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// Socket cannot be copied or moved; must be constructed as shared ptr
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socket(socket &&) = delete;
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socket(const socket &) = delete;
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socket &operator=(socket &&) = delete;
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socket &operator=(const socket &) = delete;
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~socket() noexcept;
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};
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template<class... args>
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auto
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ircd::net::socket::operator()(args&&... a)
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{
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return this->wait(std::forward<args>(a)...);
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}
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/// Yields ircd::ctx until buffers are full.
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template<class iov>
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size_t
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ircd::net::socket::read_all(iov&& bufs)
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{
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static const auto completion
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{
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asio::transfer_all()
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};
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const auto interruption{[this]
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(ctx::ctx *const &) noexcept
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{
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this->cancel();
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}};
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const size_t ret
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{
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asio::async_read(ssl, std::forward<iov>(bufs), completion, yield_context
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{
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to_asio{interruption}
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})
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};
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if(!ret)
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throw boost::system::system_error
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{
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boost::asio::error::eof
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};
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in.bytes += ret;
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++in.calls;
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return ret;
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}
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/// Yields ircd::ctx until remote has sent at least some data.
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template<class iov>
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size_t
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ircd::net::socket::read_few(iov&& bufs)
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{
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const auto interruption{[this]
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(ctx::ctx *const &) noexcept
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{
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this->cancel();
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}};
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const size_t ret
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{
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ssl.async_read_some(std::forward<iov>(bufs), yield_context
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{
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to_asio{interruption}
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})
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};
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if(!ret)
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throw boost::system::system_error
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{
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boost::asio::error::eof
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};
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in.bytes += ret;
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++in.calls;
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return ret;
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}
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/// Non-blocking; as much as possible without blocking
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template<class iov>
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size_t
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ircd::net::socket::read_any(iov&& bufs)
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{
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assert(!blocking(*this));
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static const auto completion
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{
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asio::transfer_all()
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};
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const size_t ret
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{
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asio::read(ssl, std::forward<iov>(bufs), completion)
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};
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in.bytes += ret;
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++in.calls;
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return ret;
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}
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/// Non-blocking; One system call only; never throws eof;
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template<class iov>
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size_t
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ircd::net::socket::read_one(iov&& bufs)
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{
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assert(!blocking(*this));
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const size_t ret
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{
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ssl.read_some(std::forward<iov>(bufs))
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};
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in.bytes += ret;
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++in.calls;
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return ret;
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}
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/// Yields ircd::ctx until all buffers are sent.
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template<class iov>
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size_t
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ircd::net::socket::write_all(iov&& bufs)
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{
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static const auto completion
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{
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asio::transfer_all()
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};
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const auto interruption{[this]
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(ctx::ctx *const &) noexcept
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{
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this->cancel();
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}};
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const size_t ret
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{
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asio::async_write(ssl, std::forward<iov>(bufs), completion, yield_context
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{
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to_asio{interruption}
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})
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};
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out.bytes += ret;
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++out.calls;
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return ret;
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}
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/// Yields ircd::ctx until one or more bytes are sent.
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template<class iov>
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size_t
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ircd::net::socket::write_few(iov&& bufs)
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{
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const auto interruption{[this]
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(ctx::ctx *const &) noexcept
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{
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this->cancel();
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}};
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const size_t ret
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{
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ssl.async_write_some(std::forward<iov>(bufs), yield_context
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{
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to_asio{interruption}
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})
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};
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out.bytes += ret;
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++out.calls;
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return ret;
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}
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/// Non-blocking; writes as much as possible without blocking
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template<class iov>
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size_t
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ircd::net::socket::write_any(iov&& bufs)
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{
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static const auto completion
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{
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asio::transfer_all()
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};
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assert(!blocking(*this));
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const size_t ret
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{
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asio::write(ssl, std::forward<iov>(bufs), completion)
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};
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out.bytes += ret;
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++out.calls;
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return ret;
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}
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/// Non-blocking; Writes one "unit" of data or less; never more.
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template<class iov>
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size_t
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ircd::net::socket::write_one(iov&& bufs)
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{
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assert(!blocking(*this));
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const size_t ret
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{
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ssl.write_some(std::forward<iov>(bufs))
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};
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out.bytes += ret;
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++out.calls;
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return ret;
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}
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