mirror of
https://github.com/matrix-construct/construct
synced 2024-11-30 02:32:43 +01:00
521 lines
10 KiB
C++
521 lines
10 KiB
C++
/*
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* charybdis: an advanced ircd.
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* client.c: Controls clients.
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*
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* Copyright (C) 1990 Jarkko Oikarinen and University of Oulu, Co Center
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* Copyright (C) 1996-2002 Hybrid Development Team
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* Copyright (C) 2002-2005 ircd-ratbox development team
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* Copyright (C) 2007 William Pitcock
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* Copyright (C) 2016 Charybdis Development Team
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* Copyright (C) 2016 Jason Volk <jason@zemos.net>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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* USA
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*/
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#include <boost/asio.hpp>
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#include <ircd/sock.h>
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#include "rbuf.h"
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namespace ircd {
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struct client
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:std::enable_shared_from_this<client>
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{
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struct rbuf rbuf;
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clist::const_iterator clit;
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std::shared_ptr<struct sock> sock;
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client();
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client(const client &) = delete;
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client &operator=(const client &) = delete;
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~client() noexcept;
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};
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client *me;
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std::unique_ptr<db::handle> client_db;
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clist client_list;
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hook::sequence<client &> h_client_added;
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bool handle_ec_eof(client &);
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bool handle_ec_cancel(client &);
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bool handle_ec_success(client &);
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bool handle_ec(client &, const error_code &);
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void handle_recv(client &, const error_code &, const size_t);
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} // namespace ircd
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using namespace ircd;
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client_init::client_init()
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{
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client_db.reset(new db::handle("clients"));
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}
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client_init::~client_init()
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noexcept
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{
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disconnect_all();
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client_db.reset(nullptr);
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}
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client::client()
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{
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}
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client::~client()
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noexcept
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{
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}
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const clist &
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ircd::clients()
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{
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return client_list;
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}
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std::shared_ptr<client>
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ircd::add_client(std::shared_ptr<struct sock> sock)
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{
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auto client(add_client());
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client->sock = std::move(sock);
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log::info("New client[%s] on local[%s]",
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string(remote_address(*client)).c_str(),
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string(local_address(*client)).c_str());
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h_client_added(*client);
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async_recv_next(*client);
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return client;
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}
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std::shared_ptr<client>
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ircd::add_client()
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{
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auto client(std::make_shared<client>());
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client->clit = client_list.emplace(end(client_list), client);
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return client;
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}
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void
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ircd::finished(client &client)
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{
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const auto p(shared_from(client));
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client_list.erase(client.clit);
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log::debug("client[%p] finished. (refs: %zu)", (const void *)p.get(), p.use_count());
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}
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size_t
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ircd::recv(client &client,
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char *const &buf,
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const size_t &max,
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milliseconds &timeout)
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try
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{
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using std::chrono::duration_cast;
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auto &sock(socket(client));
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sock.set_timeout(timeout);
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const auto ret(sock.recv_some(mutable_buffers_1(buf, max)));
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if(timeout < milliseconds(0))
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return ret;
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sock.timer.cancel();
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timeout = duration_cast<milliseconds>(sock.timer.expires_from_now());
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return ret;
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}
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catch(const boost::system::system_error &e)
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{
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using namespace boost::system::errc;
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using boost::asio::error::eof;
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switch(e.code().value())
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{
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case success:
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return 0;
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case eof:
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throw disconnected();
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case operation_canceled:
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if(socket(client).timedout)
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throw ctx::timeout();
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else
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throw ctx::interrupted();
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default:
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throw error("%s", e.what());
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}
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}
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void
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ircd::send(client &client,
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text_terminate_t,
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const std::string &text)
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{
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send(client, text_terminate, text.c_str(), text.size());
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}
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void
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ircd::send(client &client,
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text_terminate_t,
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const char *const &text)
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{
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send(client, text_terminate, text, strlen(text));
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}
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void
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ircd::send(client &client,
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text_terminate_t,
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const char *const &text,
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const size_t &len)
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{
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assert(len <= 510);
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const std::array<const_buffer, 2> buffers
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{{
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{ text, len },
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{ "\r\n", 2 }
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}};
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auto &sock(socket(client));
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sock.send(buffers);
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}
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void
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ircd::send(client &client,
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text_raw_t,
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const std::string &text)
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{
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send(client, text_raw, text.c_str(), text.size());
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}
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void
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ircd::send(client &client,
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text_raw_t,
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const char *const &text)
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{
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send(client, text_raw, text, strlen(text));
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}
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void
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ircd::send(client &client,
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text_raw_t,
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const char *const &text,
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const size_t &len)
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{
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assert(len <= 512);
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auto &sock(socket(client));
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sock.send(const_buffers_1(text, len));
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}
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void
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ircd::disconnect_all()
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{
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for(auto &client : client_list)
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disconnect(std::nothrow, *client, dc::RST);
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}
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bool
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ircd::disconnect(std::nothrow_t,
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client &client,
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const dc &type)
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noexcept try
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{
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if(!client.sock)
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return true;
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disconnect(client, type);
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return true;
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}
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catch(...)
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{
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return false;
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}
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void
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ircd::disconnect(client &client,
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const dc &type)
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{
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auto &sock(socket(client));
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sock.disconnect(type);
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}
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bool
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ircd::connected(const client &client)
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noexcept
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try
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{
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return socket(client).sd.is_open();
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}
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catch(...)
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{
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return false;
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}
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void
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ircd::async_recv_next(client &client)
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{
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async_recv_next(client, std::chrono::milliseconds(-1));
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}
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void
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ircd::async_recv_next(client &client,
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const std::chrono::milliseconds &timeout)
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{
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using boost::asio::async_read;
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auto &rbuf(client.rbuf);
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rbuf.reset();
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auto &sock(*client.sock);
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sock.set_timeout(timeout);
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async_read(sock.sd, mutable_buffers_1(data(rbuf.buf), size(rbuf.buf)),
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std::bind(&rbuf::handle_pck, &rbuf, ph::_1, ph::_2),
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std::bind(&ircd::handle_recv, std::ref(client), ph::_1, ph::_2));
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}
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void
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ircd::async_recv_cancel(client &client)
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{
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auto &sock(socket(client));
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sock.sd.cancel();
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}
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void
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ircd::handle_recv(client &client,
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const error_code &ec,
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const size_t bytes)
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try
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{
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if(!handle_ec(client, ec))
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return;
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auto &rbuf(client.rbuf);
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execute(client, rbuf.reel);
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}
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catch(const std::exception &e)
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{
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log::error("client[%s]: error: %s",
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string(remote_address(client)).c_str(),
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e.what());
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finished(client);
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}
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bool
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ircd::handle_ec(client &client,
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const error_code &ec)
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{
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using namespace boost::system::errc;
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using boost::asio::error::eof;
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if(client.rbuf.eptr)
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std::rethrow_exception(client.rbuf.eptr);
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switch(ec.value())
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{
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case success: return handle_ec_success(client);
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case operation_canceled: return handle_ec_cancel(client);
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case eof: return handle_ec_eof(client);
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default: throw boost::system::system_error(ec);
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}
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}
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bool
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ircd::handle_ec_success(client &client)
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{
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auto &sock(*client.sock);
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{
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error_code ec;
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sock.timer.cancel(ec);
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assert(ec == boost::system::errc::success);
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}
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return true;
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}
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bool
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ircd::handle_ec_cancel(client &client)
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{
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auto &sock(*client.sock);
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// The cancel can come from a timeout or directly.
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// If directly, the timer may still needs to be canceled
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if(!sock.timedout)
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{
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error_code ec;
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sock.timer.cancel(ec);
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assert(ec == boost::system::errc::success);
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log::debug("client[%s]: recv canceled", string(remote_address(client)).c_str());
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return false;
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}
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log::debug("client[%s]: recv timeout", string(remote_address(client)).c_str());
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finished(client);
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return false;
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}
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bool
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ircd::handle_ec_eof(client &client)
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{
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log::debug("client[%s]: eof", string(remote_address(client)).c_str());
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finished(client);
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return false;
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}
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void
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ircd::execute(client &client,
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const uint8_t *const &ptr,
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const size_t &len)
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{
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execute(client, line(ptr, len));
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}
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void
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ircd::execute(client &client,
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const std::string &l)
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{
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execute(client, line(l));
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}
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void
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ircd::execute(client &client,
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tape &reel)
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{
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context([wp(weak_from(client)), &client, &reel]
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{
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// Hold the client for the lifetime of this context
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const life_guard<struct client> lg(wp);
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while(!reel.empty()) try
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{
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auto &line(reel.front());
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const scope pop([&reel]
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{
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reel.pop_front();
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});
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if(line.empty())
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continue;
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auto &handle(cmds::find(command(line)));
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handle(client, std::move(line));
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}
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catch(const std::exception &e)
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{
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log::error("vm: %s", e.what());
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disconnect(client);
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finished(client);
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return;
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}
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async_recv_next(client);
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},
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ctx::DEFER_POST | ctx::SELF_DESTRUCT);
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}
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void
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ircd::execute(client &c,
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line line)
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{
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if(line.empty())
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return;
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auto &handle(cmds::find(command(line)));
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handle(c, std::move(line));
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}
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std::string
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ircd::string(const ip_port &pair)
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{
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std::string ret(64, '\0');
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ret.resize(snprintf(&ret.front(), ret.size(), "%s:%u",
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pair.first.c_str(),
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pair.second));
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return ret;
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}
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ircd::ip_port
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ircd::local_address(const client &client)
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try
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{
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const auto &sock(socket(client));
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return { local_ip(sock), local_port(sock) };
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}
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catch(const std::bad_weak_ptr &)
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{
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return { "0.0.0.0"s, 0 };
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}
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ircd::ip_port
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ircd::remote_address(const client &client)
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try
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{
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const auto &sock(socket(client));
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return { remote_ip(sock), remote_port(sock) };
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}
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catch(const std::bad_weak_ptr &)
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{
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return { "0.0.0.0"s, 0 };
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}
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sock &
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ircd::socket(client &client)
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{
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if(unlikely(!has_socket(client)))
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throw std::bad_weak_ptr();
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return *client.sock;
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}
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const sock &
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ircd::socket(const client &client)
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{
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if(unlikely(!has_socket(client)))
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throw std::bad_weak_ptr();
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return *client.sock;
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}
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bool
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ircd::has_socket(const client &client)
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{
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return bool(client.sock);
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}
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std::weak_ptr<client>
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ircd::weak_from(client &client)
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{
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return shared_from(client);
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}
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std::weak_ptr<const client>
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ircd::weak_from(const client &client)
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{
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return shared_from(client);
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}
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std::shared_ptr<client>
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ircd::shared_from(client &client)
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{
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return client.shared_from_this();
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}
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std::shared_ptr<const client>
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ircd::shared_from(const client &client)
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{
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return client.shared_from_this();
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}
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