mirror of
https://codeberg.org/anoncontributorxmr/monero.git
synced 2024-11-23 19:33:28 +01:00
155475d971
new cli options (RPC ones also apply to wallet): --p2p-bind-ipv6-address (default = "::") --p2p-bind-port-ipv6 (default same as ipv4 port for given nettype) --rpc-bind-ipv6-address (default = "::1") --p2p-use-ipv6 (default false) --rpc-use-ipv6 (default false) --p2p-require-ipv4 (default true, if ipv4 bind fails and this is true, will not continue even if ipv6 bind successful) --rpc-require-ipv4 (default true, description as above) ipv6 addresses are to be specified as "[xx:xx:xx::xx:xx]:port" except in the cases of the cli args for bind address. For those the square braces can be omitted.
478 lines
19 KiB
C++
478 lines
19 KiB
C++
// Copyright (c) 2006-2013, Andrey N. Sabelnikov, www.sabelnikov.net
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are met:
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the distribution.
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// * Neither the name of the Andrey N. Sabelnikov nor the
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// names of its contributors may be used to endorse or promote products
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// derived from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER BE LIABLE FOR ANY
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// DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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#ifndef _NET_UTILS_BASE_H_
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#define _NET_UTILS_BASE_H_
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#include <boost/uuid/uuid.hpp>
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#include <boost/asio/io_service.hpp>
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#include <boost/asio/ip/address_v6.hpp>
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#include <typeinfo>
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#include <type_traits>
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#include "enums.h"
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#include "serialization/keyvalue_serialization.h"
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#include "misc_log_ex.h"
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#undef MONERO_DEFAULT_LOG_CATEGORY
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#define MONERO_DEFAULT_LOG_CATEGORY "net"
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#ifndef MAKE_IP
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#define MAKE_IP( a1, a2, a3, a4 ) (a1|(a2<<8)|(a3<<16)|(((uint32_t)a4)<<24))
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#endif
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#if BOOST_VERSION >= 107000
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#define GET_IO_SERVICE(s) ((boost::asio::io_context&)(s).get_executor().context())
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#else
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#define GET_IO_SERVICE(s) ((s).get_io_service())
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#endif
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namespace net
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{
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class tor_address;
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class i2p_address;
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}
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namespace epee
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{
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namespace net_utils
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{
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class ipv4_network_address
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{
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uint32_t m_ip;
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uint16_t m_port;
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public:
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constexpr ipv4_network_address() noexcept
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: ipv4_network_address(0, 0)
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{}
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constexpr ipv4_network_address(uint32_t ip, uint16_t port) noexcept
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: m_ip(ip), m_port(port) {}
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bool equal(const ipv4_network_address& other) const noexcept;
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bool less(const ipv4_network_address& other) const noexcept;
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constexpr bool is_same_host(const ipv4_network_address& other) const noexcept
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{ return ip() == other.ip(); }
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constexpr uint32_t ip() const noexcept { return m_ip; }
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constexpr uint16_t port() const noexcept { return m_port; }
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std::string str() const;
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std::string host_str() const;
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bool is_loopback() const;
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bool is_local() const;
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static constexpr address_type get_type_id() noexcept { return address_type::ipv4; }
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static constexpr zone get_zone() noexcept { return zone::public_; }
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static constexpr bool is_blockable() noexcept { return true; }
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(m_ip)
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KV_SERIALIZE(m_port)
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END_KV_SERIALIZE_MAP()
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};
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inline bool operator==(const ipv4_network_address& lhs, const ipv4_network_address& rhs) noexcept
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{ return lhs.equal(rhs); }
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inline bool operator!=(const ipv4_network_address& lhs, const ipv4_network_address& rhs) noexcept
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{ return !lhs.equal(rhs); }
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inline bool operator<(const ipv4_network_address& lhs, const ipv4_network_address& rhs) noexcept
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{ return lhs.less(rhs); }
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inline bool operator<=(const ipv4_network_address& lhs, const ipv4_network_address& rhs) noexcept
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{ return !rhs.less(lhs); }
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inline bool operator>(const ipv4_network_address& lhs, const ipv4_network_address& rhs) noexcept
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{ return rhs.less(lhs); }
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inline bool operator>=(const ipv4_network_address& lhs, const ipv4_network_address& rhs) noexcept
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{ return !lhs.less(rhs); }
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class ipv4_network_subnet
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{
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uint32_t m_ip;
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uint8_t m_mask;
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public:
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constexpr ipv4_network_subnet() noexcept
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: ipv4_network_subnet(0, 0)
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{}
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constexpr ipv4_network_subnet(uint32_t ip, uint8_t mask) noexcept
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: m_ip(ip), m_mask(mask) {}
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bool equal(const ipv4_network_subnet& other) const noexcept;
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bool less(const ipv4_network_subnet& other) const noexcept;
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constexpr bool is_same_host(const ipv4_network_subnet& other) const noexcept
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{ return subnet() == other.subnet(); }
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bool matches(const ipv4_network_address &address) const;
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constexpr uint32_t subnet() const noexcept { return m_ip & ~(0xffffffffull << m_mask); }
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std::string str() const;
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std::string host_str() const;
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bool is_loopback() const;
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bool is_local() const;
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static constexpr address_type get_type_id() noexcept { return address_type::invalid; }
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static constexpr zone get_zone() noexcept { return zone::public_; }
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static constexpr bool is_blockable() noexcept { return true; }
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(m_ip)
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KV_SERIALIZE(m_mask)
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END_KV_SERIALIZE_MAP()
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};
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inline bool operator==(const ipv4_network_subnet& lhs, const ipv4_network_subnet& rhs) noexcept
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{ return lhs.equal(rhs); }
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inline bool operator!=(const ipv4_network_subnet& lhs, const ipv4_network_subnet& rhs) noexcept
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{ return !lhs.equal(rhs); }
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inline bool operator<(const ipv4_network_subnet& lhs, const ipv4_network_subnet& rhs) noexcept
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{ return lhs.less(rhs); }
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inline bool operator<=(const ipv4_network_subnet& lhs, const ipv4_network_subnet& rhs) noexcept
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{ return !rhs.less(lhs); }
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inline bool operator>(const ipv4_network_subnet& lhs, const ipv4_network_subnet& rhs) noexcept
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{ return rhs.less(lhs); }
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inline bool operator>=(const ipv4_network_subnet& lhs, const ipv4_network_subnet& rhs) noexcept
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{ return !lhs.less(rhs); }
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class ipv6_network_address
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{
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protected:
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boost::asio::ip::address_v6 m_address;
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uint16_t m_port;
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public:
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ipv6_network_address()
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: ipv6_network_address(boost::asio::ip::address_v6::loopback(), 0)
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{}
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ipv6_network_address(const boost::asio::ip::address_v6& ip, uint16_t port)
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: m_address(ip), m_port(port)
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{
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}
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bool equal(const ipv6_network_address& other) const noexcept;
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bool less(const ipv6_network_address& other) const noexcept;
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bool is_same_host(const ipv6_network_address& other) const noexcept
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{ return m_address == other.m_address; }
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boost::asio::ip::address_v6 ip() const noexcept { return m_address; }
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uint16_t port() const noexcept { return m_port; }
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std::string str() const;
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std::string host_str() const;
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bool is_loopback() const;
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bool is_local() const;
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static constexpr address_type get_type_id() noexcept { return address_type::ipv6; }
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static constexpr zone get_zone() noexcept { return zone::public_; }
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static constexpr bool is_blockable() noexcept { return true; }
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static const uint8_t ID = 2;
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BEGIN_KV_SERIALIZE_MAP()
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boost::asio::ip::address_v6::bytes_type bytes = this_ref.m_address.to_bytes();
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epee::serialization::selector<is_store>::serialize_t_val_as_blob(bytes, stg, hparent_section, "addr");
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const_cast<boost::asio::ip::address_v6&>(this_ref.m_address) = boost::asio::ip::address_v6(bytes);
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KV_SERIALIZE(m_port)
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END_KV_SERIALIZE_MAP()
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};
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inline bool operator==(const ipv6_network_address& lhs, const ipv6_network_address& rhs) noexcept
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{ return lhs.equal(rhs); }
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inline bool operator!=(const ipv6_network_address& lhs, const ipv6_network_address& rhs) noexcept
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{ return !lhs.equal(rhs); }
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inline bool operator<(const ipv6_network_address& lhs, const ipv6_network_address& rhs) noexcept
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{ return lhs.less(rhs); }
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inline bool operator<=(const ipv6_network_address& lhs, const ipv6_network_address& rhs) noexcept
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{ return !rhs.less(lhs); }
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inline bool operator>(const ipv6_network_address& lhs, const ipv6_network_address& rhs) noexcept
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{ return rhs.less(lhs); }
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inline bool operator>=(const ipv6_network_address& lhs, const ipv6_network_address& rhs) noexcept
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{ return !lhs.less(rhs); }
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class network_address
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{
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struct interface
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{
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virtual ~interface() {};
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virtual bool equal(const interface&) const = 0;
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virtual bool less(const interface&) const = 0;
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virtual bool is_same_host(const interface&) const = 0;
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virtual std::string str() const = 0;
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virtual std::string host_str() const = 0;
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virtual bool is_loopback() const = 0;
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virtual bool is_local() const = 0;
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virtual address_type get_type_id() const = 0;
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virtual zone get_zone() const = 0;
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virtual bool is_blockable() const = 0;
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};
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template<typename T>
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struct implementation final : interface
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{
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T value;
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implementation(const T& src) : value(src) {}
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~implementation() = default;
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// Type-checks for cast are done in cpp
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static const T& cast(const interface& src) noexcept
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{ return static_cast<const implementation<T>&>(src).value; }
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virtual bool equal(const interface& other) const override
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{ return value.equal(cast(other)); }
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virtual bool less(const interface& other) const override
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{ return value.less(cast(other)); }
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virtual bool is_same_host(const interface& other) const override
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{ return value.is_same_host(cast(other)); }
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virtual std::string str() const override { return value.str(); }
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virtual std::string host_str() const override { return value.host_str(); }
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virtual bool is_loopback() const override { return value.is_loopback(); }
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virtual bool is_local() const override { return value.is_local(); }
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virtual address_type get_type_id() const override { return value.get_type_id(); }
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virtual zone get_zone() const override { return value.get_zone(); }
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virtual bool is_blockable() const override { return value.is_blockable(); }
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};
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std::shared_ptr<interface> self;
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template<typename Type>
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Type& as_mutable() const
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{
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// types `implmentation<Type>` and `implementation<const Type>` are unique
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using Type_ = typename std::remove_const<Type>::type;
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network_address::interface* const self_ = self.get(); // avoid clang warning in typeid
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if (!self_ || typeid(implementation<Type_>) != typeid(*self_))
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throw std::bad_cast{};
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return static_cast<implementation<Type_>*>(self_)->value;
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}
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template<typename T, typename t_storage>
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bool serialize_addr(std::false_type, t_storage& stg, typename t_storage::hsection hparent)
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{
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T addr{};
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if (!epee::serialization::selector<false>::serialize(addr, stg, hparent, "addr"))
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return false;
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*this = std::move(addr);
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return true;
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}
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template<typename T, typename t_storage>
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bool serialize_addr(std::true_type, t_storage& stg, typename t_storage::hsection hparent) const
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{
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return epee::serialization::selector<true>::serialize(as<T>(), stg, hparent, "addr");
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}
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public:
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network_address() : self(nullptr) {}
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template<typename T>
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network_address(const T& src)
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: self(std::make_shared<implementation<T>>(src)) {}
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bool equal(const network_address &other) const;
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bool less(const network_address &other) const;
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bool is_same_host(const network_address &other) const;
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std::string str() const { return self ? self->str() : "<none>"; }
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std::string host_str() const { return self ? self->host_str() : "<none>"; }
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bool is_loopback() const { return self ? self->is_loopback() : false; }
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bool is_local() const { return self ? self->is_local() : false; }
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address_type get_type_id() const { return self ? self->get_type_id() : address_type::invalid; }
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zone get_zone() const { return self ? self->get_zone() : zone::invalid; }
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bool is_blockable() const { return self ? self->is_blockable() : false; }
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template<typename Type> const Type &as() const { return as_mutable<const Type>(); }
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BEGIN_KV_SERIALIZE_MAP()
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// need to `#include "net/[i2p|tor]_address.h"` when serializing `network_address`
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static constexpr std::integral_constant<bool, is_store> is_store_{};
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std::uint8_t type = std::uint8_t(is_store ? this_ref.get_type_id() : address_type::invalid);
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if (!epee::serialization::selector<is_store>::serialize(type, stg, hparent_section, "type"))
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return false;
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switch (address_type(type))
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{
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case address_type::ipv4:
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return this_ref.template serialize_addr<ipv4_network_address>(is_store_, stg, hparent_section);
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case address_type::ipv6:
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return this_ref.template serialize_addr<ipv6_network_address>(is_store_, stg, hparent_section);
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case address_type::tor:
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return this_ref.template serialize_addr<net::tor_address>(is_store_, stg, hparent_section);
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case address_type::i2p:
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return this_ref.template serialize_addr<net::i2p_address>(is_store_, stg, hparent_section);
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case address_type::invalid:
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default:
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break;
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}
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MERROR("Unsupported network address type: " << (unsigned)type);
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return false;
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END_KV_SERIALIZE_MAP()
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};
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inline bool operator==(const network_address& lhs, const network_address& rhs)
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{ return lhs.equal(rhs); }
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inline bool operator!=(const network_address& lhs, const network_address& rhs)
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{ return !lhs.equal(rhs); }
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inline bool operator<(const network_address& lhs, const network_address& rhs)
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{ return lhs.less(rhs); }
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inline bool operator<=(const network_address& lhs, const network_address& rhs)
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{ return !rhs.less(lhs); }
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inline bool operator>(const network_address& lhs, const network_address& rhs)
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{ return rhs.less(lhs); }
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inline bool operator>=(const network_address& lhs, const network_address& rhs)
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{ return !lhs.less(rhs); }
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/************************************************************************/
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/* */
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/************************************************************************/
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struct connection_context_base
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{
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const boost::uuids::uuid m_connection_id;
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const network_address m_remote_address;
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const bool m_is_income;
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const time_t m_started;
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const bool m_ssl;
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time_t m_last_recv;
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time_t m_last_send;
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uint64_t m_recv_cnt;
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uint64_t m_send_cnt;
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double m_current_speed_down;
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double m_current_speed_up;
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double m_max_speed_down;
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double m_max_speed_up;
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connection_context_base(boost::uuids::uuid connection_id,
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const network_address &remote_address, bool is_income, bool ssl,
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time_t last_recv = 0, time_t last_send = 0,
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uint64_t recv_cnt = 0, uint64_t send_cnt = 0):
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m_connection_id(connection_id),
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m_remote_address(remote_address),
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m_is_income(is_income),
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m_started(time(NULL)),
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m_ssl(ssl),
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m_last_recv(last_recv),
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m_last_send(last_send),
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m_recv_cnt(recv_cnt),
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m_send_cnt(send_cnt),
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m_current_speed_down(0),
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m_current_speed_up(0),
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m_max_speed_down(0),
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m_max_speed_up(0)
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{}
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connection_context_base(): m_connection_id(),
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m_remote_address(),
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m_is_income(false),
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m_started(time(NULL)),
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m_ssl(false),
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m_last_recv(0),
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m_last_send(0),
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m_recv_cnt(0),
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m_send_cnt(0),
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m_current_speed_down(0),
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m_current_speed_up(0),
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m_max_speed_down(0),
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m_max_speed_up(0)
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{}
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connection_context_base(const connection_context_base& a): connection_context_base()
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{
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set_details(a.m_connection_id, a.m_remote_address, a.m_is_income, a.m_ssl);
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}
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connection_context_base& operator=(const connection_context_base& a)
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{
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set_details(a.m_connection_id, a.m_remote_address, a.m_is_income, a.m_ssl);
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return *this;
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}
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private:
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template<class t_protocol_handler>
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friend class connection;
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void set_details(boost::uuids::uuid connection_id, const network_address &remote_address, bool is_income, bool ssl)
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{
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this->~connection_context_base();
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new(this) connection_context_base(connection_id, remote_address, is_income, ssl);
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}
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};
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/************************************************************************/
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/* */
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/************************************************************************/
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struct i_service_endpoint
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{
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virtual bool do_send(const void* ptr, size_t cb)=0;
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virtual bool close()=0;
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virtual bool send_done()=0;
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virtual bool call_run_once_service_io()=0;
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virtual bool request_callback()=0;
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virtual boost::asio::io_service& get_io_service()=0;
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//protect from deletion connection object(with protocol instance) during external call "invoke"
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virtual bool add_ref()=0;
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virtual bool release()=0;
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protected:
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virtual ~i_service_endpoint() noexcept(false) {}
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};
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//some helpers
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std::string print_connection_context(const connection_context_base& ctx);
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std::string print_connection_context_short(const connection_context_base& ctx);
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inline MAKE_LOGGABLE(connection_context_base, ct, os)
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{
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os << "[" << epee::net_utils::print_connection_context_short(ct) << "] ";
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return os;
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}
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#define LOG_ERROR_CC(ct, message) MERROR(ct << message)
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#define LOG_WARNING_CC(ct, message) MWARNING(ct << message)
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#define LOG_INFO_CC(ct, message) MINFO(ct << message)
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#define LOG_DEBUG_CC(ct, message) MDEBUG(ct << message)
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#define LOG_TRACE_CC(ct, message) MTRACE(ct << message)
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#define LOG_CC(level, ct, message) MLOG(level, ct << message)
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#define LOG_PRINT_CC_L0(ct, message) LOG_PRINT_L0(ct << message)
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#define LOG_PRINT_CC_L1(ct, message) LOG_PRINT_L1(ct << message)
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#define LOG_PRINT_CC_L2(ct, message) LOG_PRINT_L2(ct << message)
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#define LOG_PRINT_CC_L3(ct, message) LOG_PRINT_L3(ct << message)
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#define LOG_PRINT_CC_L4(ct, message) LOG_PRINT_L4(ct << message)
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#define LOG_PRINT_CCONTEXT_L0(message) LOG_PRINT_CC_L0(context, message)
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#define LOG_PRINT_CCONTEXT_L1(message) LOG_PRINT_CC_L1(context, message)
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#define LOG_PRINT_CCONTEXT_L2(message) LOG_PRINT_CC_L2(context, message)
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#define LOG_PRINT_CCONTEXT_L3(message) LOG_PRINT_CC_L3(context, message)
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#define LOG_ERROR_CCONTEXT(message) LOG_ERROR_CC(context, message)
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#define CHECK_AND_ASSERT_MES_CC(condition, return_val, err_message) CHECK_AND_ASSERT_MES(condition, return_val, "[" << epee::net_utils::print_connection_context_short(context) << "]" << err_message)
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}
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}
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#endif //_NET_UTILS_BASE_H_
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