enum fixes and ipv6 update
This commit is contained in:
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f673833fe9
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@ -493,4 +493,3 @@ private:
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#endif
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@ -42,6 +42,9 @@ namespace libtorrent
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{
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bool is_local(address const& a);
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bool is_loopback(address const& addr);
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bool is_multicast(address const& addr);
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address_v4 guess_local_address(asio::io_service&);
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typedef boost::function<void(udp::endpoint const& from
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@ -79,4 +82,3 @@ namespace libtorrent
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#endif
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@ -363,4 +363,3 @@ namespace libtorrent
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#endif // TORRENT_STORAGE_HPP_INCLUDED
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@ -417,4 +417,3 @@ namespace libtorrent
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#endif // TORRENT_TORRENT_HANDLE_HPP_INCLUDED
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@ -43,7 +43,7 @@ namespace libtorrent
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{
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bool is_local(address const& a)
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{
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if (a.is_v6()) return false;
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if (a.is_v6()) return a.to_v6().is_link_local();
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address_v4 a4 = a.to_v4();
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unsigned long ip = a4.to_ulong();
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return ((ip & 0xff000000) == 0x0a000000
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@ -58,15 +58,32 @@ namespace libtorrent
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udp::resolver::iterator i = r.resolve(udp::resolver::query(asio::ip::host_name(), "0"));
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for (;i != udp::resolver_iterator(); ++i)
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{
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// ignore the loopback
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if (i->endpoint().address() == address_v4((127 << 24) + 1)) continue;
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address const& a = i->endpoint().address();
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// ignore non-IPv4 addresses
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if (i->endpoint().address().is_v4()) break;
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if (!a.is_v4()) break;
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// ignore the loopback
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if (a.to_v4() == address_v4::loopback()) continue;
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}
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if (i == udp::resolver_iterator()) return address_v4::any();
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return i->endpoint().address().to_v4();
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}
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bool is_loopback(address const& addr)
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{
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if (addr.is_v4())
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return addr.to_v4() == address_v4::loopback();
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else
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return addr.to_v6() == address_v6::loopback();
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}
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bool is_multicast(address const& addr)
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{
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if (addr.is_v4())
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return addr.to_v4().is_multicast();
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else
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return addr.to_v6().is_multicast();
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}
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broadcast_socket::broadcast_socket(asio::io_service& ios
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, udp::endpoint const& multicast_endpoint
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, receive_handler_t const& handler
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@ -74,8 +91,7 @@ namespace libtorrent
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: m_multicast_endpoint(multicast_endpoint)
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, m_on_receive(handler)
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{
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assert(m_multicast_endpoint.address().is_v4());
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assert(m_multicast_endpoint.address().to_v4().is_multicast());
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assert(is_multicast(m_multicast_endpoint.address()));
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using namespace asio::ip::multicast;
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@ -86,21 +102,39 @@ namespace libtorrent
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, end(interfaces.end()); i != end; ++i)
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{
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// only broadcast to IPv4 addresses that are not local
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if (!i->is_v4() || !is_local(*i)) continue;
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// ignore the loopback interface
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if (i->to_v4() == address_v4((127 << 24) + 1)) continue;
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if (!is_local(*i)) continue;
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// only multicast on compatible networks
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if (i->is_v4() != multicast_endpoint.address().is_v4()) continue;
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// ignore any loopback interface
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if (is_loopback(*i)) continue;
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boost::shared_ptr<datagram_socket> s(new datagram_socket(ios));
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s->open(udp::v4(), ec);
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if (ec) continue;
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s->set_option(datagram_socket::reuse_address(true), ec);
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if (ec) continue;
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s->bind(udp::endpoint(address_v4::any(), multicast_endpoint.port()), ec);
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if (ec) continue;
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s->set_option(join_group(multicast_endpoint.address()), ec);
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if (ec) continue;
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s->set_option(outbound_interface(i->to_v4()), ec);
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if (ec) continue;
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if (i->is_v4())
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{
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s->open(udp::v4(), ec);
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if (ec) continue;
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s->set_option(datagram_socket::reuse_address(true), ec);
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if (ec) continue;
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s->bind(udp::endpoint(address_v4::any(), multicast_endpoint.port()), ec);
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if (ec) continue;
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s->set_option(join_group(multicast_endpoint.address()), ec);
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if (ec) continue;
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s->set_option(outbound_interface(i->to_v4()), ec);
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if (ec) continue;
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}
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else
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{
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s->open(udp::v6(), ec);
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if (ec) continue;
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s->set_option(datagram_socket::reuse_address(true), ec);
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if (ec) continue;
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s->bind(udp::endpoint(address_v6::any(), multicast_endpoint.port()), ec);
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if (ec) continue;
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s->set_option(join_group(multicast_endpoint.address()), ec);
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if (ec) continue;
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// s->set_option(outbound_interface(i->to_v6()), ec);
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// if (ec) continue;
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}
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s->set_option(hops(255), ec);
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if (ec) continue;
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s->set_option(enable_loopback(loopback), ec);
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@ -150,4 +184,3 @@ namespace libtorrent
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}
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@ -50,6 +50,7 @@ POSSIBILITY OF SUCH DAMAGE.
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#include "libtorrent/version.hpp"
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#include "libtorrent/extensions.hpp"
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#include "libtorrent/aux_/session_impl.hpp"
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#include "libtorrent/enum_net.hpp"
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#ifndef TORRENT_DISABLE_ENCRYPTION
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#include "libtorrent/pe_crypto.hpp"
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@ -1474,6 +1475,19 @@ namespace libtorrent
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detail::write_address(remote().address(), out);
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handshake["yourip"] = remote_address;
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handshake["reqq"] = m_ses.settings().max_allowed_in_request_queue;
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asio::error_code ec;
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std::vector<address> const& interfaces = enum_net_interfaces(get_socket()->io_service(), ec);
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for (std::vector<address>::const_iterator i = interfaces.begin()
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, end(interfaces.end()); i != end; ++i)
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{
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// TODO: only use global IPv6 addresses
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if (!i->is_v6() || i->to_v6().is_link_local()) continue;
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std::string ipv6_address;
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std::back_insert_iterator<std::string> out(ipv6_address);
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detail::write_address(*i, out);
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handshake["ipv6"] = ipv6_address;
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break;
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}
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// loop backwards, to make the first extension be the last
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// to fill in the handshake (i.e. give the first extensions priority)
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@ -72,8 +72,17 @@ namespace libtorrent
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ifreq const& item = *reinterpret_cast<ifreq*>(ifr);
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if (item.ifr_addr.sa_family == AF_INET)
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{
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ret.push_back(address::from_string(
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inet_ntoa(((sockaddr_in const*)&item.ifr_addr)->sin_addr)));
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typedef asio::ip::address_v4::bytes_type bytes_t;
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bytes_t b;
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memcpy(&b[0], &((sockaddr_in const*)&item.ifr_addr)->sin_addr, b.size());
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ret.push_back(address_v4(b));
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}
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else if (item.ifr_addr.sa_family == AF_INET6)
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{
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typedef asio::ip::address_v6::bytes_type bytes_t;
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bytes_t b;
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memcpy(&b[0], &((sockaddr_in6 const*)&item.ifr_addr)->sin6_addr, b.size());
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ret.push_back(address_v6(b));
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}
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#if defined __MACH__ || defined(__FreeBSD__)
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@ -890,12 +890,7 @@ namespace libtorrent
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peer_entry p;
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p.pid.clear();
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std::stringstream ip_str;
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ip_str << (int)detail::read_uint8(i) << ".";
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ip_str << (int)detail::read_uint8(i) << ".";
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ip_str << (int)detail::read_uint8(i) << ".";
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ip_str << (int)detail::read_uint8(i);
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p.ip = ip_str.str();
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p.ip = detail::read_v4_address(i).to_string();
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p.port = detail::read_uint16(i);
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peer_list.push_back(p);
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}
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@ -910,6 +905,22 @@ namespace libtorrent
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}
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}
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if (entry const* ipv6_peers = e.find_key("peers6"))
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{
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std::string const& peers = ipv6_peers->string();
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for (std::string::const_iterator i = peers.begin();
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i != peers.end();)
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{
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if (std::distance(i, peers.end()) < 18) break;
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peer_entry p;
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p.pid.clear();
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p.ip = detail::read_v6_address(i).to_string();
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p.port = detail::read_uint16(i);
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peer_list.push_back(p);
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}
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}
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// look for optional scrape info
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int complete = -1;
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int incomplete = -1;
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@ -3022,4 +3022,3 @@ namespace libtorrent
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}
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}
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@ -1551,4 +1551,3 @@ namespace libtorrent
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}
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}
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@ -400,20 +400,22 @@ namespace libtorrent
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partial.update(&m_scratch_buffer[0], ph.offset);
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whole.update(&m_scratch_buffer[0], slot_size1);
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hasher partial_copy = ph.h;
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std::cerr << partial_copy.final() << " " << partial.final() << std::endl;
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assert(ph.offset == 0 || partial_copy.final() == partial.final());
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#endif
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int slot_size = piece_size - ph.offset;
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if (slot_size == 0)
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if (slot_size > 0)
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{
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assert(ph.h.final() == whole.final());
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return ph.h.final();
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m_scratch_buffer.resize(slot_size);
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read_impl(&m_scratch_buffer[0], slot, ph.offset, slot_size, true);
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ph.h.update(&m_scratch_buffer[0], slot_size);
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}
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m_scratch_buffer.resize(slot_size);
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read_impl(&m_scratch_buffer[0], slot, ph.offset, slot_size, true);
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ph.h.update(&m_scratch_buffer[0], slot_size);
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assert(whole.final() == ph.h.final());
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#ifndef NDEBUG
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sha1_hash ret = ph.h.final();
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assert(ret == whole.final());
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return ret;
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#else
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return ph.h.final();
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#endif
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}
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void storage::initialize(bool allocate_files)
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@ -2213,4 +2215,3 @@ namespace libtorrent
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#endif
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} // namespace libtorrent
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@ -2937,4 +2937,3 @@ namespace libtorrent
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}
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@ -1001,4 +1001,3 @@ namespace libtorrent
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}
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@ -980,4 +980,3 @@ void upnp::close()
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}
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}
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@ -67,8 +67,6 @@ namespace libtorrent { namespace
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if (!p.is_local()) return false;
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// don't send out peers that we haven't successfully connected to
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if (p.is_connecting()) return false;
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// ut pex does not support IPv6
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if (!p.remote().address().is_v4()) return false;
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return true;
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}
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@ -98,9 +96,15 @@ namespace libtorrent { namespace
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std::string& pla = pex["added"].string();
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std::string& pld = pex["dropped"].string();
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std::string& plf = pex["added.f"].string();
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std::string& pla6 = pex["added6"].string();
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std::string& pld6 = pex["dropped6"].string();
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std::string& plf6 = pex["added6.f"].string();
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std::back_insert_iterator<std::string> pla_out(pla);
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std::back_insert_iterator<std::string> pld_out(pld);
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std::back_insert_iterator<std::string> plf_out(plf);
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std::back_insert_iterator<std::string> pla6_out(pla6);
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std::back_insert_iterator<std::string> pld6_out(pld6);
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std::back_insert_iterator<std::string> plf6_out(plf6);
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std::set<tcp::endpoint> dropped;
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m_old_peers.swap(dropped);
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@ -123,8 +127,6 @@ namespace libtorrent { namespace
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bt_peer_connection* p = dynamic_cast<bt_peer_connection*>(i->second);
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if (!p) continue;
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// i->first was added since the last time
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detail::write_endpoint(i->first, pla_out);
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// no supported flags to set yet
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// 0x01 - peer supports encryption
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// 0x02 - peer is a seed
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@ -132,7 +134,17 @@ namespace libtorrent { namespace
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#ifndef TORRENT_DISABLE_ENCRYPTION
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flags |= p->supports_encryption() ? 1 : 0;
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#endif
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detail::write_uint8(flags, plf_out);
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// i->first was added since the last time
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if (i->first.address().is_v4())
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{
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detail::write_endpoint(i->first, pla_out);
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detail::write_uint8(flags, plf_out);
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}
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else
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{
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detail::write_endpoint(i->first, pla6_out);
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detail::write_uint8(flags, plf6_out);
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}
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++num_added;
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}
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else
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@ -146,8 +158,10 @@ namespace libtorrent { namespace
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for (std::set<tcp::endpoint>::const_iterator i = dropped.begin()
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, end(dropped.end());i != end; ++i)
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{
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if (!i->address().is_v4()) continue;
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detail::write_endpoint(*i, pld_out);
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if (i->address().is_v4())
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detail::write_endpoint(*i, pld_out);
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else
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detail::write_endpoint(*i, pld6_out);
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}
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m_ut_pex_msg.clear();
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@ -227,6 +241,28 @@ namespace libtorrent { namespace
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char flags = detail::read_uint8(fin);
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p.peer_from_tracker(adr, pid, peer_info::pex, flags);
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}
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if (entry const* p6 = pex_msg.find_key("added6"))
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{
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std::string const& peers6 = p6->string();
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std::string const& peer6_flags = pex_msg["added6.f"].string();
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int num_peers = peers6.length() / 18;
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char const* in = peers6.c_str();
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char const* fin = peer6_flags.c_str();
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if (int(peer6_flags.size()) != num_peers)
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return true;
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peer_id pid(0);
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policy& p = m_torrent.get_policy();
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for (int i = 0; i < num_peers; ++i)
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{
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tcp::endpoint adr = detail::read_v6_endpoint<tcp::endpoint>(in);
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char flags = detail::read_uint8(fin);
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p.peer_from_tracker(adr, pid, peer_info::pex, flags);
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}
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}
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}
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catch (std::exception&)
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{
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@ -279,8 +315,13 @@ namespace libtorrent { namespace
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pex["dropped"].string();
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std::string& pla = pex["added"].string();
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std::string& plf = pex["added.f"].string();
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pex["dropped6"].string();
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std::string& pla6 = pex["added6"].string();
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std::string& plf6 = pex["added6.f"].string();
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std::back_insert_iterator<std::string> pla_out(pla);
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std::back_insert_iterator<std::string> plf_out(plf);
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std::back_insert_iterator<std::string> pla6_out(pla6);
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std::back_insert_iterator<std::string> plf6_out(plf6);
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int num_added = 0;
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for (torrent::peer_iterator i = m_torrent.begin()
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@ -295,8 +336,6 @@ namespace libtorrent { namespace
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bt_peer_connection* p = dynamic_cast<bt_peer_connection*>(i->second);
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if (!p) continue;
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// i->first was added since the last time
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detail::write_endpoint(i->first, pla_out);
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// no supported flags to set yet
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// 0x01 - peer supports encryption
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// 0x02 - peer is a seed
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@ -304,7 +343,17 @@ namespace libtorrent { namespace
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#ifndef TORRENT_DISABLE_ENCRYPTION
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flags |= p->supports_encryption() ? 1 : 0;
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#endif
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detail::write_uint8(flags, plf_out);
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// i->first was added since the last time
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if (i->first.address().is_v4())
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{
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detail::write_endpoint(i->first, pla_out);
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detail::write_uint8(flags, plf_out);
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}
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else
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{
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detail::write_endpoint(i->first, pla6_out);
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detail::write_uint8(flags, plf6_out);
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}
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++num_added;
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}
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std::vector<char> pex_msg;
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