louloulibs is directly included, instead of being a submodule
Because this is a nightmare to manage
This commit is contained in:
@@ -0,0 +1,590 @@
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#include <network/tcp_socket_handler.hpp>
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#include <network/dns_handler.hpp>
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#include <utils/timed_events.hpp>
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#include <utils/scopeguard.hpp>
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#include <network/poller.hpp>
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#include <logger/logger.hpp>
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#include <sys/socket.h>
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#include <sys/types.h>
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#include <stdexcept>
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#include <unistd.h>
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#include <errno.h>
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#include <netdb.h>
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#include <cstring>
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#include <fcntl.h>
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#include <iostream>
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#ifdef BOTAN_FOUND
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# include <botan/hex.h>
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Botan::AutoSeeded_RNG TCPSocketHandler::rng;
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Permissive_Credentials_Manager TCPSocketHandler::credential_manager;
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Botan::TLS::Policy TCPSocketHandler::policy;
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Botan::TLS::Session_Manager_In_Memory TCPSocketHandler::session_manager(TCPSocketHandler::rng);
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#endif
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#ifndef UIO_FASTIOV
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# define UIO_FASTIOV 8
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#endif
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using namespace std::string_literals;
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using namespace std::chrono_literals;
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namespace ph = std::placeholders;
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TCPSocketHandler::TCPSocketHandler(std::shared_ptr<Poller> poller):
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SocketHandler(poller, -1),
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use_tls(false),
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connected(false),
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connecting(false)
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#ifdef CARES_FOUND
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,resolving(false),
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resolved(false),
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resolved4(false),
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resolved6(false),
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cares_addrinfo(nullptr),
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cares_error()
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#endif
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{}
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TCPSocketHandler::~TCPSocketHandler()
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{
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#ifdef CARES_FOUND
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this->free_cares_addrinfo();
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#endif
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}
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void TCPSocketHandler::init_socket(const struct addrinfo* rp)
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{
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if ((this->socket = ::socket(rp->ai_family, rp->ai_socktype, rp->ai_protocol)) == -1)
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throw std::runtime_error("Could not create socket: "s + strerror(errno));
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int optval = 1;
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if (::setsockopt(this->socket, SOL_SOCKET, SO_KEEPALIVE, &optval, sizeof(optval)) == -1)
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log_warning("Failed to enable TCP keepalive on socket: " << strerror(errno));
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// Set the socket on non-blocking mode. This is useful to receive a EAGAIN
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// error when connect() would block, to not block the whole process if a
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// remote is not responsive.
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const int existing_flags = ::fcntl(this->socket, F_GETFL, 0);
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if ((existing_flags == -1) ||
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(::fcntl(this->socket, F_SETFL, existing_flags | O_NONBLOCK) == -1))
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throw std::runtime_error("Could not initialize socket: "s + strerror(errno));
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}
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void TCPSocketHandler::connect(const std::string& address, const std::string& port, const bool tls)
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{
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this->address = address;
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this->port = port;
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this->use_tls = tls;
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utils::ScopeGuard sg;
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struct addrinfo* addr_res;
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if (!this->connecting)
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{
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// Get the addrinfo from getaddrinfo (or ares_gethostbyname), only if
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// this is the first call of this function.
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#ifdef CARES_FOUND
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if (!this->resolved)
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{
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log_info("Trying to connect to " << address << ":" << port);
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// Start the asynchronous process of resolving the hostname. Once
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// the addresses have been found and `resolved` has been set to true
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// (but connecting will still be false), TCPSocketHandler::connect()
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// needs to be called, again.
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this->resolving = true;
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DNSHandler::instance.gethostbyname(address, this, AF_INET6);
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DNSHandler::instance.gethostbyname(address, this, AF_INET);
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return;
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}
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else
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{
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// The c-ares resolved the hostname and the available addresses
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// where saved in the cares_addrinfo linked list. Now, just use
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// this list to try to connect.
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addr_res = this->cares_addrinfo;
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if (!addr_res)
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{
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this->close();
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this->on_connection_failed(this->cares_error);
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return ;
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}
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}
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#else
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log_info("Trying to connect to " << address << ":" << port);
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struct addrinfo hints;
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memset(&hints, 0, sizeof(struct addrinfo));
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hints.ai_flags = 0;
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hints.ai_family = AF_UNSPEC;
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hints.ai_socktype = SOCK_STREAM;
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hints.ai_protocol = 0;
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const int res = ::getaddrinfo(address.c_str(), port.c_str(), &hints, &addr_res);
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if (res != 0)
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{
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log_warning("getaddrinfo failed: "s + gai_strerror(res));
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this->close();
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this->on_connection_failed(gai_strerror(res));
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return ;
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}
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// Make sure the alloced structure is always freed at the end of the
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// function
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sg.add_callback([&addr_res](){ freeaddrinfo(addr_res); });
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#endif
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}
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else
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{ // This function is called again, use the saved addrinfo structure,
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// instead of re-doing the whole getaddrinfo process.
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addr_res = &this->addrinfo;
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}
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for (struct addrinfo* rp = addr_res; rp; rp = rp->ai_next)
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{
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if (!this->connecting)
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{
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try {
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this->init_socket(rp);
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}
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catch (const std::runtime_error& error) {
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log_error("Failed to init socket: " << error.what());
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break;
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}
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}
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if (::connect(this->socket, rp->ai_addr, rp->ai_addrlen) == 0
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|| errno == EISCONN)
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{
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log_info("Connection success.");
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TimedEventsManager::instance().cancel("connection_timeout"s +
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std::to_string(this->socket));
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this->poller->add_socket_handler(this);
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this->connected = true;
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this->connecting = false;
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#ifdef BOTAN_FOUND
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if (this->use_tls)
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this->start_tls();
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#endif
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this->on_connected();
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return ;
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}
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else if (errno == EINPROGRESS || errno == EALREADY)
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{ // retry this process later, when the socket
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// is ready to be written on.
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this->connecting = true;
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this->poller->add_socket_handler(this);
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this->poller->watch_send_events(this);
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// Save the addrinfo structure, to use it on the next call
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this->ai_addrlen = rp->ai_addrlen;
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memcpy(&this->ai_addr, rp->ai_addr, this->ai_addrlen);
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memcpy(&this->addrinfo, rp, sizeof(struct addrinfo));
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this->addrinfo.ai_addr = reinterpret_cast<struct sockaddr*>(&this->ai_addr);
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this->addrinfo.ai_next = nullptr;
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// If the connection has not succeeded or failed in 5s, we consider
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// it to have failed
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TimedEventsManager::instance().add_event(
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TimedEvent(std::chrono::steady_clock::now() + 5s,
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std::bind(&TCPSocketHandler::on_connection_timeout, this),
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"connection_timeout"s + std::to_string(this->socket)));
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return ;
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}
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log_info("Connection failed:" << strerror(errno));
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}
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log_error("All connection attempts failed.");
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this->close();
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this->on_connection_failed(strerror(errno));
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return ;
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}
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void TCPSocketHandler::on_connection_timeout()
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{
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this->close();
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this->on_connection_failed("connection timed out");
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}
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void TCPSocketHandler::connect()
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{
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this->connect(this->address, this->port, this->use_tls);
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}
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void TCPSocketHandler::on_recv()
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{
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#ifdef BOTAN_FOUND
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if (this->use_tls)
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this->tls_recv();
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else
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#endif
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this->plain_recv();
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}
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void TCPSocketHandler::plain_recv()
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{
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static constexpr size_t buf_size = 4096;
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char buf[buf_size];
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void* recv_buf = this->get_receive_buffer(buf_size);
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if (recv_buf == nullptr)
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recv_buf = buf;
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const ssize_t size = this->do_recv(recv_buf, buf_size);
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if (size > 0)
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{
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if (buf == recv_buf)
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{
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// data needs to be placed in the in_buf string, because no buffer
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// was provided to receive that data directly. The in_buf buffer
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// will be handled in parse_in_buffer()
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this->in_buf += std::string(buf, size);
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}
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this->parse_in_buffer(size);
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}
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}
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ssize_t TCPSocketHandler::do_recv(void* recv_buf, const size_t buf_size)
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{
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ssize_t size = ::recv(this->socket, recv_buf, buf_size, 0);
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if (0 == size)
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{
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this->on_connection_close("");
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this->close();
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}
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else if (-1 == size)
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{
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log_warning("Error while reading from socket: " << strerror(errno));
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// Remember if we were connecting, or already connected when this
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// happened, because close() sets this->connecting to false
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const auto were_connecting = this->connecting;
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this->close();
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if (were_connecting)
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this->on_connection_failed(strerror(errno));
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else
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this->on_connection_close(strerror(errno));
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}
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return size;
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}
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void TCPSocketHandler::on_send()
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{
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struct iovec msg_iov[UIO_FASTIOV] = {};
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struct msghdr msg{nullptr, 0,
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msg_iov,
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0, nullptr, 0, 0};
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for (std::string& s: this->out_buf)
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{
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// unconsting the content of s is ok, sendmsg will never modify it
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msg_iov[msg.msg_iovlen].iov_base = const_cast<char*>(s.data());
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msg_iov[msg.msg_iovlen].iov_len = s.size();
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if (++msg.msg_iovlen == UIO_FASTIOV)
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break;
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}
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ssize_t res = ::sendmsg(this->socket, &msg, MSG_NOSIGNAL);
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if (res < 0)
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{
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log_error("sendmsg failed: " << strerror(errno));
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this->on_connection_close(strerror(errno));
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this->close();
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}
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else
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{
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// remove all the strings that were successfully sent.
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for (auto it = this->out_buf.begin();
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it != this->out_buf.end();)
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{
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if (static_cast<size_t>(res) >= (*it).size())
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{
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res -= (*it).size();
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it = this->out_buf.erase(it);
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}
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else
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{
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// If one string has partially been sent, we use substr to
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// crop it
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if (res > 0)
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(*it) = (*it).substr(res, std::string::npos);
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break;
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}
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}
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if (this->out_buf.empty())
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this->poller->stop_watching_send_events(this);
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}
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}
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void TCPSocketHandler::close()
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{
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TimedEventsManager::instance().cancel("connection_timeout"s +
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std::to_string(this->socket));
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if (this->connected || this->connecting)
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this->poller->remove_socket_handler(this->get_socket());
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if (this->socket != -1)
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{
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::close(this->socket);
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this->socket = -1;
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}
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this->connected = false;
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this->connecting = false;
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#ifdef CARES_FOUND
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this->resolving = false;
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this->resolved = false;
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this->resolved4 = false;
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this->resolved6 = false;
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this->free_cares_addrinfo();
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this->cares_error.clear();
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#endif
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this->in_buf.clear();
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this->out_buf.clear();
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this->port.clear();
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}
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void TCPSocketHandler::send_data(std::string&& data)
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{
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#ifdef BOTAN_FOUND
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if (this->use_tls)
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this->tls_send(std::move(data));
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else
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#endif
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this->raw_send(std::move(data));
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}
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void TCPSocketHandler::raw_send(std::string&& data)
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{
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if (data.empty())
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return ;
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this->out_buf.emplace_back(std::move(data));
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if (this->connected)
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this->poller->watch_send_events(this);
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}
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void TCPSocketHandler::send_pending_data()
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{
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if (this->connected && !this->out_buf.empty())
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this->poller->watch_send_events(this);
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}
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bool TCPSocketHandler::is_connected() const
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{
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return this->connected;
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}
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bool TCPSocketHandler::is_connecting() const
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{
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#ifdef CARES_FOUND
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return this->connecting || this->resolving;
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#else
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return this->connecting;
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#endif
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}
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void* TCPSocketHandler::get_receive_buffer(const size_t) const
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{
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return nullptr;
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}
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#ifdef BOTAN_FOUND
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void TCPSocketHandler::start_tls()
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{
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Botan::TLS::Server_Information server_info(this->address, "irc", std::stoul(this->port));
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this->tls = std::make_unique<Botan::TLS::Client>(
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std::bind(&TCPSocketHandler::tls_output_fn, this, ph::_1, ph::_2),
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std::bind(&TCPSocketHandler::tls_data_cb, this, ph::_1, ph::_2),
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std::bind(&TCPSocketHandler::tls_alert_cb, this, ph::_1, ph::_2, ph::_3),
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std::bind(&TCPSocketHandler::tls_handshake_cb, this, ph::_1),
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session_manager, credential_manager, policy,
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rng, server_info, Botan::TLS::Protocol_Version::latest_tls_version());
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}
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void TCPSocketHandler::tls_recv()
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{
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static constexpr size_t buf_size = 4096;
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char recv_buf[buf_size];
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const ssize_t size = this->do_recv(recv_buf, buf_size);
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if (size > 0)
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{
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const bool was_active = this->tls->is_active();
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this->tls->received_data(reinterpret_cast<const Botan::byte*>(recv_buf),
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static_cast<size_t>(size));
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if (!was_active && this->tls->is_active())
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this->on_tls_activated();
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}
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}
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void TCPSocketHandler::tls_send(std::string&& data)
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{
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if (this->tls->is_active())
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{
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const bool was_active = this->tls->is_active();
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if (!this->pre_buf.empty())
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{
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this->tls->send(reinterpret_cast<const Botan::byte*>(this->pre_buf.data()),
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this->pre_buf.size());
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this->pre_buf = "";
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}
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if (!data.empty())
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this->tls->send(reinterpret_cast<const Botan::byte*>(data.data()),
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data.size());
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if (!was_active && this->tls->is_active())
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this->on_tls_activated();
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}
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else
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this->pre_buf += data;
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}
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void TCPSocketHandler::tls_data_cb(const Botan::byte* data, size_t size)
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{
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this->in_buf += std::string(reinterpret_cast<const char*>(data),
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size);
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if (!this->in_buf.empty())
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this->parse_in_buffer(size);
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}
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void TCPSocketHandler::tls_output_fn(const Botan::byte* data, size_t size)
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{
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this->raw_send(std::string(reinterpret_cast<const char*>(data), size));
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}
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void TCPSocketHandler::tls_alert_cb(Botan::TLS::Alert alert, const Botan::byte*, size_t)
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{
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log_debug("tls_alert: " << alert.type_string());
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}
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bool TCPSocketHandler::tls_handshake_cb(const Botan::TLS::Session& session)
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{
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log_debug("Handshake with " << session.server_info().hostname() << " complete."
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<< " Version: " << session.version().to_string()
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<< " using " << session.ciphersuite().to_string());
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if (!session.session_id().empty())
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log_debug("Session ID " << Botan::hex_encode(session.session_id()));
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if (!session.session_ticket().empty())
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log_debug("Session ticket " << Botan::hex_encode(session.session_ticket()));
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return true;
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}
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void TCPSocketHandler::on_tls_activated()
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{
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this->send_data("");
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}
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void Permissive_Credentials_Manager::verify_certificate_chain(const std::string& type,
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const std::string& purported_hostname,
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const std::vector<Botan::X509_Certificate>&)
|
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{ // TODO: Offer the admin to disallow connection on untrusted
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// certificates
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log_debug("Checking remote certificate (" << type << ") for hostname " << purported_hostname);
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}
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#endif // BOTAN_FOUND
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|
||||
#ifdef CARES_FOUND
|
||||
|
||||
void TCPSocketHandler::on_hostname4_resolved(int status, struct hostent* hostent)
|
||||
{
|
||||
this->resolved4 = true;
|
||||
if (status == ARES_SUCCESS)
|
||||
this->fill_ares_addrinfo4(hostent);
|
||||
else
|
||||
this->cares_error = ::ares_strerror(status);
|
||||
|
||||
if (this->resolved4 && this->resolved6)
|
||||
{
|
||||
this->resolved = true;
|
||||
this->resolving = false;
|
||||
this->connect();
|
||||
}
|
||||
}
|
||||
|
||||
void TCPSocketHandler::on_hostname6_resolved(int status, struct hostent* hostent)
|
||||
{
|
||||
this->resolved6 = true;
|
||||
if (status == ARES_SUCCESS)
|
||||
this->fill_ares_addrinfo6(hostent);
|
||||
else
|
||||
this->cares_error = ::ares_strerror(status);
|
||||
|
||||
if (this->resolved4 && this->resolved6)
|
||||
{
|
||||
this->resolved = true;
|
||||
this->resolving = false;
|
||||
this->connect();
|
||||
}
|
||||
}
|
||||
|
||||
void TCPSocketHandler::fill_ares_addrinfo4(const struct hostent* hostent)
|
||||
{
|
||||
struct addrinfo* prev = this->cares_addrinfo;
|
||||
struct in_addr** address = reinterpret_cast<struct in_addr**>(hostent->h_addr_list);
|
||||
|
||||
while (*address)
|
||||
{
|
||||
// Create a new addrinfo list element, and fill it
|
||||
struct addrinfo* current = new struct addrinfo;
|
||||
current->ai_flags = 0;
|
||||
current->ai_family = hostent->h_addrtype;
|
||||
current->ai_socktype = SOCK_STREAM;
|
||||
current->ai_protocol = 0;
|
||||
current->ai_addrlen = sizeof(struct sockaddr_in);
|
||||
|
||||
struct sockaddr_in* addr = new struct sockaddr_in;
|
||||
addr->sin_family = hostent->h_addrtype;
|
||||
addr->sin_port = htons(strtoul(this->port.data(), nullptr, 10));
|
||||
addr->sin_addr.s_addr = (*address)->s_addr;
|
||||
|
||||
current->ai_addr = reinterpret_cast<struct sockaddr*>(addr);
|
||||
current->ai_next = nullptr;
|
||||
current->ai_canonname = nullptr;
|
||||
|
||||
current->ai_next = prev;
|
||||
this->cares_addrinfo = current;
|
||||
prev = current;
|
||||
++address;
|
||||
}
|
||||
}
|
||||
|
||||
void TCPSocketHandler::fill_ares_addrinfo6(const struct hostent* hostent)
|
||||
{
|
||||
struct addrinfo* prev = this->cares_addrinfo;
|
||||
struct in6_addr** address = reinterpret_cast<struct in6_addr**>(hostent->h_addr_list);
|
||||
|
||||
while (*address)
|
||||
{
|
||||
// Create a new addrinfo list element, and fill it
|
||||
struct addrinfo* current = new struct addrinfo;
|
||||
current->ai_flags = 0;
|
||||
current->ai_family = hostent->h_addrtype;
|
||||
current->ai_socktype = SOCK_STREAM;
|
||||
current->ai_protocol = 0;
|
||||
current->ai_addrlen = sizeof(struct sockaddr_in6);
|
||||
|
||||
struct sockaddr_in6* addr = new struct sockaddr_in6;
|
||||
addr->sin6_family = hostent->h_addrtype;
|
||||
addr->sin6_port = htons(strtoul(this->port.data(), nullptr, 10));
|
||||
::memcpy(addr->sin6_addr.s6_addr, (*address)->s6_addr, 16);
|
||||
addr->sin6_flowinfo = 0;
|
||||
addr->sin6_scope_id = 0;
|
||||
|
||||
current->ai_addr = reinterpret_cast<struct sockaddr*>(addr);
|
||||
current->ai_next = nullptr;
|
||||
current->ai_canonname = nullptr;
|
||||
|
||||
current->ai_next = prev;
|
||||
this->cares_addrinfo = current;
|
||||
prev = current;
|
||||
++address;
|
||||
}
|
||||
}
|
||||
|
||||
void TCPSocketHandler::free_cares_addrinfo()
|
||||
{
|
||||
while (this->cares_addrinfo)
|
||||
{
|
||||
delete this->cares_addrinfo->ai_addr;
|
||||
auto next = this->cares_addrinfo->ai_next;
|
||||
delete this->cares_addrinfo;
|
||||
this->cares_addrinfo = next;
|
||||
}
|
||||
}
|
||||
|
||||
#endif // CARES_FOUND
|
||||
Reference in New Issue
Block a user