mirror of
https://github.com/PurpleI2P/i2pd.git
synced 2024-11-08 01:10:40 +00:00
269 lines
8.0 KiB
C++
269 lines
8.0 KiB
C++
#include <thread>
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#include <memory>
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#include "Daemon.h"
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#include "Config.h"
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#include "Log.h"
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#include "FS.h"
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#include "Base.h"
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#include "version.h"
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#include "Transports.h"
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#include "NTCPSession.h"
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#include "RouterInfo.h"
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#include "RouterContext.h"
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#include "Tunnel.h"
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#include "NetDb.h"
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#include "Garlic.h"
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#include "Streaming.h"
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#include "Destination.h"
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#include "HTTPServer.h"
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#include "I2PControl.h"
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#include "ClientContext.h"
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#include "Crypto.h"
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#ifdef USE_UPNP
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#include "UPnP.h"
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#endif
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namespace i2p
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{
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namespace util
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{
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class Daemon_Singleton::Daemon_Singleton_Private
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{
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public:
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Daemon_Singleton_Private() {};
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~Daemon_Singleton_Private() {};
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std::unique_ptr<i2p::http::HTTPServer> httpServer;
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std::unique_ptr<i2p::client::I2PControlService> m_I2PControlService;
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#ifdef USE_UPNP
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i2p::transport::UPnP m_UPnP;
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#endif
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};
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Daemon_Singleton::Daemon_Singleton() : running(1), d(*new Daemon_Singleton_Private()) {};
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Daemon_Singleton::~Daemon_Singleton() {
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delete &d;
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};
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bool Daemon_Singleton::IsService () const
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{
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bool service = false;
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#ifndef _WIN32
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i2p::config::GetOption("service", service);
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#endif
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return service;
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}
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bool Daemon_Singleton::init(int argc, char* argv[])
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{
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i2p::config::Init();
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i2p::config::ParseCmdline(argc, argv);
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std::string config; i2p::config::GetOption("conf", config);
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std::string datadir; i2p::config::GetOption("datadir", datadir);
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i2p::fs::DetectDataDir(datadir, IsService());
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i2p::fs::Init();
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datadir = i2p::fs::GetDataDir();
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// TODO: drop old name detection in v2.8.0
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if (config == "")
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{
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config = i2p::fs::DataDirPath("i2p.conf");
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if (i2p::fs::Exists (config)) {
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LogPrint(eLogWarning, "Daemon: please rename i2p.conf to i2pd.conf here: ", config);
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} else {
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config = i2p::fs::DataDirPath("i2pd.conf");
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if (!i2p::fs::Exists (config)) {
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// use i2pd.conf only if exists
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config = ""; /* reset */
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}
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}
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}
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i2p::config::ParseConfig(config);
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i2p::config::Finalize();
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i2p::config::GetOption("daemon", isDaemon);
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std::string logs = ""; i2p::config::GetOption("log", logs);
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std::string logfile = ""; i2p::config::GetOption("logfile", logfile);
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std::string loglevel = ""; i2p::config::GetOption("loglevel", loglevel);
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/* setup logging */
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if (isDaemon && (logs == "" || logs == "stdout"))
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logs = "file";
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i2p::log::Logger().SetLogLevel(loglevel);
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if (logs == "file") {
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if (logfile == "")
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logfile = i2p::fs::DataDirPath("i2pd.log");
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LogPrint(eLogInfo, "Log: will send messages to ", logfile);
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i2p::log::Logger().SendTo (logfile);
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#ifndef _WIN32
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} else if (logs == "syslog") {
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LogPrint(eLogInfo, "Log: will send messages to syslog");
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i2p::log::Logger().SendTo("i2pd", LOG_DAEMON);
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#endif
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} else {
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// use stdout -- default
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}
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i2p::log::Logger().Ready();
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LogPrint(eLogInfo, "i2pd v", VERSION, " starting");
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LogPrint(eLogDebug, "FS: main config file: ", config);
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LogPrint(eLogDebug, "FS: data directory: ", datadir);
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bool precomputation; i2p::config::GetOption("precomputation.elgamal", precomputation);
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i2p::crypto::InitCrypto (precomputation);
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i2p::context.Init ();
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uint16_t port; i2p::config::GetOption("port", port);
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if (!i2p::config::IsDefault("port"))
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{
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LogPrint(eLogInfo, "Daemon: accepting incoming connections at port ", port);
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i2p::context.UpdatePort (port);
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}
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std::string host; i2p::config::GetOption("host", host);
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if (!i2p::config::IsDefault("host"))
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{
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LogPrint(eLogInfo, "Daemon: setting address for incoming connections to ", host);
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i2p::context.UpdateAddress (boost::asio::ip::address::from_string (host));
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}
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bool ipv6; i2p::config::GetOption("ipv6", ipv6);
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bool ipv4; i2p::config::GetOption("ipv4", ipv4);
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bool transit; i2p::config::GetOption("notransit", transit);
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i2p::context.SetSupportsV6 (ipv6);
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i2p::context.SetSupportsV4 (ipv4);
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i2p::context.SetAcceptsTunnels (!transit);
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uint16_t transitTunnels; i2p::config::GetOption("limits.transittunnels", transitTunnels);
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SetMaxNumTransitTunnels (transitTunnels);
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bool isFloodfill; i2p::config::GetOption("floodfill", isFloodfill);
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if (isFloodfill) {
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LogPrint(eLogInfo, "Daemon: router will be floodfill");
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i2p::context.SetFloodfill (true);
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} else {
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i2p::context.SetFloodfill (false);
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}
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/* this section also honors 'floodfill' flag, if set above */
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std::string bandwidth; i2p::config::GetOption("bandwidth", bandwidth);
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if (bandwidth.length () > 0)
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{
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if (bandwidth[0] >= 'K' && bandwidth[0] <= 'X')
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{
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i2p::context.SetBandwidth (bandwidth[0]);
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LogPrint(eLogInfo, "Daemon: bandwidth set to ", i2p::context.GetBandwidthLimit (), "KBps");
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}
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else
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{
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auto value = std::atoi(bandwidth.c_str());
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if (value > 0)
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{
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i2p::context.SetBandwidth (value);
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LogPrint(eLogInfo, "Daemon: bandwidth set to ", i2p::context.GetBandwidthLimit (), " KBps");
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}
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else
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{
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LogPrint(eLogInfo, "Daemon: unexpected bandwidth ", bandwidth, ". Set to 'low'");
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i2p::context.SetBandwidth (i2p::data::CAPS_FLAG_LOW_BANDWIDTH2);
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}
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}
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}
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else if (isFloodfill)
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{
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LogPrint(eLogInfo, "Daemon: floodfill bandwidth set to 'extra'");
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i2p::context.SetBandwidth (i2p::data::CAPS_FLAG_EXTRA_BANDWIDTH1);
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}
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else
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{
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LogPrint(eLogInfo, "Daemon: bandwidth set to 'low'");
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i2p::context.SetBandwidth (i2p::data::CAPS_FLAG_LOW_BANDWIDTH2);
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}
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std::string family; i2p::config::GetOption("family", family);
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i2p::context.SetFamily (family);
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if (family.length () > 0)
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LogPrint(eLogInfo, "Daemon: family set to ", family);
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return true;
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}
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bool Daemon_Singleton::start()
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{
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bool http; i2p::config::GetOption("http.enabled", http);
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if (http) {
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std::string httpAddr; i2p::config::GetOption("http.address", httpAddr);
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uint16_t httpPort; i2p::config::GetOption("http.port", httpPort);
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LogPrint(eLogInfo, "Daemon: starting HTTP Server at ", httpAddr, ":", httpPort);
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d.httpServer = std::unique_ptr<i2p::http::HTTPServer>(new i2p::http::HTTPServer(httpAddr, httpPort));
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d.httpServer->Start();
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}
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LogPrint(eLogInfo, "Daemon: starting NetDB");
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i2p::data::netdb.Start();
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#ifdef USE_UPNP
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LogPrint(eLogInfo, "Daemon: starting UPnP");
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d.m_UPnP.Start ();
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#endif
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LogPrint(eLogInfo, "Daemon: starting Transports");
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i2p::transport::transports.Start();
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LogPrint(eLogInfo, "Daemon: starting Tunnels");
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i2p::tunnel::tunnels.Start();
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LogPrint(eLogInfo, "Daemon: starting Client");
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i2p::client::context.Start ();
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// I2P Control Protocol
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bool i2pcontrol; i2p::config::GetOption("i2pcontrol.enabled", i2pcontrol);
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if (i2pcontrol) {
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std::string i2pcpAddr; i2p::config::GetOption("i2pcontrol.address", i2pcpAddr);
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uint16_t i2pcpPort; i2p::config::GetOption("i2pcontrol.port", i2pcpPort);
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LogPrint(eLogInfo, "Daemon: starting I2PControl at ", i2pcpAddr, ":", i2pcpPort);
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d.m_I2PControlService = std::unique_ptr<i2p::client::I2PControlService>(new i2p::client::I2PControlService (i2pcpAddr, i2pcpPort));
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d.m_I2PControlService->Start ();
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}
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return true;
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}
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bool Daemon_Singleton::stop()
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{
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LogPrint(eLogInfo, "Daemon: shutting down");
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LogPrint(eLogInfo, "Daemon: stopping Client");
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i2p::client::context.Stop();
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LogPrint(eLogInfo, "Daemon: stopping Tunnels");
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i2p::tunnel::tunnels.Stop();
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#ifdef USE_UPNP
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LogPrint(eLogInfo, "Daemon: stopping UPnP");
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d.m_UPnP.Stop ();
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#endif
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LogPrint(eLogInfo, "Daemon: stopping Transports");
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i2p::transport::transports.Stop();
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LogPrint(eLogInfo, "Daemon: stopping NetDB");
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i2p::data::netdb.Stop();
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if (d.httpServer) {
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LogPrint(eLogInfo, "Daemon: stopping HTTP Server");
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d.httpServer->Stop();
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d.httpServer = nullptr;
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}
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if (d.m_I2PControlService)
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{
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LogPrint(eLogInfo, "Daemon: stopping I2PControl");
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d.m_I2PControlService->Stop ();
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d.m_I2PControlService = nullptr;
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}
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i2p::crypto::TerminateCrypto ();
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return true;
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}
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}
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}
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