/* * ZeroTier SDK - Network Virtualization Everywhere * Copyright (C) 2011-2017 ZeroTier, Inc. https://www.zerotier.com/ * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program. If not, see . * * -- * * You can be released from the requirements of the license by purchasing * a commercial license. Buying such a license is mandatory as soon as you * develop commercial closed-source software that incorporates or links * directly against ZeroTier software without disclosing the source code * of your own application. */ /** * @file * * Virtual Ethernet tap device */ #include #include "Phy.hpp" #include "VirtualTap.hpp" #include #include #include #include "libzt.h" #if defined(STACK_LWIP) #include "lwIP.hpp" #endif #if defined(__APPLE__) #include #endif #if defined(__linux__) #include #endif #include "ZT1Service.h" #include "Utils.hpp" #include "Mutex.hpp" #include "Constants.hpp" #include "InetAddress.hpp" #include "OneService.hpp" namespace ZeroTier { int VirtualTap::devno = 0; /****************************************************************************/ /* VirtualTap Service */ /* - For each joined network a VirtualTap will be created to administer I/O */ /* calls to the stack and the ZT virtual wire */ /****************************************************************************/ VirtualTap::VirtualTap( const char *homePath, const MAC &mac, unsigned int mtu, unsigned int metric, uint64_t nwid, const char *friendlyName, void (*handler)(void *,void*,uint64_t,const MAC &,const MAC &, unsigned int,unsigned int,const void *,unsigned int), void *arg) : _handler(handler), _homePath(homePath), _arg(arg), _enabled(true), _run(true), _mac(mac), _mtu(mtu), _nwid(nwid), _unixListenSocket((PhySocket *)0), _phy(this,false,true) { ZeroTier::vtaps.push_back((void*)this); // set virtual tap interface name (full) memset(vtap_full_name, 0, sizeof(vtap_full_name)); ifindex = devno; snprintf(vtap_full_name, sizeof(vtap_full_name), "libzt%d-%lx", devno++, _nwid); _dev = vtap_full_name; DEBUG_INFO("set VirtualTap interface name to: %s", _dev.c_str()); // set virtual tap interface name (abbreviated) memset(vtap_abbr_name, 0, sizeof(vtap_abbr_name)); snprintf(vtap_abbr_name, sizeof(vtap_abbr_name), "libzt%d", devno); // start vtap thread and stack I/O loops _thread = Thread::start(this); } VirtualTap::~VirtualTap() { _run = false; _phy.whack(); Thread::join(_thread); _phy.close(_unixListenSocket,false); } void VirtualTap::setEnabled(bool en) { _enabled = en; } bool VirtualTap::enabled() const { return _enabled; } bool VirtualTap::registerIpWithStack(const InetAddress &ip) { DEBUG_EXTRA(); lwip_driver_init(); lwip_init_interface((void*)this, this->_mac, ip); return true; } bool VirtualTap::addIp(const InetAddress &ip) { int err = false; char ipbuf[INET6_ADDRSTRLEN]; DEBUG_EXTRA("addIp (%s)", ip.toString(ipbuf)); Mutex::Lock _l(_ips_m); if (registerIpWithStack(ip)) { if (std::find(_ips.begin(),_ips.end(),ip) == _ips.end()) { _ips.push_back(ip); std::sort(_ips.begin(),_ips.end()); } return true; } return err; } bool VirtualTap::removeIp(const InetAddress &ip) { DEBUG_EXTRA(); Mutex::Lock _l(_ips_m); std::vector::iterator i(std::find(_ips.begin(),_ips.end(),ip)); //if (i == _ips.end()) { // return false; //} _ips.erase(i); if (ip.isV4()) { // FIXME: De-register from network stacks } if (ip.isV6()) { // FIXME: De-register from network stacks } return true; } std::vector VirtualTap::ips() const { Mutex::Lock _l(_ips_m); return _ips; } void VirtualTap::put(const MAC &from,const MAC &to,unsigned int etherType, const void *data,unsigned int len) { lwip_eth_rx(this, from, to, etherType, data, len); } std::string VirtualTap::deviceName() const { return _dev; } std::string VirtualTap::nodeId() const { if (zt1ServiceRef) { char id[ZT_ID_LEN]; memset(id, 0, sizeof(id)); sprintf(id, "%lx",((ZeroTier::OneService *)zt1ServiceRef)->getNode()->address()); return std::string(id); } else { return std::string("----------"); } } void VirtualTap::setFriendlyName(const char *friendlyName) { DEBUG_EXTRA("%s", friendlyName); } void VirtualTap::scanMulticastGroups(std::vector &added, std::vector &removed) { std::vector newGroups; Mutex::Lock _l(_multicastGroups_m); // TODO: get multicast subscriptions std::vector allIps(ips()); for (std::vector::iterator ip(allIps.begin());ip!=allIps.end();++ip) newGroups.push_back(MulticastGroup::deriveMulticastGroupForAddressResolution(*ip)); std::sort(newGroups.begin(),newGroups.end()); std::unique(newGroups.begin(),newGroups.end()); for (std::vector::iterator m(newGroups.begin());m!=newGroups.end();++m) { if (!std::binary_search(_multicastGroups.begin(),_multicastGroups.end(),*m)) added.push_back(*m); } for (std::vector::iterator m(_multicastGroups.begin());m!=_multicastGroups.end();++m) { if (!std::binary_search(newGroups.begin(),newGroups.end(),*m)) removed.push_back(*m); } _multicastGroups.swap(newGroups); } void VirtualTap::setMtu(unsigned int mtu) { _mtu = mtu; } void VirtualTap::threadMain() throw() { DEBUG_EXTRA(); while (true) { _phy.poll(ZT_PHY_POLL_INTERVAL); Housekeeping(); } } void VirtualTap::phyOnUnixClose(PhySocket *sock, void **uptr) { DEBUG_EXTRA(); } void VirtualTap::phyOnUnixData(PhySocket *sock, void **uptr, void *data, ssize_t len) { DEBUG_EXTRA(); } void VirtualTap::phyOnUnixWritable(PhySocket *sock, void **uptr, bool stack_invoked) { DEBUG_EXTRA(); } bool VirtualTap::routeAdd(const InetAddress &addr, const InetAddress &nm, const InetAddress &gw) { DEBUG_EXTRA(); return false; } bool VirtualTap::routeDelete(const InetAddress &addr, const InetAddress &nm) { DEBUG_EXTRA(); return false; } void VirtualTap::addVirtualSocket() { DEBUG_EXTRA(); } void VirtualTap::removeVirtualSocket() { DEBUG_EXTRA(); } /****************************************************************************/ /* DNS */ /****************************************************************************/ int VirtualTap::add_DNS_Nameserver(struct sockaddr *addr) { DEBUG_EXTRA(); return -1; } int VirtualTap::del_DNS_Nameserver(struct sockaddr *addr) { DEBUG_EXTRA(); return -1; } /****************************************************************************/ /* SDK Socket API */ /****************************************************************************/ // Connect int VirtualTap::Connect(const struct sockaddr *addr, socklen_t addrlen) { DEBUG_EXTRA(); return -1; } // Bind VirtualSocket to a network stack's interface int VirtualTap::Bind(const struct sockaddr *addr, socklen_t addrlen) { DEBUG_EXTRA(); return -1; } // Listen for an incoming VirtualSocket int VirtualTap::Listen(int backlog) { DEBUG_EXTRA(); return -1; } // Accept a VirtualSocket void VirtualTap::Accept() { DEBUG_EXTRA(); } // Read from stack/buffers into the app's socket int VirtualTap::Read(PhySocket *sock,void **uptr,bool stack_invoked) { DEBUG_EXTRA(); return -1; } // Write data from app socket to the virtual wire, either raw over VL2, or via network stack int VirtualTap::Write(void *data, ssize_t len) { DEBUG_EXTRA("data=%p, len=%d", data, len); return -1; } // Send data to a specified host int VirtualTap::SendTo(const void *buf, size_t len, int flags, const struct sockaddr *addr, socklen_t addrlen) { DEBUG_EXTRA(); return -1; } // Remove VritualSocket from VirtualTap, and instruct network stacks to dismantle their // respective protocol control structures int VirtualTap::Close() { DEBUG_EXTRA(); return -1; } // Shuts down some aspect of a connection (Read/Write) int VirtualTap::Shutdown(int how) { DEBUG_EXTRA(); return -1; } void VirtualTap::Housekeeping() { Mutex::Lock _l(_tcpconns_m); std::time_t current_ts = std::time(nullptr); if (current_ts > last_housekeeping_ts + ZT_HOUSEKEEPING_INTERVAL) { DEBUG_EXTRA(); // update managed routes (add/del from network stacks) ZeroTier::OneService *service = ((ZeroTier::OneService *)zt1ServiceRef); if (service) { std::unique_ptr> managed_routes(service->getRoutes(this->_nwid)); ZeroTier::InetAddress target_addr; ZeroTier::InetAddress via_addr; ZeroTier::InetAddress null_addr; ZeroTier::InetAddress nm; null_addr.fromString(""); bool found; char ipbuf[INET6_ADDRSTRLEN], ipbuf2[INET6_ADDRSTRLEN], ipbuf3[INET6_ADDRSTRLEN]; // TODO: Rework this when we have time // check if pushed route exists in tap (add) for (int i=0; iat(i).target; via_addr = managed_routes->at(i).via; nm = target_addr.netmask(); for (int j=0; j", target_addr.toString(ipbuf), nm.toString(ipbuf2), via_addr.toString(ipbuf3)); routes.push_back(std::pair(target_addr, nm)); routeAdd(target_addr, nm, via_addr); } } } // check if route exists in tap but not in pushed routes (remove) for (int i=0; iat(j).target; via_addr = managed_routes->at(j).via; nm = target_addr.netmask(); if (routes[i].first.ipsEqual(target_addr) && routes[i].second.ipsEqual(nm)) { found=true; } } if (found == false) { DEBUG_INFO("removing route to ", routes[i].first.toString(ipbuf), routes[i].second.toString(ipbuf2)); routes.erase(routes.begin() + i); routeDelete(routes[i].first, routes[i].second); } } } // TODO: Clean up VirtualSocket objects last_housekeeping_ts = std::time(nullptr); } } /****************************************************************************/ /* Not used in this implementation */ /****************************************************************************/ void VirtualTap::phyOnDatagram(PhySocket *sock,void **uptr,const struct sockaddr *local_address, const struct sockaddr *from,void *data,unsigned long len) {} void VirtualTap::phyOnTcpConnect(PhySocket *sock,void **uptr,bool success) {} void VirtualTap::phyOnTcpAccept(PhySocket *sockL,PhySocket *sockN,void **uptrL,void **uptrN, const struct sockaddr *from) {} void VirtualTap::phyOnTcpClose(PhySocket *sock,void **uptr) {} void VirtualTap::phyOnTcpData(PhySocket *sock,void **uptr,void *data,unsigned long len) {} void VirtualTap::phyOnTcpWritable(PhySocket *sock,void **uptr) {} } // namespace ZeroTier