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652 lines
17 KiB
652 lines
17 KiB
/* |
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* ZeroTier One - Network Virtualization Everywhere |
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* Copyright (C) 2011-2015 ZeroTier, Inc. |
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* |
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* This program is free software: you can redistribute it and/or modify |
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* it under the terms of the GNU General Public License as published by |
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* the Free Software Foundation, either version 3 of the License, or |
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* (at your option) any later version. |
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* |
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* This program is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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* GNU General Public License for more details. |
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* |
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* You should have received a copy of the GNU General Public License |
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* along with this program. If not, see <http://www.gnu.org/licenses/>. |
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* |
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* -- |
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* |
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* ZeroTier may be used and distributed under the terms of the GPLv3, which |
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* are available at: http://www.gnu.org/licenses/gpl-3.0.html |
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* |
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* If you would like to embed ZeroTier into a commercial application or |
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* redistribute it in a modified binary form, please contact ZeroTier Networks |
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* LLC. Start here: http://www.zerotier.com/ |
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*/ |
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#ifdef ZT_ENABLE_NETCON |
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#include <algorithm> |
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#include <utility> |
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#include <dlfcn.h> |
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#include "NetconEthernetTap.hpp" |
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#include "../node/Utils.hpp" |
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#include "../osdep/OSUtils.hpp" |
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#include "../osdep/Phy.hpp" |
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#include "lwip/tcp_impl.h" |
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#include "netif/etharp.h" |
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#include "lwip/ip.h" |
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#include "lwip/ip_addr.h" |
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#include "lwip/ip_frag.h" |
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#include "LWIPStack.hpp" |
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#include "NetconService.hpp" |
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#include "Intercept.h" |
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#include "NetconUtilities.hpp" |
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#define APPLICATION_POLL_FREQ 1 |
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namespace ZeroTier { |
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NetconEthernetTap::NetconEthernetTap( |
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const char *homePath, |
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const MAC &mac, |
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unsigned int mtu, |
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unsigned int metric, |
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uint64_t nwid, |
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const char *friendlyName, |
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void (*handler)(void *,uint64_t,const MAC &,const MAC &,unsigned int,unsigned int,const void *,unsigned int), |
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void *arg) : |
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_phy(this,false,true), |
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_unixListenSocket((PhySocket *)0), |
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_handler(handler), |
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_arg(arg), |
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_nwid(nwid), |
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_homePath(homePath), |
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_mtu(mtu), |
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_enabled(true), |
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_run(true) |
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{ |
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char sockPath[4096]; |
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Utils::snprintf(sockPath,sizeof(sockPath),"/tmp/.ztnc_%.16llx",(unsigned long long)nwid); |
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_dev = sockPath; |
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lwipstack = new LWIPStack("/root/dev/netcon/liblwip.so"); |
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if(!lwipstack) // TODO double check this check |
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throw std::runtime_error("unable to load lwip lib."); |
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lwipstack->lwip_init(); |
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_unixListenSocket = _phy.unixListen(sockPath,(void *)this); |
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if (!_unixListenSocket) |
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throw std::runtime_error(std::string("unable to bind to ")+sockPath); |
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_thread = Thread::start(this); |
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} |
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NetconEthernetTap::~NetconEthernetTap() |
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{ |
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_run = false; |
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_phy.whack(); |
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_phy.whack(); |
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Thread::join(_thread); |
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_phy.close(_unixListenSocket,false); |
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} |
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void NetconEthernetTap::setEnabled(bool en) |
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{ |
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_enabled = en; |
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} |
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bool NetconEthernetTap::enabled() const |
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{ |
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return _enabled; |
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} |
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bool NetconEthernetTap::addIp(const InetAddress &ip) |
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{ |
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Mutex::Lock _l(_ips_m); |
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if (std::find(_ips.begin(),_ips.end(),ip) == _ips.end()) { |
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_ips.push_back(ip); |
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std::sort(_ips.begin(),_ips.end()); |
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|
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// TODO: alloc IP in LWIP |
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//netif_set_addr(netif, ipaddr, netmask, gw); |
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} |
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return true; // TODO: what is exapected? |
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} |
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bool NetconEthernetTap::removeIp(const InetAddress &ip) |
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{ |
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Mutex::Lock _l(_ips_m); |
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std::vector<InetAddress>::iterator i(std::find(_ips.begin(),_ips.end(),ip)); |
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if (i == _ips.end()) |
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return false; |
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_ips.erase(i); |
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// TODO: dealloc IP from LWIP |
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return true; |
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} |
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std::vector<InetAddress> NetconEthernetTap::ips() const |
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{ |
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Mutex::Lock _l(_ips_m); |
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return _ips; |
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} |
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void NetconEthernetTap::put(const MAC &from,const MAC &to,unsigned int etherType,const void *data,unsigned int len) |
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{ |
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if (!_enabled) |
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return; |
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} |
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std::string NetconEthernetTap::deviceName() const |
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{ |
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return _dev; |
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} |
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void NetconEthernetTap::setFriendlyName(const char *friendlyName) |
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{ |
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} |
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void NetconEthernetTap::scanMulticastGroups(std::vector<MulticastGroup> &added,std::vector<MulticastGroup> &removed) |
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{ |
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// TODO: get multicast subscriptions from LWIP |
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} |
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NetconConnection *NetconEthernetTap::getConnectionByPCB(struct tcp_pcb *pcb) |
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{ |
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NetconConnection *c; |
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for(size_t i=0; i<clients.size(); i++) { |
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c = clients[i]->containsPCB(pcb); |
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if(c) { |
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return c; |
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} |
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} |
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return NULL; |
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} |
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NetconConnection *NetconEthernetTap::getConnectionByThisFD(int fd) |
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{ |
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for(size_t i=0; i<clients.size(); i++) { |
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for(size_t j=0; j<clients[i]->connections.size(); j++) { |
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if(_phy.getDescriptor(clients[i]->connections[j]->sock) == fd) { |
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return clients[i]->connections[j]; |
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} |
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} |
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} |
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return NULL; |
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} |
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NetconClient *NetconEthernetTap::getClientByPCB(struct tcp_pcb *pcb) |
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{ |
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for(size_t i=0; i<clients.size(); i++) { |
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if(clients[i]->containsPCB(pcb)) { |
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return clients[i]; |
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} |
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} |
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return NULL; |
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} |
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void NetconEthernetTap::closeClient(NetconClient *client) |
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{ |
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// erase from clients vector |
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client->closeClient(); |
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} |
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void NetconEthernetTap::closeConnection(NetconConnection *conn) |
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{ |
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NetconClient *client = conn->owner; |
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_phy.close(conn->sock); |
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lwipstack->tcp_close(conn->pcb); |
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client->removeConnection(conn->sock); |
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} |
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void NetconEthernetTap::threadMain() |
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throw() |
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{ |
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static ip_addr_t ipaddr, netmask, gw; |
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char ip_str[16] = {0}, nm_str[16] = {0}, gw_str[16] = {0}; |
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IP4_ADDR(&gw, 192,168,0,1); |
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IP4_ADDR(&netmask, 255,255,255,0); |
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IP4_ADDR(&ipaddr, 192,168,0,2); |
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strncpy(ip_str, lwipstack->ipaddr_ntoa(&ipaddr), sizeof(ip_str)); |
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strncpy(nm_str, lwipstack->ipaddr_ntoa(&netmask), sizeof(nm_str)); |
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strncpy(gw_str, lwipstack->ipaddr_ntoa(&gw), sizeof(gw_str)); |
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unsigned long tcp_time = ARP_TMR_INTERVAL / 5000; |
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unsigned long etharp_time = IP_TMR_INTERVAL / 1000; |
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unsigned long prev_tcp_time = 0; |
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unsigned long prev_etharp_time = 0; |
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unsigned long curr_time; |
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unsigned long since_tcp; |
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unsigned long since_etharp; |
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struct timeval tv; |
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while (_run) { |
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gettimeofday(&tv, NULL); |
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curr_time = (unsigned long)(tv.tv_sec) * 1000 + (unsigned long)(tv.tv_usec) / 1000; |
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since_tcp = curr_time - prev_tcp_time; |
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since_etharp = curr_time - prev_etharp_time; |
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int min_time = min(since_tcp, since_etharp) * 1000; // usec |
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if(since_tcp > tcp_time) |
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{ |
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prev_tcp_time = curr_time+1; |
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lwipstack->tcp_tmr(); |
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} |
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if(since_etharp > etharp_time) |
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{ |
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prev_etharp_time = curr_time; |
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lwipstack->etharp_tmr(); |
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} |
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_phy.poll(min_time / 1000); // conversion from usec to millisec, TODO: double check |
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} |
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// TODO: cleanup -- destroy LWIP state, kill any clients, unload .so, etc. |
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} |
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void NetconEthernetTap::phyOnSocketPairEndpointClose(PhySocket *sock, void **uptr) |
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{ |
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NetconClient *client = (NetconClient*)*uptr; |
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closeConnection(client->getConnection(sock)); |
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} |
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void NetconEthernetTap::phyOnSocketPairEndpointData(PhySocket *sock, void **uptr, void *buf, unsigned long n) |
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{ |
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int r; |
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NetconConnection *c = ((NetconClient*)*uptr)->getConnection(sock); |
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if(c) { |
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if(c->idx < DEFAULT_READ_BUFFER_SIZE) { |
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if((r = read(_phy.getDescriptor(c->sock), (&c->buf)+c->idx, DEFAULT_READ_BUFFER_SIZE-(c->idx))) > 0) { |
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c->idx += r; |
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handle_write(c); |
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} |
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} |
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} |
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} |
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void NetconEthernetTap::phyOnSocketPairEndpointWritable(PhySocket *sock, void **uptr) |
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{ |
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//_phy.setNotifyWritable(sock, false); |
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} |
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// Unused -- no UDP or TCP from this thread/Phy<> |
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void NetconEthernetTap::phyOnDatagram(PhySocket *sock,void **uptr,const struct sockaddr *from,void *data,unsigned long len) {} |
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void NetconEthernetTap::phyOnTcpConnect(PhySocket *sock,void **uptr,bool success) {} |
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void NetconEthernetTap::phyOnTcpAccept(PhySocket *sockL,PhySocket *sockN,void **uptrL,void **uptrN,const struct sockaddr *from) {} |
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void NetconEthernetTap::phyOnTcpClose(PhySocket *sock,void **uptr) {} |
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void NetconEthernetTap::phyOnTcpData(PhySocket *sock,void **uptr,void *data,unsigned long len) {} |
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void NetconEthernetTap::phyOnTcpWritable(PhySocket *sock,void **uptr) {} |
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void NetconEthernetTap::phyOnUnixAccept(PhySocket *sockL,PhySocket *sockN,void **uptrL,void **uptrN) |
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{ |
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NetconClient *newClient = new NetconClient(); |
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newClient->addConnection(RPC, *uptrN); |
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} |
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void NetconEthernetTap::phyOnUnixClose(PhySocket *sock,void **uptr) |
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{ |
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((NetconClient*)*uptr)->closeClient(); |
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} |
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void NetconEthernetTap::phyOnUnixData(PhySocket *sock,void **uptr,void *data,unsigned long len) |
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{ |
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unsigned char *buf = (unsigned char*)data; |
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NetconClient *client = (NetconClient*)*uptr; |
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switch(buf[0]) |
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{ |
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case RPC_SOCKET: |
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struct socket_st socket_rpc; |
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memcpy(&socket_rpc, &buf[1], sizeof(struct socket_st)); |
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client->tid = socket_rpc.__tid; |
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handle_socket(client, &socket_rpc); |
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break; |
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case RPC_LISTEN: |
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struct listen_st listen_rpc; |
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memcpy(&listen_rpc, &buf[1], sizeof(struct listen_st)); |
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client->tid = listen_rpc.__tid; |
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handle_listen(client, &listen_rpc); |
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break; |
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case RPC_BIND: |
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struct bind_st bind_rpc; |
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memcpy(&bind_rpc, &buf[1], sizeof(struct bind_st)); |
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client->tid = bind_rpc.__tid; |
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handle_bind(client, &bind_rpc); |
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break; |
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case RPC_KILL_INTERCEPT: |
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client->closeClient(); |
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break; |
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case RPC_CONNECT: |
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struct connect_st connect_rpc; |
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memcpy(&connect_rpc, &buf[1], sizeof(struct connect_st)); |
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client->tid = connect_rpc.__tid; |
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handle_connect(client, &connect_rpc); |
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break; |
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case RPC_FD_MAP_COMPLETION: |
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handle_retval(client, buf); |
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break; |
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default: |
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break; |
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} |
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} |
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void NetconEthernetTap::phyOnUnixWritable(PhySocket *sock,void **uptr) |
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{ |
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} |
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int NetconEthernetTap::send_return_value(NetconClient *client, int retval) |
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{ |
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if(!client->waiting_for_retval){ |
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// intercept isn't waiting for return value. Why are we here? |
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return 0; |
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} |
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char retmsg[4]; |
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memset(&retmsg, '\0', sizeof(retmsg)); |
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retmsg[0]=RPC_RETVAL; |
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memcpy(&retmsg[1], &retval, sizeof(retval)); |
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int n = write(_phy.getDescriptor(client->rpc->sock), &retmsg, sizeof(retmsg)); |
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if(n > 0) { |
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// signal that we've satisfied this requirement |
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client->waiting_for_retval = false; |
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} |
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else { |
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// unable to send return value to the intercept |
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closeClient(client); |
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} |
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return n; |
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} |
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/*------------------------------------------------------------------------------ |
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--------------------------------- LWIP callbacks ------------------------------- |
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------------------------------------------------------------------------------*/ |
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err_t NetconEthernetTap::nc_poll(void* arg, struct tcp_pcb *tpcb) |
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{ |
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Larg *l = (Larg*)arg; |
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NetconConnection *c = l->tap->getConnectionByPCB(tpcb); |
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NetconEthernetTap *tap = l->tap; |
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if(c) |
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tap->handle_write(c); |
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return ERR_OK; |
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} |
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err_t NetconEthernetTap::nc_accept(void *arg, struct tcp_pcb *newpcb, err_t err) |
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{ |
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return ERR_OK; |
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} |
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err_t NetconEthernetTap::nc_recved(void *arg, struct tcp_pcb *tpcb, struct pbuf *p, err_t err) |
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{ |
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Larg *l = (Larg*)arg; |
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NetconConnection *c = l->tap->getConnectionByPCB(tpcb); |
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NetconEthernetTap *tap = l->tap; |
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int n; |
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struct pbuf* q = p; |
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int our_fd = tap->_phy.getDescriptor(c->sock); |
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if(!c) { |
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return ERR_OK; // ? |
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} |
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if(p == NULL) { |
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if(c) { |
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nc_close(tpcb); |
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close(our_fd); // TODO: Check logic |
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tap->closeConnection(c); |
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} |
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else { |
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// can't locate connection via (arg) |
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} |
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return err; |
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} |
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q = p; |
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while(p != NULL) { // Cycle through pbufs and write them to the socket |
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if(p->len <= 0) |
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break; // ? |
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if((n = write(our_fd, p->payload, p->len)) > 0) { |
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if(n < p->len) { |
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// ERROR: unable to write entire pbuf to buffer |
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//tap->_phy.setNotifyWritable(l->sock, true); |
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} |
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tap->lwipstack->tcp_recved(tpcb, n); |
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} |
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else { |
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// Error: No data written to intercept buffer |
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} |
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p = p->next; |
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} |
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tap->lwipstack->pbuf_free(q); // free pbufs |
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return ERR_OK; |
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} |
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void NetconEthernetTap::nc_err(void *arg, err_t err) |
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{ |
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Larg *l = (Larg*)arg; |
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NetconEthernetTap *tap = l->tap; |
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NetconConnection *c = tap->getConnectionByThisFD(tap->_phy.getDescriptor(l->sock)); |
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if(c) { |
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l->tap->closeConnection(c); |
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//tcp_close(c->pcb); |
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} |
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else { |
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// can't locate connection object for PCB |
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} |
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} |
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void NetconEthernetTap::nc_close(struct tcp_pcb* tpcb) |
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{ |
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/* |
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lwipstack->tcp_arg(tpcb, NULL); |
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lwipstack->tcp_sent(tpcb, NULL); |
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lwipstack->tcp_recv(tpcb, NULL); |
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lwipstack->tcp_err(tpcb, NULL); |
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lwipstack->tcp_poll(tpcb, NULL, 0); |
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lwipstack->tcp_close(tpcb); |
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*/ |
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} |
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err_t NetconEthernetTap::nc_send(struct tcp_pcb *tpcb) |
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{ |
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return ERR_OK; |
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} |
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err_t NetconEthernetTap::nc_sent(void* arg, struct tcp_pcb *tpcb, u16_t len) |
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{ |
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return len; |
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} |
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err_t NetconEthernetTap::nc_connected(void *arg, struct tcp_pcb *tpcb, err_t err) |
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{ |
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Larg *l = (Larg*)arg; |
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NetconEthernetTap *tap = l->tap; |
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|
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for(size_t i=0; i<tap->clients.size(); i++) { |
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if(tap->clients[i]->containsPCB(tpcb)) { |
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tap->send_return_value(tap->clients[i],err); |
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} |
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} |
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return err; |
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} |
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/*------------------------------------------------------------------------------ |
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----------------------------- RPC Handler functions ---------------------------- |
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------------------------------------------------------------------------------*/ |
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void NetconEthernetTap::handle_bind(NetconClient *client, struct bind_st *bind_rpc) |
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{ |
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// FIXME: Is this hack still needed? |
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struct sockaddr_in *connaddr; |
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connaddr = (struct sockaddr_in *) &bind_rpc->addr; |
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int conn_port = lwipstack->ntohs(connaddr->sin_port); |
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ip_addr_t conn_addr; |
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IP4_ADDR(&conn_addr, 192,168,0,2); |
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|
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/* |
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int ip = connaddr->sin_addr.s_addr; |
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unsigned char bytes[4]; |
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bytes[0] = ip & 0xFF; |
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bytes[1] = (ip >> 8) & 0xFF; |
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bytes[2] = (ip >> 16) & 0xFF; |
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bytes[3] = (ip >> 24) & 0xFF; |
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"binding to: %d.%d.%d.%d", bytes[0], bytes[1], bytes[2], bytes[3] |
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*/ |
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NetconConnection *c = client->getConnectionByTheirFD(bind_rpc->sockfd); |
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if(c) { |
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if(c->pcb->state == CLOSED){ |
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int err = lwipstack->tcp_bind(c->pcb, &conn_addr, conn_port); |
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if(err != ERR_OK) { |
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// error while binding to addr/port |
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} |
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else { |
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// bind successful |
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} |
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} |
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else { |
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// PCB not in CLOSED state. Ignoring BIND request. |
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} |
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} |
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else { |
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// can't locate connection for PCB |
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} |
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} |
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|
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void NetconEthernetTap::handle_listen(NetconClient *client, struct listen_st *listen_rpc) |
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{ |
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NetconConnection *c = client->getConnectionByTheirFD(listen_rpc->sockfd); |
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if(c) { |
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if(c->pcb->state == LISTEN) { |
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// PCB is already in listening state. |
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return; |
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} |
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struct tcp_pcb* listening_pcb = lwipstack->tcp_listen(c->pcb); |
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if(listening_pcb != NULL) { |
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c->pcb = listening_pcb; |
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lwipstack->tcp_accept(listening_pcb, nc_accept); |
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lwipstack->tcp_arg(listening_pcb, new Larg(this, c->sock)); |
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client->waiting_for_retval=true; |
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} |
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else { |
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// unable to allocate memory for new listening PCB |
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} |
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} |
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else { |
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// can't locate connection for PCB |
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} |
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} |
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|
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void NetconEthernetTap::handle_retval(NetconClient *client, unsigned char* buf) |
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{ |
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if(client->unmapped_conn != NULL) { |
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memcpy(&(client->unmapped_conn->their_fd), &buf[1], sizeof(int)); |
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client->unmapped_conn = NULL; |
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} |
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} |
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|
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void NetconEthernetTap::handle_socket(NetconClient *client, struct socket_st* socket_rpc) |
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{ |
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struct tcp_pcb *pcb = lwipstack->tcp_new(); |
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if(pcb != NULL) { |
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int *their_fd = NULL; |
|
NetconConnection *new_conn = client->addConnection(BUFFER, _phy.createSocketPair(*their_fd, client)); |
|
new_conn->their_fd = *their_fd; |
|
new_conn->pcb = pcb; |
|
sock_fd_write(_phy.getDescriptor(client->rpc->sock), *their_fd); |
|
client->unmapped_conn = new_conn; |
|
} |
|
else { |
|
// Memory not available for new PCB |
|
} |
|
} |
|
|
|
void NetconEthernetTap::handle_connect(NetconClient *client, struct connect_st* connect_rpc) |
|
{ |
|
// FIXME: Parse out address information -- Probably a more elegant way to do this |
|
struct sockaddr_in *connaddr; |
|
connaddr = (struct sockaddr_in *) &connect_rpc->__addr; |
|
int conn_port = lwipstack->ntohs(connaddr->sin_port); |
|
ip_addr_t conn_addr = convert_ip((struct sockaddr_in *)&connect_rpc->__addr); |
|
|
|
NetconConnection *c = client->getConnectionByTheirFD(connect_rpc->__fd); |
|
|
|
if(c!= NULL) { |
|
lwipstack->tcp_sent(c->pcb, NetconEthernetTap::nc_sent); // FIXME: Move? |
|
lwipstack->tcp_recv(c->pcb, nc_recved); |
|
lwipstack->tcp_err(c->pcb, nc_err); |
|
lwipstack->tcp_poll(c->pcb, nc_poll, APPLICATION_POLL_FREQ); |
|
lwipstack->tcp_arg(c->pcb, new Larg(this, c->sock)); |
|
|
|
int err = 0; |
|
if((err = lwipstack->tcp_connect(c->pcb,&conn_addr,conn_port, nc_connected)) < 0) |
|
{ |
|
// dwr(h->tid, "tcp_connect() = %s\n", lwiperror(err)); |
|
// We should only return a value if failure happens immediately |
|
// Otherwise, we still need to wait for a callback from lwIP. |
|
// - This is because an ERR_OK from tcp_connect() only verifies |
|
// that the SYN packet was enqueued onto the stack properly, |
|
// that's it! |
|
// - Most instances of a retval for a connect() should happen |
|
// in the nc_connect() and nc_err() callbacks! |
|
send_return_value(client, err); |
|
} |
|
// Everything seems to be ok, but we don't have enough info to retval |
|
client->waiting_for_retval=true; |
|
} |
|
else { |
|
// could not locate PCB based on their fd |
|
} |
|
} |
|
|
|
void NetconEthernetTap::handle_write(NetconConnection *c) |
|
{ |
|
if(c) { |
|
int sndbuf = c->pcb->snd_buf; |
|
float avail = (float)sndbuf; |
|
float max = (float)TCP_SND_BUF; |
|
float load = 1.0 - (avail / max); |
|
|
|
if(load >= 0.9) { |
|
return; |
|
} |
|
int write_allowance = sndbuf < c->idx ? sndbuf : c->idx; |
|
int sz; |
|
|
|
if(write_allowance > 0) { |
|
int err = lwipstack->tcp_write(c->pcb, &c->buf, write_allowance, TCP_WRITE_FLAG_COPY); |
|
if(err != ERR_OK) { |
|
// error while writing to PCB |
|
return; |
|
} |
|
else { |
|
sz = (c->idx)-write_allowance; |
|
if(sz) { |
|
memmove(&c->buf, (c->buf+write_allowance), sz); |
|
} |
|
c->idx -= write_allowance; |
|
//c->data_sent += write_allowance; |
|
return; |
|
} |
|
} |
|
else { |
|
// lwIP stack full |
|
return; |
|
} |
|
} |
|
else { |
|
// could not locate connection for this fd |
|
} |
|
} |
|
|
|
} // namespace ZeroTier |
|
|
|
#endif // ZT_ENABLE_NETCON
|
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