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559 lines
16 KiB
559 lines
16 KiB
/* |
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* ZeroTier One - Network Virtualization Everywhere |
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* Copyright (C) 2011-2018 ZeroTier, Inc. https://www.zerotier.com/ |
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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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* You can be released from the requirements of the license by purchasing |
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* a commercial license. Buying such a license is mandatory as soon as you |
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* develop commercial closed-source software that incorporates or links |
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* directly against ZeroTier software without disclosing the source code |
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* of your own application. |
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*/ |
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#include <stdint.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <unistd.h> |
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#include <signal.h> |
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#include <fcntl.h> |
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#include <errno.h> |
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#include <sys/types.h> |
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#include <sys/stat.h> |
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#include <sys/ioctl.h> |
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#include <sys/wait.h> |
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#include <sys/select.h> |
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#include <netinet/in.h> |
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#include <net/if_arp.h> |
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#include <arpa/inet.h> |
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#include <linux/if.h> |
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#include <linux/if_tun.h> |
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#include <linux/if_addr.h> |
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#include <linux/if_ether.h> |
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#include <ifaddrs.h> |
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|
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#include <algorithm> |
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#include <utility> |
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#include <string> |
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|
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#include "../node/Constants.hpp" |
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#include "../node/Utils.hpp" |
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#include "../node/Mutex.hpp" |
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#include "../node/Dictionary.hpp" |
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#include "OSUtils.hpp" |
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#include "LinuxEthernetTap.hpp" |
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// ff:ff:ff:ff:ff:ff with no ADI |
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static const ZeroTier::MulticastGroup _blindWildcardMulticastGroup(ZeroTier::MAC(0xff),0); |
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namespace ZeroTier { |
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static Mutex __tapCreateLock; |
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static const char _base32_chars[32] = { 'a','b','c','d','e','f','g','h','i','j','k','l','m','n','o','p','q','r','s','t','u','v','w','x','y','z','2','3','4','5','6','7' }; |
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static void _base32_5_to_8(const uint8_t *in,char *out) |
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{ |
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out[0] = _base32_chars[(in[0]) >> 3]; |
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out[1] = _base32_chars[(in[0] & 0x07) << 2 | (in[1] & 0xc0) >> 6]; |
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out[2] = _base32_chars[(in[1] & 0x3e) >> 1]; |
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out[3] = _base32_chars[(in[1] & 0x01) << 4 | (in[2] & 0xf0) >> 4]; |
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out[4] = _base32_chars[(in[2] & 0x0f) << 1 | (in[3] & 0x80) >> 7]; |
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out[5] = _base32_chars[(in[3] & 0x7c) >> 2]; |
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out[6] = _base32_chars[(in[3] & 0x03) << 3 | (in[4] & 0xe0) >> 5]; |
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out[7] = _base32_chars[(in[4] & 0x1f)]; |
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} |
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LinuxEthernetTap::LinuxEthernetTap( |
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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 *,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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_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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_fd(0), |
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_enabled(true) |
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{ |
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char procpath[128],nwids[32]; |
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struct stat sbuf; |
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OSUtils::ztsnprintf(nwids,sizeof(nwids),"%.16llx",nwid); |
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Mutex::Lock _l(__tapCreateLock); // create only one tap at a time, globally |
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_fd = ::open("/dev/net/tun",O_RDWR); |
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if (_fd <= 0) { |
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_fd = ::open("/dev/tun",O_RDWR); |
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if (_fd <= 0) |
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throw std::runtime_error(std::string("could not open TUN/TAP device: ") + strerror(errno)); |
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} |
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struct ifreq ifr; |
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memset(&ifr,0,sizeof(ifr)); |
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// Restore device names from legacy devicemap, but for new devices we use a base32-based canonical naming |
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std::map<std::string,std::string> globalDeviceMap; |
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FILE *devmapf = fopen((_homePath + ZT_PATH_SEPARATOR_S + "devicemap").c_str(),"r"); |
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if (devmapf) { |
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char buf[256]; |
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while (fgets(buf,sizeof(buf),devmapf)) { |
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char *x = (char *)0; |
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char *y = (char *)0; |
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char *saveptr = (char *)0; |
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for(char *f=Utils::stok(buf,"\r\n=",&saveptr);(f);f=Utils::stok((char *)0,"\r\n=",&saveptr)) { |
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if (!x) x = f; |
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else if (!y) y = f; |
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else break; |
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} |
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if ((x)&&(y)&&(x[0])&&(y[0])) |
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globalDeviceMap[x] = y; |
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} |
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fclose(devmapf); |
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} |
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bool recalledDevice = false; |
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std::map<std::string,std::string>::const_iterator gdmEntry = globalDeviceMap.find(nwids); |
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if (gdmEntry != globalDeviceMap.end()) { |
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Utils::scopy(ifr.ifr_name,sizeof(ifr.ifr_name),gdmEntry->second.c_str()); |
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OSUtils::ztsnprintf(procpath,sizeof(procpath),"/proc/sys/net/ipv4/conf/%s",ifr.ifr_name); |
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recalledDevice = (stat(procpath,&sbuf) != 0); |
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} |
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if (!recalledDevice) { |
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#ifdef __SYNOLOGY__ |
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int devno = 50; |
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do { |
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OSUtils::ztsnprintf(ifr.ifr_name,sizeof(ifr.ifr_name),"eth%d",devno++); |
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OSUtils::ztsnprintf(procpath,sizeof(procpath),"/proc/sys/net/ipv4/conf/%s",ifr.ifr_name); |
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} while (stat(procpath,&sbuf) == 0); // try zt#++ until we find one that does not exist |
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#else |
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uint64_t trial = 0; // incremented in the very unlikely event of a name collision with another network |
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do { |
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const uint64_t nwid40 = (nwid ^ (nwid >> 24)) + trial++; |
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uint8_t tmp2[5]; |
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char tmp3[11]; |
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tmp2[0] = (uint8_t)((nwid40 >> 32) & 0xff); |
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tmp2[1] = (uint8_t)((nwid40 >> 24) & 0xff); |
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tmp2[2] = (uint8_t)((nwid40 >> 16) & 0xff); |
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tmp2[3] = (uint8_t)((nwid40 >> 8) & 0xff); |
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tmp2[4] = (uint8_t)(nwid40 & 0xff); |
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tmp3[0] = 'z'; |
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tmp3[1] = 't'; |
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_base32_5_to_8(tmp2,tmp3 + 2); |
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tmp3[10] = (char)0; |
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memcpy(ifr.ifr_name,tmp3,11); |
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OSUtils::ztsnprintf(procpath,sizeof(procpath),"/proc/sys/net/ipv4/conf/%s",ifr.ifr_name); |
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} while (stat(procpath,&sbuf) == 0); |
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#endif |
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} |
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ifr.ifr_flags = IFF_TAP | IFF_NO_PI; |
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if (ioctl(_fd,TUNSETIFF,(void *)&ifr) < 0) { |
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::close(_fd); |
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throw std::runtime_error("unable to configure TUN/TAP device for TAP operation"); |
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} |
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_dev = ifr.ifr_name; |
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::ioctl(_fd,TUNSETPERSIST,0); // valgrind may generate a false alarm here |
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// Open an arbitrary socket to talk to netlink |
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int sock = socket(AF_INET,SOCK_DGRAM,0); |
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if (sock <= 0) { |
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::close(_fd); |
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throw std::runtime_error("unable to open netlink socket"); |
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} |
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// Set MAC address |
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ifr.ifr_ifru.ifru_hwaddr.sa_family = ARPHRD_ETHER; |
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mac.copyTo(ifr.ifr_ifru.ifru_hwaddr.sa_data,6); |
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if (ioctl(sock,SIOCSIFHWADDR,(void *)&ifr) < 0) { |
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::close(_fd); |
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::close(sock); |
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throw std::runtime_error("unable to configure TAP hardware (MAC) address"); |
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return; |
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} |
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// Set MTU |
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ifr.ifr_ifru.ifru_mtu = (int)mtu; |
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if (ioctl(sock,SIOCSIFMTU,(void *)&ifr) < 0) { |
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::close(_fd); |
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::close(sock); |
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throw std::runtime_error("unable to configure TAP MTU"); |
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} |
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if (fcntl(_fd,F_SETFL,fcntl(_fd,F_GETFL) & ~O_NONBLOCK) == -1) { |
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::close(_fd); |
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throw std::runtime_error("unable to set flags on file descriptor for TAP device"); |
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} |
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/* Bring interface up */ |
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if (ioctl(sock,SIOCGIFFLAGS,(void *)&ifr) < 0) { |
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::close(_fd); |
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::close(sock); |
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throw std::runtime_error("unable to get TAP interface flags"); |
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} |
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ifr.ifr_flags |= IFF_UP; |
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if (ioctl(sock,SIOCSIFFLAGS,(void *)&ifr) < 0) { |
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::close(_fd); |
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::close(sock); |
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throw std::runtime_error("unable to set TAP interface flags"); |
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} |
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::close(sock); |
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// Set close-on-exec so that devices cannot persist if we fork/exec for update |
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::fcntl(_fd,F_SETFD,fcntl(_fd,F_GETFD) | FD_CLOEXEC); |
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(void)::pipe(_shutdownSignalPipe); |
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/* |
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globalDeviceMap[nwids] = _dev; |
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devmapf = fopen((_homePath + ZT_PATH_SEPARATOR_S + "devicemap").c_str(),"w"); |
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if (devmapf) { |
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gdmEntry = globalDeviceMap.begin(); |
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while (gdmEntry != globalDeviceMap.end()) { |
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fprintf(devmapf,"%s=%s\n",gdmEntry->first.c_str(),gdmEntry->second.c_str()); |
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++gdmEntry; |
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} |
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fclose(devmapf); |
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} |
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*/ |
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_thread = Thread::start(this); |
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} |
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LinuxEthernetTap::~LinuxEthernetTap() |
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{ |
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(void)::write(_shutdownSignalPipe[1],"\0",1); // causes thread to exit |
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Thread::join(_thread); |
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::close(_fd); |
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::close(_shutdownSignalPipe[0]); |
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::close(_shutdownSignalPipe[1]); |
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} |
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void LinuxEthernetTap::setEnabled(bool en) |
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{ |
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_enabled = en; |
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} |
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bool LinuxEthernetTap::enabled() const |
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{ |
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return _enabled; |
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} |
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static bool ___removeIp(const std::string &_dev,const InetAddress &ip) |
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{ |
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long cpid = (long)vfork(); |
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if (cpid == 0) { |
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OSUtils::redirectUnixOutputs("/dev/null",(const char *)0); |
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setenv("PATH", "/sbin:/bin:/usr/sbin:/usr/bin", 1); |
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char iptmp[128]; |
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::execlp("ip","ip","addr","del",ip.toString(iptmp),"dev",_dev.c_str(),(const char *)0); |
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::_exit(-1); |
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} else { |
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int exitcode = -1; |
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::waitpid(cpid,&exitcode,0); |
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return (exitcode == 0); |
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} |
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} |
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#ifdef __SYNOLOGY__ |
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bool LinuxEthernetTap::addIpSyn(std::vector<InetAddress> ips) |
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{ |
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// Here we fill out interface config (ifcfg-dev) to prevent it from being killed |
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std::string filepath = "/etc/sysconfig/network-scripts/ifcfg-"+_dev; |
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std::string cfg_contents = "DEVICE="+_dev+"\nBOOTPROTO=static"; |
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int ip4=0,ip6=0,ip4_tot=0,ip6_tot=0; |
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long cpid = (long)vfork(); |
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if (cpid == 0) { |
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OSUtils::redirectUnixOutputs("/dev/null",(const char *)0); |
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setenv("PATH", "/sbin:/bin:/usr/sbin:/usr/bin", 1); |
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// We must know if there is at least (one) of each protocol version so we |
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// can properly enumerate address/netmask combinations in the ifcfg-dev file |
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for(int i=0; i<(int)ips.size(); i++) { |
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if (ips[i].isV4()) |
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ip4_tot++; |
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else |
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ip6_tot++; |
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} |
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// Assemble and write contents of ifcfg-dev file |
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for(int i=0; i<(int)ips.size(); i++) { |
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if (ips[i].isV4()) { |
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char iptmp[64],iptmp2[64]; |
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std::string numstr4 = ip4_tot > 1 ? std::to_string(ip4) : ""; |
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cfg_contents += "\nIPADDR"+numstr4+"="+ips[i].toIpString(iptmp) |
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+ "\nNETMASK"+numstr4+"="+ips[i].netmask().toIpString(iptmp2)+"\n"; |
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ip4++; |
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} |
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else { |
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char iptmp[64],iptmp2[64]; |
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std::string numstr6 = ip6_tot > 1 ? std::to_string(ip6) : ""; |
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cfg_contents += "\nIPV6ADDR"+numstr6+"="+ips[i].toIpString(iptmp) |
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+ "\nNETMASK"+numstr6+"="+ips[i].netmask().toIpString(iptmp2)+"\n"; |
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ip6++; |
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} |
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} |
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OSUtils::writeFile(filepath.c_str(), cfg_contents.c_str(), cfg_contents.length()); |
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// Finaly, add IPs |
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for(int i=0; i<(int)ips.size(); i++){ |
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char iptmp[128],iptmp2[128]; |
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if (ips[i].isV4()) |
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::execlp("ip","ip","addr","add",ips[i].toString(iptmp),"broadcast",ips[i].broadcast().toIpString(iptmp2),"dev",_dev.c_str(),(const char *)0); |
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else |
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::execlp("ip","ip","addr","add",ips[i].toString(iptmp),"dev",_dev.c_str(),(const char *)0); |
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} |
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::_exit(-1); |
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} else if (cpid > 0) { |
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int exitcode = -1; |
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::waitpid(cpid,&exitcode,0); |
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return (exitcode == 0); |
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} |
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return true; |
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} |
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#endif // __SYNOLOGY__ |
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bool LinuxEthernetTap::addIp(const InetAddress &ip) |
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{ |
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if (!ip) |
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return false; |
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std::vector<InetAddress> allIps(ips()); |
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if (std::binary_search(allIps.begin(),allIps.end(),ip)) |
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return true; |
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// Remove and reconfigure if address is the same but netmask is different |
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for(std::vector<InetAddress>::iterator i(allIps.begin());i!=allIps.end();++i) { |
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if (i->ipsEqual(ip)) |
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___removeIp(_dev,*i); |
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} |
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long cpid = (long)vfork(); |
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if (cpid == 0) { |
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OSUtils::redirectUnixOutputs("/dev/null",(const char *)0); |
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setenv("PATH", "/sbin:/bin:/usr/sbin:/usr/bin", 1); |
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char iptmp[128],iptmp2[128]; |
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if (ip.isV4()) { |
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::execlp("ip","ip","addr","add",ip.toString(iptmp),"broadcast",ip.broadcast().toIpString(iptmp2),"dev",_dev.c_str(),(const char *)0); |
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} else { |
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::execlp("ip","ip","addr","add",ip.toString(iptmp),"dev",_dev.c_str(),(const char *)0); |
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} |
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::_exit(-1); |
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} else if (cpid > 0) { |
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int exitcode = -1; |
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::waitpid(cpid,&exitcode,0); |
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return (exitcode == 0); |
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} |
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return false; |
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} |
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bool LinuxEthernetTap::removeIp(const InetAddress &ip) |
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{ |
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if (!ip) |
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return true; |
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std::vector<InetAddress> allIps(ips()); |
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if (std::find(allIps.begin(),allIps.end(),ip) != allIps.end()) { |
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if (___removeIp(_dev,ip)) |
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return true; |
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} |
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return false; |
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} |
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std::vector<InetAddress> LinuxEthernetTap::ips() const |
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{ |
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struct ifaddrs *ifa = (struct ifaddrs *)0; |
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if (getifaddrs(&ifa)) |
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return std::vector<InetAddress>(); |
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std::vector<InetAddress> r; |
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struct ifaddrs *p = ifa; |
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while (p) { |
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if ((!strcmp(p->ifa_name,_dev.c_str()))&&(p->ifa_addr)&&(p->ifa_netmask)&&(p->ifa_addr->sa_family == p->ifa_netmask->sa_family)) { |
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switch(p->ifa_addr->sa_family) { |
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case AF_INET: { |
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struct sockaddr_in *sin = (struct sockaddr_in *)p->ifa_addr; |
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struct sockaddr_in *nm = (struct sockaddr_in *)p->ifa_netmask; |
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r.push_back(InetAddress(&(sin->sin_addr.s_addr),4,Utils::countBits((uint32_t)nm->sin_addr.s_addr))); |
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} break; |
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case AF_INET6: { |
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struct sockaddr_in6 *sin = (struct sockaddr_in6 *)p->ifa_addr; |
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struct sockaddr_in6 *nm = (struct sockaddr_in6 *)p->ifa_netmask; |
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uint32_t b[4]; |
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memcpy(b,nm->sin6_addr.s6_addr,sizeof(b)); |
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r.push_back(InetAddress(sin->sin6_addr.s6_addr,16,Utils::countBits(b[0]) + Utils::countBits(b[1]) + Utils::countBits(b[2]) + Utils::countBits(b[3]))); |
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} break; |
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} |
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} |
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p = p->ifa_next; |
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} |
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if (ifa) |
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freeifaddrs(ifa); |
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std::sort(r.begin(),r.end()); |
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r.erase(std::unique(r.begin(),r.end()),r.end()); |
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return r; |
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} |
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void LinuxEthernetTap::put(const MAC &from,const MAC &to,unsigned int etherType,const void *data,unsigned int len) |
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{ |
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char putBuf[ZT_MAX_MTU + 64]; |
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if ((_fd > 0)&&(len <= _mtu)&&(_enabled)) { |
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to.copyTo(putBuf,6); |
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from.copyTo(putBuf + 6,6); |
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*((uint16_t *)(putBuf + 12)) = htons((uint16_t)etherType); |
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memcpy(putBuf + 14,data,len); |
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len += 14; |
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(void)::write(_fd,putBuf,len); |
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} |
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} |
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std::string LinuxEthernetTap::deviceName() const |
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{ |
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return _dev; |
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} |
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void LinuxEthernetTap::setFriendlyName(const char *friendlyName) |
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{ |
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} |
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void LinuxEthernetTap::scanMulticastGroups(std::vector<MulticastGroup> &added,std::vector<MulticastGroup> &removed) |
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{ |
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char *ptr,*ptr2; |
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unsigned char mac[6]; |
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std::vector<MulticastGroup> newGroups; |
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int fd = ::open("/proc/net/dev_mcast",O_RDONLY); |
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if (fd > 0) { |
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char buf[131072]; |
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int n = (int)::read(fd,buf,sizeof(buf)); |
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if ((n > 0)&&(n < (int)sizeof(buf))) { |
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buf[n] = (char)0; |
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for(char *l=strtok_r(buf,"\r\n",&ptr);(l);l=strtok_r((char *)0,"\r\n",&ptr)) { |
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int fno = 0; |
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char *devname = (char *)0; |
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char *mcastmac = (char *)0; |
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for(char *f=strtok_r(l," \t",&ptr2);(f);f=strtok_r((char *)0," \t",&ptr2)) { |
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if (fno == 1) |
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devname = f; |
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else if (fno == 4) |
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mcastmac = f; |
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++fno; |
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} |
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if ((devname)&&(!strcmp(devname,_dev.c_str()))&&(mcastmac)&&(Utils::unhex(mcastmac,mac,6) == 6)) |
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newGroups.push_back(MulticastGroup(MAC(mac,6),0)); |
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} |
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} |
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::close(fd); |
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} |
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std::vector<InetAddress> allIps(ips()); |
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for(std::vector<InetAddress>::iterator ip(allIps.begin());ip!=allIps.end();++ip) |
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newGroups.push_back(MulticastGroup::deriveMulticastGroupForAddressResolution(*ip)); |
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|
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std::sort(newGroups.begin(),newGroups.end()); |
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newGroups.erase(std::unique(newGroups.begin(),newGroups.end()),newGroups.end()); |
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|
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for(std::vector<MulticastGroup>::iterator m(newGroups.begin());m!=newGroups.end();++m) { |
|
if (!std::binary_search(_multicastGroups.begin(),_multicastGroups.end(),*m)) |
|
added.push_back(*m); |
|
} |
|
for(std::vector<MulticastGroup>::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 LinuxEthernetTap::setMtu(unsigned int mtu) |
|
{ |
|
if (_mtu != mtu) { |
|
_mtu = mtu; |
|
int sock = socket(AF_INET,SOCK_DGRAM,0); |
|
if (sock > 0) { |
|
struct ifreq ifr; |
|
memset(&ifr,0,sizeof(ifr)); |
|
ifr.ifr_ifru.ifru_mtu = (int)mtu; |
|
ioctl(sock,SIOCSIFMTU,(void *)&ifr); |
|
close(sock); |
|
} |
|
} |
|
} |
|
|
|
void LinuxEthernetTap::threadMain() |
|
throw() |
|
{ |
|
fd_set readfds,nullfds; |
|
MAC to,from; |
|
int n,nfds,r; |
|
char getBuf[ZT_MAX_MTU + 64]; |
|
|
|
Thread::sleep(500); |
|
|
|
FD_ZERO(&readfds); |
|
FD_ZERO(&nullfds); |
|
nfds = (int)std::max(_shutdownSignalPipe[0],_fd) + 1; |
|
|
|
r = 0; |
|
for(;;) { |
|
FD_SET(_shutdownSignalPipe[0],&readfds); |
|
FD_SET(_fd,&readfds); |
|
select(nfds,&readfds,&nullfds,&nullfds,(struct timeval *)0); |
|
|
|
if (FD_ISSET(_shutdownSignalPipe[0],&readfds)) // writes to shutdown pipe terminate thread |
|
break; |
|
|
|
if (FD_ISSET(_fd,&readfds)) { |
|
n = (int)::read(_fd,getBuf + r,sizeof(getBuf) - r); |
|
if (n < 0) { |
|
if ((errno != EINTR)&&(errno != ETIMEDOUT)) |
|
break; |
|
} else { |
|
// Some tap drivers like to send the ethernet frame and the |
|
// payload in two chunks, so handle that by accumulating |
|
// data until we have at least a frame. |
|
r += n; |
|
if (r > 14) { |
|
if (r > ((int)_mtu + 14)) // sanity check for weird TAP behavior on some platforms |
|
r = _mtu + 14; |
|
|
|
if (_enabled) { |
|
to.setTo(getBuf,6); |
|
from.setTo(getBuf + 6,6); |
|
unsigned int etherType = ntohs(((const uint16_t *)getBuf)[6]); |
|
// TODO: VLAN support |
|
_handler(_arg,(void *)0,_nwid,from,to,etherType,0,(const void *)(getBuf + 14),r - 14); |
|
} |
|
|
|
r = 0; |
|
} |
|
} |
|
} |
|
} |
|
} |
|
|
|
} // namespace ZeroTier
|
|
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