mirror of
https://github.com/zerotier/ZeroTierOne.git
synced 2024-12-28 00:38:51 +00:00
169 lines
7.4 KiB
C++
169 lines
7.4 KiB
C++
/*
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* ZeroTier One - Network Virtualization Everywhere
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* Copyright (C) 2011-2016 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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* This utility makes the World from the configuration specified below.
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* It probably won't be much use to anyone outside ZeroTier, Inc. except
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* for testing and experimentation purposes.
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*
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* If you want to make your own World you must edit this file.
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*
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* When run, it expects two files in the current directory:
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*
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* previous.c25519 - key pair to sign this world (key from previous world)
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* current.c25519 - key pair whose public key should be embedded in this world
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*
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* If these files do not exist, they are both created with the same key pair
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* and a self-signed initial World is born.
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*/
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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 <stdint.h>
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#include <string>
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#include <vector>
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#include <algorithm>
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#include <node/Constants.hpp>
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#include <node/World.hpp>
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#include <node/C25519.hpp>
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#include <node/Identity.hpp>
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#include <node/InetAddress.hpp>
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#include <osdep/OSUtils.hpp>
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using namespace ZeroTier;
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class WorldMaker : public World
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{
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public:
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static inline World make(uint64_t id,uint64_t ts,const C25519::Public &sk,const std::vector<World::Root> &roots,const C25519::Pair &signWith)
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{
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WorldMaker w;
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w._id = id;
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w._ts = ts;
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w._updateSigningKey = sk;
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w._roots = roots;
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Buffer<ZT_WORLD_MAX_SERIALIZED_LENGTH> tmp;
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w.serialize(tmp,true);
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w._signature = C25519::sign(signWith,tmp.data(),tmp.size());
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return w;
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}
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};
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int main(int argc,char **argv)
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{
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std::string previous,current;
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if ((!OSUtils::readFile("previous.c25519",previous))||(!OSUtils::readFile("current.c25519",current))) {
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C25519::Pair np(C25519::generate());
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previous = std::string();
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previous.append((const char *)np.pub.data,ZT_C25519_PUBLIC_KEY_LEN);
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previous.append((const char *)np.priv.data,ZT_C25519_PRIVATE_KEY_LEN);
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current = previous;
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OSUtils::writeFile("previous.c25519",previous);
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OSUtils::writeFile("current.c25519",current);
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fprintf(stderr,"INFO: created initial world keys: previous.c25519 and current.c25519 (both initially the same)"ZT_EOL_S);
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}
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if ((previous.length() != (ZT_C25519_PUBLIC_KEY_LEN + ZT_C25519_PRIVATE_KEY_LEN))||(current.length() != (ZT_C25519_PUBLIC_KEY_LEN + ZT_C25519_PRIVATE_KEY_LEN))) {
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fprintf(stderr,"FATAL: previous.c25519 or current.c25519 empty or invalid"ZT_EOL_S);
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return 1;
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}
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C25519::Pair previousKP;
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memcpy(previousKP.pub.data,previous.data(),ZT_C25519_PUBLIC_KEY_LEN);
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memcpy(previousKP.priv.data,previous.data() + ZT_C25519_PUBLIC_KEY_LEN,ZT_C25519_PRIVATE_KEY_LEN);
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C25519::Pair currentKP;
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memcpy(currentKP.pub.data,current.data(),ZT_C25519_PUBLIC_KEY_LEN);
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memcpy(currentKP.priv.data,current.data() + ZT_C25519_PUBLIC_KEY_LEN,ZT_C25519_PRIVATE_KEY_LEN);
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// =========================================================================
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// EDIT BELOW HERE
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std::vector<World::Root> roots;
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const uint64_t id = ZT_WORLD_ID_EARTH;
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const uint64_t ts = 1452708876314ULL; // January 13th, 2016
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// Alice
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roots.push_back(World::Root());
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roots.back().identity = Identity("9d219039f3:0:01f0922a98e3b34ebcbff333269dc265d7a020aab69d72be4d4acc9c8c9294785771256cd1d942a90d1bd1d2dca3ea84ef7d85afe6611fb43ff0b74126d90a6e");
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roots.back().stableEndpoints.push_back(InetAddress("188.166.94.177/9993")); // Amsterdam
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roots.back().stableEndpoints.push_back(InetAddress("2a03:b0c0:2:d0::7d:1/9993")); // Amsterdam
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roots.back().stableEndpoints.push_back(InetAddress("154.66.197.33/9993")); // Johannesburg
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roots.back().stableEndpoints.push_back(InetAddress("2c0f:f850:154:197::33/9993")); // Johannesburg
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roots.back().stableEndpoints.push_back(InetAddress("159.203.97.171/9993")); // New York
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roots.back().stableEndpoints.push_back(InetAddress("2604:a880:800:a1::54:6001/9993")); // New York
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roots.back().stableEndpoints.push_back(InetAddress("169.57.143.104/9993")); // Sao Paolo
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roots.back().stableEndpoints.push_back(InetAddress("2607:f0d0:1d01:57::2/9993")); // Sao Paolo
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roots.back().stableEndpoints.push_back(InetAddress("107.170.197.14/9993")); // San Francisco
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roots.back().stableEndpoints.push_back(InetAddress("2604:a880:1:20::200:e001/9993")); // San Francisco
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roots.back().stableEndpoints.push_back(InetAddress("128.199.197.217/9993")); // Singapore
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roots.back().stableEndpoints.push_back(InetAddress("2400:6180:0:d0::b7:4001/9993")); // Singapore
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// Bob
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roots.push_back(World::Root());
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roots.back().identity = Identity("8841408a2e:0:bb1d31f2c323e264e9e64172c1a74f77899555ed10751cd56e86405cde118d02dffe555d462ccf6a85b5631c12350c8d5dc409ba10b9025d0f445cf449d92b1c");
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roots.back().stableEndpoints.push_back(InetAddress("45.32.198.130/9993")); // Dallas
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roots.back().stableEndpoints.push_back(InetAddress("2001:19f0:6400:81c3:5400:00ff:fe18:1d61/9993")); // Dallas
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roots.back().stableEndpoints.push_back(InetAddress("46.101.160.249/9993")); // Frankfurt
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roots.back().stableEndpoints.push_back(InetAddress("2a03:b0c0:3:d0::6a:3001/9993")); // Frankfurt
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roots.back().stableEndpoints.push_back(InetAddress("107.191.46.210/9993")); // Paris
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roots.back().stableEndpoints.push_back(InetAddress("2001:19f0:6800:83a4::64/9993")); // Paris
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roots.back().stableEndpoints.push_back(InetAddress("45.32.246.179/9993")); // Sydney
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roots.back().stableEndpoints.push_back(InetAddress("2001:19f0:5800:8bf8:5400:ff:fe15:b39a/9993")); // Sydney
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roots.back().stableEndpoints.push_back(InetAddress("45.32.248.87/9993")); // Tokyo
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roots.back().stableEndpoints.push_back(InetAddress("2001:19f0:7000:9bc9:5400:00ff:fe15:c4f5/9993")); // Tokyo
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roots.back().stableEndpoints.push_back(InetAddress("159.203.2.154/9993")); // Toronto
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roots.back().stableEndpoints.push_back(InetAddress("2604:a880:cad:d0::26:7001/9993")); // Toronto
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// END WORLD DEFINITION
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// =========================================================================
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fprintf(stderr,"INFO: generating and signing id==%llu ts==%llu"ZT_EOL_S,(unsigned long long)id,(unsigned long long)ts);
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World nw = WorldMaker::make(id,ts,currentKP.pub,roots,previousKP);
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Buffer<ZT_WORLD_MAX_SERIALIZED_LENGTH> outtmp;
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nw.serialize(outtmp,false);
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World testw;
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testw.deserialize(outtmp,0);
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if (testw != nw) {
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fprintf(stderr,"FATAL: serialization test failed!"ZT_EOL_S);
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return 1;
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}
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OSUtils::writeFile("world.bin",std::string((const char *)outtmp.data(),outtmp.size()));
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fprintf(stderr,"INFO: world.bin written with %u bytes of binary world data."ZT_EOL_S,outtmp.size());
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fprintf(stdout,ZT_EOL_S);
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fprintf(stdout,"#define ZT_DEFAULT_WORLD_LENGTH %u"ZT_EOL_S,outtmp.size());
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fprintf(stdout,"static const unsigned char ZT_DEFAULT_WORLD[ZT_DEFAULT_WORLD_LENGTH] = {");
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for(unsigned int i=0;i<outtmp.size();++i) {
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const unsigned char *d = (const unsigned char *)outtmp.data();
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if (i > 0)
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fprintf(stdout,",");
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fprintf(stdout,"0x%.2x",(unsigned int)d[i]);
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}
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fprintf(stdout,"};"ZT_EOL_S);
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return 0;
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}
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