mirror of
https://github.com/zerotier/ZeroTierOne.git
synced 2024-12-30 17:56:57 +00:00
321 lines
9.7 KiB
JavaScript
321 lines
9.7 KiB
JavaScript
'use strict';
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var sqlite3 = require('sqlite3').verbose();
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var fs = require('fs');
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var async = require('async');
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function blobToIPv4(b)
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{
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if (!b)
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return null;
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if (b.length !== 16)
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return null;
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return b.readUInt8(12).toString()+'.'+b.readUInt8(13).toString()+'.'+b.readUInt8(14).toString()+'.'+b.readUInt8(15).toString();
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}
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function blobToIPv6(b)
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{
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if (!b)
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return null;
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if (b.length !== 16)
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return null;
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var s = '';
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for(var i=0;i<16;++i) {
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var x = b.readUInt8(i).toString(16);
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if (x.length === 1)
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s += '0';
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s += x;
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if ((((i+1) & 1) === 0)&&(i !== 15))
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s += ':';
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}
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return s;
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}
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if (process.argv.length !== 4) {
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console.log('ZeroTier Old Sqlite3 Controller DB Migration Utility');
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console.log('(c)2017 ZeroTier, Inc. [GPL3]');
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console.log('');
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console.log('Usage: node migrate.js </path/to/controller.db> </path/to/controller.d>');
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console.log('');
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console.log('The first argument must be the path to the old Sqlite3 controller.db');
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console.log('file. The second must be the path to the EMPTY controller.d database');
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console.log('directory for a new (1.1.17 or newer) controller. If this path does');
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console.log('not exist it will be created.');
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console.log('');
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console.log('WARNING: this will ONLY work correctly on a 1.1.14 controller database.');
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console.log('If your controller is old you should first upgrade to 1.1.14 and run the');
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console.log('controller so that it will brings its Sqlite3 database up to the latest');
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console.log('version before running this migration.');
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console.log('');
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process.exit(1);
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}
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var oldDbPath = process.argv[2];
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var newDbPath = process.argv[3];
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console.log('Starting migrate of "'+oldDbPath+'" to "'+newDbPath+'"...');
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console.log('');
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var old = new sqlite3.Database(oldDbPath);
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var networks = {};
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var nodeIdentities = {};
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var networkCount = 0;
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var memberCount = 0;
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var routeCount = 0;
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var ipAssignmentPoolCount = 0;
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var ipAssignmentCount = 0;
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var ruleCount = 0;
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var oldSchemaVersion = -1;
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async.series([function(nextStep) {
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old.each('SELECT v from Config WHERE k = \'schemaVersion\'',function(err,row) {
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oldSchemaVersion = parseInt(row.v)||-1;
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},nextStep);
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},function(nextStep) {
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if (oldSchemaVersion !== 4) {
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console.log('FATAL: this MUST be run on a 1.1.14 controller.db! Upgrade your old');
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console.log('controller to 1.1.14 first and run it once to bring its DB up to date.');
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return process.exit(1);
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}
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console.log('Reading networks...');
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old.each('SELECT * FROM Network',function(err,row) {
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if ((typeof row.id === 'string')&&(row.id.length === 16)) {
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var flags = parseInt(row.flags)||0;
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networks[row.id] = {
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id: row.id,
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nwid: row.id,
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objtype: 'network',
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authTokens: [],
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capabilities: [],
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creationTime: parseInt(row.creationTime)||0,
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enableBroadcast: !!row.enableBroadcast,
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ipAssignmentPools: [],
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lastModified: Date.now(),
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multicastLimit: row.multicastLimit||32,
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name: row.name||'',
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private: !!row.private,
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revision: parseInt(row.revision)||1,
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rules: [{ 'type': 'ACTION_ACCEPT' }], // populated later if there are defined rules, otherwise default is allow all
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routes: [],
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v4AssignMode: {
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'zt': ((flags & 1) !== 0)
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},
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v6AssignMode: {
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'6plane': ((flags & 4) !== 0),
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'rfc4193': ((flags & 2) !== 0),
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'zt': ((flags & 8) !== 0)
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},
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_members: {} // temporary
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};
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++networkCount;
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//console.log(networks[row.id]);
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}
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},nextStep);
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},function(nextStep) {
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console.log(' '+networkCount+' networks.');
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console.log('Reading network route definitions...');
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old.each('SELECT * from Route WHERE ipVersion = 4 OR ipVersion = 6',function(err,row) {
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var network = networks[row.networkId];
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if (network) {
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var rt = {
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target: (((row.ipVersion == 4) ? blobToIPv4(row.target) : blobToIPv6(row.target))+'/'+row.targetNetmaskBits),
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via: ((row.via) ? ((row.ipVersion == 4) ? blobToIPv4(row.via) : blobToIPv6(row.via)) : null)
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};
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network.routes.push(rt);
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++routeCount;
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}
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},nextStep);
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},function(nextStep) {
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console.log(' '+routeCount+' routes in '+networkCount+' networks.');
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console.log('Reading IP assignment pools...');
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old.each('SELECT * FROM IpAssignmentPool WHERE ipVersion = 4 OR ipVersion = 6',function(err,row) {
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var network = networks[row.networkId];
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if (network) {
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var p = {
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ipRangeStart: ((row.ipVersion == 4) ? blobToIPv4(row.ipRangeStart) : blobToIPv6(row.ipRangeStart)),
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ipRangeEnd: ((row.ipVersion == 4) ? blobToIPv4(row.ipRangeEnd) : blobToIPv6(row.ipRangeEnd))
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};
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network.ipAssignmentPools.push(p);
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++ipAssignmentPoolCount;
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}
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},nextStep);
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},function(nextStep) {
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console.log(' '+ipAssignmentPoolCount+' IP assignment pools in '+networkCount+' networks.');
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console.log('Reading known node identities...');
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old.each('SELECT * FROM Node',function(err,row) {
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nodeIdentities[row.id] = row.identity;
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},nextStep);
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},function(nextStep) {
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console.log(' '+Object.keys(nodeIdentities).length+' known identities.');
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console.log('Reading network members...');
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old.each('SELECT * FROM Member',function(err,row) {
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var network = networks[row.networkId];
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if (network) {
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network._members[row.nodeId] = {
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id: row.nodeId,
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address: row.nodeId,
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objtype: 'member',
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authorized: !!row.authorized,
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activeBridge: !!row.activeBridge,
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authHistory: [],
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capabilities: [],
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creationTime: 0,
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identity: nodeIdentities[row.nodeId]||null,
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ipAssignments: [],
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lastAuthorizedTime: (row.authorized) ? Date.now() : 0,
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lastDeauthorizedTime: (row.authorized) ? 0 : Date.now(),
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lastModified: Date.now(),
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lastRequestMetaData: '',
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noAutoAssignIps: false,
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nwid: row.networkId,
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revision: parseInt(row.memberRevision)||1,
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tags: [],
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recentLog: []
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};
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++memberCount;
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//console.log(network._members[row.nodeId]);
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}
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},nextStep);
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},function(nextStep) {
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console.log(' '+memberCount+' members of '+networkCount+' networks.');
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console.log('Reading static IP assignments...');
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old.each('SELECT * FROM IpAssignment WHERE ipVersion = 4 OR ipVersion = 6',function(err,row) {
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var network = networks[row.networkId];
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if (network) {
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var member = network._members[row.nodeId];
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if ((member)&&((member.authorized)||(!network['private']))) { // don't mirror assignments to unauthorized members to avoid conflicts
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if (row.ipVersion == 4) {
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member.ipAssignments.push(blobToIPv4(row.ip));
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++ipAssignmentCount;
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} else if (row.ipVersion == 6) {
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member.ipAssignments.push(blobToIPv6(row.ip));
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++ipAssignmentCount;
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}
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}
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}
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},nextStep);
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},function(nextStep) {
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// Old versions only supported Ethertype whitelisting, so that's
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// all we mirror forward. The other fields were always unused.
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console.log(' '+ipAssignmentCount+' IP assignments for '+memberCount+' authorized members of '+networkCount+' networks.');
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console.log('Reading allowed Ethernet types (old basic rules)...');
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var etherTypesByNetwork = {};
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old.each('SELECT DISTINCT networkId,ruleNo,etherType FROM Rule WHERE "action" = \'accept\'',function(err,row) {
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if (row.networkId in networks) {
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var et = parseInt(row.etherType)||0;
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var ets = etherTypesByNetwork[row.networkId];
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if (!ets)
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etherTypesByNetwork[row.networkId] = [ et ];
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else ets.push(et);
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}
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},function(err) {
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if (err) return nextStep(err);
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for(var nwid in etherTypesByNetwork) {
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var ets = etherTypesByNetwork[nwid].sort();
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var network = networks[nwid];
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if (network) {
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var rules = [];
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if (ets.indexOf(0) >= 0) {
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// If 0 is in the list, all Ethernet types are allowed so we accept all.
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rules.push({ 'type': 'ACTION_ACCEPT' });
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} else {
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// Otherwise we whitelist.
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for(var i=0;i<ets.length;++i) {
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rules.push({
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'etherType': ets[i],
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'not': true,
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'or': false,
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'type': 'MATCH_ETHERTYPE'
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});
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}
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rules.push({ 'type': 'ACTION_DROP' });
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rules.push({ 'type': 'ACTION_ACCEPT' });
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}
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network.rules = rules;
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++ruleCount;
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}
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}
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return nextStep(null);
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});
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}],function(err) {
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if (err) {
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console.log('FATAL: '+err.toString());
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return process.exit(1);
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}
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console.log(' '+ruleCount+' ethernet type whitelists converted to new format rules.');
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old.close();
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console.log('Done reading and converting Sqlite3 database! Writing JSONDB files...');
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try {
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fs.mkdirSync(newDbPath,0o700);
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} catch (e) {}
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var nwBase = newDbPath+'/network';
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try {
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fs.mkdirSync(nwBase,0o700);
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} catch (e) {}
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nwBase = nwBase + '/';
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var nwids = Object.keys(networks).sort();
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var fileCount = 0;
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for(var ni=0;ni<nwids.length;++ni) {
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var network = networks[nwids[ni]];
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var mids = Object.keys(network._members).sort();
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if (mids.length > 0) {
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try {
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fs.mkdirSync(nwBase+network.id);
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} catch (e) {}
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var mbase = nwBase+network.id+'/member';
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try {
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fs.mkdirSync(mbase,0o700);
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} catch (e) {}
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mbase = mbase + '/';
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for(var mi=0;mi<mids.length;++mi) {
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var member = network._members[mids[mi]];
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fs.writeFileSync(mbase+member.id+'.json',JSON.stringify(member,null,1),{ mode: 0o600 });
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++fileCount;
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//console.log(mbase+member.id+'.json');
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}
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}
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delete network._members; // temporary field, not part of actual JSONDB, so don't write
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fs.writeFileSync(nwBase+network.id+'.json',JSON.stringify(network,null,1),{ mode: 0o600 });
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++fileCount;
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//console.log(nwBase+network.id+'.json');
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}
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console.log('');
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console.log('SUCCESS! Wrote '+fileCount+' JSONDB files.');
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console.log('');
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console.log('You should still inspect the new DB before going live. Also be sure');
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console.log('to "chown -R" and "chgrp -R" the new DB to the user and group under');
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console.log('which the ZeroTier One instance acting as controller will be running.');
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console.log('The controller must be able to read and write the DB, of course.');
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console.log('');
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console.log('Have fun!');
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return process.exit(0);
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});
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