mirror of
https://github.com/zerotier/ZeroTierOne.git
synced 2024-12-24 15:16:40 +00:00
480 lines
22 KiB
C++
480 lines
22 KiB
C++
/*
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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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#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 <time.h>
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#include <sys/time.h>
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#include <sys/types.h>
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#include <algorithm>
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#include <utility>
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#include <stdexcept>
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#include "SqliteNetworkConfigMaster.hpp"
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#include "../node/Utils.hpp"
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#include "../node/CertificateOfMembership.hpp"
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#include "../node/NetworkConfig.hpp"
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// Include ZT_NETCONF_SCHEMA_SQL constant to init database
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#include "netconf-schema.sql.c"
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// Stored in database as schemaVersion key in Config.
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// If not present, database is assumed to be empty and at the current schema version
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// and this key/value is added automatically.
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#define ZT_NETCONF_SQLITE_SCHEMA_VERSION 1
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#define ZT_NETCONF_SQLITE_SCHEMA_VERSION_STR "1"
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namespace ZeroTier {
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SqliteNetworkConfigMaster::SqliteNetworkConfigMaster(const Identity &signingId,const char *dbPath) :
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_signingId(signingId),
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_dbPath(dbPath),
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_db((sqlite3 *)0)
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{
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if (!_signingId.hasPrivate())
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throw std::runtime_error("SqliteNetworkConfigMaster signing identity must have a private key");
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if (sqlite3_open_v2(dbPath,&_db,SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE,(const char *)0) != SQLITE_OK)
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throw std::runtime_error("SqliteNetworkConfigMaster cannot open database file");
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sqlite3_busy_timeout(_db,10000);
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sqlite3_stmt *s = (sqlite3_stmt *)0;
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if ((sqlite3_prepare_v2(_db,"SELECT 'v' FROM Config WHERE 'k' = 'schemaVersion';",-1,&s,(const char **)0) == SQLITE_OK)&&(s)) {
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int schemaVersion = -1234;
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if (sqlite3_step(s) == SQLITE_ROW)
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schemaVersion = sqlite3_column_int(s,0);
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sqlite3_finalize(s);
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if (schemaVersion == -1234) {
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sqlite3_close(_db);
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throw std::runtime_error("SqliteNetworkConfigMaster schemaVersion not found in Config table (init failure?)");
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} else if (schemaVersion != ZT_NETCONF_SQLITE_SCHEMA_VERSION) {
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// Note -- this will eventually run auto-upgrades so this isn't how it'll work going forward
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sqlite3_close(_db);
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throw std::runtime_error("SqliteNetworkConfigMaster database schema version mismatch");
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}
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} else {
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// Prepare statement will fail if Config table doesn't exist, which means our DB
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// needs to be initialized.
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if (sqlite3_exec(_db,ZT_NETCONF_SCHEMA_SQL"INSERT INTO Config (k,v) VALUES ('schemaVersion',"ZT_NETCONF_SQLITE_SCHEMA_VERSION_STR");",0,0,0) != SQLITE_OK) {
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sqlite3_close(_db);
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throw std::runtime_error("SqliteNetworkConfigMaster cannot initialize database and/or insert schemaVersion into Config table");
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}
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}
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if (
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(sqlite3_prepare_v2(_db,"SELECT 'name','private','enableBroadcast','allowPassiveBridging','v4AssignMode','v6AssignMode','multicastLimit','revision' FROM Network WHERE 'id' = ?",-1,&_sGetNetworkById,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT rowid,'cachedNetconf','cachedNetconfRevision','clientReportedRevision','authorized','activeBridge' FROM Member WHERE 'networkId' = ? AND 'nodeId' = ?",-1,&_sGetMemberByNetworkAndNodeId,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"INSERT INTO Member ('networkId','nodeId','cachedNetconfRevision','clientReportedRevision','authorized','activeBridge') VALUES (?,?,0,0,?,0)",-1,&_sCreateMember,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT 'identity' FROM Node WHERE 'id' = ?",-1,&_sGetNodeIdentity,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"INSERT INTO Node ('id','identity','lastAt','lastSeen','firstSeen') VALUES (?,?,?,?,?)",-1,&_sCreateNode,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"UPDATE Node SET 'lastAt' = ?,'lastSeen' = ? WHERE 'id' = ?",-1,&_sUpdateNode,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"UPDATE Node SET 'lastSeen' = ? WHERE 'id' = ?",-1,&_sUpdateNode2,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"UPDATE Member SET 'clientReportedRevision' = ? WHERE rowid = ?",-1,&_sUpdateMemberClientReportedRevision,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT 'etherType' FROM Rule WHERE 'networkId' = ? AND 'action' = 'accept'",-1,&_sGetEtherTypesFromRuleTable,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT 'mgMac','mgAdi','preload','maxBalance','accrual' FROM MulticastRate WHERE 'networkId' = ?",-1,&_sGetMulticastRates,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT 'nodeId' FROM Member WHERE 'networkId' = ? AND 'authorized' > 0 AND 'activeBridge' > 0",-1,&_sGetActiveBridges,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT DISTINCT 'ip','ipNetmaskBits' FROM IpAssignment WHERE 'networkId' = ? AND 'nodeId' = ? AND 'ipVersion' = ?",-1,&_sGetIpAssignmentsForNode,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT DISTINCT 'ipNetwork','ipNetmaskBits' FROM IpAssignmentPool WHERE 'networkId' = ? AND 'ipVersion' = ? AND 'active' > 0",-1,&_sGetIpAssignmentPools,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"SELECT 1 FROM IpAssignment WHERE 'networkId' = ? AND 'ip' = ? AND 'ipVersion' = ?",-1,&_sCheckIfIpIsAllocated,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"INSERT INTO IpAssignment ('networkId','nodeId','ip','ipNetmaskBits','ipVersion') VALUES (?,?,?,?,?)",-1,&_sAllocateIp,(const char **)0) != SQLITE_OK)
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||(sqlite3_prepare_v2(_db,"UPDATE Member SET 'cachedNetconf' = ?,'cachedNetconfRevision' = ? WHERE rowid = ?",-1,&_sCacheNetconf,(const char **)0) != SQLITE_OK)
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) {
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sqlite3_close(_db);
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throw std::runtime_error("SqliteNetworkConfigMaster unable to initialize one or more prepared statements");
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}
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}
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SqliteNetworkConfigMaster::~SqliteNetworkConfigMaster()
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{
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Mutex::Lock _l(_lock);
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if (_db) {
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sqlite3_finalize(_sGetNetworkById);
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sqlite3_finalize(_sGetMemberByNetworkAndNodeId);
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sqlite3_finalize(_sCreateMember);
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sqlite3_finalize(_sGetNodeIdentity);
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sqlite3_finalize(_sCreateNode);
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sqlite3_finalize(_sUpdateNode);
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sqlite3_finalize(_sUpdateNode2);
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sqlite3_finalize(_sUpdateMemberClientReportedRevision);
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sqlite3_finalize(_sGetEtherTypesFromRuleTable);
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sqlite3_finalize(_sGetMulticastRates);
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sqlite3_finalize(_sGetActiveBridges);
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sqlite3_finalize(_sGetIpAssignmentsForNode);
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sqlite3_finalize(_sGetIpAssignmentPools);
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sqlite3_finalize(_sCheckIfIpIsAllocated);
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sqlite3_finalize(_sAllocateIp);
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sqlite3_finalize(_sCacheNetconf);
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sqlite3_close(_db);
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}
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}
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NetworkConfigMaster::ResultCode SqliteNetworkConfigMaster::doNetworkConfigRequest(const InetAddress &fromAddr,const Identity &identity,uint64_t nwid,const Dictionary &metaData,uint64_t haveRevision,Dictionary &netconf)
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{
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Mutex::Lock _l(_lock);
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// Note: we can't reuse prepared statements that return const char * pointers without
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// making our own copy in e.g. a std::string first.
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struct {
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char id[24];
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const char *name;
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const char *v4AssignMode;
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const char *v6AssignMode;
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bool isPrivate;
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bool enableBroadcast;
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bool allowPassiveBridging;
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int multicastLimit;
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uint64_t revision;
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} network;
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memset(&network,0,sizeof(network));
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Utils::snprintf(network.id,sizeof(network.id),"%.16llx",(unsigned long long)nwid);
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struct {
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int64_t rowid;
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char nodeId[16];
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int cachedNetconfBytes;
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const void *cachedNetconf;
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uint64_t cachedNetconfRevision;
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uint64_t clientReportedRevision;
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bool authorized;
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bool activeBridge;
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} member;
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memset(&member,0,sizeof(member));
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Utils::snprintf(member.nodeId,sizeof(member.nodeId),"%.10llx",(unsigned long long)identity.address().toInt());
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// Create/update Node record and check identity fully -- identities are first-come-first-claim
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sqlite3_reset(_sGetNodeIdentity);
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sqlite3_bind_text(_sGetNodeIdentity,1,member.nodeId,10,SQLITE_STATIC);
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if (sqlite3_step(_sGetNodeIdentity) == SQLITE_ROW) {
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try {
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Identity alreadyKnownIdentity((const char *)sqlite3_column_text(_sGetNodeIdentity,0));
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if (alreadyKnownIdentity == identity) {
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char lastSeen[64];
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Utils::snprintf(lastSeen,sizeof(lastSeen),"%llu",(unsigned long long)Utils::now());
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if (fromAddr) {
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std::string lastAt(fromAddr.toString());
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sqlite3_reset(_sUpdateNode);
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sqlite3_bind_text(_sUpdateNode,1,lastAt.c_str(),-1,SQLITE_STATIC);
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sqlite3_bind_text(_sUpdateNode,2,lastSeen,-1,SQLITE_STATIC);
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sqlite3_bind_text(_sUpdateNode,3,member.nodeId,10,SQLITE_STATIC);
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sqlite3_step(_sUpdateNode);
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} else { // fromAddr is empty, which means this was a relayed packet -- so don't update lastAt
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sqlite3_reset(_sUpdateNode2);
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sqlite3_bind_text(_sUpdateNode2,1,lastSeen,-1,SQLITE_STATIC);
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sqlite3_bind_text(_sUpdateNode2,2,member.nodeId,10,SQLITE_STATIC);
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sqlite3_step(_sUpdateNode2);
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}
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} else {
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return NetworkConfigMaster::NETCONF_QUERY_ACCESS_DENIED;
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}
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} catch ( ... ) { // identity stored in database is not valid or is NULL
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return NetworkConfigMaster::NETCONF_QUERY_ACCESS_DENIED;
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}
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} else {
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std::string idstr(identity.toString(false));
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std::string lastAt;
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if (fromAddr)
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lastAt = fromAddr.toString();
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char lastSeen[64];
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Utils::snprintf(lastSeen,sizeof(lastSeen),"%llu",(unsigned long long)Utils::now());
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sqlite3_reset(_sCreateNode);
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sqlite3_bind_text(_sCreateNode,1,member.nodeId,10,SQLITE_STATIC);
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sqlite3_bind_text(_sCreateNode,2,idstr.c_str(),-1,SQLITE_STATIC);
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sqlite3_bind_text(_sCreateNode,3,lastAt.c_str(),-1,SQLITE_STATIC);
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sqlite3_bind_text(_sCreateNode,4,lastSeen,-1,SQLITE_STATIC);
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sqlite3_bind_text(_sCreateNode,5,lastSeen,-1,SQLITE_STATIC);
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if (sqlite3_step(_sCreateNode) != SQLITE_DONE) {
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netconf["error"] = "unable to create new node record";
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return NetworkConfigMaster::NETCONF_QUERY_INTERNAL_SERVER_ERROR;
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}
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}
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// Fetch Network record
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bool foundNetwork = false;
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sqlite3_reset(_sGetNetworkById);
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sqlite3_bind_text(_sGetNetworkById,1,network.id,16,SQLITE_STATIC);
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if (sqlite3_step(_sGetNetworkById) == SQLITE_ROW) {
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foundNetwork = true;
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network.name = (const char *)sqlite3_column_text(_sGetNetworkById,0);
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network.isPrivate = (sqlite3_column_int(_sGetNetworkById,1) > 0);
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network.enableBroadcast = (sqlite3_column_int(_sGetNetworkById,2) > 0);
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network.allowPassiveBridging = (sqlite3_column_int(_sGetNetworkById,3) > 0);
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network.v4AssignMode = (const char *)sqlite3_column_text(_sGetNetworkById,4);
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network.v6AssignMode = (const char *)sqlite3_column_text(_sGetNetworkById,5);
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network.multicastLimit = sqlite3_column_int(_sGetNetworkById,6);
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network.revision = (uint64_t)sqlite3_column_int64(_sGetNetworkById,7);
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}
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if (!foundNetwork)
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return NetworkConfigMaster::NETCONF_QUERY_OBJECT_NOT_FOUND;
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// Fetch Member record
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bool foundMember = false;
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sqlite3_reset(_sGetMemberByNetworkAndNodeId);
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sqlite3_bind_text(_sGetMemberByNetworkAndNodeId,1,network.id,16,SQLITE_STATIC);
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sqlite3_bind_text(_sGetMemberByNetworkAndNodeId,2,member.nodeId,10,SQLITE_STATIC);
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if (sqlite3_step(_sGetMemberByNetworkAndNodeId) == SQLITE_ROW) {
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foundMember = true;
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member.rowid = (int64_t)sqlite3_column_int64(_sGetMemberByNetworkAndNodeId,0);
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member.cachedNetconfBytes = sqlite3_column_bytes(_sGetMemberByNetworkAndNodeId,1);
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member.cachedNetconf = sqlite3_column_blob(_sGetMemberByNetworkAndNodeId,1);
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member.cachedNetconfRevision = (uint64_t)sqlite3_column_int64(_sGetMemberByNetworkAndNodeId,2);
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member.clientReportedRevision = (uint64_t)sqlite3_column_int64(_sGetMemberByNetworkAndNodeId,3);
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member.authorized = (sqlite3_column_int(_sGetMemberByNetworkAndNodeId,4) > 0);
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member.activeBridge = (sqlite3_column_int(_sGetMemberByNetworkAndNodeId,5) > 0);
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}
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// Create Member record for unknown nodes, auto-authorizing if network is public
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if (!foundMember) {
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member.cachedNetconfBytes = 0;
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member.cachedNetconfRevision = 0;
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member.clientReportedRevision = 0;
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member.authorized = (network.isPrivate ? false : true);
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member.activeBridge = false;
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sqlite3_reset(_sCreateMember);
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sqlite3_bind_text(_sCreateMember,1,network.id,16,SQLITE_STATIC);
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sqlite3_bind_text(_sCreateMember,2,member.nodeId,10,SQLITE_STATIC);
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sqlite3_bind_int(_sCreateMember,3,(member.authorized ? 0 : 1));
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if ( (sqlite3_step(_sCreateMember) != SQLITE_DONE) && ((member.rowid = (int64_t)sqlite3_last_insert_rowid(_db)) > 0) ) {
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netconf["error"] = "unable to create new member record";
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return NetworkConfigMaster::NETCONF_QUERY_INTERNAL_SERVER_ERROR;
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}
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}
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// Check member authorization
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if (!member.authorized)
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return NetworkConfigMaster::NETCONF_QUERY_ACCESS_DENIED;
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// Update client's currently reported haveRevision in Member record
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if (member.rowid > 0) {
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sqlite3_reset(_sUpdateMemberClientReportedRevision);
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sqlite3_bind_int64(_sUpdateMemberClientReportedRevision,1,(sqlite3_int64)haveRevision);
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sqlite3_bind_int64(_sUpdateMemberClientReportedRevision,2,member.rowid);
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sqlite3_step(_sUpdateMemberClientReportedRevision);
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}
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// If netconf is unchanged from client reported revision, just tell client they're up to date
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if ((haveRevision > 0)&&(haveRevision == network.revision))
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return NetworkConfigMaster::NETCONF_QUERY_OK_BUT_NOT_NEWER;
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// Generate or retrieve cached netconf
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netconf.clear();
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if ((member.cachedNetconfRevision == network.revision)&&(member.cachedNetconfBytes > 0)) {
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// Use cached copy
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std::string tmp((const char *)member.cachedNetconf,member.cachedNetconfBytes);
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netconf.fromString(tmp);
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} else {
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// Create and sign a new netconf, and save in database to re-use in the future
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char tss[24],rs[24];
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Utils::snprintf(tss,sizeof(tss),"%.16llx",(unsigned long long)Utils::now());
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Utils::snprintf(rs,sizeof(rs),"%.16llx",(unsigned long long)network.revision);
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netconf[ZT_NETWORKCONFIG_DICT_KEY_TIMESTAMP] = tss;
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netconf[ZT_NETWORKCONFIG_DICT_KEY_REVISION] = rs;
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netconf[ZT_NETWORKCONFIG_DICT_KEY_NETWORK_ID] = network.id;
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netconf[ZT_NETWORKCONFIG_DICT_KEY_ISSUED_TO] = member.nodeId;
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netconf[ZT_NETWORKCONFIG_DICT_KEY_PRIVATE] = network.isPrivate ? "1" : "0";
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netconf[ZT_NETWORKCONFIG_DICT_KEY_NAME] = (network.name) ? network.name : "";
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netconf[ZT_NETWORKCONFIG_DICT_KEY_ENABLE_BROADCAST] = network.enableBroadcast ? "1" : "0";
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netconf[ZT_NETWORKCONFIG_DICT_KEY_ALLOW_PASSIVE_BRIDGING] = network.allowPassiveBridging ? "1" : "0";
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{
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std::vector<int> allowedEtherTypes;
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sqlite3_reset(_sGetEtherTypesFromRuleTable);
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sqlite3_bind_text(_sGetEtherTypesFromRuleTable,1,network.id,16,SQLITE_STATIC);
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while (sqlite3_step(_sGetEtherTypesFromRuleTable) == SQLITE_ROW) {
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int et = sqlite3_column_int(_sGetEtherTypesFromRuleTable,0);
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if ((et >= 0)&&(et <= 0xffff))
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allowedEtherTypes.push_back(et);
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}
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std::sort(allowedEtherTypes.begin(),allowedEtherTypes.end());
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std::unique(allowedEtherTypes.begin(),allowedEtherTypes.end());
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std::string allowedEtherTypesCsv;
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for(std::vector<int>::const_iterator i(allowedEtherTypes.begin());i!=allowedEtherTypes.end();++i) {
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if (allowedEtherTypesCsv.length())
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allowedEtherTypesCsv.push_back(',');
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char tmp[16];
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Utils::snprintf(tmp,sizeof(tmp),"%.4x",(unsigned int)*i);
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allowedEtherTypesCsv.append(tmp);
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}
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netconf[ZT_NETWORKCONFIG_DICT_KEY_ALLOWED_ETHERNET_TYPES] = allowedEtherTypesCsv;
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}
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{
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std::string multicastRates;
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sqlite3_reset(_sGetMulticastRates);
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sqlite3_bind_text(_sGetMulticastRates,1,network.id,16,SQLITE_STATIC);
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while (sqlite3_step(_sGetMulticastRates) == SQLITE_ROW) {
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const char *mac = (const char *)sqlite3_column_text(_sGetMulticastRates,0);
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if ((mac)&&(strlen(mac) == 12)) {
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unsigned long adi = ((unsigned long)sqlite3_column_int64(_sGetMulticastRates,1)) & 0xffffffff;
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char tmp[256];
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Utils::snprintf(tmp,sizeof(tmp),"%s/%.4lx=%x,%x,%x\n",mac,adi,sqlite3_column_int(_sGetMulticastRates,2),sqlite3_column_int(_sGetMulticastRates,3),sqlite3_column_int(_sGetMulticastRates,4));
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multicastRates.append(tmp);
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}
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}
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if (multicastRates.length() > 0)
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netconf[ZT_NETWORKCONFIG_DICT_KEY_MULTICAST_RATES] = multicastRates;
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if (network.multicastLimit > 0) {
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char ml[16];
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Utils::snprintf(ml,sizeof(ml),"%lx",(unsigned long)network.multicastLimit);
|
|
netconf[ZT_NETWORKCONFIG_DICT_KEY_MULTICAST_LIMIT] = ml;
|
|
}
|
|
}
|
|
|
|
{
|
|
std::string activeBridges;
|
|
sqlite3_reset(_sGetActiveBridges);
|
|
sqlite3_bind_text(_sGetActiveBridges,1,network.id,16,SQLITE_STATIC);
|
|
while (sqlite3_step(_sGetActiveBridges) == SQLITE_ROW) {
|
|
const char *ab = (const char *)sqlite3_column_text(_sGetActiveBridges,0);
|
|
if ((ab)&&(strlen(ab) == 10)) {
|
|
if (activeBridges.length())
|
|
activeBridges.push_back(',');
|
|
activeBridges.append(ab);
|
|
}
|
|
if (activeBridges.length() > 1024) // sanity check -- you can't have too many active bridges at the moment
|
|
break;
|
|
}
|
|
if (activeBridges.length())
|
|
netconf[ZT_NETWORKCONFIG_DICT_KEY_ACTIVE_BRIDGES] = activeBridges;
|
|
}
|
|
|
|
if ((network.v4AssignMode)&&(!strcmp(network.v4AssignMode,"zt"))) {
|
|
std::string v4s;
|
|
|
|
sqlite3_reset(_sGetIpAssignmentsForNode);
|
|
sqlite3_bind_text(_sGetIpAssignmentsForNode,1,network.id,16,SQLITE_STATIC);
|
|
sqlite3_bind_text(_sGetIpAssignmentsForNode,2,member.nodeId,10,SQLITE_STATIC);
|
|
sqlite3_bind_int(_sGetIpAssignmentsForNode,3,4); // 4 == IPv4
|
|
while (sqlite3_step(_sGetIpAssignmentsForNode) == SQLITE_ROW) {
|
|
const unsigned char *ip = (const unsigned char *)sqlite3_column_blob(_sGetIpAssignmentsForNode,0);
|
|
int ipNetmaskBits = sqlite3_column_int(_sGetIpAssignmentsForNode,1);
|
|
if ((ip)&&(sqlite3_column_bytes(_sGetIpAssignmentsForNode,0) >= 4)&&(ipNetmaskBits > 0)&&(ipNetmaskBits <= 32)) {
|
|
char tmp[32];
|
|
Utils::snprintf(tmp,sizeof(tmp),"%d.%d.%d.%d/%d",(int)ip[0],(int)ip[1],(int)ip[2],(int)ip[3],ipNetmaskBits);
|
|
if (v4s.length())
|
|
v4s.push_back(',');
|
|
v4s.append(tmp);
|
|
}
|
|
}
|
|
|
|
if (!v4s.length()) {
|
|
// Attempt to auto-assign an IPv4 address from an available pool if one isn't assigned already
|
|
sqlite3_reset(_sGetIpAssignmentPools);
|
|
sqlite3_bind_text(_sGetIpAssignmentPools,1,network.id,16,SQLITE_STATIC);
|
|
sqlite3_bind_int(_sGetIpAssignmentPools,2,4); // 4 == IPv4
|
|
while ((!v4s.length())&&(sqlite3_step(_sGetIpAssignmentPools) == SQLITE_ROW)) {
|
|
const void *ipNetwork = sqlite3_column_blob(_sGetIpAssignmentPools,0);
|
|
int ipNetmaskBits = sqlite3_column_int(_sGetIpAssignmentPools,1);
|
|
if ((ipNetwork)&&(sqlite3_column_bytes(_sGetIpAssignmentPools,0) >= 4)&&(ipNetmaskBits > 0)&&(ipNetmaskBits < 32)) {
|
|
uint32_t n = Utils::ntoh(*((const uint32_t *)ipNetwork)); // network in host byte order e.g. 192.168.0.0
|
|
uint32_t m = 0xffffffff << (32 - ipNetmaskBits); // netmask e.g. 0xffffff00 for '24' since 32 - 24 == 8
|
|
uint32_t im = ~m; // inverse mask, e.g. 0x000000ff for a netmask of 0xffffff00
|
|
uint32_t abits = (uint32_t)(identity.address().toInt() & 0xffffffff); // least significant bits of member ZT address
|
|
|
|
for(uint32_t k=0;k<=im;++k) { // try up to the number of IPs possible in this network
|
|
uint32_t ip = ( ((abits + k) & im) | (n & m) ); // build IP using bits from ZT address of member + k
|
|
if ((ip & 0x000000ff) == 0x00) continue; // no IPs ending in .0 allowed
|
|
if ((ip & 0x000000ff) == 0xff) continue; // no IPs ending in .255 allowed
|
|
|
|
uint32_t nip = Utils::hton(ip); // IP in big-endian "network" byte order
|
|
sqlite3_reset(_sCheckIfIpIsAllocated);
|
|
sqlite3_bind_text(_sCheckIfIpIsAllocated,1,network.id,16,SQLITE_STATIC);
|
|
sqlite3_bind_blob(_sCheckIfIpIsAllocated,2,(const void *)&nip,4,SQLITE_STATIC);
|
|
sqlite3_bind_int(_sCheckIfIpIsAllocated,3,4); // 4 == IPv4
|
|
if (sqlite3_step(_sCheckIfIpIsAllocated) != SQLITE_ROW) {
|
|
// No rows returned, so the IP is available
|
|
sqlite3_reset(_sAllocateIp);
|
|
sqlite3_bind_text(_sAllocateIp,1,network.id,16,SQLITE_STATIC);
|
|
sqlite3_bind_text(_sAllocateIp,2,member.nodeId,10,SQLITE_STATIC);
|
|
sqlite3_bind_blob(_sAllocateIp,3,(const void *)&nip,4,SQLITE_STATIC);
|
|
sqlite3_bind_int(_sAllocateIp,4,ipNetmaskBits);
|
|
sqlite3_bind_int(_sAllocateIp,5,4); // 4 == IPv4
|
|
if (sqlite3_step(_sAllocateIp) == SQLITE_DONE) {
|
|
char tmp[32];
|
|
Utils::snprintf(tmp,sizeof(tmp),"%d.%d.%d.%d/%d",(int)((ip >> 24) & 0xff),(int)((ip >> 16) & 0xff),(int)((ip >> 8) & 0xff),(int)(ip & 0xff),ipNetmaskBits);
|
|
if (v4s.length())
|
|
v4s.push_back(',');
|
|
v4s.append(tmp);
|
|
break; // IP found and reserved! v4s containing something will cause outer while() to break.
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (v4s.length())
|
|
netconf[ZT_NETWORKCONFIG_DICT_KEY_IPV4_STATIC] = v4s;
|
|
}
|
|
|
|
// TODO: IPv6 auto-assign once it's supported in UI
|
|
|
|
if (network.isPrivate) {
|
|
CertificateOfMembership com(network.revision,16,nwid,identity.address());
|
|
if (com.sign(_signingId)) // basically can't fail unless our identity is invalid
|
|
netconf[ZT_NETWORKCONFIG_DICT_KEY_CERTIFICATE_OF_MEMBERSHIP] = com.toString();
|
|
else {
|
|
netconf["error"] = "unable to sign COM";
|
|
return NETCONF_QUERY_INTERNAL_SERVER_ERROR;
|
|
}
|
|
}
|
|
|
|
if (!netconf.sign(_signingId)) {
|
|
netconf["error"] = "unable to sign netconf dictionary";
|
|
return NETCONF_QUERY_INTERNAL_SERVER_ERROR;
|
|
}
|
|
|
|
// Save serialized netconf for future re-use
|
|
std::string netconfSerialized(netconf.toString());
|
|
if (netconfSerialized.length() < 4096) { // sanity check
|
|
sqlite3_reset(_sCacheNetconf);
|
|
sqlite3_bind_blob(_sCacheNetconf,1,(const void *)netconfSerialized.data(),netconfSerialized.length(),SQLITE_STATIC);
|
|
sqlite3_bind_int64(_sCacheNetconf,2,(sqlite3_int64)network.revision);
|
|
sqlite3_bind_int64(_sCacheNetconf,3,member.rowid);
|
|
sqlite3_step(_sCacheNetconf);
|
|
}
|
|
}
|
|
|
|
return NetworkConfigMaster::NETCONF_QUERY_OK;
|
|
}
|
|
|
|
} // namespace ZeroTier
|