mirror of
https://github.com/AdguardTeam/AdGuardHome.git
synced 2024-11-23 05:25:35 +03:00
339 lines
8.2 KiB
Go
339 lines
8.2 KiB
Go
package home
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import (
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"fmt"
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"net"
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"path/filepath"
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"github.com/AdguardTeam/AdGuardHome/dnsfilter"
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"github.com/AdguardTeam/AdGuardHome/dnsforward"
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"github.com/AdguardTeam/AdGuardHome/querylog"
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"github.com/AdguardTeam/AdGuardHome/stats"
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"github.com/AdguardTeam/AdGuardHome/util"
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"github.com/AdguardTeam/dnsproxy/proxy"
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"github.com/AdguardTeam/dnsproxy/upstream"
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"github.com/AdguardTeam/golibs/log"
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"github.com/joomcode/errorx"
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)
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// Called by other modules when configuration is changed
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func onConfigModified() {
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_ = config.write()
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}
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// initDNSServer creates an instance of the dnsforward.Server
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// Please note that we must do it even if we don't start it
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// so that we had access to the query log and the stats
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func initDNSServer() error {
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var err error
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baseDir := Context.getDataDir()
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statsConf := stats.Config{
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Filename: filepath.Join(baseDir, "stats.db"),
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LimitDays: config.DNS.StatsInterval,
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ConfigModified: onConfigModified,
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HTTPRegister: httpRegister,
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}
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Context.stats, err = stats.New(statsConf)
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if err != nil {
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return fmt.Errorf("Couldn't initialize statistics module")
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}
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conf := querylog.Config{
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Enabled: config.DNS.QueryLogEnabled,
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BaseDir: baseDir,
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Interval: config.DNS.QueryLogInterval,
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MemSize: config.DNS.QueryLogMemSize,
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ConfigModified: onConfigModified,
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HTTPRegister: httpRegister,
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}
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Context.queryLog = querylog.New(conf)
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filterConf := config.DNS.DnsfilterConf
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bindhost := config.DNS.BindHost
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if config.DNS.BindHost == "0.0.0.0" {
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bindhost = "127.0.0.1"
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}
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filterConf.ResolverAddress = fmt.Sprintf("%s:%d", bindhost, config.DNS.Port)
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filterConf.ConfigModified = onConfigModified
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filterConf.HTTPRegister = httpRegister
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Context.dnsFilter = dnsfilter.New(&filterConf, nil)
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Context.dnsServer = dnsforward.NewServer(Context.dnsFilter, Context.stats, Context.queryLog)
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dnsConfig := generateServerConfig()
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err = Context.dnsServer.Prepare(&dnsConfig)
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if err != nil {
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closeDNSServer()
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return fmt.Errorf("dnsServer.Prepare: %s", err)
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}
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Context.rdns = InitRDNS(Context.dnsServer, &Context.clients)
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Context.whois = initWhois(&Context.clients)
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Context.filters.Init()
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return nil
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}
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func isRunning() bool {
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return Context.dnsServer != nil && Context.dnsServer.IsRunning()
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}
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// nolint (gocyclo)
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// Return TRUE if IP is within public Internet IP range
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func isPublicIP(ip net.IP) bool {
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ip4 := ip.To4()
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if ip4 != nil {
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switch ip4[0] {
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case 0:
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return false //software
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case 10:
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return false //private network
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case 127:
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return false //loopback
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case 169:
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if ip4[1] == 254 {
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return false //link-local
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}
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case 172:
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if ip4[1] >= 16 && ip4[1] <= 31 {
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return false //private network
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}
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case 192:
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if (ip4[1] == 0 && ip4[2] == 0) || //private network
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(ip4[1] == 0 && ip4[2] == 2) || //documentation
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(ip4[1] == 88 && ip4[2] == 99) || //reserved
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(ip4[1] == 168) { //private network
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return false
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}
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case 198:
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if (ip4[1] == 18 || ip4[2] == 19) || //private network
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(ip4[1] == 51 || ip4[2] == 100) { //documentation
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return false
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}
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case 203:
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if ip4[1] == 0 && ip4[2] == 113 { //documentation
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return false
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}
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case 224:
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if ip4[1] == 0 && ip4[2] == 0 { //multicast
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return false
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}
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case 255:
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if ip4[1] == 255 && ip4[2] == 255 && ip4[3] == 255 { //subnet
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return false
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}
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}
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} else {
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if ip.IsLoopback() || ip.IsLinkLocalMulticast() || ip.IsLinkLocalUnicast() {
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return false
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}
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}
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return true
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}
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func onDNSRequest(d *proxy.DNSContext) {
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ip := dnsforward.GetIPString(d.Addr)
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if ip == "" {
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// This would be quite weird if we get here
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return
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}
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ipAddr := net.ParseIP(ip)
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if !ipAddr.IsLoopback() {
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Context.rdns.Begin(ip)
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}
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if isPublicIP(ipAddr) {
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Context.whois.Begin(ip)
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}
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}
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func generateServerConfig() dnsforward.ServerConfig {
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newconfig := dnsforward.ServerConfig{
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UDPListenAddr: &net.UDPAddr{IP: net.ParseIP(config.DNS.BindHost), Port: config.DNS.Port},
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TCPListenAddr: &net.TCPAddr{IP: net.ParseIP(config.DNS.BindHost), Port: config.DNS.Port},
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FilteringConfig: config.DNS.FilteringConfig,
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ConfigModified: onConfigModified,
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HTTPRegister: httpRegister,
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OnDNSRequest: onDNSRequest,
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}
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tlsConf := tlsConfigSettings{}
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Context.tls.WriteDiskConfig(&tlsConf)
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if tlsConf.Enabled {
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newconfig.TLSConfig = tlsConf.TLSConfig
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if tlsConf.PortDNSOverTLS != 0 {
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newconfig.TLSListenAddr = &net.TCPAddr{
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IP: net.ParseIP(config.DNS.BindHost),
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Port: tlsConf.PortDNSOverTLS,
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}
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}
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}
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newconfig.TLSv12Roots = Context.tlsRoots
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newconfig.TLSAllowUnencryptedDOH = tlsConf.AllowUnencryptedDOH
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newconfig.FilterHandler = applyAdditionalFiltering
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newconfig.GetUpstreamsByClient = getUpstreamsByClient
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return newconfig
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}
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// Get the list of DNS addresses the server is listening on
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func getDNSAddresses() []string {
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dnsAddresses := []string{}
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if config.DNS.BindHost == "0.0.0.0" {
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ifaces, e := util.GetValidNetInterfacesForWeb()
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if e != nil {
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log.Error("Couldn't get network interfaces: %v", e)
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return []string{}
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}
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for _, iface := range ifaces {
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for _, addr := range iface.Addresses {
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addDNSAddress(&dnsAddresses, addr)
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}
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}
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} else {
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addDNSAddress(&dnsAddresses, config.DNS.BindHost)
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}
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tlsConf := tlsConfigSettings{}
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Context.tls.WriteDiskConfig(&tlsConf)
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if tlsConf.Enabled && len(tlsConf.ServerName) != 0 {
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if tlsConf.PortHTTPS != 0 {
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addr := tlsConf.ServerName
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if tlsConf.PortHTTPS != 443 {
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addr = fmt.Sprintf("%s:%d", addr, tlsConf.PortHTTPS)
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}
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addr = fmt.Sprintf("https://%s/dns-query", addr)
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dnsAddresses = append(dnsAddresses, addr)
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}
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if tlsConf.PortDNSOverTLS != 0 {
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addr := fmt.Sprintf("tls://%s:%d", tlsConf.ServerName, tlsConf.PortDNSOverTLS)
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dnsAddresses = append(dnsAddresses, addr)
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}
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}
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return dnsAddresses
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}
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func getUpstreamsByClient(clientAddr string) []upstream.Upstream {
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return Context.clients.FindUpstreams(clientAddr)
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}
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// If a client has his own settings, apply them
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func applyAdditionalFiltering(clientAddr string, setts *dnsfilter.RequestFilteringSettings) {
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Context.dnsFilter.ApplyBlockedServices(setts, nil, true)
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if len(clientAddr) == 0 {
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return
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}
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c, ok := Context.clients.Find(clientAddr)
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if !ok {
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return
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}
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log.Debug("Using settings for client with IP %s", clientAddr)
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if c.UseOwnBlockedServices {
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Context.dnsFilter.ApplyBlockedServices(setts, c.BlockedServices, false)
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}
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setts.ClientTags = c.Tags
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if !c.UseOwnSettings {
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return
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}
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setts.FilteringEnabled = c.FilteringEnabled
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setts.SafeSearchEnabled = c.SafeSearchEnabled
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setts.SafeBrowsingEnabled = c.SafeBrowsingEnabled
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setts.ParentalEnabled = c.ParentalEnabled
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}
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func startDNSServer() error {
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if isRunning() {
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return fmt.Errorf("unable to start forwarding DNS server: Already running")
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}
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enableFilters(false)
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Context.clients.Start()
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err := Context.dnsServer.Start()
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if err != nil {
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return errorx.Decorate(err, "Couldn't start forwarding DNS server")
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}
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Context.dnsFilter.Start()
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Context.filters.Start()
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Context.stats.Start()
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Context.queryLog.Start()
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const topClientsNumber = 100 // the number of clients to get
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topClients := Context.stats.GetTopClientsIP(topClientsNumber)
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for _, ip := range topClients {
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ipAddr := net.ParseIP(ip)
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if !ipAddr.IsLoopback() {
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Context.rdns.Begin(ip)
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}
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if isPublicIP(ipAddr) {
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Context.whois.Begin(ip)
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}
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}
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return nil
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}
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func reconfigureDNSServer() error {
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newconfig := generateServerConfig()
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err := Context.dnsServer.Reconfigure(&newconfig)
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if err != nil {
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return errorx.Decorate(err, "Couldn't start forwarding DNS server")
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}
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return nil
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}
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func stopDNSServer() error {
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if !isRunning() {
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return nil
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}
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err := Context.dnsServer.Stop()
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if err != nil {
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return errorx.Decorate(err, "Couldn't stop forwarding DNS server")
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}
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closeDNSServer()
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return nil
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}
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func closeDNSServer() {
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// DNS forward module must be closed BEFORE stats or queryLog because it depends on them
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if Context.dnsServer != nil {
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Context.dnsServer.Close()
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Context.dnsServer = nil
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}
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if Context.dnsFilter != nil {
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Context.dnsFilter.Close()
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Context.dnsFilter = nil
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}
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if Context.stats != nil {
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Context.stats.Close()
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Context.stats = nil
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}
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if Context.queryLog != nil {
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Context.queryLog.Close()
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Context.queryLog = nil
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}
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Context.filters.Close()
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log.Debug("Closed all DNS modules")
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}
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