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367 lines
7.9 KiB
367 lines
7.9 KiB
// +build !confonly
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package dns
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import (
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"context"
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"encoding/binary"
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"sync"
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"sync/atomic"
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"time"
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"golang.org/x/net/dns/dnsmessage"
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"v2ray.com/core/common"
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"v2ray.com/core/common/net"
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"v2ray.com/core/common/protocol/dns"
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udp_proto "v2ray.com/core/common/protocol/udp"
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"v2ray.com/core/common/session"
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"v2ray.com/core/common/signal/pubsub"
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"v2ray.com/core/common/task"
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"v2ray.com/core/features/routing"
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"v2ray.com/core/transport/internet/udp"
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)
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type IPRecord struct {
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IP net.Address
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Expire time.Time
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}
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type pendingRequest struct {
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domain string
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expire time.Time
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}
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type ClassicNameServer struct {
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sync.RWMutex
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address net.Destination
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ips map[string][]IPRecord
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requests map[uint16]pendingRequest
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pub *pubsub.Service
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udpServer *udp.Dispatcher
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cleanup *task.Periodic
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reqID uint32
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clientIP net.IP
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}
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func NewClassicNameServer(address net.Destination, dispatcher routing.Dispatcher, clientIP net.IP) *ClassicNameServer {
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s := &ClassicNameServer{
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address: address,
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ips: make(map[string][]IPRecord),
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requests: make(map[uint16]pendingRequest),
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clientIP: clientIP,
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pub: pubsub.NewService(),
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}
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s.cleanup = &task.Periodic{
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Interval: time.Minute,
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Execute: s.Cleanup,
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}
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s.udpServer = udp.NewDispatcher(dispatcher, s.HandleResponse)
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return s
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}
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func (s *ClassicNameServer) Name() string {
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return s.address.String()
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}
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func (s *ClassicNameServer) Cleanup() error {
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now := time.Now()
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s.Lock()
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defer s.Unlock()
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if len(s.ips) == 0 && len(s.requests) == 0 {
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return newError("nothing to do. stopping...")
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}
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for domain, ips := range s.ips {
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newIPs := make([]IPRecord, 0, len(ips))
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for _, ip := range ips {
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if ip.Expire.After(now) {
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newIPs = append(newIPs, ip)
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}
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}
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if len(newIPs) == 0 {
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delete(s.ips, domain)
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} else if len(newIPs) < len(ips) {
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s.ips[domain] = newIPs
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}
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}
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if len(s.ips) == 0 {
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s.ips = make(map[string][]IPRecord)
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}
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for id, req := range s.requests {
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if req.expire.Before(now) {
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delete(s.requests, id)
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}
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}
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if len(s.requests) == 0 {
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s.requests = make(map[uint16]pendingRequest)
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}
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return nil
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}
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func (s *ClassicNameServer) HandleResponse(ctx context.Context, packet *udp_proto.Packet) {
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payload := packet.Payload
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var parser dnsmessage.Parser
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header, err := parser.Start(payload.Bytes())
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if err != nil {
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newError("failed to parse DNS response").Base(err).AtWarning().WriteToLog()
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return
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}
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if err := parser.SkipAllQuestions(); err != nil {
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newError("failed to skip questions in DNS response").Base(err).AtWarning().WriteToLog()
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return
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}
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id := header.ID
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s.Lock()
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req, f := s.requests[id]
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if f {
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delete(s.requests, id)
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}
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s.Unlock()
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if !f {
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return
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}
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domain := req.domain
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ips := make([]IPRecord, 0, 16)
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now := time.Now()
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for {
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header, err := parser.AnswerHeader()
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if err != nil {
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if err != dnsmessage.ErrSectionDone {
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newError("failed to parse answer section for domain: ", domain).Base(err).WriteToLog()
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}
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break
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}
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ttl := header.TTL
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if ttl == 0 {
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ttl = 600
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}
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switch header.Type {
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case dnsmessage.TypeA:
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ans, err := parser.AResource()
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if err != nil {
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newError("failed to parse A record for domain: ", domain).Base(err).WriteToLog()
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break
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}
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ips = append(ips, IPRecord{
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IP: net.IPAddress(ans.A[:]),
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Expire: now.Add(time.Duration(ttl) * time.Second),
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})
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case dnsmessage.TypeAAAA:
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ans, err := parser.AAAAResource()
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if err != nil {
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newError("failed to parse A record for domain: ", domain).Base(err).WriteToLog()
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break
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}
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ips = append(ips, IPRecord{
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IP: net.IPAddress(ans.AAAA[:]),
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Expire: now.Add(time.Duration(ttl) * time.Second),
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})
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default:
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if err := parser.SkipAnswer(); err != nil {
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newError("failed to skip answer").Base(err).WriteToLog()
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}
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}
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}
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if len(domain) > 0 && len(ips) > 0 {
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s.updateIP(domain, ips)
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}
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}
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func (s *ClassicNameServer) updateIP(domain string, ips []IPRecord) {
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s.Lock()
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newError("updating IP records for domain:", domain).AtDebug().WriteToLog()
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now := time.Now()
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eips := s.ips[domain]
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for _, ip := range eips {
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if ip.Expire.After(now) {
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ips = append(ips, ip)
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}
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}
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s.ips[domain] = ips
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s.pub.Publish(domain, nil)
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s.Unlock()
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common.Must(s.cleanup.Start())
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}
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func (s *ClassicNameServer) getMsgOptions() *dnsmessage.Resource {
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if len(s.clientIP) == 0 {
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return nil
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}
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var netmask int
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var family uint16
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if len(s.clientIP) == 4 {
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family = 1
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netmask = 24 // 24 for IPV4, 96 for IPv6
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} else {
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family = 2
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netmask = 96
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}
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b := make([]byte, 4)
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binary.BigEndian.PutUint16(b[0:], family)
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b[2] = byte(netmask)
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b[3] = 0
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switch family {
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case 1:
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ip := s.clientIP.To4().Mask(net.CIDRMask(netmask, net.IPv4len*8))
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needLength := (netmask + 8 - 1) / 8 // division rounding up
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b = append(b, ip[:needLength]...)
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case 2:
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ip := s.clientIP.Mask(net.CIDRMask(netmask, net.IPv6len*8))
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needLength := (netmask + 8 - 1) / 8 // division rounding up
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b = append(b, ip[:needLength]...)
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}
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const EDNS0SUBNET = 0x08
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opt := new(dnsmessage.Resource)
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common.Must(opt.Header.SetEDNS0(1350, 0xfe00, true))
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opt.Body = &dnsmessage.OPTResource{
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Options: []dnsmessage.Option{
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{
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Code: EDNS0SUBNET,
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Data: b,
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},
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},
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}
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return opt
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}
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func (s *ClassicNameServer) addPendingRequest(domain string) uint16 {
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id := uint16(atomic.AddUint32(&s.reqID, 1))
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s.Lock()
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defer s.Unlock()
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s.requests[id] = pendingRequest{
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domain: domain,
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expire: time.Now().Add(time.Second * 8),
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}
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return id
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}
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func (s *ClassicNameServer) buildMsgs(domain string, option IPOption) []*dnsmessage.Message {
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qA := dnsmessage.Question{
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Name: dnsmessage.MustNewName(domain),
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Type: dnsmessage.TypeA,
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Class: dnsmessage.ClassINET,
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}
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qAAAA := dnsmessage.Question{
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Name: dnsmessage.MustNewName(domain),
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Type: dnsmessage.TypeAAAA,
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Class: dnsmessage.ClassINET,
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}
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var msgs []*dnsmessage.Message
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if option.IPv4Enable {
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msg := new(dnsmessage.Message)
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msg.Header.ID = s.addPendingRequest(domain)
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msg.Header.RecursionDesired = true
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msg.Questions = []dnsmessage.Question{qA}
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if opt := s.getMsgOptions(); opt != nil {
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msg.Additionals = append(msg.Additionals, *opt)
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}
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msgs = append(msgs, msg)
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}
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if option.IPv6Enable {
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msg := new(dnsmessage.Message)
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msg.Header.ID = s.addPendingRequest(domain)
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msg.Header.RecursionDesired = true
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msg.Questions = []dnsmessage.Question{qAAAA}
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if opt := s.getMsgOptions(); opt != nil {
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msg.Additionals = append(msg.Additionals, *opt)
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}
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msgs = append(msgs, msg)
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}
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return msgs
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}
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func (s *ClassicNameServer) sendQuery(ctx context.Context, domain string, option IPOption) {
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newError("querying DNS for: ", domain).AtDebug().WriteToLog(session.ExportIDToError(ctx))
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msgs := s.buildMsgs(domain, option)
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for _, msg := range msgs {
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b, err := dns.PackMessage(msg)
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common.Must(err)
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udpCtx := context.Background()
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if inbound := session.InboundFromContext(ctx); inbound != nil {
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udpCtx = session.ContextWithInbound(udpCtx, inbound)
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}
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s.udpServer.Dispatch(udpCtx, s.address, b)
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}
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}
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func (s *ClassicNameServer) findIPsForDomain(domain string, option IPOption) []net.IP {
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s.RLock()
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records, found := s.ips[domain]
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s.RUnlock()
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if found && len(records) > 0 {
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var ips []net.Address
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now := time.Now()
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for _, rec := range records {
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if rec.Expire.After(now) {
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ips = append(ips, rec.IP)
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}
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}
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return toNetIP(filterIP(ips, option))
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}
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return nil
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}
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func Fqdn(domain string) string {
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if len(domain) > 0 && domain[len(domain)-1] == '.' {
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return domain
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}
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return domain + "."
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}
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func (s *ClassicNameServer) QueryIP(ctx context.Context, domain string, option IPOption) ([]net.IP, error) {
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fqdn := Fqdn(domain)
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ips := s.findIPsForDomain(fqdn, option)
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if len(ips) > 0 {
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return ips, nil
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}
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sub := s.pub.Subscribe(fqdn)
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defer sub.Close()
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s.sendQuery(ctx, fqdn, option)
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for {
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ips := s.findIPsForDomain(fqdn, option)
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if len(ips) > 0 {
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return ips, nil
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}
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select {
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case <-ctx.Done():
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return nil, ctx.Err()
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case <-sub.Wait():
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}
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}
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}
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