| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316 | package dnsimport (	"context"	"sync"	"sync/atomic"	"time"	"github.com/miekg/dns"	"v2ray.com/core"	"v2ray.com/core/common"	"v2ray.com/core/common/buf"	"v2ray.com/core/common/net"	"v2ray.com/core/common/signal/pubsub"	"v2ray.com/core/common/task"	"v2ray.com/core/transport/internet/udp")var (	multiQuestionDNS = map[net.Address]bool{		net.IPAddress([]byte{8, 8, 8, 8}): true,		net.IPAddress([]byte{8, 8, 4, 4}): true,		net.IPAddress([]byte{9, 9, 9, 9}): true,	})type IPRecord struct {	IP     net.IP	Expire time.Time}type pendingRequest struct {	domain string	expire time.Time}type ClassicNameServer struct {	sync.RWMutex	address   net.Destination	ips       map[string][]IPRecord	requests  map[uint16]pendingRequest	pub       *pubsub.Service	udpServer *udp.Dispatcher	cleanup   *task.Periodic	reqID     uint32	clientIP  net.IP}func NewClassicNameServer(address net.Destination, dispatcher core.Dispatcher, clientIP net.IP) *ClassicNameServer {	s := &ClassicNameServer{		address:   address,		ips:       make(map[string][]IPRecord),		requests:  make(map[uint16]pendingRequest),		udpServer: udp.NewDispatcher(dispatcher),		clientIP:  clientIP,		pub:       pubsub.NewService(),	}	s.cleanup = &task.Periodic{		Interval: time.Minute,		Execute:  s.Cleanup,	}	common.Must(s.cleanup.Start())	return s}func (s *ClassicNameServer) Cleanup() error {	now := time.Now()	s.Lock()	for domain, ips := range s.ips {		newIPs := make([]IPRecord, 0, len(ips))		for _, ip := range ips {			if ip.Expire.After(now) {				newIPs = append(newIPs, ip)			}		}		if len(newIPs) == 0 {			delete(s.ips, domain)		} else if len(newIPs) < len(ips) {			s.ips[domain] = newIPs		}	}	if len(s.ips) == 0 {		s.ips = make(map[string][]IPRecord)	}	for id, req := range s.requests {		if req.expire.Before(now) {			delete(s.requests, id)		}	}	if len(s.requests) == 0 {		s.requests = make(map[uint16]pendingRequest)	}	s.Unlock()	return nil}func (s *ClassicNameServer) HandleResponse(payload *buf.Buffer) {	msg := new(dns.Msg)	err := msg.Unpack(payload.Bytes())	if err == dns.ErrTruncated {		newError("truncated message received. DNS server should still work. If you see anything abnormal, please submit an issue to v2ray-core.").AtWarning().WriteToLog()	} else if err != nil {		newError("failed to parse DNS response").Base(err).AtWarning().WriteToLog()		return	}	id := msg.Id	s.Lock()	req, f := s.requests[id]	if f {		delete(s.requests, id)	}	s.Unlock()	if !f {		return	}	domain := req.domain	ips := make([]IPRecord, 0, 16)	now := time.Now()	for _, rr := range msg.Answer {		var ip net.IP		ttl := rr.Header().Ttl		switch rr := rr.(type) {		case *dns.A:			ip = rr.A		case *dns.AAAA:			ip = rr.AAAA		}		if ttl == 0 {			ttl = 600		}		if len(ip) > 0 {			ips = append(ips, IPRecord{				IP:     ip,				Expire: now.Add(time.Second * time.Duration(ttl)),			})		}	}	if len(domain) > 0 && len(ips) > 0 {		s.updateIP(domain, ips)	}}func (s *ClassicNameServer) updateIP(domain string, ips []IPRecord) {	s.Lock()	defer s.Unlock()	newError("updating IP records for domain:", domain).AtDebug().WriteToLog()	now := time.Now()	eips := s.ips[domain]	for _, ip := range eips {		if ip.Expire.After(now) {			ips = append(ips, ip)		}	}	s.ips[domain] = ips	s.pub.Publish(domain, nil)}func (s *ClassicNameServer) getMsgOptions() *dns.OPT {	if len(s.clientIP) == 0 {		return nil	}	o := new(dns.OPT)	o.Hdr.Name = "."	o.Hdr.Rrtype = dns.TypeOPT	o.SetUDPSize(1280)	e := new(dns.EDNS0_SUBNET)	e.Code = dns.EDNS0SUBNET	if len(s.clientIP) == 4 {		e.Family = 1 // 1 for IPv4 source address, 2 for IPv6	} else {		e.Family = 2	}	e.SourceNetmask = 24 // 32 for IPV4, 128 for IPv6	e.SourceScope = 0	e.Address = s.clientIP	o.Option = append(o.Option, e)	return o}func (s *ClassicNameServer) addPendingRequest(domain string) uint16 {	id := uint16(atomic.AddUint32(&s.reqID, 1))	s.Lock()	defer s.Unlock()	s.requests[id] = pendingRequest{		domain: domain,		expire: time.Now().Add(time.Second * 8),	}	return id}func (s *ClassicNameServer) buildMsgs(domain string) []*dns.Msg {	allowMulti := multiQuestionDNS[s.address.Address]	qA := dns.Question{		Name:   domain,		Qtype:  dns.TypeA,		Qclass: dns.ClassINET,	}	qAAAA := dns.Question{		Name:   domain,		Qtype:  dns.TypeAAAA,		Qclass: dns.ClassINET,	}	var msgs []*dns.Msg	{		msg := new(dns.Msg)		msg.Id = s.addPendingRequest(domain)		msg.RecursionDesired = true		msg.Question = []dns.Question{qA}		if allowMulti {			msg.Question = append(msg.Question, qAAAA)		}		if opt := s.getMsgOptions(); opt != nil {			msg.Extra = append(msg.Extra, opt)		}		msgs = append(msgs, msg)	}	if !allowMulti {		msg := new(dns.Msg)		msg.Id = s.addPendingRequest(domain)		msg.RecursionDesired = true		msg.Question = []dns.Question{qAAAA}		if opt := s.getMsgOptions(); opt != nil {			msg.Extra = append(msg.Extra, opt)		}		msgs = append(msgs, msg)	}	return msgs}func msgToBuffer(msg *dns.Msg) (*buf.Buffer, error) {	buffer := buf.New()	if err := buffer.Reset(func(b []byte) (int, error) {		writtenBuffer, err := msg.PackBuffer(b)		return len(writtenBuffer), err	}); err != nil {		return nil, err	}	return buffer, nil}func (s *ClassicNameServer) sendQuery(ctx context.Context, domain string) {	msgs := s.buildMsgs(domain)	for _, msg := range msgs {		b, err := msgToBuffer(msg)		common.Must(err)		s.udpServer.Dispatch(ctx, s.address, b, s.HandleResponse)	}}func (s *ClassicNameServer) findIPsForDomain(domain string) []net.IP {	s.RLock()	records, found := s.ips[domain]	s.RUnlock()	if found && len(records) > 0 {		var ips []net.IP		now := time.Now()		for _, rec := range records {			if rec.Expire.After(now) {				ips = append(ips, rec.IP)			}		}		return ips	}	return nil}func (s *ClassicNameServer) QueryIP(ctx context.Context, domain string) ([]net.IP, error) {	fqdn := dns.Fqdn(domain)	ips := s.findIPsForDomain(fqdn)	if len(ips) > 0 {		return ips, nil	}	sub := s.pub.Subscribe(fqdn)	defer sub.Close()	s.sendQuery(ctx, fqdn)	for {		ips := s.findIPsForDomain(fqdn)		if len(ips) > 0 {			return ips, nil		}		select {		case <-ctx.Done():			return nil, ctx.Err()		case <-sub.Wait():		}	}}
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