mirror of
https://github.com/XTLS/Xray-core.git
synced 2025-04-30 01:08:33 +00:00
294 lines
7.6 KiB
Go
294 lines
7.6 KiB
Go
package dns
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import (
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"bytes"
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"context"
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"encoding/binary"
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go_errors "errors"
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"net/url"
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"sync"
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"time"
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"github.com/quic-go/quic-go"
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"github.com/xtls/xray-core/common/buf"
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"github.com/xtls/xray-core/common/errors"
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"github.com/xtls/xray-core/common/log"
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"github.com/xtls/xray-core/common/net"
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"github.com/xtls/xray-core/common/protocol/dns"
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"github.com/xtls/xray-core/common/session"
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dns_feature "github.com/xtls/xray-core/features/dns"
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"github.com/xtls/xray-core/transport/internet/tls"
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"golang.org/x/net/http2"
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)
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// NextProtoDQ - During connection establishment, DNS/QUIC support is indicated
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// by selecting the ALPN token "dq" in the crypto handshake.
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const NextProtoDQ = "doq"
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const handshakeTimeout = time.Second * 8
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// QUICNameServer implemented DNS over QUIC
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type QUICNameServer struct {
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sync.RWMutex
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cacheController *CacheController
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destination *net.Destination
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connection quic.Connection
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clientIP net.IP
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}
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// NewQUICNameServer creates DNS-over-QUIC client object for local resolving
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func NewQUICNameServer(url *url.URL, disableCache bool, clientIP net.IP) (*QUICNameServer, error) {
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errors.LogInfo(context.Background(), "DNS: created Local DNS-over-QUIC client for ", url.String())
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var err error
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port := net.Port(853)
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if url.Port() != "" {
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port, err = net.PortFromString(url.Port())
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if err != nil {
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return nil, err
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}
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}
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dest := net.UDPDestination(net.ParseAddress(url.Hostname()), port)
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s := &QUICNameServer{
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cacheController: NewCacheController(url.String(), disableCache),
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destination: &dest,
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clientIP: clientIP,
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}
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return s, nil
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}
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// Name returns client name
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func (s *QUICNameServer) Name() string {
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return s.cacheController.name
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}
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func (s *QUICNameServer) newReqID() uint16 {
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return 0
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}
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func (s *QUICNameServer) sendQuery(ctx context.Context, noResponseErrCh chan<- error, domain string, option dns_feature.IPOption) {
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errors.LogInfo(ctx, s.Name(), " querying: ", domain)
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reqs := buildReqMsgs(domain, option, s.newReqID, genEDNS0Options(s.clientIP, 0))
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var deadline time.Time
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if d, ok := ctx.Deadline(); ok {
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deadline = d
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} else {
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deadline = time.Now().Add(time.Second * 5)
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}
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for _, req := range reqs {
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go func(r *dnsRequest) {
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// generate new context for each req, using same context
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// may cause reqs all aborted if any one encounter an error
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dnsCtx := ctx
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// reserve internal dns server requested Inbound
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if inbound := session.InboundFromContext(ctx); inbound != nil {
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dnsCtx = session.ContextWithInbound(dnsCtx, inbound)
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}
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dnsCtx = session.ContextWithContent(dnsCtx, &session.Content{
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Protocol: "quic",
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SkipDNSResolve: true,
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})
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var cancel context.CancelFunc
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dnsCtx, cancel = context.WithDeadline(dnsCtx, deadline)
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defer cancel()
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b, err := dns.PackMessage(r.msg)
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if err != nil {
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errors.LogErrorInner(ctx, err, "failed to pack dns query")
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noResponseErrCh <- err
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return
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}
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dnsReqBuf := buf.New()
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err = binary.Write(dnsReqBuf, binary.BigEndian, uint16(b.Len()))
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if err != nil {
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errors.LogErrorInner(ctx, err, "binary write failed")
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noResponseErrCh <- err
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return
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}
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_, err = dnsReqBuf.Write(b.Bytes())
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if err != nil {
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errors.LogErrorInner(ctx, err, "buffer write failed")
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noResponseErrCh <- err
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return
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}
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b.Release()
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conn, err := s.openStream(dnsCtx)
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if err != nil {
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errors.LogErrorInner(ctx, err, "failed to open quic connection")
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noResponseErrCh <- err
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return
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}
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_, err = conn.Write(dnsReqBuf.Bytes())
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if err != nil {
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errors.LogErrorInner(ctx, err, "failed to send query")
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noResponseErrCh <- err
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return
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}
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_ = conn.Close()
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respBuf := buf.New()
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defer respBuf.Release()
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n, err := respBuf.ReadFullFrom(conn, 2)
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if err != nil && n == 0 {
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errors.LogErrorInner(ctx, err, "failed to read response length")
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noResponseErrCh <- err
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return
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}
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var length int16
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err = binary.Read(bytes.NewReader(respBuf.Bytes()), binary.BigEndian, &length)
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if err != nil {
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errors.LogErrorInner(ctx, err, "failed to parse response length")
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noResponseErrCh <- err
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return
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}
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respBuf.Clear()
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n, err = respBuf.ReadFullFrom(conn, int32(length))
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if err != nil && n == 0 {
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errors.LogErrorInner(ctx, err, "failed to read response length")
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noResponseErrCh <- err
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return
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}
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rec, err := parseResponse(respBuf.Bytes())
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if err != nil {
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errors.LogErrorInner(ctx, err, "failed to handle response")
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noResponseErrCh <- err
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return
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}
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s.cacheController.updateIP(r, rec)
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}(req)
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}
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}
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// QueryIP is called from dns.Server->queryIPTimeout
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func (s *QUICNameServer) QueryIP(ctx context.Context, domain string, option dns_feature.IPOption) ([]net.IP, uint32, error) {
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fqdn := Fqdn(domain)
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sub4, sub6 := s.cacheController.registerSubscribers(fqdn, option)
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defer closeSubscribers(sub4, sub6)
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if s.cacheController.disableCache {
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errors.LogDebug(ctx, "DNS cache is disabled. Querying IP for ", domain, " at ", s.Name())
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} else {
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ips, ttl, err := s.cacheController.findIPsForDomain(fqdn, option)
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if !go_errors.Is(err, errRecordNotFound) {
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errors.LogDebugInner(ctx, err, s.Name(), " cache HIT ", domain, " -> ", ips)
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log.Record(&log.DNSLog{Server: s.Name(), Domain: domain, Result: ips, Status: log.DNSCacheHit, Elapsed: 0, Error: err})
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return ips, ttl, err
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}
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}
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noResponseErrCh := make(chan error, 2)
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s.sendQuery(ctx, noResponseErrCh, fqdn, option)
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start := time.Now()
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if sub4 != nil {
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select {
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case <-ctx.Done():
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return nil, 0, ctx.Err()
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case err := <-noResponseErrCh:
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return nil, 0, err
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case <-sub4.Wait():
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sub4.Close()
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}
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}
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if sub6 != nil {
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select {
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case <-ctx.Done():
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return nil, 0, ctx.Err()
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case err := <-noResponseErrCh:
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return nil, 0, err
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case <-sub6.Wait():
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sub6.Close()
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}
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}
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ips, ttl, err := s.cacheController.findIPsForDomain(fqdn, option)
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log.Record(&log.DNSLog{Server: s.Name(), Domain: domain, Result: ips, Status: log.DNSQueried, Elapsed: time.Since(start), Error: err})
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return ips, ttl, err
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}
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func isActive(s quic.Connection) bool {
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select {
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case <-s.Context().Done():
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return false
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default:
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return true
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}
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}
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func (s *QUICNameServer) getConnection() (quic.Connection, error) {
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var conn quic.Connection
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s.RLock()
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conn = s.connection
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if conn != nil && isActive(conn) {
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s.RUnlock()
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return conn, nil
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}
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if conn != nil {
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// we're recreating the connection, let's create a new one
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_ = conn.CloseWithError(0, "")
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}
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s.RUnlock()
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s.Lock()
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defer s.Unlock()
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var err error
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conn, err = s.openConnection()
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if err != nil {
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// This does not look too nice, but QUIC (or maybe quic-go)
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// doesn't seem stable enough.
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// Maybe retransmissions aren't fully implemented in quic-go?
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// Anyways, the simple solution is to make a second try when
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// it fails to open the QUIC connection.
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conn, err = s.openConnection()
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if err != nil {
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return nil, err
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}
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}
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s.connection = conn
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return conn, nil
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}
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func (s *QUICNameServer) openConnection() (quic.Connection, error) {
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tlsConfig := tls.Config{}
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quicConfig := &quic.Config{
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HandshakeIdleTimeout: handshakeTimeout,
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}
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tlsConfig.ServerName = s.destination.Address.String()
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conn, err := quic.DialAddr(context.Background(), s.destination.NetAddr(), tlsConfig.GetTLSConfig(tls.WithNextProto("http/1.1", http2.NextProtoTLS, NextProtoDQ)), quicConfig)
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log.Record(&log.AccessMessage{
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From: "DNS",
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To: s.destination,
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Status: log.AccessAccepted,
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Detour: "local",
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})
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if err != nil {
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return nil, err
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}
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return conn, nil
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}
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func (s *QUICNameServer) openStream(ctx context.Context) (quic.Stream, error) {
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conn, err := s.getConnection()
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if err != nil {
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return nil, err
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}
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// open a new stream
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return conn.OpenStreamSync(ctx)
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}
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