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416 lines
10 KiB
416 lines
10 KiB
package dns |
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import ( |
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"bytes" |
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"context" |
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"fmt" |
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"io" |
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"net/http" |
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"net/url" |
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"sync" |
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"sync/atomic" |
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"time" |
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"github.com/xtls/xray-core/common" |
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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/net/cnc" |
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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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"github.com/xtls/xray-core/common/signal/pubsub" |
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"github.com/xtls/xray-core/common/task" |
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dns_feature "github.com/xtls/xray-core/features/dns" |
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"github.com/xtls/xray-core/features/routing" |
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"github.com/xtls/xray-core/transport/internet" |
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"golang.org/x/net/dns/dnsmessage" |
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) |
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// DoHNameServer implemented DNS over HTTPS (RFC8484) Wire Format, |
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// which is compatible with traditional dns over udp(RFC1035), |
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// thus most of the DOH implementation is copied from udpns.go |
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type DoHNameServer struct { |
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dispatcher routing.Dispatcher |
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sync.RWMutex |
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ips map[string]*record |
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pub *pubsub.Service |
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cleanup *task.Periodic |
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reqID uint32 |
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httpClient *http.Client |
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dohURL string |
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name string |
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queryStrategy QueryStrategy |
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} |
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// NewDoHNameServer creates DOH server object for remote resolving. |
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func NewDoHNameServer(url *url.URL, dispatcher routing.Dispatcher, queryStrategy QueryStrategy) (*DoHNameServer, error) { |
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newError("DNS: created Remote DOH client for ", url.String()).AtInfo().WriteToLog() |
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s := baseDOHNameServer(url, "DOH", queryStrategy) |
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s.dispatcher = dispatcher |
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tr := &http.Transport{ |
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MaxIdleConns: 30, |
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IdleConnTimeout: 90 * time.Second, |
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TLSHandshakeTimeout: 30 * time.Second, |
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ForceAttemptHTTP2: true, |
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DialContext: func(ctx context.Context, network, addr string) (net.Conn, error) { |
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dest, err := net.ParseDestination(network + ":" + addr) |
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if err != nil { |
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return nil, err |
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} |
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link, err := s.dispatcher.Dispatch(toDnsContext(ctx, s.dohURL), dest) |
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select { |
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case <-ctx.Done(): |
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return nil, ctx.Err() |
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default: |
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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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cc := common.ChainedClosable{} |
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if cw, ok := link.Writer.(common.Closable); ok { |
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cc = append(cc, cw) |
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} |
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if cr, ok := link.Reader.(common.Closable); ok { |
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cc = append(cc, cr) |
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} |
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return cnc.NewConnection( |
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cnc.ConnectionInputMulti(link.Writer), |
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cnc.ConnectionOutputMulti(link.Reader), |
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cnc.ConnectionOnClose(cc), |
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), nil |
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}, |
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} |
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s.httpClient = &http.Client{ |
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Timeout: time.Second * 180, |
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Transport: tr, |
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} |
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return s, nil |
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} |
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// NewDoHLocalNameServer creates DOH client object for local resolving |
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func NewDoHLocalNameServer(url *url.URL, queryStrategy QueryStrategy) *DoHNameServer { |
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url.Scheme = "https" |
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s := baseDOHNameServer(url, "DOHL", queryStrategy) |
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tr := &http.Transport{ |
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IdleConnTimeout: 90 * time.Second, |
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ForceAttemptHTTP2: true, |
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DialContext: func(ctx context.Context, network, addr string) (net.Conn, error) { |
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dest, err := net.ParseDestination(network + ":" + addr) |
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if err != nil { |
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return nil, err |
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} |
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conn, err := internet.DialSystem(ctx, dest, nil) |
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log.Record(&log.AccessMessage{ |
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From: "DNS", |
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To: s.dohURL, |
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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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} |
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s.httpClient = &http.Client{ |
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Timeout: time.Second * 180, |
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Transport: tr, |
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} |
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newError("DNS: created Local DOH client for ", url.String()).AtInfo().WriteToLog() |
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return s |
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} |
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func baseDOHNameServer(url *url.URL, prefix string, queryStrategy QueryStrategy) *DoHNameServer { |
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s := &DoHNameServer{ |
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ips: make(map[string]*record), |
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pub: pubsub.NewService(), |
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name: prefix + "//" + url.Host, |
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dohURL: url.String(), |
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queryStrategy: queryStrategy, |
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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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return s |
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} |
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// Name implements Server. |
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func (s *DoHNameServer) Name() string { |
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return s.name |
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} |
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// Cleanup clears expired items from cache |
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func (s *DoHNameServer) 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 { |
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return newError("nothing to do. stopping...") |
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} |
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for domain, record := range s.ips { |
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if record.A != nil && record.A.Expire.Before(now) { |
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record.A = nil |
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} |
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if record.AAAA != nil && record.AAAA.Expire.Before(now) { |
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record.AAAA = nil |
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} |
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if record.A == nil && record.AAAA == nil { |
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newError(s.name, " cleanup ", domain).AtDebug().WriteToLog() |
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delete(s.ips, domain) |
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} else { |
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s.ips[domain] = record |
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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]*record) |
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} |
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return nil |
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} |
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func (s *DoHNameServer) updateIP(req *dnsRequest, ipRec *IPRecord) { |
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elapsed := time.Since(req.start) |
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s.Lock() |
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rec, found := s.ips[req.domain] |
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if !found { |
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rec = &record{} |
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} |
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updated := false |
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switch req.reqType { |
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case dnsmessage.TypeA: |
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if isNewer(rec.A, ipRec) { |
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rec.A = ipRec |
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updated = true |
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} |
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case dnsmessage.TypeAAAA: |
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addr := make([]net.Address, 0, len(ipRec.IP)) |
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for _, ip := range ipRec.IP { |
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if len(ip.IP()) == net.IPv6len { |
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addr = append(addr, ip) |
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} |
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} |
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ipRec.IP = addr |
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if isNewer(rec.AAAA, ipRec) { |
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rec.AAAA = ipRec |
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updated = true |
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} |
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} |
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newError(s.name, " got answer: ", req.domain, " ", req.reqType, " -> ", ipRec.IP, " ", elapsed).AtInfo().WriteToLog() |
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if updated { |
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s.ips[req.domain] = rec |
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} |
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switch req.reqType { |
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case dnsmessage.TypeA: |
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s.pub.Publish(req.domain+"4", nil) |
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case dnsmessage.TypeAAAA: |
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s.pub.Publish(req.domain+"6", nil) |
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} |
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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 *DoHNameServer) newReqID() uint16 { |
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return uint16(atomic.AddUint32(&s.reqID, 1)) |
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} |
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func (s *DoHNameServer) sendQuery(ctx context.Context, domain string, clientIP net.IP, option dns_feature.IPOption) { |
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newError(s.name, " querying: ", domain).AtInfo().WriteToLog(session.ExportIDToError(ctx)) |
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if s.name+"." == "DOH//"+domain { |
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newError(s.name, " tries to resolve itself! Use IP or set \"hosts\" instead.").AtError().WriteToLog(session.ExportIDToError(ctx)) |
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return |
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} |
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reqs := buildReqMsgs(domain, option, s.newReqID, genEDNS0Options(clientIP)) |
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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: "https", |
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SkipDNSResolve: true, |
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}) |
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// forced to use mux for DOH |
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// dnsCtx = session.ContextWithMuxPrefered(dnsCtx, true) |
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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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newError("failed to pack dns query for ", domain).Base(err).AtError().WriteToLog() |
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return |
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} |
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resp, err := s.dohHTTPSContext(dnsCtx, b.Bytes()) |
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if err != nil { |
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newError("failed to retrieve response for ", domain).Base(err).AtError().WriteToLog() |
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return |
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} |
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rec, err := parseResponse(resp) |
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if err != nil { |
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newError("failed to handle DOH response for ", domain).Base(err).AtError().WriteToLog() |
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return |
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} |
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s.updateIP(r, rec) |
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}(req) |
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} |
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} |
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func (s *DoHNameServer) dohHTTPSContext(ctx context.Context, b []byte) ([]byte, error) { |
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body := bytes.NewBuffer(b) |
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req, err := http.NewRequest("POST", s.dohURL, body) |
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if err != nil { |
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return nil, err |
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} |
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req.Header.Add("Accept", "application/dns-message") |
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req.Header.Add("Content-Type", "application/dns-message") |
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hc := s.httpClient |
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resp, err := hc.Do(req.WithContext(ctx)) |
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if err != nil { |
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return nil, err |
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} |
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defer resp.Body.Close() |
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if resp.StatusCode != http.StatusOK { |
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io.Copy(io.Discard, resp.Body) // flush resp.Body so that the conn is reusable |
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return nil, fmt.Errorf("DOH server returned code %d", resp.StatusCode) |
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} |
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return io.ReadAll(resp.Body) |
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} |
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func (s *DoHNameServer) findIPsForDomain(domain string, option dns_feature.IPOption) ([]net.IP, error) { |
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s.RLock() |
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record, found := s.ips[domain] |
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s.RUnlock() |
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if !found { |
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return nil, errRecordNotFound |
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} |
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var err4 error |
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var err6 error |
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var ips []net.Address |
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var ip6 []net.Address |
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if option.IPv4Enable { |
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ips, err4 = record.A.getIPs() |
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} |
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if option.IPv6Enable { |
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ip6, err6 = record.AAAA.getIPs() |
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ips = append(ips, ip6...) |
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} |
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if len(ips) > 0 { |
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return toNetIP(ips) |
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} |
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if err4 != nil { |
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return nil, err4 |
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} |
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if err6 != nil { |
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return nil, err6 |
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} |
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if (option.IPv4Enable && record.A != nil) || (option.IPv6Enable && record.AAAA != nil) { |
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return nil, dns_feature.ErrEmptyResponse |
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} |
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return nil, errRecordNotFound |
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} |
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// QueryIP implements Server. |
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func (s *DoHNameServer) QueryIP(ctx context.Context, domain string, clientIP net.IP, option dns_feature.IPOption, disableCache bool) ([]net.IP, error) { // nolint: dupl |
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fqdn := Fqdn(domain) |
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option = ResolveIpOptionOverride(s.queryStrategy, option) |
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if !option.IPv4Enable && !option.IPv6Enable { |
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return nil, dns_feature.ErrEmptyResponse |
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} |
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if disableCache { |
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newError("DNS cache is disabled. Querying IP for ", domain, " at ", s.name).AtDebug().WriteToLog() |
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} else { |
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ips, err := s.findIPsForDomain(fqdn, option) |
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if err != errRecordNotFound { |
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newError(s.name, " cache HIT ", domain, " -> ", ips).Base(err).AtDebug().WriteToLog() |
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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, err |
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} |
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} |
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// ipv4 and ipv6 belong to different subscription groups |
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var sub4, sub6 *pubsub.Subscriber |
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if option.IPv4Enable { |
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sub4 = s.pub.Subscribe(fqdn + "4") |
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defer sub4.Close() |
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} |
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if option.IPv6Enable { |
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sub6 = s.pub.Subscribe(fqdn + "6") |
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defer sub6.Close() |
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} |
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done := make(chan interface{}) |
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go func() { |
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if sub4 != nil { |
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select { |
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case <-sub4.Wait(): |
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case <-ctx.Done(): |
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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 <-sub6.Wait(): |
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case <-ctx.Done(): |
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} |
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} |
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close(done) |
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}() |
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s.sendQuery(ctx, fqdn, clientIP, option) |
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start := time.Now() |
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for { |
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ips, err := s.findIPsForDomain(fqdn, option) |
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if err != errRecordNotFound { |
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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, err |
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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 <-done: |
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} |
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} |
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}
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