mirror of
https://github.com/moby/moby.git
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313d2b8a74
RFC434 states that DNS Servers should be case insensitive This commit makes sure that all DNS queries will be translated to lower ASCII characters and all svcRecords will be saved in lower case to abide by the RFC Relates to https://github.com/moby/moby/issues/21169 Signed-off-by: Arko Dasgupta <arko.dasgupta@docker.com>
578 lines
15 KiB
Go
578 lines
15 KiB
Go
package libnetwork
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import (
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"fmt"
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"math/rand"
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"net"
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"strings"
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"sync"
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"time"
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"github.com/docker/libnetwork/types"
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"github.com/miekg/dns"
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"github.com/sirupsen/logrus"
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)
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// Resolver represents the embedded DNS server in Docker. It operates
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// by listening on container's loopback interface for DNS queries.
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type Resolver interface {
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// Start starts the name server for the container
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Start() error
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// Stop stops the name server for the container. Stopped resolver
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// can be reused after running the SetupFunc again.
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Stop()
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// SetupFunc() provides the setup function that should be run
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// in the container's network namespace.
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SetupFunc(int) func()
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// NameServer() returns the IP of the DNS resolver for the
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// containers.
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NameServer() string
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// SetExtServers configures the external nameservers the resolver
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// should use to forward queries
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SetExtServers([]extDNSEntry)
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// ResolverOptions returns resolv.conf options that should be set
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ResolverOptions() []string
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}
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// DNSBackend represents a backend DNS resolver used for DNS name
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// resolution. All the queries to the resolver are forwarded to the
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// backend resolver.
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type DNSBackend interface {
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// ResolveName resolves a service name to an IPv4 or IPv6 address by searching
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// the networks the sandbox is connected to. For IPv6 queries, second return
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// value will be true if the name exists in docker domain but doesn't have an
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// IPv6 address. Such queries shouldn't be forwarded to external nameservers.
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ResolveName(name string, iplen int) ([]net.IP, bool)
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// ResolveIP returns the service name for the passed in IP. IP is in reverse dotted
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// notation; the format used for DNS PTR records
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ResolveIP(name string) string
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// ResolveService returns all the backend details about the containers or hosts
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// backing a service. Its purpose is to satisfy an SRV query
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ResolveService(name string) ([]*net.SRV, []net.IP)
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// ExecFunc allows a function to be executed in the context of the backend
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// on behalf of the resolver.
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ExecFunc(f func()) error
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//NdotsSet queries the backends ndots dns option settings
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NdotsSet() bool
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// HandleQueryResp passes the name & IP from a response to the backend. backend
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// can use it to maintain any required state about the resolution
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HandleQueryResp(name string, ip net.IP)
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}
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const (
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dnsPort = "53"
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ptrIPv4domain = ".in-addr.arpa."
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ptrIPv6domain = ".ip6.arpa."
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respTTL = 600
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maxExtDNS = 3 //max number of external servers to try
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extIOTimeout = 4 * time.Second
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defaultRespSize = 512
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maxConcurrent = 1024
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logInterval = 2 * time.Second
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)
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type extDNSEntry struct {
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IPStr string
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HostLoopback bool
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}
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// resolver implements the Resolver interface
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type resolver struct {
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backend DNSBackend
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extDNSList [maxExtDNS]extDNSEntry
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server *dns.Server
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conn *net.UDPConn
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tcpServer *dns.Server
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tcpListen *net.TCPListener
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err error
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count int32
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tStamp time.Time
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queryLock sync.Mutex
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listenAddress string
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proxyDNS bool
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resolverKey string
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startCh chan struct{}
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}
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func init() {
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rand.Seed(time.Now().Unix())
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}
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// NewResolver creates a new instance of the Resolver
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func NewResolver(address string, proxyDNS bool, resolverKey string, backend DNSBackend) Resolver {
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return &resolver{
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backend: backend,
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proxyDNS: proxyDNS,
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listenAddress: address,
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resolverKey: resolverKey,
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err: fmt.Errorf("setup not done yet"),
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startCh: make(chan struct{}, 1),
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}
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}
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func (r *resolver) SetupFunc(port int) func() {
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return func() {
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var err error
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// DNS operates primarily on UDP
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addr := &net.UDPAddr{
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IP: net.ParseIP(r.listenAddress),
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Port: port,
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}
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r.conn, err = net.ListenUDP("udp", addr)
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if err != nil {
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r.err = fmt.Errorf("error in opening name server socket %v", err)
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return
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}
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// Listen on a TCP as well
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tcpaddr := &net.TCPAddr{
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IP: net.ParseIP(r.listenAddress),
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Port: port,
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}
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r.tcpListen, err = net.ListenTCP("tcp", tcpaddr)
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if err != nil {
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r.err = fmt.Errorf("error in opening name TCP server socket %v", err)
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return
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}
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r.err = nil
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}
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}
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func (r *resolver) Start() error {
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r.startCh <- struct{}{}
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defer func() { <-r.startCh }()
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// make sure the resolver has been setup before starting
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if r.err != nil {
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return r.err
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}
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if err := r.setupIPTable(); err != nil {
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return fmt.Errorf("setting up IP table rules failed: %v", err)
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}
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s := &dns.Server{Handler: r, PacketConn: r.conn}
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r.server = s
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go func() {
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s.ActivateAndServe()
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}()
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tcpServer := &dns.Server{Handler: r, Listener: r.tcpListen}
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r.tcpServer = tcpServer
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go func() {
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tcpServer.ActivateAndServe()
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}()
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return nil
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}
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func (r *resolver) Stop() {
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r.startCh <- struct{}{}
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defer func() { <-r.startCh }()
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if r.server != nil {
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r.server.Shutdown()
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}
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if r.tcpServer != nil {
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r.tcpServer.Shutdown()
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}
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r.conn = nil
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r.tcpServer = nil
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r.err = fmt.Errorf("setup not done yet")
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r.tStamp = time.Time{}
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r.count = 0
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r.queryLock = sync.Mutex{}
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}
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func (r *resolver) SetExtServers(extDNS []extDNSEntry) {
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l := len(extDNS)
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if l > maxExtDNS {
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l = maxExtDNS
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}
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for i := 0; i < l; i++ {
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r.extDNSList[i] = extDNS[i]
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}
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}
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func (r *resolver) NameServer() string {
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return r.listenAddress
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}
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func (r *resolver) ResolverOptions() []string {
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return []string{"ndots:0"}
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}
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func setCommonFlags(msg *dns.Msg) {
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msg.RecursionAvailable = true
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}
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func shuffleAddr(addr []net.IP) []net.IP {
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for i := len(addr) - 1; i > 0; i-- {
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r := rand.Intn(i + 1)
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addr[i], addr[r] = addr[r], addr[i]
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}
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return addr
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}
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func createRespMsg(query *dns.Msg) *dns.Msg {
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resp := new(dns.Msg)
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resp.SetReply(query)
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setCommonFlags(resp)
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return resp
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}
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func (r *resolver) handleMXQuery(name string, query *dns.Msg) (*dns.Msg, error) {
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addrv4, _ := r.backend.ResolveName(name, types.IPv4)
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addrv6, _ := r.backend.ResolveName(name, types.IPv6)
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if addrv4 == nil && addrv6 == nil {
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return nil, nil
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}
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// We were able to resolve the name. Respond with an empty list with
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// RcodeSuccess/NOERROR so that email clients can treat it as "implicit MX"
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// [RFC 5321 Section-5.1] and issue a Type A/AAAA query for the name.
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resp := createRespMsg(query)
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return resp, nil
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}
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func (r *resolver) handleIPQuery(name string, query *dns.Msg, ipType int) (*dns.Msg, error) {
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var addr []net.IP
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var ipv6Miss bool
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addr, ipv6Miss = r.backend.ResolveName(name, ipType)
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if addr == nil && ipv6Miss {
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// Send a reply without any Answer sections
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logrus.Debugf("[resolver] lookup name %s present without IPv6 address", name)
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resp := createRespMsg(query)
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return resp, nil
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}
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if addr == nil {
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return nil, nil
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}
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logrus.Debugf("[resolver] lookup for %s: IP %v", name, addr)
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resp := createRespMsg(query)
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if len(addr) > 1 {
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addr = shuffleAddr(addr)
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}
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if ipType == types.IPv4 {
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for _, ip := range addr {
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rr := new(dns.A)
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rr.Hdr = dns.RR_Header{Name: name, Rrtype: dns.TypeA, Class: dns.ClassINET, Ttl: respTTL}
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rr.A = ip
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resp.Answer = append(resp.Answer, rr)
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}
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} else {
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for _, ip := range addr {
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rr := new(dns.AAAA)
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rr.Hdr = dns.RR_Header{Name: name, Rrtype: dns.TypeAAAA, Class: dns.ClassINET, Ttl: respTTL}
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rr.AAAA = ip
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resp.Answer = append(resp.Answer, rr)
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}
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}
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return resp, nil
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}
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func (r *resolver) handlePTRQuery(ptr string, query *dns.Msg) (*dns.Msg, error) {
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var parts []string
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if strings.HasSuffix(ptr, ptrIPv4domain) {
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parts = strings.Split(ptr, ptrIPv4domain)
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} else if strings.HasSuffix(ptr, ptrIPv6domain) {
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parts = strings.Split(ptr, ptrIPv6domain)
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} else {
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return nil, fmt.Errorf("invalid PTR query, %v", ptr)
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}
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host := r.backend.ResolveIP(parts[0])
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if len(host) == 0 {
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return nil, nil
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}
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logrus.Debugf("[resolver] lookup for IP %s: name %s", parts[0], host)
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fqdn := dns.Fqdn(host)
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resp := new(dns.Msg)
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resp.SetReply(query)
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setCommonFlags(resp)
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rr := new(dns.PTR)
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rr.Hdr = dns.RR_Header{Name: ptr, Rrtype: dns.TypePTR, Class: dns.ClassINET, Ttl: respTTL}
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rr.Ptr = fqdn
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resp.Answer = append(resp.Answer, rr)
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return resp, nil
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}
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func (r *resolver) handleSRVQuery(svc string, query *dns.Msg) (*dns.Msg, error) {
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srv, ip := r.backend.ResolveService(svc)
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if len(srv) == 0 {
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return nil, nil
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}
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if len(srv) != len(ip) {
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return nil, fmt.Errorf("invalid reply for SRV query %s", svc)
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}
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resp := createRespMsg(query)
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for i, r := range srv {
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rr := new(dns.SRV)
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rr.Hdr = dns.RR_Header{Name: svc, Rrtype: dns.TypePTR, Class: dns.ClassINET, Ttl: respTTL}
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rr.Port = r.Port
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rr.Target = r.Target
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resp.Answer = append(resp.Answer, rr)
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rr1 := new(dns.A)
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rr1.Hdr = dns.RR_Header{Name: r.Target, Rrtype: dns.TypeA, Class: dns.ClassINET, Ttl: respTTL}
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rr1.A = ip[i]
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resp.Extra = append(resp.Extra, rr1)
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}
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return resp, nil
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}
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func truncateResp(resp *dns.Msg, maxSize int, isTCP bool) {
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if !isTCP {
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resp.Truncated = true
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}
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srv := resp.Question[0].Qtype == dns.TypeSRV
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// trim the Answer RRs one by one till the whole message fits
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// within the reply size
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for resp.Len() > maxSize {
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resp.Answer = resp.Answer[:len(resp.Answer)-1]
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if srv && len(resp.Extra) > 0 {
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resp.Extra = resp.Extra[:len(resp.Extra)-1]
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}
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}
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}
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func (r *resolver) ServeDNS(w dns.ResponseWriter, query *dns.Msg) {
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var (
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extConn net.Conn
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resp *dns.Msg
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err error
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)
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if query == nil || len(query.Question) == 0 {
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return
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}
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name := query.Question[0].Name
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switch query.Question[0].Qtype {
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case dns.TypeA:
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resp, err = r.handleIPQuery(name, query, types.IPv4)
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case dns.TypeAAAA:
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resp, err = r.handleIPQuery(name, query, types.IPv6)
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case dns.TypeMX:
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resp, err = r.handleMXQuery(name, query)
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case dns.TypePTR:
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resp, err = r.handlePTRQuery(name, query)
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case dns.TypeSRV:
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resp, err = r.handleSRVQuery(name, query)
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}
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if err != nil {
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logrus.Error(err)
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return
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}
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if resp == nil {
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// If the backend doesn't support proxying dns request
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// fail the response
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if !r.proxyDNS {
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resp = new(dns.Msg)
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resp.SetRcode(query, dns.RcodeServerFailure)
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w.WriteMsg(resp)
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return
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}
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// If the user sets ndots > 0 explicitly and the query is
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// in the root domain don't forward it out. We will return
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// failure and let the client retry with the search domain
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// attached
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switch query.Question[0].Qtype {
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case dns.TypeA:
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fallthrough
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case dns.TypeAAAA:
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if r.backend.NdotsSet() && !strings.Contains(strings.TrimSuffix(name, "."), ".") {
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resp = createRespMsg(query)
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}
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}
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}
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proto := w.LocalAddr().Network()
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maxSize := 0
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if proto == "tcp" {
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maxSize = dns.MaxMsgSize - 1
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} else if proto == "udp" {
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optRR := query.IsEdns0()
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if optRR != nil {
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maxSize = int(optRR.UDPSize())
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}
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if maxSize < defaultRespSize {
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maxSize = defaultRespSize
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}
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}
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if resp != nil {
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if resp.Len() > maxSize {
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truncateResp(resp, maxSize, proto == "tcp")
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}
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} else {
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for i := 0; i < maxExtDNS; i++ {
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extDNS := &r.extDNSList[i]
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if extDNS.IPStr == "" {
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break
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}
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extConnect := func() {
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addr := fmt.Sprintf("%s:%d", extDNS.IPStr, 53)
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extConn, err = net.DialTimeout(proto, addr, extIOTimeout)
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}
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if extDNS.HostLoopback {
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extConnect()
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} else {
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execErr := r.backend.ExecFunc(extConnect)
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if execErr != nil {
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logrus.Warn(execErr)
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continue
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}
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}
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if err != nil {
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logrus.Warnf("[resolver] connect failed: %s", err)
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continue
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}
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queryType := dns.TypeToString[query.Question[0].Qtype]
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logrus.Debugf("[resolver] query %s (%s) from %s, forwarding to %s:%s", name, queryType,
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extConn.LocalAddr().String(), proto, extDNS.IPStr)
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// Timeout has to be set for every IO operation.
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extConn.SetDeadline(time.Now().Add(extIOTimeout))
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co := &dns.Conn{
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Conn: extConn,
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UDPSize: uint16(maxSize),
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}
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defer co.Close()
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// limits the number of outstanding concurrent queries.
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if !r.forwardQueryStart() {
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old := r.tStamp
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r.tStamp = time.Now()
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if r.tStamp.Sub(old) > logInterval {
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logrus.Errorf("[resolver] more than %v concurrent queries from %s", maxConcurrent, extConn.LocalAddr().String())
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}
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continue
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}
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err = co.WriteMsg(query)
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if err != nil {
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r.forwardQueryEnd()
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logrus.Debugf("[resolver] send to DNS server failed, %s", err)
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continue
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}
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resp, err = co.ReadMsg()
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// Truncated DNS replies should be sent to the client so that the
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// client can retry over TCP
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if err != nil && err != dns.ErrTruncated {
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r.forwardQueryEnd()
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logrus.Debugf("[resolver] read from DNS server failed, %s", err)
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continue
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}
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r.forwardQueryEnd()
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if resp == nil {
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logrus.Debugf("[resolver] external DNS %s:%s returned empty response for %q", proto, extDNS.IPStr, name)
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break
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}
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switch resp.Rcode {
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case dns.RcodeServerFailure, dns.RcodeRefused:
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// Server returned FAILURE: continue with the next external DNS server
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// Server returned REFUSED: this can be a transitional status, so continue with the next external DNS server
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logrus.Debugf("[resolver] external DNS %s:%s responded with %s for %q", proto, extDNS.IPStr, statusString(resp.Rcode), name)
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continue
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case dns.RcodeNameError:
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// Server returned NXDOMAIN. Stop resolution if it's an authoritative answer (see RFC 8020: https://tools.ietf.org/html/rfc8020#section-2)
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logrus.Debugf("[resolver] external DNS %s:%s responded with %s for %q", proto, extDNS.IPStr, statusString(resp.Rcode), name)
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if resp.Authoritative {
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break
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}
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continue
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case dns.RcodeSuccess:
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// All is well
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default:
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// Server gave some error. Log the error, and continue with the next external DNS server
|
|
logrus.Debugf("[resolver] external DNS %s:%s responded with %s (code %d) for %q", proto, extDNS.IPStr, statusString(resp.Rcode), resp.Rcode, name)
|
|
continue
|
|
}
|
|
answers := 0
|
|
for _, rr := range resp.Answer {
|
|
h := rr.Header()
|
|
switch h.Rrtype {
|
|
case dns.TypeA:
|
|
answers++
|
|
ip := rr.(*dns.A).A
|
|
logrus.Debugf("[resolver] received A record %q for %q from %s:%s", ip, h.Name, proto, extDNS.IPStr)
|
|
r.backend.HandleQueryResp(h.Name, ip)
|
|
case dns.TypeAAAA:
|
|
answers++
|
|
ip := rr.(*dns.AAAA).AAAA
|
|
logrus.Debugf("[resolver] received AAAA record %q for %q from %s:%s", ip, h.Name, proto, extDNS.IPStr)
|
|
r.backend.HandleQueryResp(h.Name, ip)
|
|
}
|
|
}
|
|
if resp.Answer == nil || answers == 0 {
|
|
logrus.Debugf("[resolver] external DNS %s:%s did not return any %s records for %q", proto, extDNS.IPStr, queryType, name)
|
|
}
|
|
resp.Compress = true
|
|
break
|
|
}
|
|
if resp == nil {
|
|
return
|
|
}
|
|
}
|
|
|
|
if err = w.WriteMsg(resp); err != nil {
|
|
logrus.Errorf("[resolver] error writing resolver resp, %s", err)
|
|
}
|
|
}
|
|
|
|
func statusString(responseCode int) string {
|
|
if s, ok := dns.RcodeToString[responseCode]; ok {
|
|
return s
|
|
}
|
|
return "UNKNOWN"
|
|
}
|
|
|
|
func (r *resolver) forwardQueryStart() bool {
|
|
r.queryLock.Lock()
|
|
defer r.queryLock.Unlock()
|
|
|
|
if r.count == maxConcurrent {
|
|
return false
|
|
}
|
|
r.count++
|
|
|
|
return true
|
|
}
|
|
|
|
func (r *resolver) forwardQueryEnd() {
|
|
r.queryLock.Lock()
|
|
defer r.queryLock.Unlock()
|
|
|
|
if r.count == 0 {
|
|
logrus.Error("[resolver] invalid concurrent query count")
|
|
} else {
|
|
r.count--
|
|
}
|
|
}
|