mirror of
https://gitclone.com/github.com/MetaCubeX/Clash.Meta
synced 2024-11-15 13:41:23 +08:00
322 lines
6.3 KiB
Go
322 lines
6.3 KiB
Go
package dns
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import (
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"context"
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"crypto/tls"
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"errors"
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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/Dreamacro/clash/common/cache"
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"github.com/Dreamacro/clash/common/picker"
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trie "github.com/Dreamacro/clash/component/domain-trie"
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"github.com/Dreamacro/clash/component/fakeip"
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C "github.com/Dreamacro/clash/constant"
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D "github.com/miekg/dns"
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geoip2 "github.com/oschwald/geoip2-golang"
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"golang.org/x/sync/singleflight"
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)
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var (
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// DefaultResolver aim to resolve ip
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DefaultResolver *Resolver
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// DefaultHosts aim to resolve hosts
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DefaultHosts = trie.New()
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)
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var (
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globalSessionCache = tls.NewLRUClientSessionCache(64)
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mmdb *geoip2.Reader
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once sync.Once
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)
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type resolver interface {
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Exchange(m *D.Msg) (msg *D.Msg, err error)
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ExchangeContext(ctx context.Context, m *D.Msg) (msg *D.Msg, err error)
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}
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type result struct {
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Msg *D.Msg
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Error error
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}
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type Resolver struct {
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ipv6 bool
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mapping bool
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fakeip bool
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pool *fakeip.Pool
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main []resolver
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fallback []resolver
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fallbackFilters []fallbackFilter
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group singleflight.Group
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cache *cache.Cache
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}
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// ResolveIP request with TypeA and TypeAAAA, priority return TypeAAAA
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func (r *Resolver) ResolveIP(host string) (ip net.IP, err error) {
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ch := make(chan net.IP)
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go func() {
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defer close(ch)
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ip, err := r.resolveIP(host, D.TypeA)
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if err != nil {
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return
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}
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ch <- ip
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}()
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ip, err = r.resolveIP(host, D.TypeAAAA)
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if err == nil {
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go func() {
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<-ch
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}()
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return
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}
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ip, open := <-ch
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if !open {
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return nil, errIPNotFound
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}
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return ip, nil
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}
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// ResolveIPv4 request with TypeA
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func (r *Resolver) ResolveIPv4(host string) (ip net.IP, err error) {
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return r.resolveIP(host, D.TypeA)
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}
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// ResolveIPv6 request with TypeAAAA
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func (r *Resolver) ResolveIPv6(host string) (ip net.IP, err error) {
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return r.resolveIP(host, D.TypeAAAA)
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}
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func (r *Resolver) shouldFallback(ip net.IP) bool {
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for _, filter := range r.fallbackFilters {
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if filter.Match(ip) {
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return true
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}
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}
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return false
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}
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// Exchange a batch of dns request, and it use cache
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func (r *Resolver) Exchange(m *D.Msg) (msg *D.Msg, err error) {
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if len(m.Question) == 0 {
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return nil, errors.New("should have one question at least")
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}
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q := m.Question[0]
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cache, expireTime := r.cache.GetWithExpire(q.String())
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if cache != nil {
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msg = cache.(*D.Msg).Copy()
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setMsgTTL(msg, uint32(expireTime.Sub(time.Now()).Seconds()))
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return
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}
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defer func() {
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if msg == nil {
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return
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}
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putMsgToCache(r.cache, q.String(), msg)
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if r.mapping {
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ips := r.msgToIP(msg)
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for _, ip := range ips {
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putMsgToCache(r.cache, ip.String(), msg)
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}
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}
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}()
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ret, err, _ := r.group.Do(q.String(), func() (interface{}, error) {
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isIPReq := isIPRequest(q)
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if isIPReq {
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msg, err := r.fallbackExchange(m)
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return msg, err
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}
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return r.batchExchange(r.main, m)
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})
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if err == nil {
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msg = ret.(*D.Msg)
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}
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return
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}
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// IPToHost return fake-ip or redir-host mapping host
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func (r *Resolver) IPToHost(ip net.IP) (string, bool) {
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if r.fakeip {
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return r.pool.LookBack(ip)
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}
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cache := r.cache.Get(ip.String())
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if cache == nil {
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return "", false
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}
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fqdn := cache.(*D.Msg).Question[0].Name
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return strings.TrimRight(fqdn, "."), true
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}
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func (r *Resolver) IsMapping() bool {
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return r.mapping
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}
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func (r *Resolver) IsFakeIP() bool {
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return r.fakeip
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}
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func (r *Resolver) batchExchange(clients []resolver, m *D.Msg) (msg *D.Msg, err error) {
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ctx, cancel := context.WithTimeout(context.Background(), time.Second)
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defer cancel()
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fast, ctx := picker.WithContext(ctx)
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for _, client := range clients {
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r := client
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fast.Go(func() (interface{}, error) {
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msg, err := r.ExchangeContext(ctx, m)
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if err != nil || msg.Rcode != D.RcodeSuccess {
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return nil, errors.New("resolve error")
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}
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return msg, nil
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})
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}
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elm := fast.Wait()
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if elm == nil {
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return nil, errors.New("All DNS requests failed")
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}
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msg = elm.(*D.Msg)
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return
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}
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func (r *Resolver) fallbackExchange(m *D.Msg) (msg *D.Msg, err error) {
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msgCh := r.asyncExchange(r.main, m)
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if r.fallback == nil {
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res := <-msgCh
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msg, err = res.Msg, res.Error
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return
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}
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fallbackMsg := r.asyncExchange(r.fallback, m)
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res := <-msgCh
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if res.Error == nil {
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if ips := r.msgToIP(res.Msg); len(ips) != 0 {
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if r.shouldFallback(ips[0]) {
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go func() { <-fallbackMsg }()
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msg = res.Msg
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return msg, err
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}
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}
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}
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res = <-fallbackMsg
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msg, err = res.Msg, res.Error
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return
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}
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func (r *Resolver) resolveIP(host string, dnsType uint16) (ip net.IP, err error) {
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ip = net.ParseIP(host)
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if dnsType == D.TypeAAAA {
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if ip6 := ip.To16(); ip6 != nil {
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return ip6, nil
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}
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} else {
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if ip4 := ip.To4(); ip4 != nil {
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return ip4, nil
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}
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}
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query := &D.Msg{}
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query.SetQuestion(D.Fqdn(host), dnsType)
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msg, err := r.Exchange(query)
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if err != nil {
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return nil, err
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}
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ips := r.msgToIP(msg)
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if len(ips) == 0 {
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return nil, errIPNotFound
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}
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ip = ips[0]
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return
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}
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func (r *Resolver) msgToIP(msg *D.Msg) []net.IP {
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ips := []net.IP{}
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for _, answer := range msg.Answer {
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switch ans := answer.(type) {
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case *D.AAAA:
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ips = append(ips, ans.AAAA)
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case *D.A:
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ips = append(ips, ans.A)
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}
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}
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return ips
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}
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func (r *Resolver) asyncExchange(client []resolver, msg *D.Msg) <-chan *result {
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ch := make(chan *result)
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go func() {
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res, err := r.batchExchange(client, msg)
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ch <- &result{Msg: res, Error: err}
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}()
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return ch
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}
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type NameServer struct {
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Net string
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Addr string
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}
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type FallbackFilter struct {
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GeoIP bool
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IPCIDR []*net.IPNet
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}
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type Config struct {
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Main, Fallback []NameServer
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IPv6 bool
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EnhancedMode EnhancedMode
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FallbackFilter FallbackFilter
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Pool *fakeip.Pool
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}
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func New(config Config) *Resolver {
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r := &Resolver{
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ipv6: config.IPv6,
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main: transform(config.Main),
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cache: cache.New(time.Second * 60),
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mapping: config.EnhancedMode == MAPPING,
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fakeip: config.EnhancedMode == FAKEIP,
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pool: config.Pool,
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}
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if len(config.Fallback) != 0 {
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r.fallback = transform(config.Fallback)
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}
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fallbackFilters := []fallbackFilter{}
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if config.FallbackFilter.GeoIP {
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once.Do(func() {
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mmdb, _ = geoip2.Open(C.Path.MMDB())
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})
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fallbackFilters = append(fallbackFilters, &geoipFilter{})
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}
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for _, ipnet := range config.FallbackFilter.IPCIDR {
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fallbackFilters = append(fallbackFilters, &ipnetFilter{ipnet: ipnet})
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}
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r.fallbackFilters = fallbackFilters
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return r
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}
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