godns/resolver.go

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package main
import (
"bufio"
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"fmt"
"net"
"os"
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"strconv"
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"strings"
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"sync"
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"time"
"github.com/miekg/dns"
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)
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type ResolvError struct {
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qname, net string
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nameservers []string
}
func (e ResolvError) Error() string {
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errmsg := fmt.Sprintf("%s resolv failed on %s (%s)", e.qname, strings.Join(e.nameservers, "; "), e.net)
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return errmsg
}
type RResp struct {
msg *dns.Msg
nameserver string
rtt time.Duration
}
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type Resolver struct {
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servers []string
domain_server *suffixTreeNode
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config *ResolvSettings
}
func NewResolver(c ResolvSettings) *Resolver {
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r := &Resolver{
servers: []string{},
domain_server: newSuffixTreeRoot(),
config: &c,
}
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if len(c.ServerListFile) > 0 {
r.ReadServerListFile(c.ServerListFile)
}
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if len(c.ResolvFile) > 0 {
clientConfig, err := dns.ClientConfigFromFile(c.ResolvFile)
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if err != nil {
logger.Error(":%s is not a valid resolv.conf file\n", c.ResolvFile)
logger.Error("%s", err)
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panic(err)
}
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for _, server := range clientConfig.Servers {
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r.servers = append(r.servers, net.JoinHostPort(server, clientConfig.Port))
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}
}
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if len(c.DOHServer) > 0 {
r.servers = append([]string{c.DOHServer}, r.servers...)
}
return r
}
func (r *Resolver) parseServerListFile(buf *os.File) {
scanner := bufio.NewScanner(buf)
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var line string
var idx int
for scanner.Scan() {
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line = strings.TrimSpace(scanner.Text())
if !strings.HasPrefix(line, "server") {
continue
}
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idx = strings.Index(line, "=")
if idx == -1 {
continue
}
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line = strings.TrimSpace(line[idx:])
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if strings.HasPrefix(line, "https://") {
r.servers = append(r.servers, line)
continue
}
tokens := strings.Split(line, "/")
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switch len(tokens) {
case 3:
domain := tokens[1]
ip := tokens[2]
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if !isDomain(domain) || !isIP(ip) {
continue
}
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r.domain_server.sinsert(strings.Split(domain, "."), ip)
case 1:
srv_port := strings.Split(line, "#")
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if len(srv_port) > 2 {
continue
}
ip := ""
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if ip = srv_port[0]; !isIP(ip) {
continue
}
port := "53"
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if len(srv_port) == 2 {
if _, err := strconv.Atoi(srv_port[1]); err != nil {
continue
}
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port = srv_port[1]
}
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r.servers = append(r.servers, net.JoinHostPort(ip, port))
}
}
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}
func (r *Resolver) ReadServerListFile(path string) {
files := strings.Split(path, ";")
for _, file := range files {
buf, err := os.Open(file)
if err != nil {
panic("Can't open " + file)
}
defer buf.Close()
r.parseServerListFile(buf)
}
}
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// Lookup will ask each nameserver in top-to-bottom fashion, starting a new request
// in every second, and return as early as possbile (have an answer).
// It returns an error if no request has succeeded.
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func (r *Resolver) Lookup(net string, req *dns.Msg) (message *dns.Msg, err error) {
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c := &dns.Client{
Net: net,
ReadTimeout: r.Timeout(),
WriteTimeout: r.Timeout(),
}
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httpC := &dns.Client{
Net: "https",
ReadTimeout: r.Timeout(),
WriteTimeout: r.Timeout(),
}
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tlsClient := &dns.Client{
Net: "tcp-tls",
ReadTimeout: r.Timeout(),
WriteTimeout: r.Timeout(),
}
if net == "udp" && settings.ResolvConfig.SetEDNS0 {
req = req.SetEdns0(65535, true)
}
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qname := req.Question[0].Name
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res := make(chan *RResp, 1)
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var wg sync.WaitGroup
L := func(nameserver string) {
defer wg.Done()
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var r *dns.Msg
var rtt time.Duration
var err error
if strings.HasPrefix(nameserver, "https") {
r, rtt, err = httpC.Exchange(req, nameserver)
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} else if strings.HasPrefix(nameserver, ":853") {
r, rtt, err = tlsClient.Exchange(req, nameserver)
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} else {
r, rtt, err = c.Exchange(req, nameserver)
}
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if err != nil {
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logger.Warn("%s socket error on %s", qname, nameserver)
logger.Warn("error:%s", err.Error())
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return
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}
// If SERVFAIL happen, should return immediately and try another upstream resolver.
// However, other Error code like NXDOMAIN is an clear response stating
// that it has been verified no such domain existas and ask other resolvers
// would make no sense. See more about #20
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if r != nil && r.Rcode != dns.RcodeSuccess {
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logger.Warn("%s failed to get an valid answer on %s", qname, nameserver)
if r.Rcode == dns.RcodeServerFailure {
return
}
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}
re := &RResp{r, nameserver, rtt}
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select {
case res <- re:
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default:
}
}
ticker := time.NewTicker(time.Duration(settings.ResolvConfig.Interval) * time.Millisecond)
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defer ticker.Stop()
// Start lookup on each nameserver top-down, in every second
nameservers := r.Nameservers(qname)
for _, nameserver := range nameservers {
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wg.Add(1)
go L(nameserver)
// but exit early, if we have an answer
select {
case re := <-res:
logger.Debug("%s resolv on %s rtt: %v", UnFqdn(qname), re.nameserver, re.rtt)
return re.msg, nil
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case <-ticker.C:
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continue
}
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}
// wait for all the namservers to finish
wg.Wait()
select {
case re := <-res:
logger.Debug("%s resolv on %s rtt: %v", UnFqdn(qname), re.nameserver, re.rtt)
return re.msg, nil
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default:
return nil, ResolvError{qname, net, nameservers}
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}
}
// Namservers return the array of nameservers, with port number appended.
// '#' in the name is treated as port separator, as with dnsmasq.
func (r *Resolver) Nameservers(qname string) []string {
queryKeys := strings.Split(qname, ".")
queryKeys = queryKeys[:len(queryKeys)-1] // ignore last '.'
ns := []string{}
if v, found := r.domain_server.search(queryKeys); found {
logger.Debug("%s be found in domain server list, upstream: %v", qname, v)
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ns = append(ns, net.JoinHostPort(v, "53"))
//Ensure query the specific upstream nameserver in async Lookup() function.
return ns
}
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for _, nameserver := range r.servers {
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ns = append(ns, nameserver)
}
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return ns
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}
func (r *Resolver) Timeout() time.Duration {
return time.Duration(r.config.Timeout) * time.Second
}