mirror of
https://github.com/Control-D-Inc/ctrld.git
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Some systems may be configured with public DNS only, so relying solely on LAN servers could make the lookup process failed unexpectedly.
560 lines
15 KiB
Go
560 lines
15 KiB
Go
package ctrld
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import (
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"context"
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"errors"
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"fmt"
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"io"
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"net"
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"net/netip"
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"slices"
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"sync"
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"sync/atomic"
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"time"
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"github.com/miekg/dns"
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"github.com/rs/zerolog"
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"tailscale.com/net/netmon"
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"tailscale.com/net/tsaddr"
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)
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const (
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// ResolverTypeDOH specifies DoH resolver.
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ResolverTypeDOH = "doh"
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// ResolverTypeDOH3 specifies DoH3 resolver.
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ResolverTypeDOH3 = "doh3"
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// ResolverTypeDOT specifies DoT resolver.
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ResolverTypeDOT = "dot"
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// ResolverTypeDOQ specifies DoQ resolver.
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ResolverTypeDOQ = "doq"
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// ResolverTypeOS specifies OS resolver.
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ResolverTypeOS = "os"
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// ResolverTypeLegacy specifies legacy resolver.
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ResolverTypeLegacy = "legacy"
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// ResolverTypePrivate is like ResolverTypeOS, but use for private resolver only.
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ResolverTypePrivate = "private"
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// ResolverTypeLocal is like ResolverTypeOS, but use for local resolver only.
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ResolverTypeLocal = "local"
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// ResolverTypeSDNS specifies resolver with information encoded using DNS Stamps.
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// See: https://dnscrypt.info/stamps-specifications/
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ResolverTypeSDNS = "sdns"
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)
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const (
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controldBootstrapDns = "76.76.2.22"
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controldPublicDns = "76.76.2.0"
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)
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var controldPublicDnsWithPort = net.JoinHostPort(controldPublicDns, "53")
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var localResolver = newLocalResolver()
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var (
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resolverMutex sync.Mutex
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or *osResolver
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)
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func newLocalResolver() Resolver {
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var nss []string
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for _, addr := range Rfc1918Addresses() {
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nss = append(nss, net.JoinHostPort(addr, "53"))
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}
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return NewResolverWithNameserver(nss)
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}
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// LanQueryCtxKey is the context.Context key to indicate that the request is for LAN network.
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type LanQueryCtxKey struct{}
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// LanQueryCtx returns a context.Context with LanQueryCtxKey set.
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func LanQueryCtx(ctx context.Context) context.Context {
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return context.WithValue(ctx, LanQueryCtxKey{}, true)
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}
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// defaultNameservers is like nameservers with each element formed "ip:53".
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func defaultNameservers() []string {
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ns := nameservers()
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nss := make([]string, len(ns))
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for i := range ns {
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nss[i] = net.JoinHostPort(ns[i], "53")
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}
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return nss
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}
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// availableNameservers returns list of current available DNS servers of the system.
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func availableNameservers() []string {
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var nss []string
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// Ignore local addresses to prevent loop.
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regularIPs, loopbackIPs, _ := netmon.LocalAddresses()
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machineIPsMap := make(map[string]struct{}, len(regularIPs))
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//load the logger
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logger := zerolog.New(io.Discard)
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if ProxyLogger.Load() != nil {
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logger = *ProxyLogger.Load()
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}
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Log(context.Background(), logger.Debug(),
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"Got local addresses - regular IPs: %v, loopback IPs: %v", regularIPs, loopbackIPs)
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for _, v := range slices.Concat(regularIPs, loopbackIPs) {
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ipStr := v.String()
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machineIPsMap[ipStr] = struct{}{}
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Log(context.Background(), logger.Debug(),
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"Added local IP to OS resolverexclusion map: %s", ipStr)
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}
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systemNameservers := nameservers()
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Log(context.Background(), logger.Debug(),
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"Got system nameservers: %v", systemNameservers)
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for _, ns := range systemNameservers {
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if _, ok := machineIPsMap[ns]; ok {
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Log(context.Background(), logger.Debug(),
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"Skipping local nameserver: %s", ns)
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continue
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}
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nss = append(nss, ns)
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Log(context.Background(), logger.Debug(),
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"Added non-local nameserver: %s", ns)
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}
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Log(context.Background(), logger.Debug(),
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"Final available nameservers: %v", nss)
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return nss
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}
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// InitializeOsResolver initializes OS resolver using the current system DNS settings.
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// It returns the nameservers that is going to be used by the OS resolver.
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//
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// It's the caller's responsibility to ensure the system DNS is in a clean state before
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// calling this function.
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func InitializeOsResolver() []string {
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ns := initializeOsResolver(availableNameservers())
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resolverMutex.Lock()
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defer resolverMutex.Unlock()
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or = newResolverWithNameserver(ns)
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return ns
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}
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// initializeOsResolver performs logic for choosing OS resolver nameserver.
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// The logic:
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//
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// - First available LAN servers are saved and store.
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// - Later calls, if no LAN servers available, the saved servers above will be used.
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func initializeOsResolver(servers []string) []string {
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var lanNss, publicNss []string
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// First categorize servers
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for _, ns := range servers {
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addr, err := netip.ParseAddr(ns)
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if err != nil {
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continue
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}
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server := net.JoinHostPort(ns, "53")
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if isLanAddr(addr) {
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lanNss = append(lanNss, server)
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} else {
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publicNss = append(publicNss, server)
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}
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}
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if len(publicNss) == 0 {
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publicNss = []string{controldPublicDnsWithPort}
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}
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return slices.Concat(lanNss, publicNss)
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}
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// Resolver is the interface that wraps the basic DNS operations.
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//
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// Resolve resolves the DNS query, return the result and the corresponding error.
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type Resolver interface {
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Resolve(ctx context.Context, msg *dns.Msg) (*dns.Msg, error)
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}
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var errUnknownResolver = errors.New("unknown resolver")
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// NewResolver creates a Resolver based on the given upstream config.
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func NewResolver(uc *UpstreamConfig) (Resolver, error) {
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typ := uc.Type
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switch typ {
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case ResolverTypeDOH, ResolverTypeDOH3:
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return newDohResolver(uc), nil
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case ResolverTypeDOT:
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return &dotResolver{uc: uc}, nil
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case ResolverTypeDOQ:
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return &doqResolver{uc: uc}, nil
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case ResolverTypeOS:
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if or == nil {
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or = newResolverWithNameserver(defaultNameservers())
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}
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return or, nil
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case ResolverTypeLegacy:
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return &legacyResolver{uc: uc}, nil
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case ResolverTypePrivate:
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return NewPrivateResolver(), nil
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case ResolverTypeLocal:
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return localResolver, nil
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}
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return nil, fmt.Errorf("%w: %s", errUnknownResolver, typ)
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}
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type osResolver struct {
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lanServers atomic.Pointer[[]string]
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publicServers atomic.Pointer[[]string]
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}
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type osResolverResult struct {
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answer *dns.Msg
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err error
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server string
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lan bool
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}
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type publicResponse struct {
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answer *dns.Msg
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server string
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}
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// Resolve resolves DNS queries using pre-configured nameservers.
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// Query is sent to all nameservers concurrently, and the first
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// success response will be returned.
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func (o *osResolver) Resolve(ctx context.Context, msg *dns.Msg) (*dns.Msg, error) {
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publicServers := *o.publicServers.Load()
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var nss []string
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if p := o.lanServers.Load(); p != nil {
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nss = append(nss, (*p)...)
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}
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numServers := len(nss) + len(publicServers)
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// If this is a LAN query, skip public DNS.
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lan, ok := ctx.Value(LanQueryCtxKey{}).(bool)
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if ok && lan {
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numServers -= len(publicServers)
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}
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if numServers == 0 {
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return nil, errors.New("no nameservers available")
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}
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ctx, cancel := context.WithCancel(ctx)
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defer cancel()
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dnsClient := &dns.Client{Net: "udp", Timeout: 2 * time.Second}
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ch := make(chan *osResolverResult, numServers)
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wg := &sync.WaitGroup{}
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wg.Add(numServers)
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go func() {
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wg.Wait()
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close(ch)
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}()
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do := func(servers []string, isLan bool) {
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for _, server := range servers {
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go func(server string) {
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defer wg.Done()
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answer, _, err := dnsClient.ExchangeContext(ctx, msg.Copy(), server)
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ch <- &osResolverResult{answer: answer, err: err, server: server, lan: isLan}
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}(server)
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}
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}
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do(nss, true)
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if !lan {
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do(publicServers, false)
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}
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logAnswer := func(server string) {
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host, _, err := net.SplitHostPort(server)
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if err != nil {
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// If splitting fails, fallback to the original server string
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host = server
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}
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Log(ctx, ProxyLogger.Load().Debug(), "got answer from nameserver: %s", host)
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}
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var (
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nonSuccessAnswer *dns.Msg
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nonSuccessServer string
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controldSuccessAnswer *dns.Msg
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publicResponses []publicResponse
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)
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errs := make([]error, 0, numServers)
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for res := range ch {
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switch {
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case res.answer != nil && res.answer.Rcode == dns.RcodeSuccess:
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switch {
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case res.lan:
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// Always prefer LAN responses immediately
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Log(ctx, ProxyLogger.Load().Debug(), "using LAN answer from: %s", res.server)
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cancel()
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logAnswer(res.server)
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return res.answer, nil
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case res.server == controldPublicDnsWithPort:
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controldSuccessAnswer = res.answer
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case !res.lan:
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publicResponses = append(publicResponses, publicResponse{
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answer: res.answer,
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server: res.server,
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})
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}
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case res.answer != nil:
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nonSuccessAnswer = res.answer
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nonSuccessServer = res.server
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Log(ctx, ProxyLogger.Load().Debug(), "got non-success answer from: %s with code: %d",
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res.server, res.answer.Rcode)
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}
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errs = append(errs, res.err)
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}
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if len(publicResponses) > 0 {
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resp := publicResponses[0]
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Log(ctx, ProxyLogger.Load().Debug(), "got public answer from: %s", resp.server)
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logAnswer(resp.server)
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return resp.answer, nil
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}
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if controldSuccessAnswer != nil {
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Log(ctx, ProxyLogger.Load().Debug(), "got ControlD answer from: %s", controldPublicDnsWithPort)
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logAnswer(controldPublicDnsWithPort)
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return controldSuccessAnswer, nil
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}
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if nonSuccessAnswer != nil {
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Log(ctx, ProxyLogger.Load().Debug(), "got non-success answer from: %s", nonSuccessServer)
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logAnswer(nonSuccessServer)
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return nonSuccessAnswer, nil
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}
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return nil, errors.Join(errs...)
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}
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type legacyResolver struct {
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uc *UpstreamConfig
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}
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func (r *legacyResolver) Resolve(ctx context.Context, msg *dns.Msg) (*dns.Msg, error) {
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// See comment in (*dotResolver).resolve method.
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dialer := newDialer(net.JoinHostPort(controldBootstrapDns, "53"))
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dnsTyp := uint16(0)
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if msg != nil && len(msg.Question) > 0 {
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dnsTyp = msg.Question[0].Qtype
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}
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_, udpNet := r.uc.netForDNSType(dnsTyp)
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dnsClient := &dns.Client{
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Net: udpNet,
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Dialer: dialer,
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}
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endpoint := r.uc.Endpoint
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if r.uc.BootstrapIP != "" {
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dnsClient.Net = "udp"
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_, port, _ := net.SplitHostPort(endpoint)
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endpoint = net.JoinHostPort(r.uc.BootstrapIP, port)
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}
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answer, _, err := dnsClient.ExchangeContext(ctx, msg, endpoint)
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return answer, err
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}
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type dummyResolver struct{}
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func (d dummyResolver) Resolve(ctx context.Context, msg *dns.Msg) (*dns.Msg, error) {
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ans := new(dns.Msg)
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ans.SetReply(msg)
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return ans, nil
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}
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// LookupIP looks up host using OS resolver.
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// It returns a slice of that host's IPv4 and IPv6 addresses.
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func LookupIP(domain string) []string {
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return lookupIP(domain, -1, true)
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}
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func lookupIP(domain string, timeout int, withBootstrapDNS bool) (ips []string) {
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if or == nil {
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or = newResolverWithNameserver(defaultNameservers())
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}
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nss := *or.lanServers.Load()
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nss = append(nss, *or.publicServers.Load()...)
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if withBootstrapDNS {
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nss = append([]string{net.JoinHostPort(controldBootstrapDns, "53")}, nss...)
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}
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resolver := newResolverWithNameserver(nss)
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ProxyLogger.Load().Debug().Msgf("resolving %q using bootstrap DNS %q", domain, nss)
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timeoutMs := 2000
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if timeout > 0 && timeout < timeoutMs {
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timeoutMs = timeout
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}
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questionDomain := dns.Fqdn(domain)
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// Getting the real target domain name from CNAME if presents.
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targetDomain := func(answers []dns.RR) string {
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for _, a := range answers {
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switch ar := a.(type) {
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case *dns.CNAME:
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return ar.Target
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}
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}
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return questionDomain
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}
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// Getting ip address from A or AAAA record.
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ipFromRecord := func(record dns.RR, target string) string {
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switch ar := record.(type) {
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case *dns.A:
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if ar.Hdr.Name != target || len(ar.A) == 0 {
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return ""
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}
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return ar.A.String()
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case *dns.AAAA:
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if ar.Hdr.Name != target || len(ar.AAAA) == 0 {
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return ""
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}
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return ar.AAAA.String()
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}
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return ""
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}
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lookup := func(dnsType uint16) {
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ctx, cancel := context.WithTimeout(context.Background(), time.Duration(timeoutMs)*time.Millisecond)
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defer cancel()
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m := new(dns.Msg)
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m.SetQuestion(questionDomain, dnsType)
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m.RecursionDesired = true
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r, err := resolver.Resolve(ctx, m)
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if err != nil {
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ProxyLogger.Load().Error().Err(err).Msgf("could not lookup %q record for domain %q", dns.TypeToString[dnsType], domain)
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return
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}
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if r.Rcode != dns.RcodeSuccess {
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ProxyLogger.Load().Error().Msgf("could not resolve domain %q, return code: %s", domain, dns.RcodeToString[r.Rcode])
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return
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}
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if len(r.Answer) == 0 {
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ProxyLogger.Load().Error().Msg("no answer from OS resolver")
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return
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}
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target := targetDomain(r.Answer)
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for _, a := range r.Answer {
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if ip := ipFromRecord(a, target); ip != "" {
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ips = append(ips, ip)
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}
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}
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}
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// Find all A, AAAA records of the domain.
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for _, dnsType := range []uint16{dns.TypeAAAA, dns.TypeA} {
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lookup(dnsType)
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}
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return ips
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}
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// NewBootstrapResolver returns an OS resolver, which use following nameservers:
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//
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// - Gateway IP address (depends on OS).
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// - Input servers.
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func NewBootstrapResolver(servers ...string) Resolver {
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nss := defaultNameservers()
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nss = append([]string{controldPublicDnsWithPort}, nss...)
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for _, ns := range servers {
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nss = append([]string{net.JoinHostPort(ns, "53")}, nss...)
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}
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return NewResolverWithNameserver(nss)
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}
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// NewPrivateResolver returns an OS resolver, which includes only private DNS servers,
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// excluding:
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//
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// - Nameservers from /etc/resolv.conf file.
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// - Nameservers which is local RFC1918 addresses.
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//
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// This is useful for doing PTR lookup in LAN network.
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func NewPrivateResolver() Resolver {
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nss := defaultNameservers()
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resolveConfNss := nameserversFromResolvconf()
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localRfc1918Addrs := Rfc1918Addresses()
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n := 0
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for _, ns := range nss {
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host, _, _ := net.SplitHostPort(ns)
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// Ignore nameserver from resolve.conf file, because the nameserver can be either:
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//
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// - ctrld itself.
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// - Direct listener that has ctrld as an upstream (e.g: dnsmasq).
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//
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// causing the query always succeed.
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if slices.Contains(resolveConfNss, host) {
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continue
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}
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// Ignoring local RFC 1918 addresses.
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if slices.Contains(localRfc1918Addrs, host) {
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continue
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}
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ip := net.ParseIP(host)
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if ip != nil && ip.IsPrivate() && !ip.IsLoopback() {
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nss[n] = ns
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n++
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}
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}
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nss = nss[:n]
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return newResolverWithNameserver(nss)
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}
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// NewResolverWithNameserver returns a Resolver which uses the given nameservers
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// for resolving DNS queries. If nameservers is empty, a dummy resolver will be returned.
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//
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// Each nameserver must be form "host:port". It's the caller responsibility to ensure all
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// nameservers are well formatted by using net.JoinHostPort function.
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func NewResolverWithNameserver(nameservers []string) Resolver {
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if len(nameservers) == 0 {
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return &dummyResolver{}
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}
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return newResolverWithNameserver(nameservers)
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}
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// newResolverWithNameserver returns an OS resolver from given nameservers list.
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// The caller must ensure each server in list is formed "ip:53".
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func newResolverWithNameserver(nameservers []string) *osResolver {
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r := &osResolver{}
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var publicNss []string
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var lanNss []string
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for _, ns := range slices.Sorted(slices.Values(nameservers)) {
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ip, _, _ := net.SplitHostPort(ns)
|
|
addr, _ := netip.ParseAddr(ip)
|
|
if isLanAddr(addr) {
|
|
lanNss = append(lanNss, ns)
|
|
} else {
|
|
publicNss = append(publicNss, ns)
|
|
}
|
|
}
|
|
r.lanServers.Store(&lanNss)
|
|
r.publicServers.Store(&publicNss)
|
|
return r
|
|
}
|
|
|
|
// Rfc1918Addresses returns the list of local interfaces private IP addresses
|
|
func Rfc1918Addresses() []string {
|
|
var res []string
|
|
netmon.ForeachInterface(func(i netmon.Interface, prefixes []netip.Prefix) {
|
|
addrs, _ := i.Addrs()
|
|
for _, addr := range addrs {
|
|
ipNet, ok := addr.(*net.IPNet)
|
|
if !ok || !ipNet.IP.IsPrivate() {
|
|
continue
|
|
}
|
|
res = append(res, ipNet.IP.String())
|
|
}
|
|
})
|
|
return res
|
|
}
|
|
|
|
func newDialer(dnsAddress string) *net.Dialer {
|
|
return &net.Dialer{
|
|
Resolver: &net.Resolver{
|
|
PreferGo: true,
|
|
Dial: func(ctx context.Context, network, address string) (net.Conn, error) {
|
|
d := net.Dialer{}
|
|
return d.DialContext(ctx, network, dnsAddress)
|
|
},
|
|
},
|
|
}
|
|
}
|
|
|
|
// isLanAddr reports whether addr is considered a LAN ip address.
|
|
func isLanAddr(addr netip.Addr) bool {
|
|
return addr.IsPrivate() ||
|
|
addr.IsLoopback() ||
|
|
addr.IsLinkLocalUnicast() ||
|
|
tsaddr.CGNATRange().Contains(addr)
|
|
}
|