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291 lines
7.7 KiB
Go
291 lines
7.7 KiB
Go
// Copyright (c) 2020 Tailscale Inc & AUTHORS All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Package tsdns provides a Resolver capable of resolving
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// domains on a Tailscale network.
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package tsdns
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import (
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"encoding/binary"
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"errors"
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"strings"
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"sync"
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"time"
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dns "golang.org/x/net/dns/dnsmessage"
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"inet.af/netaddr"
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"tailscale.com/types/logger"
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"tailscale.com/wgengine/packet"
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)
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// defaultTTL is the TTL of all responses from Resolver.
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const defaultTTL = 600 * time.Second
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var (
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errMapNotSet = errors.New("domain map not set")
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errNoSuchDomain = errors.New("domain does not exist")
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errNotImplemented = errors.New("query type not implemented")
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errNotOurName = errors.New("not an *.ipn.dev domain")
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errNotOurQuery = errors.New("query not for this resolver")
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errNotQuery = errors.New("not a DNS query")
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errSmallBuffer = errors.New("response buffer too small")
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)
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var (
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defaultIP = packet.IP(binary.BigEndian.Uint32([]byte{100, 100, 100, 100}))
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defaultPort = uint16(53)
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)
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// Map is all the data Resolver needs to resolve DNS queries.
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type Map struct {
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// domainToIP is a mapping of Tailscale domains to their IP addresses.
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// For example, monitoring.ipn.dev -> 100.64.0.1.
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domainToIP map[string]netaddr.IP
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}
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// NewMap returns a new Map with domain to address mapping given by domainToIP.
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// It takes ownership of the provided map.
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func NewMap(domainToIP map[string]netaddr.IP) *Map {
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return &Map{
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domainToIP: domainToIP,
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}
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}
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// Resolver is a DNS resolver for domain names of the form *.ipn.dev.
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type Resolver struct {
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logf logger.Logf
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// ip is the IP on which the resolver is listening.
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ip packet.IP
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// port is the port on which the resolver is listening.
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port uint16
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// mu guards the following fields from being updated while used.
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mu sync.Mutex
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// dnsMap is the map most recently received from the control server.
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dnsMap *Map
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}
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// NewResolver constructs a resolver with default parameters.
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func NewResolver(logf logger.Logf) *Resolver {
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r := &Resolver{
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logf: logf,
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ip: defaultIP,
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port: defaultPort,
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}
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return r
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}
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// AcceptsPacket determines if the given packet is
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// directed to this resolver (by ip and port).
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// We also require that UDP be used to simplify things for now.
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func (r *Resolver) AcceptsPacket(in *packet.ParsedPacket) bool {
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return in.DstIP == r.ip && in.DstPort == r.port && in.IPProto == packet.UDP
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}
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// SetMap sets the resolver's DNS map.
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func (r *Resolver) SetMap(m *Map) {
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r.mu.Lock()
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r.dnsMap = m
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r.mu.Unlock()
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}
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// Resolve maps a given domain name to the IP address of the host that owns it.
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func (r *Resolver) Resolve(domain string) (netaddr.IP, dns.RCode, error) {
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// If not a subdomain of ipn.dev, then we must refuse this query.
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// We do this before checking the map to distinguish beween nonexistent domains
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// and misdirected queries.
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if !strings.HasSuffix(domain, ".ipn.dev") {
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return netaddr.IP{}, dns.RCodeRefused, errNotOurName
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}
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r.mu.Lock()
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if r.dnsMap == nil {
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r.mu.Unlock()
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return netaddr.IP{}, dns.RCodeServerFailure, errMapNotSet
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}
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addr, found := r.dnsMap.domainToIP[domain]
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r.mu.Unlock()
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if !found {
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return netaddr.IP{}, dns.RCodeNameError, errNoSuchDomain
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}
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return addr, dns.RCodeSuccess, nil
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}
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type response struct {
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Header dns.Header
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ResourceHeader dns.ResourceHeader
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Question dns.Question
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// TODO(dmytro): support IPv6.
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IP netaddr.IP
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}
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// parseQuery parses the query in given packet into a response struct.
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func (r *Resolver) parseQuery(query *packet.ParsedPacket, resp *response) error {
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var parser dns.Parser
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var err error
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resp.Header, err = parser.Start(query.Payload())
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if err != nil {
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return err
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}
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if resp.Header.Response {
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return errNotQuery
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}
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resp.Question, err = parser.Question()
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if err != nil {
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return err
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}
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return nil
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}
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// makeResponse resolves the question stored in resp and sets the answer fields.
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func (r *Resolver) makeResponse(resp *response) error {
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var err error
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name := resp.Question.Name.String()
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if len(name) > 0 {
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name = name[:len(name)-1]
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}
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if resp.Question.Type == dns.TypeA {
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// Remove final dot from name: *.ipn.dev. -> *.ipn.dev
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resp.IP, resp.Header.RCode, err = r.Resolve(name)
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} else {
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resp.Header.RCode = dns.RCodeNotImplemented
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err = errNotImplemented
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}
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return err
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}
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// marshalAnswer serializes the answer record into an active builder.
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// The caller may continue using the builder following the call.
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func marshalAnswer(resp *response, builder *dns.Builder) error {
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var answer dns.AResource
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err := builder.StartAnswers()
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if err != nil {
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return err
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}
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answerHeader := dns.ResourceHeader{
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Name: resp.Question.Name,
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Type: dns.TypeA,
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Class: dns.ClassINET,
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TTL: uint32(defaultTTL / time.Second),
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}
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ip := resp.IP.As16()
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copy(answer.A[:], ip[12:])
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return builder.AResource(answerHeader, answer)
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}
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// marshalResponse serializes the DNS response into an active builder.
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// The caller may continue using the builder following the call.
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func marshalResponse(resp *response, builder *dns.Builder) error {
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err := builder.StartQuestions()
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if err != nil {
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return err
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}
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err = builder.Question(resp.Question)
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if err != nil {
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return err
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}
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if resp.Header.RCode == dns.RCodeSuccess {
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err = marshalAnswer(resp, builder)
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if err != nil {
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return err
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}
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}
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return nil
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}
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// marshalReponsePacket marshals a full DNS packet (including headers)
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// representing resp, which is a response to query, into buf.
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// It returns buf trimmed to the length of the response packet.
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func marshalResponsePacket(query *packet.ParsedPacket, resp *response, buf []byte) ([]byte, error) {
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udpHeader := query.UDPHeader()
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udpHeader.ToResponse()
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offset := udpHeader.Len()
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resp.Header.Response = true
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resp.Header.Authoritative = true
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if resp.Header.RecursionDesired {
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resp.Header.RecursionAvailable = true
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}
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// dns.Builder appends to the passed buffer (without reallocation when possible),
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// so we pass in a zero-length slice starting at the point it should start writing.
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builder := dns.NewBuilder(buf[offset:offset], resp.Header)
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err := marshalResponse(resp, &builder)
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if err != nil {
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return nil, err
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}
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// rbuf is the response slice with the correct length starting at offset.
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rbuf, err := builder.Finish()
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if err != nil {
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return nil, err
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}
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end := offset + len(rbuf)
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err = udpHeader.Marshal(buf[:end])
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if err != nil {
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return nil, err
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}
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return buf[:end], nil
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}
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// Respond writes a response to query into buf and returns buf trimmed to the response length.
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// It is assumed that r.AcceptsPacket(query) is true.
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func (r *Resolver) Respond(query *packet.ParsedPacket, buf []byte) ([]byte, error) {
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var resp response
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var err error
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// 0. Verify that contract is upheld.
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if !r.AcceptsPacket(query) {
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return nil, errNotOurQuery
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}
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// A DNS response is at least as long as the query
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if len(buf) < len(query.Buffer()) {
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return nil, errSmallBuffer
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}
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// 1. Parse query packet.
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err = r.parseQuery(query, &resp)
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// We will not return this error: it is the sender's fault.
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if err != nil {
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r.logf("tsdns: error during query parsing: %v", err)
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resp.Header.RCode = dns.RCodeFormatError
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return marshalResponsePacket(query, &resp, buf)
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}
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// 2. Service the query.
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err = r.makeResponse(&resp)
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// We will not return this error: it is the sender's fault.
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if err != nil {
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r.logf("tsdns: error during name resolution: %v", err)
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return marshalResponsePacket(query, &resp, buf)
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}
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// For now, we require IPv4 in all cases.
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// If we somehow came up with a non-IPv4 address, it's our fault.
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if !resp.IP.Is4() {
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resp.Header.RCode = dns.RCodeServerFailure
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r.logf("tsdns: error during name resolution: IPv6 address: %v", resp.IP)
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}
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// 3. Serialize the response.
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return marshalResponsePacket(query, &resp, buf)
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}
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