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	* Add EDNS0_SUBNET rewrite * Fix review comments * Update comment * Fix according to review comments * Add ResponseWriter6 instead of parameterized the existing ResponseWriter
		
			
				
	
	
		
			426 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			426 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// Package rewrite is middleware for rewriting requests internally to something different.
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package rewrite
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import (
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	"encoding/binary"
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	"encoding/hex"
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	"fmt"
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	"net"
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	"strconv"
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	"strings"
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	"github.com/coredns/coredns/request"
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	"github.com/miekg/dns"
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)
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// edns0LocalRule is a rewrite rule for EDNS0_LOCAL options
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type edns0LocalRule struct {
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	action string
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	code   uint16
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	data   []byte
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}
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// edns0VariableRule is a rewrite rule for EDNS0_LOCAL options with variable
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type edns0VariableRule struct {
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	action   string
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	code     uint16
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	variable string
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}
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// ends0NsidRule is a rewrite rule for EDNS0_NSID options
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type edns0NsidRule struct {
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	action string
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}
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// setupEdns0Opt will retrieve the EDNS0 OPT or create it if it does not exist
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func setupEdns0Opt(r *dns.Msg) *dns.OPT {
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	o := r.IsEdns0()
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	if o == nil {
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		r.SetEdns0(4096, true)
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		o = r.IsEdns0()
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	}
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	return o
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}
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// Rewrite will alter the request EDNS0 NSID option
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func (rule *edns0NsidRule) Rewrite(w dns.ResponseWriter, r *dns.Msg) Result {
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	result := RewriteIgnored
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	o := setupEdns0Opt(r)
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	found := false
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Option:
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	for _, s := range o.Option {
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		switch e := s.(type) {
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		case *dns.EDNS0_NSID:
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			if rule.action == Replace || rule.action == Set {
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				e.Nsid = "" // make sure it is empty for request
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				result = RewriteDone
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			}
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			found = true
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			break Option
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		}
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	}
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	// add option if not found
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	if !found && (rule.action == Append || rule.action == Set) {
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		o.SetDo()
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		o.Option = append(o.Option, &dns.EDNS0_NSID{Code: dns.EDNS0NSID, Nsid: ""})
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		result = RewriteDone
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	}
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	return result
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}
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// Rewrite will alter the request EDNS0 local options
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func (rule *edns0LocalRule) Rewrite(w dns.ResponseWriter, r *dns.Msg) Result {
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	result := RewriteIgnored
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	o := setupEdns0Opt(r)
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	found := false
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	for _, s := range o.Option {
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		switch e := s.(type) {
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		case *dns.EDNS0_LOCAL:
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			if rule.code == e.Code {
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				if rule.action == Replace || rule.action == Set {
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					e.Data = rule.data
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					result = RewriteDone
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				}
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				found = true
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				break
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			}
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		}
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	}
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	// add option if not found
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	if !found && (rule.action == Append || rule.action == Set) {
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		o.SetDo()
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		var opt dns.EDNS0_LOCAL
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		opt.Code = rule.code
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		opt.Data = rule.data
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		o.Option = append(o.Option, &opt)
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		result = RewriteDone
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	}
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	return result
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}
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// newEdns0Rule creates an EDNS0 rule of the appropriate type based on the args
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func newEdns0Rule(args ...string) (Rule, error) {
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	if len(args) < 2 {
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		return nil, fmt.Errorf("too few arguments for an EDNS0 rule")
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	}
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	ruleType := strings.ToLower(args[0])
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	action := strings.ToLower(args[1])
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	switch action {
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	case Append:
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	case Replace:
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	case Set:
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	default:
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		return nil, fmt.Errorf("invalid action: %q", action)
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	}
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	switch ruleType {
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	case "local":
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		if len(args) != 4 {
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			return nil, fmt.Errorf("EDNS0 local rules require exactly three args")
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		}
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		//Check for variable option
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		if strings.HasPrefix(args[3], "{") && strings.HasSuffix(args[3], "}") {
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			return newEdns0VariableRule(action, args[2], args[3])
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		}
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		return newEdns0LocalRule(action, args[2], args[3])
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	case "nsid":
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		if len(args) != 2 {
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			return nil, fmt.Errorf("EDNS0 NSID rules do not accept args")
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		}
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		return &edns0NsidRule{action: action}, nil
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	case "subnet":
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		if len(args) != 4 {
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			return nil, fmt.Errorf("EDNS0 subnet rules require exactly three args")
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		}
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		return newEdns0SubnetRule(action, args[2], args[3])
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	default:
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		return nil, fmt.Errorf("invalid rule type %q", ruleType)
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	}
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}
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func newEdns0LocalRule(action, code, data string) (*edns0LocalRule, error) {
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	c, err := strconv.ParseUint(code, 0, 16)
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	if err != nil {
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		return nil, err
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	}
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	decoded := []byte(data)
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	if strings.HasPrefix(data, "0x") {
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		decoded, err = hex.DecodeString(data[2:])
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		if err != nil {
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			return nil, err
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		}
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	}
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	return &edns0LocalRule{action: action, code: uint16(c), data: decoded}, nil
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}
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// newEdns0VariableRule creates an EDNS0 rule that handles variable substitution
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func newEdns0VariableRule(action, code, variable string) (*edns0VariableRule, error) {
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	c, err := strconv.ParseUint(code, 0, 16)
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	if err != nil {
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		return nil, err
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	}
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	//Validate
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	if !isValidVariable(variable) {
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		return nil, fmt.Errorf("unsupported variable name %q", variable)
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	}
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	return &edns0VariableRule{action: action, code: uint16(c), variable: variable}, nil
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}
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// ipToWire writes IP address to wire/binary format, 4 or 16 bytes depends on IPV4 or IPV6.
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func (rule *edns0VariableRule) ipToWire(family int, ipAddr string) ([]byte, error) {
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	switch family {
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	case 1:
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		return net.ParseIP(ipAddr).To4(), nil
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	case 2:
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		return net.ParseIP(ipAddr).To16(), nil
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	}
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	return nil, fmt.Errorf("Invalid IP address family (i.e. version) %d", family)
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}
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// uint16ToWire writes unit16 to wire/binary format
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func (rule *edns0VariableRule) uint16ToWire(data uint16) []byte {
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	buf := make([]byte, 2)
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	binary.BigEndian.PutUint16(buf, uint16(data))
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	return buf
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}
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// portToWire writes port to wire/binary format, 2 bytes
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func (rule *edns0VariableRule) portToWire(portStr string) ([]byte, error) {
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	port, err := strconv.ParseUint(portStr, 10, 16)
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	if err != nil {
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		return nil, err
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	}
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	return rule.uint16ToWire(uint16(port)), nil
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}
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// Family returns the family of the transport, 1 for IPv4 and 2 for IPv6.
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func (rule *edns0VariableRule) family(ip net.Addr) int {
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	var a net.IP
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	if i, ok := ip.(*net.UDPAddr); ok {
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		a = i.IP
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	}
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	if i, ok := ip.(*net.TCPAddr); ok {
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		a = i.IP
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	}
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	if a.To4() != nil {
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		return 1
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	}
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	return 2
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}
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// ruleData returns the data specified by the variable
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func (rule *edns0VariableRule) ruleData(w dns.ResponseWriter, r *dns.Msg) ([]byte, error) {
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	req := request.Request{W: w, Req: r}
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	switch rule.variable {
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	case queryName:
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		//Query name is written as ascii string
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		return []byte(req.QName()), nil
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	case queryType:
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		return rule.uint16ToWire(req.QType()), nil
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	case clientIP:
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		return rule.ipToWire(req.Family(), req.IP())
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	case clientPort:
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		return rule.portToWire(req.Port())
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	case protocol:
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		// Proto is written as ascii string
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		return []byte(req.Proto()), nil
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	case serverIP:
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		ip, _, err := net.SplitHostPort(w.LocalAddr().String())
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		if err != nil {
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			ip = w.RemoteAddr().String()
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		}
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		return rule.ipToWire(rule.family(w.RemoteAddr()), ip)
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	case serverPort:
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		_, port, err := net.SplitHostPort(w.LocalAddr().String())
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		if err != nil {
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			port = "0"
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		}
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		return rule.portToWire(port)
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	}
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	return nil, fmt.Errorf("Unable to extract data for variable %s", rule.variable)
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}
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// Rewrite will alter the request EDNS0 local options with specified variables
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func (rule *edns0VariableRule) Rewrite(w dns.ResponseWriter, r *dns.Msg) Result {
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	result := RewriteIgnored
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	data, err := rule.ruleData(w, r)
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	if err != nil || data == nil {
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		return result
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	}
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	o := setupEdns0Opt(r)
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	found := false
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	for _, s := range o.Option {
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		switch e := s.(type) {
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		case *dns.EDNS0_LOCAL:
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			if rule.code == e.Code {
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				if rule.action == Replace || rule.action == Set {
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					e.Data = data
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					result = RewriteDone
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				}
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				found = true
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				break
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			}
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		}
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	}
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	// add option if not found
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	if !found && (rule.action == Append || rule.action == Set) {
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		o.SetDo()
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		var opt dns.EDNS0_LOCAL
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		opt.Code = rule.code
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		opt.Data = data
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		o.Option = append(o.Option, &opt)
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		result = RewriteDone
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	}
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	return result
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}
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func isValidVariable(variable string) bool {
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	switch variable {
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	case
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		queryName,
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		queryType,
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		clientIP,
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		clientPort,
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		protocol,
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		serverIP,
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		serverPort:
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		return true
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	}
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	return false
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}
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// ends0SubnetRule is a rewrite rule for EDNS0 subnet options
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type edns0SubnetRule struct {
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	v4BitMaskLen uint8
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	v6BitMaskLen uint8
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	action       string
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}
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func newEdns0SubnetRule(action, v4BitMaskLen, v6BitMaskLen string) (*edns0SubnetRule, error) {
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	v4Len, err := strconv.ParseUint(v4BitMaskLen, 0, 16)
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	if err != nil {
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		return nil, err
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	}
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	// Validate V4 length
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	if v4Len > maxV4BitMaskLen {
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		return nil, fmt.Errorf("invalid IPv4 bit mask length %d", v4Len)
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	}
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	v6Len, err := strconv.ParseUint(v6BitMaskLen, 0, 16)
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	if err != nil {
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		return nil, err
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	}
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	//Validate V6 length
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	if v6Len > maxV6BitMaskLen {
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		return nil, fmt.Errorf("invalid IPv6 bit mask length %d", v6Len)
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	}
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	return &edns0SubnetRule{action: action,
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		v4BitMaskLen: uint8(v4Len), v6BitMaskLen: uint8(v6Len)}, nil
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}
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// fillEcsData sets the subnet data into the ecs option
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func (rule *edns0SubnetRule) fillEcsData(w dns.ResponseWriter, r *dns.Msg,
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	ecs *dns.EDNS0_SUBNET) error {
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	req := request.Request{W: w, Req: r}
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	family := req.Family()
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	if (family != 1) && (family != 2) {
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		return fmt.Errorf("unable to fill data for EDNS0 subnet due to invalid IP family")
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	}
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	ecs.DraftOption = false
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	ecs.Family = uint16(family)
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	ecs.SourceScope = 0
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	ipAddr := req.IP()
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	switch family {
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	case 1:
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		ipv4Mask := net.CIDRMask(int(rule.v4BitMaskLen), 32)
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		ipv4Addr := net.ParseIP(ipAddr)
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		ecs.SourceNetmask = rule.v4BitMaskLen
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		ecs.Address = ipv4Addr.Mask(ipv4Mask).To4()
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	case 2:
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		ipv6Mask := net.CIDRMask(int(rule.v6BitMaskLen), 128)
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		ipv6Addr := net.ParseIP(ipAddr)
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		ecs.SourceNetmask = rule.v6BitMaskLen
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		ecs.Address = ipv6Addr.Mask(ipv6Mask).To16()
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	}
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	return nil
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}
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// Rewrite will alter the request EDNS0 subnet option
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func (rule *edns0SubnetRule) Rewrite(w dns.ResponseWriter, r *dns.Msg) Result {
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	result := RewriteIgnored
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	o := setupEdns0Opt(r)
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	found := false
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	for _, s := range o.Option {
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		switch e := s.(type) {
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		case *dns.EDNS0_SUBNET:
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			if rule.action == Replace || rule.action == Set {
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				if rule.fillEcsData(w, r, e) == nil {
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					result = RewriteDone
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				}
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			}
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			found = true
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			break
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		}
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	}
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	// add option if not found
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	if !found && (rule.action == Append || rule.action == Set) {
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		o.SetDo()
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		opt := dns.EDNS0_SUBNET{Code: dns.EDNS0SUBNET}
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		if rule.fillEcsData(w, r, &opt) == nil {
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			o.Option = append(o.Option, &opt)
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			result = RewriteDone
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		}
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	}
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	return result
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}
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// These are all defined actions.
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const (
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	Replace = "replace"
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	Set     = "set"
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	Append  = "append"
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)
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// Supported local EDNS0 variables
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const (
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	queryName  = "{qname}"
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	queryType  = "{qtype}"
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	clientIP   = "{client_ip}"
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	clientPort = "{client_port}"
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	protocol   = "{protocol}"
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	serverIP   = "{server_ip}"
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	serverPort = "{server_port}"
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)
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// Subnet maximum bit mask length
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const (
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	maxV4BitMaskLen = 32
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	maxV6BitMaskLen = 128
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)
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