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	This fix fixes import path from `github.com/miekg/coredns` -> `github.com/coredns/coredns`
		
			
				
	
	
		
			249 lines
		
	
	
		
			6.0 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			249 lines
		
	
	
		
			6.0 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// Package request abstracts a client's request so that all middleware
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// will handle them in an unified way.
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package request
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import (
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	"net"
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	"strings"
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	"github.com/coredns/coredns/middleware/pkg/edns"
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	"github.com/miekg/dns"
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)
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// Request contains some connection state and is useful in middleware.
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type Request struct {
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	Req *dns.Msg
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	W   dns.ResponseWriter
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	// Cache size after first call to Size or Do.
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	size int
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	do   int // 0: not, 1: true: 2: false
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	// TODO(miek): opt record itself as well?
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	// Cache lowercase qname.
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	name string
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}
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// NewWithQuestion returns a new request based on the old, but with a new question
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// section in the request.
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func (r *Request) NewWithQuestion(name string, typ uint16) Request {
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	req1 := Request{W: r.W, Req: r.Req.Copy()}
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	req1.Req.Question[0] = dns.Question{Name: dns.Fqdn(name), Qtype: dns.ClassINET, Qclass: typ}
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	return req1
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}
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// IP gets the (remote) IP address of the client making the request.
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func (r *Request) IP() string {
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	ip, _, err := net.SplitHostPort(r.W.RemoteAddr().String())
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	if err != nil {
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		return r.W.RemoteAddr().String()
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	}
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	return ip
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}
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// Port gets the (remote) Port of the client making the request.
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func (r *Request) Port() string {
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	_, port, err := net.SplitHostPort(r.W.RemoteAddr().String())
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	if err != nil {
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		return "0"
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	}
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	return port
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}
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// RemoteAddr returns the net.Addr of the client that sent the current request.
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func (r *Request) RemoteAddr() string {
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	return r.W.RemoteAddr().String()
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}
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// Proto gets the protocol used as the transport. This will be udp or tcp.
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func (r *Request) Proto() string { return Proto(r.W) }
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// Proto gets the protocol used as the transport. This will be udp or tcp.
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func Proto(w dns.ResponseWriter) string {
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	// FIXME(miek): why not a method on Request
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	if _, ok := w.RemoteAddr().(*net.UDPAddr); ok {
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		return "udp"
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	}
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	if _, ok := w.RemoteAddr().(*net.TCPAddr); ok {
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		return "tcp"
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	}
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	return "udp"
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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 (r *Request) Family() int {
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	var a net.IP
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	ip := r.W.RemoteAddr()
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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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// Do returns if the request has the DO (DNSSEC OK) bit set.
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func (r *Request) Do() bool {
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	if r.do != 0 {
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		return r.do == doTrue
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	}
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	if o := r.Req.IsEdns0(); o != nil {
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		if o.Do() {
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			r.do = doTrue
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		} else {
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			r.do = doFalse
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		}
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		return o.Do()
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	}
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	r.do = doFalse
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	return false
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}
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// Len returns the length in bytes in the request.
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func (r *Request) Len() int { return r.Req.Len() }
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// Size returns if buffer size *advertised* in the requests OPT record.
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// Or when the request was over TCP, we return the maximum allowed size of 64K.
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func (r *Request) Size() int {
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	if r.size != 0 {
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		return r.size
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	}
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	size := 0
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	if o := r.Req.IsEdns0(); o != nil {
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		if o.Do() == true {
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			r.do = doTrue
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		} else {
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			r.do = doFalse
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		}
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		size = int(o.UDPSize())
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	}
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	// TODO(miek) move edns.Size to dnsutil?
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	size = edns.Size(r.Proto(), size)
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	r.size = size
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	return size
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}
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// SizeAndDo adds an OPT record that the reflects the intent from request.
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// The returned bool indicated if an record was found and normalised.
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func (r *Request) SizeAndDo(m *dns.Msg) bool {
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	o := r.Req.IsEdns0() // TODO(miek): speed this up
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	if o == nil {
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		return false
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	}
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	odo := o.Do()
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	if mo := m.IsEdns0(); mo != nil {
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		mo.Hdr.Name = "."
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		mo.Hdr.Rrtype = dns.TypeOPT
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		mo.SetVersion(0)
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		mo.SetUDPSize(o.UDPSize())
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		mo.Hdr.Ttl &= 0xff00 // clear flags
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		if odo {
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			mo.SetDo()
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		}
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		return true
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	}
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	o.Hdr.Name = "."
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	o.Hdr.Rrtype = dns.TypeOPT
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	o.SetVersion(0)
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	o.Hdr.Ttl &= 0xff00 // clear flags
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	if odo {
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		o.SetDo()
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	}
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	m.Extra = append(m.Extra, o)
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	return true
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}
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// Result is the result of Scrub.
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type Result int
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const (
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	// ScrubIgnored is returned when Scrub did nothing to the message.
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	ScrubIgnored Result = iota
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	// ScrubDone is returned when the reply has been scrubbed.
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	ScrubDone
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)
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// Scrub scrubs the reply message so that it will fit the client's buffer. If even after dropping
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// the additional section, it still does not fit the TC bit will be set on the message. Note,
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// the TC bit will be set regardless of protocol, even TCP message will get the bit, the client
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// should then retry with pigeons.
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// TODO(referral).
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func (r *Request) Scrub(reply *dns.Msg) (*dns.Msg, Result) {
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	size := r.Size()
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	l := reply.Len()
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	if size >= l {
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		return reply, ScrubIgnored
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	}
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	// TODO(miek): check for delegation
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	// If not delegation, drop additional section.
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	reply.Extra = nil
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	r.SizeAndDo(reply)
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	l = reply.Len()
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	if size >= l {
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		return reply, ScrubDone
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	}
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	// Still?!! does not fit.
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	reply.Truncated = true
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	return reply, ScrubDone
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}
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// Type returns the type of the question as a string.
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func (r *Request) Type() string { return dns.Type(r.Req.Question[0].Qtype).String() }
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// QType returns the type of the question as an uint16.
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func (r *Request) QType() uint16 { return r.Req.Question[0].Qtype }
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// Name returns the name of the question in the request. Note
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// this name will always have a closing dot and will be lower cased. After a call Name
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// the value will be cached. To clear this caching call Clear.
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func (r *Request) Name() string {
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	if r.name != "" {
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		return r.name
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	}
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	r.name = strings.ToLower(dns.Name(r.Req.Question[0].Name).String())
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	return r.name
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}
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// QName returns the name of the question in the request.
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func (r *Request) QName() string { return dns.Name(r.Req.Question[0].Name).String() }
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// Class returns the class of the question in the request.
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func (r *Request) Class() string { return dns.Class(r.Req.Question[0].Qclass).String() }
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// QClass returns the class of the question in the request.
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func (r *Request) QClass() uint16 { return r.Req.Question[0].Qclass }
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// ErrorMessage returns an error message suitable for sending
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// back to the client.
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func (r *Request) ErrorMessage(rcode int) *dns.Msg {
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	m := new(dns.Msg)
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	m.SetRcode(r.Req, rcode)
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	return m
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}
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// Clear clears all caching from Request s.
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func (r *Request) Clear() {
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	r.name = ""
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}
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const (
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	// TODO(miek): make this less awkward.
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	doTrue  = 1
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	doFalse = 2
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)
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