Create plugin/pkg/transport that holds the transport related functions. This needed to be a new pkg to prevent cyclic import errors. This cleans up a bunch of duplicated code in core/dnsserver that also tried to parse a transport (now all done in transport.Parse). Signed-off-by: Miek Gieben <miek@miek.nl>
142 lines
3.7 KiB
Go
142 lines
3.7 KiB
Go
// Package forward implements a forwarding proxy. It caches an upstream net.Conn for some time, so if the same
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// client returns the upstream's Conn will be precached. Depending on how you benchmark this looks to be
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// 50% faster than just opening a new connection for every client. It works with UDP and TCP and uses
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// inband healthchecking.
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package forward
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import (
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"context"
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"io"
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"strconv"
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"sync/atomic"
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"time"
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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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// limitTimeout is a utility function to auto-tune timeout values
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// average observed time is moved towards the last observed delay moderated by a weight
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// next timeout to use will be the double of the computed average, limited by min and max frame.
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func limitTimeout(currentAvg *int64, minValue time.Duration, maxValue time.Duration) time.Duration {
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rt := time.Duration(atomic.LoadInt64(currentAvg))
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if rt < minValue {
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return minValue
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}
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if rt < maxValue/2 {
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return 2 * rt
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}
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return maxValue
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}
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func averageTimeout(currentAvg *int64, observedDuration time.Duration, weight int64) {
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dt := time.Duration(atomic.LoadInt64(currentAvg))
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atomic.AddInt64(currentAvg, int64(observedDuration-dt)/weight)
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}
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func (t *Transport) dialTimeout() time.Duration {
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return limitTimeout(&t.avgDialTime, minDialTimeout, maxDialTimeout)
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}
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func (t *Transport) updateDialTimeout(newDialTime time.Duration) {
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averageTimeout(&t.avgDialTime, newDialTime, cumulativeAvgWeight)
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}
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// Dial dials the address configured in transport, potentially reusing a connection or creating a new one.
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func (t *Transport) Dial(proto string) (*dns.Conn, bool, error) {
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// If tls has been configured; use it.
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if t.tlsConfig != nil {
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proto = "tcp-tls"
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}
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t.dial <- proto
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c := <-t.ret
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if c != nil {
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return c, true, nil
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}
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reqTime := time.Now()
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timeout := t.dialTimeout()
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if proto == "tcp-tls" {
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conn, err := dns.DialTimeoutWithTLS("tcp", t.addr, t.tlsConfig, timeout)
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t.updateDialTimeout(time.Since(reqTime))
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return conn, false, err
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}
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conn, err := dns.DialTimeout(proto, t.addr, timeout)
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t.updateDialTimeout(time.Since(reqTime))
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return conn, false, err
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}
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func (p *Proxy) readTimeout() time.Duration {
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return limitTimeout(&p.avgRtt, minTimeout, maxTimeout)
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}
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func (p *Proxy) updateRtt(newRtt time.Duration) {
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averageTimeout(&p.avgRtt, newRtt, cumulativeAvgWeight)
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}
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// Connect selects an upstream, sends the request and waits for a response.
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func (p *Proxy) Connect(ctx context.Context, state request.Request, opts options) (*dns.Msg, error) {
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start := time.Now()
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proto := ""
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switch {
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case opts.forceTCP: // TCP flag has precedence over UDP flag
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proto = "tcp"
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case opts.preferUDP:
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proto = "udp"
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default:
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proto = state.Proto()
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}
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conn, cached, err := p.transport.Dial(proto)
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if err != nil {
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return nil, err
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}
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// Set buffer size correctly for this client.
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conn.UDPSize = uint16(state.Size())
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if conn.UDPSize < 512 {
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conn.UDPSize = 512
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}
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conn.SetWriteDeadline(time.Now().Add(maxTimeout))
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reqTime := time.Now()
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if err := conn.WriteMsg(state.Req); err != nil {
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conn.Close() // not giving it back
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if err == io.EOF && cached {
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return nil, ErrCachedClosed
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}
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return nil, err
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}
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conn.SetReadDeadline(time.Now().Add(p.readTimeout()))
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ret, err := conn.ReadMsg()
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if err != nil {
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p.updateRtt(maxTimeout)
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conn.Close() // not giving it back
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if err == io.EOF && cached {
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return nil, ErrCachedClosed
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}
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return ret, err
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}
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p.updateRtt(time.Since(reqTime))
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p.transport.Yield(conn)
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rc, ok := dns.RcodeToString[ret.Rcode]
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if !ok {
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rc = strconv.Itoa(ret.Rcode)
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}
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RequestCount.WithLabelValues(p.addr).Add(1)
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RcodeCount.WithLabelValues(rc, p.addr).Add(1)
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RequestDuration.WithLabelValues(p.addr).Observe(time.Since(start).Seconds())
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return ret, nil
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}
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const cumulativeAvgWeight = 4
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