2020-05-05 04:29:10 +02:00
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// Copyright (c) 2020 Shivaram Lingamneni <slingamn@cs.stanford.edu>
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// released under the MIT license
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package utils
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import (
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"crypto/tls"
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2020-11-19 18:31:58 +01:00
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"encoding/binary"
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2020-05-05 04:29:10 +02:00
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"errors"
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2020-11-19 18:31:58 +01:00
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"io"
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2020-05-05 04:29:10 +02:00
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"net"
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"strings"
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"sync"
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"time"
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)
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const (
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// https://www.haproxy.org/download/1.8/doc/proxy-protocol.txt
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// "a 108-byte buffer is always enough to store all the line and a trailing zero
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// for string processing."
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2020-11-19 18:31:58 +01:00
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maxProxyLineLenV1 = 107
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)
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2020-09-16 12:12:27 +02:00
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// XXX implement net.Error with a Temporary() method that returns true;
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// otherwise, ErrBadProxyLine will cause (*http.Server).Serve() to exit
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type proxyLineError struct{}
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func (p *proxyLineError) Error() string {
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return "invalid PROXY line"
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}
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func (p *proxyLineError) Timeout() bool {
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return false
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}
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func (p *proxyLineError) Temporary() bool {
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return true
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}
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var (
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ErrBadProxyLine error = &proxyLineError{}
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// TODO(golang/go#4373): replace this with the stdlib ErrNetClosing
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ErrNetClosing = errors.New("use of closed network connection")
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)
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// ListenerConfig is all the information about how to process
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// incoming IRC connections on a listener.
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type ListenerConfig struct {
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TLSConfig *tls.Config
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ProxyDeadline time.Duration
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RequireProxy bool
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// these are just metadata for easier tracking,
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// they are not used by ReloadableListener:
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Tor bool
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STSOnly bool
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WebSocket bool
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}
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2020-11-19 18:31:58 +01:00
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// read a PROXY header (either v1 or v2), ensuring we don't read anything beyond
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// the header into a buffer (this would break the TLS handshake)
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func readRawProxyLine(conn net.Conn, deadline time.Duration) (result []byte, err error) {
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// normally this is covered by ping timeouts, but we're doing this outside
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// of the normal client goroutine:
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conn.SetDeadline(time.Now().Add(deadline))
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defer conn.SetDeadline(time.Time{})
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2020-11-19 18:31:58 +01:00
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// read the first 16 bytes of the proxy header
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buf := make([]byte, 16, maxProxyLineLenV1)
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_, err = io.ReadFull(conn, buf)
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if err != nil {
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return
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}
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switch buf[0] {
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case 'P':
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// PROXY v1: starts with "PROXY"
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return readRawProxyLineV1(conn, buf)
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case '\r':
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// PROXY v2: starts with "\r\n\r\n"
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return readRawProxyLineV2(conn, buf)
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default:
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return nil, ErrBadProxyLine
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}
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}
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func readRawProxyLineV1(conn net.Conn, buf []byte) (result []byte, err error) {
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for {
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i := len(buf)
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if i >= maxProxyLineLenV1 {
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return nil, ErrBadProxyLine // did not find \r\n, fail
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}
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// prepare a single byte of free space, then read into it
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buf = buf[0 : i+1]
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_, err = io.ReadFull(conn, buf[i:])
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if err != nil {
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return nil, err
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}
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if buf[i] == '\n' {
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return buf, nil
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}
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}
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}
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func readRawProxyLineV2(conn net.Conn, buf []byte) (result []byte, err error) {
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// "The 15th and 16th bytes is the address length in bytes in network endian order."
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addrLen := int(binary.BigEndian.Uint16(buf[14:16]))
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if addrLen == 0 {
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return buf[0:16], nil
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} else if addrLen <= cap(buf)-16 {
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buf = buf[0 : 16+addrLen]
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} else {
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// proxy source is unix domain, we don't really handle this
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buf2 := make([]byte, 16+addrLen)
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copy(buf2[0:16], buf[0:16])
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buf = buf2
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}
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_, err = io.ReadFull(conn, buf[16:16+addrLen])
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if err != nil {
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return
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}
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return buf[0 : 16+addrLen], nil
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}
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2020-11-19 18:31:58 +01:00
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// ParseProxyLine parses a PROXY protocol (v1 or v2) line and returns the remote IP.
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func ParseProxyLine(line []byte) (ip net.IP, err error) {
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if len(line) == 0 {
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return nil, ErrBadProxyLine
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}
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switch line[0] {
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case 'P':
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return ParseProxyLineV1(string(line))
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case '\r':
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return parseProxyLineV2(line)
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default:
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return nil, ErrBadProxyLine
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}
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}
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2020-11-19 18:31:58 +01:00
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// ParseProxyLineV1 parses a PROXY protocol (v1) line and returns the remote IP.
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func ParseProxyLineV1(line string) (ip net.IP, err error) {
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params := strings.Fields(line)
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if len(params) != 6 || params[0] != "PROXY" {
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return nil, ErrBadProxyLine
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}
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ip = net.ParseIP(params[2])
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if ip == nil {
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return nil, ErrBadProxyLine
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}
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return ip.To16(), nil
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}
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2020-11-19 18:31:58 +01:00
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func parseProxyLineV2(line []byte) (ip net.IP, err error) {
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if len(line) < 16 {
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return nil, ErrBadProxyLine
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}
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// this doesn't allocate
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if string(line[:12]) != "\x0d\x0a\x0d\x0a\x00\x0d\x0a\x51\x55\x49\x54\x0a" {
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return nil, ErrBadProxyLine
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}
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// "The next byte (the 13th one) is the protocol version and command."
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versionCmd := line[12]
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// "The highest four bits contains the version [....] it must always be sent as \x2"
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if (versionCmd >> 4) != 2 {
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return nil, ErrBadProxyLine
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}
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// "The lowest four bits represents the command"
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switch versionCmd & 0x0f {
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case 0:
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return nil, nil // LOCAL command
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case 1:
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// PROXY command, continue below
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default:
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// "Receivers must drop connections presenting unexpected values here"
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return nil, ErrBadProxyLine
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}
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var addrLen int
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// "The 14th byte contains the transport protocol and address family."
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protoAddr := line[13]
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// "The highest 4 bits contain the address family"
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switch protoAddr >> 4 {
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case 1:
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addrLen = 4 // AF_INET
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case 2:
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addrLen = 16 // AF_INET6
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default:
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return nil, nil // AF_UNSPEC or AF_UNIX, either way there's no IP address
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}
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// header, source and destination address, two 16-bit port numbers:
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expectedLen := 16 + 2*addrLen + 4
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if len(line) < expectedLen {
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return nil, ErrBadProxyLine
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}
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// "Starting from the 17th byte, addresses are presented in network byte order.
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// The address order is always the same :
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// - source layer 3 address in network byte order [...]"
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if addrLen == 4 {
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ip = net.IP(line[16 : 16+addrLen]).To16()
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} else {
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ip = make(net.IP, addrLen)
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copy(ip, line[16:16+addrLen])
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}
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return ip, nil
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}
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2020-05-05 23:20:50 +02:00
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/// WrappedConn is a net.Conn with some additional data stapled to it;
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// the proxied IP, if one was read via the PROXY protocol, and the listener
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// configuration.
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type WrappedConn struct {
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net.Conn
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ProxiedIP net.IP
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Config ListenerConfig
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2020-05-10 12:17:11 +02:00
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// Secure indicates whether we believe the connection between us and the client
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// was secure against interception and modification (including all proxies):
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Secure bool
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}
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// ReloadableListener is a wrapper for net.Listener that allows reloading
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// of config data for postprocessing connections (TLS, PROXY protocol, etc.)
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type ReloadableListener struct {
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// TODO: make this lock-free
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sync.Mutex
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realListener net.Listener
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config ListenerConfig
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isClosed bool
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}
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func NewReloadableListener(realListener net.Listener, config ListenerConfig) *ReloadableListener {
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return &ReloadableListener{
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realListener: realListener,
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config: config,
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}
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}
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func (rl *ReloadableListener) Reload(config ListenerConfig) {
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rl.Lock()
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rl.config = config
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rl.Unlock()
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}
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func (rl *ReloadableListener) Accept() (conn net.Conn, err error) {
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conn, err = rl.realListener.Accept()
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rl.Lock()
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config := rl.config
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isClosed := rl.isClosed
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rl.Unlock()
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if isClosed {
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if err == nil {
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conn.Close()
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}
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err = ErrNetClosing
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}
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if err != nil {
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return nil, err
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}
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var proxiedIP net.IP
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if config.RequireProxy {
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// this will occur synchronously on the goroutine calling Accept(),
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// but that's OK because this listener *requires* a PROXY line,
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// therefore it must be used with proxies that always send the line
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// and we won't get slowloris'ed waiting for the client response
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proxyLine, err := readRawProxyLine(conn, config.ProxyDeadline)
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if err == nil {
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proxiedIP, err = ParseProxyLine(proxyLine)
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}
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if err != nil {
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conn.Close()
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return nil, err
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}
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}
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if config.TLSConfig != nil {
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conn = tls.Server(conn, config.TLSConfig)
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}
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return &WrappedConn{
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Conn: conn,
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ProxiedIP: proxiedIP,
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Config: config,
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}, nil
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}
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func (rl *ReloadableListener) Close() error {
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rl.Lock()
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rl.isClosed = true
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rl.Unlock()
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return rl.realListener.Close()
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}
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func (rl *ReloadableListener) Addr() net.Addr {
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return rl.realListener.Addr()
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}
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