File: netaddress.go

package info (click to toggle)
tendermint-go-p2p 0.0~git20170113.0.3d98f67-1
  • links: PTS, VCS
  • area: main
  • in suites: buster
  • size: 248 kB
  • ctags: 425
  • sloc: sh: 23; makefile: 4
file content (216 lines) | stat: -rw-r--r-- 6,296 bytes parent folder | download
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
// Modified for Tendermint
// Originally Copyright (c) 2013-2014 Conformal Systems LLC.
// https://github.com/conformal/btcd/blob/master/LICENSE

package p2p

import (
	"net"
	"strconv"
	"time"

	. "github.com/tendermint/go-common"
)

type NetAddress struct {
	IP   net.IP
	Port uint16
	str  string
}

// TODO: socks proxies?
func NewNetAddress(addr net.Addr) *NetAddress {
	tcpAddr, ok := addr.(*net.TCPAddr)
	if !ok {
		log.Warn(`Only TCPAddrs are supported. If used for anything but testing,
			may result in undefined behaviour!`, "addr", addr)
		return NewNetAddressIPPort(net.IP("0.0.0.0"), 0)
		// NOTE: it would be nice to only not panic if we're in testing ...
		// PanicSanity(Fmt("Only TCPAddrs are supported. Got: %v", addr))
	}
	ip := tcpAddr.IP
	port := uint16(tcpAddr.Port)
	return NewNetAddressIPPort(ip, port)
}

// Also resolves the host if host is not an IP.
func NewNetAddressString(addr string) *NetAddress {
	host, portStr, err := net.SplitHostPort(addr)
	if err != nil {
		PanicSanity(err)
	}
	ip := net.ParseIP(host)
	if ip == nil {
		if len(host) > 0 {
			ips, err := net.LookupIP(host)
			if err != nil {
				PanicSanity(err)
			}
			ip = ips[0]
		}
	}
	port, err := strconv.ParseUint(portStr, 10, 16)
	if err != nil {
		PanicSanity(err)
	}
	na := NewNetAddressIPPort(ip, uint16(port))
	return na
}

func NewNetAddressIPPort(ip net.IP, port uint16) *NetAddress {
	na := &NetAddress{
		IP:   ip,
		Port: port,
		str: net.JoinHostPort(
			ip.String(),
			strconv.FormatUint(uint64(port), 10),
		),
	}
	return na
}

func (na *NetAddress) Equals(other interface{}) bool {
	if o, ok := other.(*NetAddress); ok {
		return na.String() == o.String()
	} else {
		return false
	}
}

func (na *NetAddress) Less(other interface{}) bool {
	if o, ok := other.(*NetAddress); ok {
		return na.String() < o.String()
	} else {
		PanicSanity("Cannot compare unequal types")
		return false
	}
}

func (na *NetAddress) String() string {
	if na.str == "" {
		na.str = net.JoinHostPort(
			na.IP.String(),
			strconv.FormatUint(uint64(na.Port), 10),
		)
	}
	return na.str
}

func (na *NetAddress) Dial() (net.Conn, error) {
	conn, err := net.Dial("tcp", na.String())
	if err != nil {
		return nil, err
	}
	return conn, nil
}

func (na *NetAddress) DialTimeout(timeout time.Duration) (net.Conn, error) {
	conn, err := net.DialTimeout("tcp", na.String(), timeout)
	if err != nil {
		return nil, err
	}
	return conn, nil
}

func (na *NetAddress) Routable() bool {
	// TODO(oga) bitcoind doesn't include RFC3849 here, but should we?
	return na.Valid() && !(na.RFC1918() || na.RFC3927() || na.RFC4862() ||
		na.RFC4193() || na.RFC4843() || na.Local())
}

// For IPv4 these are either a 0 or all bits set address. For IPv6 a zero
// address or one that matches the RFC3849 documentation address format.
func (na *NetAddress) Valid() bool {
	return na.IP != nil && !(na.IP.IsUnspecified() || na.RFC3849() ||
		na.IP.Equal(net.IPv4bcast))
}

func (na *NetAddress) Local() bool {
	return na.IP.IsLoopback() || zero4.Contains(na.IP)
}

func (na *NetAddress) ReachabilityTo(o *NetAddress) int {
	const (
		Unreachable = 0
		Default     = iota
		Teredo
		Ipv6_weak
		Ipv4
		Ipv6_strong
		Private
	)
	if !na.Routable() {
		return Unreachable
	} else if na.RFC4380() {
		if !o.Routable() {
			return Default
		} else if o.RFC4380() {
			return Teredo
		} else if o.IP.To4() != nil {
			return Ipv4
		} else { // ipv6
			return Ipv6_weak
		}
	} else if na.IP.To4() != nil {
		if o.Routable() && o.IP.To4() != nil {
			return Ipv4
		}
		return Default
	} else /* ipv6 */ {
		var tunnelled bool
		// Is our v6 is tunnelled?
		if o.RFC3964() || o.RFC6052() || o.RFC6145() {
			tunnelled = true
		}
		if !o.Routable() {
			return Default
		} else if o.RFC4380() {
			return Teredo
		} else if o.IP.To4() != nil {
			return Ipv4
		} else if tunnelled {
			// only prioritise ipv6 if we aren't tunnelling it.
			return Ipv6_weak
		}
		return Ipv6_strong
	}
}

// RFC1918: IPv4 Private networks (10.0.0.0/8, 192.168.0.0/16, 172.16.0.0/12)
// RFC3849: IPv6 Documentation address  (2001:0DB8::/32)
// RFC3927: IPv4 Autoconfig (169.254.0.0/16)
// RFC3964: IPv6 6to4 (2002::/16)
// RFC4193: IPv6 unique local (FC00::/7)
// RFC4380: IPv6 Teredo tunneling (2001::/32)
// RFC4843: IPv6 ORCHID: (2001:10::/28)
// RFC4862: IPv6 Autoconfig (FE80::/64)
// RFC6052: IPv6 well known prefix (64:FF9B::/96)
// RFC6145: IPv6 IPv4 translated address ::FFFF:0:0:0/96
var rfc1918_10 = net.IPNet{IP: net.ParseIP("10.0.0.0"), Mask: net.CIDRMask(8, 32)}
var rfc1918_192 = net.IPNet{IP: net.ParseIP("192.168.0.0"), Mask: net.CIDRMask(16, 32)}
var rfc1918_172 = net.IPNet{IP: net.ParseIP("172.16.0.0"), Mask: net.CIDRMask(12, 32)}
var rfc3849 = net.IPNet{IP: net.ParseIP("2001:0DB8::"), Mask: net.CIDRMask(32, 128)}
var rfc3927 = net.IPNet{IP: net.ParseIP("169.254.0.0"), Mask: net.CIDRMask(16, 32)}
var rfc3964 = net.IPNet{IP: net.ParseIP("2002::"), Mask: net.CIDRMask(16, 128)}
var rfc4193 = net.IPNet{IP: net.ParseIP("FC00::"), Mask: net.CIDRMask(7, 128)}
var rfc4380 = net.IPNet{IP: net.ParseIP("2001::"), Mask: net.CIDRMask(32, 128)}
var rfc4843 = net.IPNet{IP: net.ParseIP("2001:10::"), Mask: net.CIDRMask(28, 128)}
var rfc4862 = net.IPNet{IP: net.ParseIP("FE80::"), Mask: net.CIDRMask(64, 128)}
var rfc6052 = net.IPNet{IP: net.ParseIP("64:FF9B::"), Mask: net.CIDRMask(96, 128)}
var rfc6145 = net.IPNet{IP: net.ParseIP("::FFFF:0:0:0"), Mask: net.CIDRMask(96, 128)}
var zero4 = net.IPNet{IP: net.ParseIP("0.0.0.0"), Mask: net.CIDRMask(8, 32)}

func (na *NetAddress) RFC1918() bool {
	return rfc1918_10.Contains(na.IP) ||
		rfc1918_192.Contains(na.IP) ||
		rfc1918_172.Contains(na.IP)
}
func (na *NetAddress) RFC3849() bool { return rfc3849.Contains(na.IP) }
func (na *NetAddress) RFC3927() bool { return rfc3927.Contains(na.IP) }
func (na *NetAddress) RFC3964() bool { return rfc3964.Contains(na.IP) }
func (na *NetAddress) RFC4193() bool { return rfc4193.Contains(na.IP) }
func (na *NetAddress) RFC4380() bool { return rfc4380.Contains(na.IP) }
func (na *NetAddress) RFC4843() bool { return rfc4843.Contains(na.IP) }
func (na *NetAddress) RFC4862() bool { return rfc4862.Contains(na.IP) }
func (na *NetAddress) RFC6052() bool { return rfc6052.Contains(na.IP) }
func (na *NetAddress) RFC6145() bool { return rfc6145.Contains(na.IP) }