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  1. // Modified for Tendermint
  2. // Originally Copyright (c) 2013-2014 Conformal Systems LLC.
  3. // https://github.com/conformal/btcd/blob/master/LICENSE
  4. package peer
  5. import (
  6. . "github.com/tendermint/tendermint/binary"
  7. . "github.com/tendermint/tendermint/common"
  8. "io"
  9. "net"
  10. "strconv"
  11. )
  12. /* NetAddress */
  13. type NetAddress struct {
  14. IP net.IP
  15. Port UInt16
  16. }
  17. // TODO: socks proxies?
  18. func NewNetAddress(addr net.Addr) *NetAddress {
  19. tcpAddr, ok := addr.(*net.TCPAddr)
  20. if !ok {
  21. Panicf("Only TCPAddrs are supported. Got: %v", addr)
  22. }
  23. ip := tcpAddr.IP
  24. port := UInt16(tcpAddr.Port)
  25. return NewNetAddressIPPort(ip, port)
  26. }
  27. func NewNetAddressString(addr string) *NetAddress {
  28. host, portStr, err := net.SplitHostPort(addr)
  29. if err != nil {
  30. panic(err)
  31. }
  32. ip := net.ParseIP(host)
  33. port, err := strconv.ParseUint(portStr, 10, 16)
  34. if err != nil {
  35. panic(err)
  36. }
  37. na := NewNetAddressIPPort(ip, UInt16(port))
  38. return na
  39. }
  40. func NewNetAddressIPPort(ip net.IP, port UInt16) *NetAddress {
  41. na := NetAddress{
  42. IP: ip,
  43. Port: port,
  44. }
  45. return &na
  46. }
  47. func ReadNetAddress(r io.Reader) *NetAddress {
  48. return &NetAddress{
  49. IP: net.IP(ReadByteSlice(r)),
  50. Port: ReadUInt16(r),
  51. }
  52. }
  53. func (na *NetAddress) WriteTo(w io.Writer) (n int64, err error) {
  54. n, err = WriteOnto(ByteSlice(na.IP.To16()), w, n, err)
  55. n, err = WriteOnto(na.Port, w, n, err)
  56. return
  57. }
  58. func (na *NetAddress) Equals(other Binary) bool {
  59. if o, ok := other.(*NetAddress); ok {
  60. return na.String() == o.String()
  61. } else {
  62. return false
  63. }
  64. }
  65. func (na *NetAddress) Less(other Binary) bool {
  66. if o, ok := other.(*NetAddress); ok {
  67. return na.String() < o.String()
  68. } else {
  69. panic("Cannot compare unequal types")
  70. }
  71. }
  72. func (na *NetAddress) String() string {
  73. port := strconv.FormatUint(uint64(na.Port), 10)
  74. addr := net.JoinHostPort(na.IP.String(), port)
  75. return addr
  76. }
  77. func (na *NetAddress) Dial() (*Connection, error) {
  78. conn, err := net.Dial("tcp", na.String())
  79. if err != nil {
  80. return nil, err
  81. }
  82. return NewConnection(conn), nil
  83. }
  84. func (na *NetAddress) Routable() bool {
  85. // TODO(oga) bitcoind doesn't include RFC3849 here, but should we?
  86. return na.Valid() && !(na.RFC1918() || na.RFC3927() || na.RFC4862() ||
  87. na.RFC4193() || na.RFC4843() || na.Local())
  88. }
  89. // For IPv4 these are either a 0 or all bits set address. For IPv6 a zero
  90. // address or one that matches the RFC3849 documentation address format.
  91. func (na *NetAddress) Valid() bool {
  92. return na.IP != nil && !(na.IP.IsUnspecified() || na.RFC3849() ||
  93. na.IP.Equal(net.IPv4bcast))
  94. }
  95. func (na *NetAddress) Local() bool {
  96. return na.IP.IsLoopback() || zero4.Contains(na.IP)
  97. }
  98. func (na *NetAddress) ReachabilityTo(o *NetAddress) int {
  99. const (
  100. Unreachable = 0
  101. Default = iota
  102. Teredo
  103. Ipv6_weak
  104. Ipv4
  105. Ipv6_strong
  106. Private
  107. )
  108. if !na.Routable() {
  109. return Unreachable
  110. } else if na.RFC4380() {
  111. if !o.Routable() {
  112. return Default
  113. } else if o.RFC4380() {
  114. return Teredo
  115. } else if o.IP.To4() != nil {
  116. return Ipv4
  117. } else { // ipv6
  118. return Ipv6_weak
  119. }
  120. } else if na.IP.To4() != nil {
  121. if o.Routable() && o.IP.To4() != nil {
  122. return Ipv4
  123. }
  124. return Default
  125. } else /* ipv6 */ {
  126. var tunnelled bool
  127. // Is our v6 is tunnelled?
  128. if o.RFC3964() || o.RFC6052() || o.RFC6145() {
  129. tunnelled = true
  130. }
  131. if !o.Routable() {
  132. return Default
  133. } else if o.RFC4380() {
  134. return Teredo
  135. } else if o.IP.To4() != nil {
  136. return Ipv4
  137. } else if tunnelled {
  138. // only prioritise ipv6 if we aren't tunnelling it.
  139. return Ipv6_weak
  140. }
  141. return Ipv6_strong
  142. }
  143. }
  144. // RFC1918: IPv4 Private networks (10.0.0.0/8, 192.168.0.0/16, 172.16.0.0/12)
  145. // RFC3849: IPv6 Documentation address (2001:0DB8::/32)
  146. // RFC3927: IPv4 Autoconfig (169.254.0.0/16)
  147. // RFC3964: IPv6 6to4 (2002::/16)
  148. // RFC4193: IPv6 unique local (FC00::/7)
  149. // RFC4380: IPv6 Teredo tunneling (2001::/32)
  150. // RFC4843: IPv6 ORCHID: (2001:10::/28)
  151. // RFC4862: IPv6 Autoconfig (FE80::/64)
  152. // RFC6052: IPv6 well known prefix (64:FF9B::/96)
  153. // RFC6145: IPv6 IPv4 translated address ::FFFF:0:0:0/96
  154. var rfc1918_10 = net.IPNet{IP: net.ParseIP("10.0.0.0"), Mask: net.CIDRMask(8, 32)}
  155. var rfc1918_192 = net.IPNet{IP: net.ParseIP("192.168.0.0"), Mask: net.CIDRMask(16, 32)}
  156. var rfc1918_172 = net.IPNet{IP: net.ParseIP("172.16.0.0"), Mask: net.CIDRMask(12, 32)}
  157. var rfc3849 = net.IPNet{IP: net.ParseIP("2001:0DB8::"), Mask: net.CIDRMask(32, 128)}
  158. var rfc3927 = net.IPNet{IP: net.ParseIP("169.254.0.0"), Mask: net.CIDRMask(16, 32)}
  159. var rfc3964 = net.IPNet{IP: net.ParseIP("2002::"), Mask: net.CIDRMask(16, 128)}
  160. var rfc4193 = net.IPNet{IP: net.ParseIP("FC00::"), Mask: net.CIDRMask(7, 128)}
  161. var rfc4380 = net.IPNet{IP: net.ParseIP("2001::"), Mask: net.CIDRMask(32, 128)}
  162. var rfc4843 = net.IPNet{IP: net.ParseIP("2001:10::"), Mask: net.CIDRMask(28, 128)}
  163. var rfc4862 = net.IPNet{IP: net.ParseIP("FE80::"), Mask: net.CIDRMask(64, 128)}
  164. var rfc6052 = net.IPNet{IP: net.ParseIP("64:FF9B::"), Mask: net.CIDRMask(96, 128)}
  165. var rfc6145 = net.IPNet{IP: net.ParseIP("::FFFF:0:0:0"), Mask: net.CIDRMask(96, 128)}
  166. var zero4 = net.IPNet{IP: net.ParseIP("0.0.0.0"), Mask: net.CIDRMask(8, 32)}
  167. func (na *NetAddress) RFC1918() bool {
  168. return rfc1918_10.Contains(na.IP) ||
  169. rfc1918_192.Contains(na.IP) ||
  170. rfc1918_172.Contains(na.IP)
  171. }
  172. func (na *NetAddress) RFC3849() bool { return rfc3849.Contains(na.IP) }
  173. func (na *NetAddress) RFC3927() bool { return rfc3927.Contains(na.IP) }
  174. func (na *NetAddress) RFC3964() bool { return rfc3964.Contains(na.IP) }
  175. func (na *NetAddress) RFC4193() bool { return rfc4193.Contains(na.IP) }
  176. func (na *NetAddress) RFC4380() bool { return rfc4380.Contains(na.IP) }
  177. func (na *NetAddress) RFC4843() bool { return rfc4843.Contains(na.IP) }
  178. func (na *NetAddress) RFC4862() bool { return rfc4862.Contains(na.IP) }
  179. func (na *NetAddress) RFC6052() bool { return rfc6052.Contains(na.IP) }
  180. func (na *NetAddress) RFC6145() bool { return rfc6145.Contains(na.IP) }