netpackager.go 9.7 KB

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  1. package common
  2. import (
  3. "bytes"
  4. "encoding/binary"
  5. "encoding/json"
  6. "errors"
  7. "io"
  8. "io/ioutil"
  9. "net"
  10. "strconv"
  11. "strings"
  12. )
  13. type NetPackager interface {
  14. Pack(writer io.Writer) (err error)
  15. UnPack(reader io.Reader) (err error)
  16. }
  17. type BasePackager struct {
  18. Length uint16
  19. Content []byte
  20. }
  21. func (Self *BasePackager) NewPac(contents ...interface{}) (err error) {
  22. Self.clean()
  23. for _, content := range contents {
  24. switch content.(type) {
  25. case nil:
  26. Self.Content = Self.Content[:0]
  27. case []byte:
  28. err = Self.appendByte(content.([]byte))
  29. case string:
  30. err = Self.appendByte([]byte(content.(string)))
  31. if err != nil {
  32. return
  33. }
  34. err = Self.appendByte([]byte(CONN_DATA_SEQ))
  35. default:
  36. err = Self.marshal(content)
  37. }
  38. }
  39. Self.setLength()
  40. if Self.Length > MAXIMUM_SEGMENT_SIZE {
  41. err = errors.New("mux:packer: newpack content segment too large")
  42. }
  43. return
  44. }
  45. func (Self *BasePackager) appendByte(data []byte) (err error) {
  46. m := len(Self.Content)
  47. n := m + len(data)
  48. if n <= cap(Self.Content) {
  49. Self.Content = Self.Content[0:n] // grow the length for copy
  50. copy(Self.Content[m:n], data)
  51. return nil
  52. } else {
  53. return errors.New("pack content too large")
  54. }
  55. }
  56. //似乎这里涉及到父类作用域问题,当子类调用父类的方法时,其struct仅仅为父类的
  57. func (Self *BasePackager) Pack(writer io.Writer) (err error) {
  58. err = binary.Write(writer, binary.LittleEndian, Self.Length)
  59. if err != nil {
  60. return
  61. }
  62. err = binary.Write(writer, binary.LittleEndian, Self.Content)
  63. return
  64. }
  65. //Unpack 会导致传入的数字类型转化成float64!!
  66. //主要原因是json unmarshal并未传入正确的数据类型
  67. func (Self *BasePackager) UnPack(reader io.Reader) (n uint16, err error) {
  68. Self.clean()
  69. n += 2 // uint16
  70. err = binary.Read(reader, binary.LittleEndian, &Self.Length)
  71. if err != nil {
  72. return
  73. }
  74. if int(Self.Length) > cap(Self.Content) {
  75. err = errors.New("unpack err, content length too large")
  76. return
  77. }
  78. if Self.Length > MAXIMUM_SEGMENT_SIZE {
  79. err = errors.New("mux:packer: unpack content segment too large")
  80. return
  81. }
  82. Self.Content = Self.Content[:int(Self.Length)]
  83. //n, err := io.ReadFull(reader, Self.Content)
  84. //if n != int(Self.Length) {
  85. // err = io.ErrUnexpectedEOF
  86. //}
  87. err = binary.Read(reader, binary.LittleEndian, Self.Content)
  88. n += Self.Length
  89. return
  90. }
  91. func (Self *BasePackager) marshal(content interface{}) (err error) {
  92. tmp, err := json.Marshal(content)
  93. if err != nil {
  94. return err
  95. }
  96. err = Self.appendByte(tmp)
  97. return
  98. }
  99. func (Self *BasePackager) Unmarshal(content interface{}) (err error) {
  100. err = json.Unmarshal(Self.Content, content)
  101. if err != nil {
  102. return err
  103. }
  104. return
  105. }
  106. func (Self *BasePackager) setLength() {
  107. Self.Length = uint16(len(Self.Content))
  108. return
  109. }
  110. func (Self *BasePackager) clean() {
  111. Self.Length = 0
  112. Self.Content = Self.Content[:0] // reset length
  113. }
  114. func (Self *BasePackager) Split() (strList []string) {
  115. n := bytes.IndexByte(Self.Content, 0)
  116. strList = strings.Split(string(Self.Content[:n]), CONN_DATA_SEQ)
  117. strList = strList[0 : len(strList)-1]
  118. return
  119. }
  120. type ConnPackager struct {
  121. // Todo
  122. ConnType uint8
  123. BasePackager
  124. }
  125. func (Self *ConnPackager) NewPac(connType uint8, content ...interface{}) (err error) {
  126. Self.ConnType = connType
  127. err = Self.BasePackager.NewPac(content...)
  128. return
  129. }
  130. func (Self *ConnPackager) Pack(writer io.Writer) (err error) {
  131. err = binary.Write(writer, binary.LittleEndian, Self.ConnType)
  132. if err != nil {
  133. return
  134. }
  135. err = Self.BasePackager.Pack(writer)
  136. return
  137. }
  138. func (Self *ConnPackager) UnPack(reader io.Reader) (n uint16, err error) {
  139. err = binary.Read(reader, binary.LittleEndian, &Self.ConnType)
  140. if err != nil && err != io.EOF {
  141. return
  142. }
  143. n, err = Self.BasePackager.UnPack(reader)
  144. n += 2
  145. return
  146. }
  147. type MuxPackager struct {
  148. Flag uint8
  149. Id int32
  150. Window uint32
  151. ReadLength uint32
  152. BasePackager
  153. }
  154. func (Self *MuxPackager) NewPac(flag uint8, id int32, content ...interface{}) (err error) {
  155. Self.Flag = flag
  156. Self.Id = id
  157. switch flag {
  158. case MUX_PING_FLAG, MUX_PING_RETURN, MUX_NEW_MSG, MUX_NEW_MSG_PART:
  159. Self.Content = WindowBuff.Get()
  160. err = Self.BasePackager.NewPac(content...)
  161. //logs.Warn(Self.Length, string(Self.Content))
  162. case MUX_MSG_SEND_OK:
  163. // MUX_MSG_SEND_OK contains two data
  164. switch content[0].(type) {
  165. case int:
  166. Self.Window = uint32(content[0].(int))
  167. case uint32:
  168. Self.Window = content[0].(uint32)
  169. }
  170. switch content[1].(type) {
  171. case int:
  172. Self.ReadLength = uint32(content[1].(int))
  173. case uint32:
  174. Self.ReadLength = content[1].(uint32)
  175. }
  176. }
  177. return
  178. }
  179. func (Self *MuxPackager) Pack(writer io.Writer) (err error) {
  180. err = binary.Write(writer, binary.LittleEndian, Self.Flag)
  181. if err != nil {
  182. return
  183. }
  184. err = binary.Write(writer, binary.LittleEndian, Self.Id)
  185. if err != nil {
  186. return
  187. }
  188. switch Self.Flag {
  189. case MUX_NEW_MSG, MUX_NEW_MSG_PART, MUX_PING_FLAG, MUX_PING_RETURN:
  190. err = Self.BasePackager.Pack(writer)
  191. WindowBuff.Put(Self.Content)
  192. case MUX_MSG_SEND_OK:
  193. err = binary.Write(writer, binary.LittleEndian, Self.Window)
  194. if err != nil {
  195. return
  196. }
  197. err = binary.Write(writer, binary.LittleEndian, Self.ReadLength)
  198. }
  199. return
  200. }
  201. func (Self *MuxPackager) UnPack(reader io.Reader) (n uint16, err error) {
  202. err = binary.Read(reader, binary.LittleEndian, &Self.Flag)
  203. if err != nil {
  204. return
  205. }
  206. err = binary.Read(reader, binary.LittleEndian, &Self.Id)
  207. if err != nil {
  208. return
  209. }
  210. switch Self.Flag {
  211. case MUX_NEW_MSG, MUX_NEW_MSG_PART, MUX_PING_FLAG, MUX_PING_RETURN:
  212. Self.Content = WindowBuff.Get() // need get a window buf from pool
  213. Self.BasePackager.clean() // also clean the content
  214. n, err = Self.BasePackager.UnPack(reader)
  215. //logs.Warn("unpack", Self.Length, string(Self.Content))
  216. case MUX_MSG_SEND_OK:
  217. err = binary.Read(reader, binary.LittleEndian, &Self.Window)
  218. if err != nil {
  219. return
  220. }
  221. n += 4 // uint32
  222. err = binary.Read(reader, binary.LittleEndian, &Self.ReadLength)
  223. n += 4 // uint32
  224. }
  225. n += 5 //uint8 int32
  226. return
  227. }
  228. const (
  229. ipV4 = 1
  230. domainName = 3
  231. ipV6 = 4
  232. )
  233. type UDPHeader struct {
  234. Rsv uint16
  235. Frag uint8
  236. Addr *Addr
  237. }
  238. func NewUDPHeader(rsv uint16, frag uint8, addr *Addr) *UDPHeader {
  239. return &UDPHeader{
  240. Rsv: rsv,
  241. Frag: frag,
  242. Addr: addr,
  243. }
  244. }
  245. type Addr struct {
  246. Type uint8
  247. Host string
  248. Port uint16
  249. }
  250. func (addr *Addr) String() string {
  251. return net.JoinHostPort(addr.Host, strconv.Itoa(int(addr.Port)))
  252. }
  253. func (addr *Addr) Decode(b []byte) error {
  254. addr.Type = b[0]
  255. pos := 1
  256. switch addr.Type {
  257. case ipV4:
  258. addr.Host = net.IP(b[pos : pos+net.IPv4len]).String()
  259. pos += net.IPv4len
  260. case ipV6:
  261. addr.Host = net.IP(b[pos : pos+net.IPv6len]).String()
  262. pos += net.IPv6len
  263. case domainName:
  264. addrlen := int(b[pos])
  265. pos++
  266. addr.Host = string(b[pos : pos+addrlen])
  267. pos += addrlen
  268. default:
  269. return errors.New("decode error")
  270. }
  271. addr.Port = binary.BigEndian.Uint16(b[pos:])
  272. return nil
  273. }
  274. func (addr *Addr) Encode(b []byte) (int, error) {
  275. b[0] = addr.Type
  276. pos := 1
  277. switch addr.Type {
  278. case ipV4:
  279. ip4 := net.ParseIP(addr.Host).To4()
  280. if ip4 == nil {
  281. ip4 = net.IPv4zero.To4()
  282. }
  283. pos += copy(b[pos:], ip4)
  284. case domainName:
  285. b[pos] = byte(len(addr.Host))
  286. pos++
  287. pos += copy(b[pos:], []byte(addr.Host))
  288. case ipV6:
  289. ip16 := net.ParseIP(addr.Host).To16()
  290. if ip16 == nil {
  291. ip16 = net.IPv6zero.To16()
  292. }
  293. pos += copy(b[pos:], ip16)
  294. default:
  295. b[0] = ipV4
  296. copy(b[pos:pos+4], net.IPv4zero.To4())
  297. pos += 4
  298. }
  299. binary.BigEndian.PutUint16(b[pos:], addr.Port)
  300. pos += 2
  301. return pos, nil
  302. }
  303. func (h *UDPHeader) Write(w io.Writer) error {
  304. b := BufPoolUdp.Get().([]byte)
  305. defer BufPoolUdp.Put(b)
  306. binary.BigEndian.PutUint16(b[:2], h.Rsv)
  307. b[2] = h.Frag
  308. addr := h.Addr
  309. if addr == nil {
  310. addr = &Addr{}
  311. }
  312. length, _ := addr.Encode(b[3:])
  313. _, err := w.Write(b[:3+length])
  314. return err
  315. }
  316. type UDPDatagram struct {
  317. Header *UDPHeader
  318. Data []byte
  319. }
  320. func ReadUDPDatagram(r io.Reader) (*UDPDatagram, error) {
  321. b := BufPoolUdp.Get().([]byte)
  322. defer BufPoolUdp.Put(b)
  323. // when r is a streaming (such as TCP connection), we may read more than the required data,
  324. // but we don't know how to handle it. So we use io.ReadFull to instead of io.ReadAtLeast
  325. // to make sure that no redundant data will be discarded.
  326. n, err := io.ReadFull(r, b[:5])
  327. if err != nil {
  328. return nil, err
  329. }
  330. header := &UDPHeader{
  331. Rsv: binary.BigEndian.Uint16(b[:2]),
  332. Frag: b[2],
  333. }
  334. atype := b[3]
  335. hlen := 0
  336. switch atype {
  337. case ipV4:
  338. hlen = 10
  339. case ipV6:
  340. hlen = 22
  341. case domainName:
  342. hlen = 7 + int(b[4])
  343. default:
  344. return nil, errors.New("addr not support")
  345. }
  346. dlen := int(header.Rsv)
  347. if dlen == 0 { // standard SOCKS5 UDP datagram
  348. extra, err := ioutil.ReadAll(r) // we assume no redundant data
  349. if err != nil {
  350. return nil, err
  351. }
  352. copy(b[n:], extra)
  353. n += len(extra) // total length
  354. dlen = n - hlen // data length
  355. } else { // extended feature, for UDP over TCP, using reserved field as data length
  356. if _, err := io.ReadFull(r, b[n:hlen+dlen]); err != nil {
  357. return nil, err
  358. }
  359. n = hlen + dlen
  360. }
  361. header.Addr = new(Addr)
  362. if err := header.Addr.Decode(b[3:hlen]); err != nil {
  363. return nil, err
  364. }
  365. data := make([]byte, dlen)
  366. copy(data, b[hlen:n])
  367. d := &UDPDatagram{
  368. Header: header,
  369. Data: data,
  370. }
  371. return d, nil
  372. }
  373. func NewUDPDatagram(header *UDPHeader, data []byte) *UDPDatagram {
  374. return &UDPDatagram{
  375. Header: header,
  376. Data: data,
  377. }
  378. }
  379. func (d *UDPDatagram) Write(w io.Writer) error {
  380. h := d.Header
  381. if h == nil {
  382. h = &UDPHeader{}
  383. }
  384. buf := bytes.Buffer{}
  385. if err := h.Write(&buf); err != nil {
  386. return err
  387. }
  388. if _, err := buf.Write(d.Data); err != nil {
  389. return err
  390. }
  391. _, err := buf.WriteTo(w)
  392. return err
  393. }
  394. func ToSocksAddr(addr net.Addr) *Addr {
  395. host := "0.0.0.0"
  396. port := 0
  397. if addr != nil {
  398. h, p, _ := net.SplitHostPort(addr.String())
  399. host = h
  400. port, _ = strconv.Atoi(p)
  401. }
  402. return &Addr{
  403. Type: ipV4,
  404. Host: host,
  405. Port: uint16(port),
  406. }
  407. }