server.go 11 KB

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  1. package encoding
  2. import (
  3. "context"
  4. "crypto/aes"
  5. "crypto/cipher"
  6. "crypto/md5"
  7. "hash/fnv"
  8. "io"
  9. "sync"
  10. "time"
  11. "golang.org/x/crypto/chacha20poly1305"
  12. "v2ray.com/core/common/buf"
  13. "v2ray.com/core/common/crypto"
  14. "v2ray.com/core/common/errors"
  15. "v2ray.com/core/common/net"
  16. "v2ray.com/core/common/protocol"
  17. "v2ray.com/core/common/serial"
  18. "v2ray.com/core/proxy/vmess"
  19. )
  20. type sessionId struct {
  21. user [16]byte
  22. key [16]byte
  23. nonce [16]byte
  24. }
  25. type SessionHistory struct {
  26. sync.RWMutex
  27. cache map[sessionId]time.Time
  28. }
  29. func NewSessionHistory(ctx context.Context) *SessionHistory {
  30. h := &SessionHistory{
  31. cache: make(map[sessionId]time.Time, 128),
  32. }
  33. go h.run(ctx)
  34. return h
  35. }
  36. func (h *SessionHistory) add(session sessionId) {
  37. h.Lock()
  38. h.cache[session] = time.Now().Add(time.Minute * 3)
  39. h.Unlock()
  40. }
  41. func (h *SessionHistory) has(session sessionId) bool {
  42. h.RLock()
  43. defer h.RUnlock()
  44. if expire, found := h.cache[session]; found {
  45. return expire.After(time.Now())
  46. }
  47. return false
  48. }
  49. func (h *SessionHistory) run(ctx context.Context) {
  50. for {
  51. select {
  52. case <-ctx.Done():
  53. return
  54. case <-time.After(time.Second * 30):
  55. }
  56. session2Remove := make([]sessionId, 0, 16)
  57. now := time.Now()
  58. h.Lock()
  59. for session, expire := range h.cache {
  60. if expire.Before(now) {
  61. session2Remove = append(session2Remove, session)
  62. }
  63. }
  64. for _, session := range session2Remove {
  65. delete(h.cache, session)
  66. }
  67. h.Unlock()
  68. }
  69. }
  70. type ServerSession struct {
  71. userValidator protocol.UserValidator
  72. sessionHistory *SessionHistory
  73. requestBodyKey []byte
  74. requestBodyIV []byte
  75. responseBodyKey []byte
  76. responseBodyIV []byte
  77. responseHeader byte
  78. responseWriter io.Writer
  79. }
  80. // NewServerSession creates a new ServerSession, using the given UserValidator.
  81. // The ServerSession instance doesn't take ownership of the validator.
  82. func NewServerSession(validator protocol.UserValidator, sessionHistory *SessionHistory) *ServerSession {
  83. return &ServerSession{
  84. userValidator: validator,
  85. sessionHistory: sessionHistory,
  86. }
  87. }
  88. func (v *ServerSession) DecodeRequestHeader(reader io.Reader) (*protocol.RequestHeader, error) {
  89. buffer := make([]byte, 512)
  90. _, err := io.ReadFull(reader, buffer[:protocol.IDBytesLen])
  91. if err != nil {
  92. return nil, errors.Base(err).Message("VMess|Server: Failed to read request header.")
  93. }
  94. user, timestamp, valid := v.userValidator.Get(buffer[:protocol.IDBytesLen])
  95. if !valid {
  96. return nil, errors.New("VMess|Server: Invalid user.")
  97. }
  98. timestampHash := md5.New()
  99. timestampHash.Write(hashTimestamp(timestamp))
  100. iv := timestampHash.Sum(nil)
  101. account, err := user.GetTypedAccount()
  102. if err != nil {
  103. return nil, errors.Base(err).Message("VMess|Server: Failed to get user account.")
  104. }
  105. vmessAccount := account.(*vmess.InternalAccount)
  106. aesStream := crypto.NewAesDecryptionStream(vmessAccount.ID.CmdKey(), iv)
  107. decryptor := crypto.NewCryptionReader(aesStream, reader)
  108. nBytes, err := io.ReadFull(decryptor, buffer[:41])
  109. if err != nil {
  110. return nil, errors.Base(err).Message("VMess|Server: Failed to read request header.")
  111. }
  112. bufferLen := nBytes
  113. request := &protocol.RequestHeader{
  114. User: user,
  115. Version: buffer[0],
  116. }
  117. if request.Version != Version {
  118. return nil, errors.New("VMess|Server: Invalid protocol version ", request.Version)
  119. }
  120. v.requestBodyIV = append([]byte(nil), buffer[1:17]...) // 16 bytes
  121. v.requestBodyKey = append([]byte(nil), buffer[17:33]...) // 16 bytes
  122. var sid sessionId
  123. copy(sid.user[:], vmessAccount.ID.Bytes())
  124. copy(sid.key[:], v.requestBodyKey)
  125. copy(sid.nonce[:], v.requestBodyIV)
  126. if v.sessionHistory.has(sid) {
  127. return nil, errors.New("VMess|Server: Duplicated session id. Possibly under reply attack.")
  128. }
  129. v.sessionHistory.add(sid)
  130. v.responseHeader = buffer[33] // 1 byte
  131. request.Option = protocol.RequestOption(buffer[34]) // 1 byte
  132. padingLen := int(buffer[35] >> 4)
  133. request.Security = protocol.NormSecurity(protocol.Security(buffer[35] & 0x0F))
  134. // 1 bytes reserved
  135. request.Command = protocol.RequestCommand(buffer[37])
  136. request.Port = net.PortFromBytes(buffer[38:40])
  137. switch buffer[40] {
  138. case AddrTypeIPv4:
  139. _, err = io.ReadFull(decryptor, buffer[41:45]) // 4 bytes
  140. bufferLen += 4
  141. if err != nil {
  142. return nil, errors.Base(err).Message("VMess|Server: Failed to read IPv4.")
  143. }
  144. request.Address = net.IPAddress(buffer[41:45])
  145. case AddrTypeIPv6:
  146. _, err = io.ReadFull(decryptor, buffer[41:57]) // 16 bytes
  147. bufferLen += 16
  148. if err != nil {
  149. return nil, errors.Base(err).Message("VMess|Server: Failed to read IPv6 address.")
  150. }
  151. request.Address = net.IPAddress(buffer[41:57])
  152. case AddrTypeDomain:
  153. _, err = io.ReadFull(decryptor, buffer[41:42])
  154. if err != nil {
  155. return nil, errors.Base(err).Message("VMess:Server: Failed to read domain.")
  156. }
  157. domainLength := int(buffer[41])
  158. if domainLength == 0 {
  159. return nil, errors.New("VMess|Server: Zero length domain.")
  160. }
  161. _, err = io.ReadFull(decryptor, buffer[42:42+domainLength])
  162. if err != nil {
  163. return nil, errors.Base(err).Message("VMess|Server: Failed to read domain.")
  164. }
  165. bufferLen += 1 + domainLength
  166. request.Address = net.DomainAddress(string(buffer[42 : 42+domainLength]))
  167. }
  168. if padingLen > 0 {
  169. _, err = io.ReadFull(decryptor, buffer[bufferLen:bufferLen+padingLen])
  170. if err != nil {
  171. return nil, errors.Base(err).Message("VMess|Server: Failed to read padding.")
  172. }
  173. bufferLen += padingLen
  174. }
  175. _, err = io.ReadFull(decryptor, buffer[bufferLen:bufferLen+4])
  176. if err != nil {
  177. return nil, errors.Base(err).Message("VMess|Server: Failed to read checksum.")
  178. }
  179. fnv1a := fnv.New32a()
  180. fnv1a.Write(buffer[:bufferLen])
  181. actualHash := fnv1a.Sum32()
  182. expectedHash := serial.BytesToUint32(buffer[bufferLen : bufferLen+4])
  183. if actualHash != expectedHash {
  184. return nil, errors.New("VMess|Server: Invalid auth.")
  185. }
  186. if request.Address == nil {
  187. return nil, errors.New("VMess|Server: Invalid remote address.")
  188. }
  189. return request, nil
  190. }
  191. func (v *ServerSession) DecodeRequestBody(request *protocol.RequestHeader, reader io.Reader) buf.Reader {
  192. var authReader io.Reader
  193. sizeMask := serial.BytesToUint16(v.requestBodyKey[:2])
  194. if request.Security.Is(protocol.SecurityType_NONE) {
  195. if request.Option.Has(protocol.RequestOptionChunkStream) {
  196. auth := &crypto.AEADAuthenticator{
  197. AEAD: NoOpAuthenticator{},
  198. NonceGenerator: crypto.NoOpBytesGenerator{},
  199. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  200. }
  201. authReader = crypto.NewAuthenticationReader(auth, reader, sizeMask)
  202. } else {
  203. authReader = reader
  204. }
  205. } else if request.Security.Is(protocol.SecurityType_LEGACY) {
  206. aesStream := crypto.NewAesDecryptionStream(v.requestBodyKey, v.requestBodyIV)
  207. cryptionReader := crypto.NewCryptionReader(aesStream, reader)
  208. if request.Option.Has(protocol.RequestOptionChunkStream) {
  209. auth := &crypto.AEADAuthenticator{
  210. AEAD: new(FnvAuthenticator),
  211. NonceGenerator: crypto.NoOpBytesGenerator{},
  212. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  213. }
  214. authReader = crypto.NewAuthenticationReader(auth, cryptionReader, sizeMask)
  215. } else {
  216. authReader = cryptionReader
  217. }
  218. } else if request.Security.Is(protocol.SecurityType_AES128_GCM) {
  219. block, _ := aes.NewCipher(v.requestBodyKey)
  220. aead, _ := cipher.NewGCM(block)
  221. auth := &crypto.AEADAuthenticator{
  222. AEAD: aead,
  223. NonceGenerator: &ChunkNonceGenerator{
  224. Nonce: append([]byte(nil), v.requestBodyIV...),
  225. Size: aead.NonceSize(),
  226. },
  227. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  228. }
  229. authReader = crypto.NewAuthenticationReader(auth, reader, sizeMask)
  230. } else if request.Security.Is(protocol.SecurityType_CHACHA20_POLY1305) {
  231. aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(v.requestBodyKey))
  232. auth := &crypto.AEADAuthenticator{
  233. AEAD: aead,
  234. NonceGenerator: &ChunkNonceGenerator{
  235. Nonce: append([]byte(nil), v.requestBodyIV...),
  236. Size: aead.NonceSize(),
  237. },
  238. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  239. }
  240. authReader = crypto.NewAuthenticationReader(auth, reader, sizeMask)
  241. }
  242. return buf.NewReader(authReader)
  243. }
  244. func (v *ServerSession) EncodeResponseHeader(header *protocol.ResponseHeader, writer io.Writer) {
  245. responseBodyKey := md5.Sum(v.requestBodyKey)
  246. responseBodyIV := md5.Sum(v.requestBodyIV)
  247. v.responseBodyKey = responseBodyKey[:]
  248. v.responseBodyIV = responseBodyIV[:]
  249. aesStream := crypto.NewAesEncryptionStream(v.responseBodyKey, v.responseBodyIV)
  250. encryptionWriter := crypto.NewCryptionWriter(aesStream, writer)
  251. v.responseWriter = encryptionWriter
  252. encryptionWriter.Write([]byte{v.responseHeader, byte(header.Option)})
  253. err := MarshalCommand(header.Command, encryptionWriter)
  254. if err != nil {
  255. encryptionWriter.Write([]byte{0x00, 0x00})
  256. }
  257. }
  258. func (v *ServerSession) EncodeResponseBody(request *protocol.RequestHeader, writer io.Writer) buf.Writer {
  259. var authWriter io.Writer
  260. sizeMask := serial.BytesToUint16(v.responseBodyKey[:2])
  261. if request.Security.Is(protocol.SecurityType_NONE) {
  262. if request.Option.Has(protocol.RequestOptionChunkStream) {
  263. auth := &crypto.AEADAuthenticator{
  264. AEAD: new(FnvAuthenticator),
  265. NonceGenerator: crypto.NoOpBytesGenerator{},
  266. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  267. }
  268. authWriter = crypto.NewAuthenticationWriter(auth, writer, sizeMask)
  269. } else {
  270. authWriter = writer
  271. }
  272. } else if request.Security.Is(protocol.SecurityType_LEGACY) {
  273. if request.Option.Has(protocol.RequestOptionChunkStream) {
  274. auth := &crypto.AEADAuthenticator{
  275. AEAD: new(FnvAuthenticator),
  276. NonceGenerator: crypto.NoOpBytesGenerator{},
  277. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  278. }
  279. authWriter = crypto.NewAuthenticationWriter(auth, v.responseWriter, sizeMask)
  280. } else {
  281. authWriter = v.responseWriter
  282. }
  283. } else if request.Security.Is(protocol.SecurityType_AES128_GCM) {
  284. block, _ := aes.NewCipher(v.responseBodyKey)
  285. aead, _ := cipher.NewGCM(block)
  286. auth := &crypto.AEADAuthenticator{
  287. AEAD: aead,
  288. NonceGenerator: &ChunkNonceGenerator{
  289. Nonce: append([]byte(nil), v.responseBodyIV...),
  290. Size: aead.NonceSize(),
  291. },
  292. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  293. }
  294. authWriter = crypto.NewAuthenticationWriter(auth, writer, sizeMask)
  295. } else if request.Security.Is(protocol.SecurityType_CHACHA20_POLY1305) {
  296. aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(v.responseBodyKey))
  297. auth := &crypto.AEADAuthenticator{
  298. AEAD: aead,
  299. NonceGenerator: &ChunkNonceGenerator{
  300. Nonce: append([]byte(nil), v.responseBodyIV...),
  301. Size: aead.NonceSize(),
  302. },
  303. AdditionalDataGenerator: crypto.NoOpBytesGenerator{},
  304. }
  305. authWriter = crypto.NewAuthenticationWriter(auth, writer, sizeMask)
  306. }
  307. return buf.NewWriter(authWriter)
  308. }