client.go 13 KB

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  1. package encoding
  2. import (
  3. "bytes"
  4. "context"
  5. "crypto/aes"
  6. "crypto/cipher"
  7. "crypto/md5"
  8. "crypto/rand"
  9. "crypto/sha256"
  10. "encoding/binary"
  11. "fmt"
  12. "hash"
  13. "hash/fnv"
  14. "io"
  15. "os"
  16. "strings"
  17. vmessaead "v2ray.com/core/proxy/vmess/aead"
  18. "golang.org/x/crypto/chacha20poly1305"
  19. "v2ray.com/core/common"
  20. "v2ray.com/core/common/bitmask"
  21. "v2ray.com/core/common/buf"
  22. "v2ray.com/core/common/crypto"
  23. "v2ray.com/core/common/dice"
  24. "v2ray.com/core/common/protocol"
  25. "v2ray.com/core/common/serial"
  26. "v2ray.com/core/proxy/vmess"
  27. )
  28. func hashTimestamp(h hash.Hash, t protocol.Timestamp) []byte {
  29. common.Must2(serial.WriteUint64(h, uint64(t)))
  30. common.Must2(serial.WriteUint64(h, uint64(t)))
  31. common.Must2(serial.WriteUint64(h, uint64(t)))
  32. common.Must2(serial.WriteUint64(h, uint64(t)))
  33. return h.Sum(nil)
  34. }
  35. // ClientSession stores connection session info for VMess client.
  36. type ClientSession struct {
  37. idHash protocol.IDHash
  38. requestBodyKey [16]byte
  39. requestBodyIV [16]byte
  40. responseBodyKey [16]byte
  41. responseBodyIV [16]byte
  42. responseReader io.Reader
  43. responseHeader byte
  44. isAEADRequest bool
  45. }
  46. // NewClientSession creates a new ClientSession.
  47. func NewClientSession(idHash protocol.IDHash, ctx context.Context) *ClientSession {
  48. randomBytes := make([]byte, 33) // 16 + 16 + 1
  49. common.Must2(rand.Read(randomBytes))
  50. session := &ClientSession{}
  51. session.isAEADRequest = false
  52. if ctxValueTestsEnabled := ctx.Value(vmess.TestsEnabled); ctxValueTestsEnabled != nil {
  53. testsEnabled := ctxValueTestsEnabled.(string)
  54. if strings.Contains(testsEnabled, "VMessAEAD") {
  55. session.isAEADRequest = true
  56. }
  57. }
  58. if vmessexp, vmessexp_found := os.LookupEnv("VMESSAEADEXPERIMENT"); vmessexp_found {
  59. if vmessexp == "y" {
  60. session.isAEADRequest = true
  61. }
  62. if vmessexp == "n" {
  63. session.isAEADRequest = false
  64. }
  65. }
  66. if session.isAEADRequest {
  67. fmt.Println("=======VMESSAEADEXPERIMENT ENABLED========")
  68. }
  69. copy(session.requestBodyKey[:], randomBytes[:16])
  70. copy(session.requestBodyIV[:], randomBytes[16:32])
  71. session.responseHeader = randomBytes[32]
  72. if !session.isAEADRequest {
  73. session.responseBodyKey = md5.Sum(session.requestBodyKey[:])
  74. session.responseBodyIV = md5.Sum(session.requestBodyIV[:])
  75. } else {
  76. BodyKey := sha256.Sum256(session.requestBodyKey[:])
  77. copy(session.responseBodyKey[:], BodyKey[:16])
  78. BodyIV := sha256.Sum256(session.requestBodyKey[:])
  79. copy(session.responseBodyIV[:], BodyIV[:16])
  80. }
  81. session.idHash = idHash
  82. return session
  83. }
  84. func (c *ClientSession) EncodeRequestHeader(header *protocol.RequestHeader, writer io.Writer) error {
  85. timestamp := protocol.NewTimestampGenerator(protocol.NowTime(), 30)()
  86. account := header.User.Account.(*vmess.MemoryAccount)
  87. if !c.isAEADRequest {
  88. idHash := c.idHash(account.AnyValidID().Bytes())
  89. common.Must2(serial.WriteUint64(idHash, uint64(timestamp)))
  90. common.Must2(writer.Write(idHash.Sum(nil)))
  91. }
  92. buffer := buf.New()
  93. defer buffer.Release()
  94. common.Must(buffer.WriteByte(Version))
  95. common.Must2(buffer.Write(c.requestBodyIV[:]))
  96. common.Must2(buffer.Write(c.requestBodyKey[:]))
  97. common.Must(buffer.WriteByte(c.responseHeader))
  98. common.Must(buffer.WriteByte(byte(header.Option)))
  99. padingLen := dice.Roll(16)
  100. security := byte(padingLen<<4) | byte(header.Security)
  101. common.Must2(buffer.Write([]byte{security, byte(0), byte(header.Command)}))
  102. if header.Command != protocol.RequestCommandMux {
  103. if err := addrParser.WriteAddressPort(buffer, header.Address, header.Port); err != nil {
  104. return newError("failed to writer address and port").Base(err)
  105. }
  106. }
  107. if padingLen > 0 {
  108. common.Must2(buffer.ReadFullFrom(rand.Reader, int32(padingLen)))
  109. }
  110. {
  111. fnv1a := fnv.New32a()
  112. common.Must2(fnv1a.Write(buffer.Bytes()))
  113. hashBytes := buffer.Extend(int32(fnv1a.Size()))
  114. fnv1a.Sum(hashBytes[:0])
  115. }
  116. if !c.isAEADRequest {
  117. iv := hashTimestamp(md5.New(), timestamp)
  118. aesStream := crypto.NewAesEncryptionStream(account.ID.CmdKey(), iv[:])
  119. aesStream.XORKeyStream(buffer.Bytes(), buffer.Bytes())
  120. common.Must2(writer.Write(buffer.Bytes()))
  121. } else {
  122. var fixedLengthCmdKey [16]byte
  123. copy(fixedLengthCmdKey[:], account.ID.CmdKey())
  124. vmessout := vmessaead.SealVMessAEADHeader(fixedLengthCmdKey, buffer.Bytes())
  125. common.Must2(io.Copy(writer, bytes.NewReader(vmessout)))
  126. }
  127. return nil
  128. }
  129. func (c *ClientSession) EncodeRequestBody(request *protocol.RequestHeader, writer io.Writer) buf.Writer {
  130. var sizeParser crypto.ChunkSizeEncoder = crypto.PlainChunkSizeParser{}
  131. if request.Option.Has(protocol.RequestOptionChunkMasking) {
  132. sizeParser = NewShakeSizeParser(c.requestBodyIV[:])
  133. }
  134. var padding crypto.PaddingLengthGenerator
  135. if request.Option.Has(protocol.RequestOptionGlobalPadding) {
  136. padding = sizeParser.(crypto.PaddingLengthGenerator)
  137. }
  138. switch request.Security {
  139. case protocol.SecurityType_NONE:
  140. if request.Option.Has(protocol.RequestOptionChunkStream) {
  141. if request.Command.TransferType() == protocol.TransferTypeStream {
  142. return crypto.NewChunkStreamWriter(sizeParser, writer)
  143. }
  144. auth := &crypto.AEADAuthenticator{
  145. AEAD: new(NoOpAuthenticator),
  146. NonceGenerator: crypto.GenerateEmptyBytes(),
  147. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  148. }
  149. return crypto.NewAuthenticationWriter(auth, sizeParser, writer, protocol.TransferTypePacket, padding)
  150. }
  151. return buf.NewWriter(writer)
  152. case protocol.SecurityType_LEGACY:
  153. aesStream := crypto.NewAesEncryptionStream(c.requestBodyKey[:], c.requestBodyIV[:])
  154. cryptionWriter := crypto.NewCryptionWriter(aesStream, writer)
  155. if request.Option.Has(protocol.RequestOptionChunkStream) {
  156. auth := &crypto.AEADAuthenticator{
  157. AEAD: new(FnvAuthenticator),
  158. NonceGenerator: crypto.GenerateEmptyBytes(),
  159. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  160. }
  161. return crypto.NewAuthenticationWriter(auth, sizeParser, cryptionWriter, request.Command.TransferType(), padding)
  162. }
  163. return &buf.SequentialWriter{Writer: cryptionWriter}
  164. case protocol.SecurityType_AES128_GCM:
  165. aead := crypto.NewAesGcm(c.requestBodyKey[:])
  166. auth := &crypto.AEADAuthenticator{
  167. AEAD: aead,
  168. NonceGenerator: GenerateChunkNonce(c.requestBodyIV[:], uint32(aead.NonceSize())),
  169. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  170. }
  171. return crypto.NewAuthenticationWriter(auth, sizeParser, writer, request.Command.TransferType(), padding)
  172. case protocol.SecurityType_CHACHA20_POLY1305:
  173. aead, err := chacha20poly1305.New(GenerateChacha20Poly1305Key(c.requestBodyKey[:]))
  174. common.Must(err)
  175. auth := &crypto.AEADAuthenticator{
  176. AEAD: aead,
  177. NonceGenerator: GenerateChunkNonce(c.requestBodyIV[:], uint32(aead.NonceSize())),
  178. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  179. }
  180. return crypto.NewAuthenticationWriter(auth, sizeParser, writer, request.Command.TransferType(), padding)
  181. default:
  182. panic("Unknown security type.")
  183. }
  184. }
  185. func (c *ClientSession) DecodeResponseHeader(reader io.Reader) (*protocol.ResponseHeader, error) {
  186. if !c.isAEADRequest {
  187. aesStream := crypto.NewAesDecryptionStream(c.responseBodyKey[:], c.responseBodyIV[:])
  188. c.responseReader = crypto.NewCryptionReader(aesStream, reader)
  189. } else {
  190. aeadResponseHeaderLengthEncryptionKey := vmessaead.KDF16(c.responseBodyKey[:], vmessaead.KDFSaltConst_AEADRespHeaderLenKey)
  191. aeadResponseHeaderLengthEncryptionIV := vmessaead.KDF(c.responseBodyIV[:], vmessaead.KDFSaltConst_AEADRespHeaderLenIV)[:12]
  192. aeadResponseHeaderLengthEncryptionKeyAESBlock := common.Must2(aes.NewCipher(aeadResponseHeaderLengthEncryptionKey)).(cipher.Block)
  193. aeadResponseHeaderLengthEncryptionAEAD := common.Must2(cipher.NewGCM(aeadResponseHeaderLengthEncryptionKeyAESBlock)).(cipher.AEAD)
  194. var aeadEncryptedResponseHeaderLength [18]byte
  195. var decryptedResponseHeaderLength int
  196. var decryptedResponseHeaderLengthBinaryDeserializeBuffer uint16
  197. if _, err := io.ReadFull(reader, aeadEncryptedResponseHeaderLength[:]); err != nil {
  198. return nil, newError("Unable to Read Header Len").Base(err)
  199. }
  200. if decryptedResponseHeaderLengthBinaryBuffer, err := aeadResponseHeaderLengthEncryptionAEAD.Open(nil, aeadResponseHeaderLengthEncryptionIV, aeadEncryptedResponseHeaderLength[:], nil); err != nil {
  201. return nil, newError("Failed To Decrypt Length").Base(err)
  202. } else {
  203. common.Must(binary.Read(bytes.NewReader(decryptedResponseHeaderLengthBinaryBuffer), binary.BigEndian, &decryptedResponseHeaderLengthBinaryDeserializeBuffer))
  204. decryptedResponseHeaderLength = int(decryptedResponseHeaderLengthBinaryDeserializeBuffer)
  205. }
  206. aeadResponseHeaderPayloadEncryptionKey := vmessaead.KDF16(c.responseBodyKey[:], vmessaead.KDFSaltConst_AEADRespHeaderPayloadKey)
  207. aeadResponseHeaderPayloadEncryptionIV := vmessaead.KDF(c.responseBodyIV[:], vmessaead.KDFSaltConst_AEADRespHeaderPayloadIV)[:12]
  208. aeadResponseHeaderPayloadEncryptionKeyAESBlock := common.Must2(aes.NewCipher(aeadResponseHeaderPayloadEncryptionKey)).(cipher.Block)
  209. aeadResponseHeaderPayloadEncryptionAEAD := common.Must2(cipher.NewGCM(aeadResponseHeaderPayloadEncryptionKeyAESBlock)).(cipher.AEAD)
  210. encryptedResponseHeaderBuffer := make([]byte, decryptedResponseHeaderLength+16)
  211. if _, err := io.ReadFull(reader, encryptedResponseHeaderBuffer); err != nil {
  212. return nil, newError("Unable to Read Header Data").Base(err)
  213. }
  214. if decryptedResponseHeaderBuffer, err := aeadResponseHeaderPayloadEncryptionAEAD.Open(nil, aeadResponseHeaderPayloadEncryptionIV, encryptedResponseHeaderBuffer, nil); err != nil {
  215. return nil, newError("Failed To Decrypt Payload").Base(err)
  216. } else {
  217. c.responseReader = bytes.NewReader(decryptedResponseHeaderBuffer)
  218. }
  219. }
  220. buffer := buf.StackNew()
  221. defer buffer.Release()
  222. if _, err := buffer.ReadFullFrom(c.responseReader, 4); err != nil {
  223. return nil, newError("failed to read response header").Base(err).AtWarning()
  224. }
  225. if buffer.Byte(0) != c.responseHeader {
  226. return nil, newError("unexpected response header. Expecting ", int(c.responseHeader), " but actually ", int(buffer.Byte(0)))
  227. }
  228. header := &protocol.ResponseHeader{
  229. Option: bitmask.Byte(buffer.Byte(1)),
  230. }
  231. if buffer.Byte(2) != 0 {
  232. cmdID := buffer.Byte(2)
  233. dataLen := int32(buffer.Byte(3))
  234. buffer.Clear()
  235. if _, err := buffer.ReadFullFrom(c.responseReader, dataLen); err != nil {
  236. return nil, newError("failed to read response command").Base(err)
  237. }
  238. command, err := UnmarshalCommand(cmdID, buffer.Bytes())
  239. if err == nil {
  240. header.Command = command
  241. }
  242. }
  243. if c.isAEADRequest {
  244. aesStream := crypto.NewAesDecryptionStream(c.responseBodyKey[:], c.responseBodyIV[:])
  245. c.responseReader = crypto.NewCryptionReader(aesStream, reader)
  246. }
  247. return header, nil
  248. }
  249. func (c *ClientSession) DecodeResponseBody(request *protocol.RequestHeader, reader io.Reader) buf.Reader {
  250. var sizeParser crypto.ChunkSizeDecoder = crypto.PlainChunkSizeParser{}
  251. if request.Option.Has(protocol.RequestOptionChunkMasking) {
  252. sizeParser = NewShakeSizeParser(c.responseBodyIV[:])
  253. }
  254. var padding crypto.PaddingLengthGenerator
  255. if request.Option.Has(protocol.RequestOptionGlobalPadding) {
  256. padding = sizeParser.(crypto.PaddingLengthGenerator)
  257. }
  258. switch request.Security {
  259. case protocol.SecurityType_NONE:
  260. if request.Option.Has(protocol.RequestOptionChunkStream) {
  261. if request.Command.TransferType() == protocol.TransferTypeStream {
  262. return crypto.NewChunkStreamReader(sizeParser, reader)
  263. }
  264. auth := &crypto.AEADAuthenticator{
  265. AEAD: new(NoOpAuthenticator),
  266. NonceGenerator: crypto.GenerateEmptyBytes(),
  267. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  268. }
  269. return crypto.NewAuthenticationReader(auth, sizeParser, reader, protocol.TransferTypePacket, padding)
  270. }
  271. return buf.NewReader(reader)
  272. case protocol.SecurityType_LEGACY:
  273. if request.Option.Has(protocol.RequestOptionChunkStream) {
  274. auth := &crypto.AEADAuthenticator{
  275. AEAD: new(FnvAuthenticator),
  276. NonceGenerator: crypto.GenerateEmptyBytes(),
  277. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  278. }
  279. return crypto.NewAuthenticationReader(auth, sizeParser, c.responseReader, request.Command.TransferType(), padding)
  280. }
  281. return buf.NewReader(c.responseReader)
  282. case protocol.SecurityType_AES128_GCM:
  283. aead := crypto.NewAesGcm(c.responseBodyKey[:])
  284. auth := &crypto.AEADAuthenticator{
  285. AEAD: aead,
  286. NonceGenerator: GenerateChunkNonce(c.responseBodyIV[:], uint32(aead.NonceSize())),
  287. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  288. }
  289. return crypto.NewAuthenticationReader(auth, sizeParser, reader, request.Command.TransferType(), padding)
  290. case protocol.SecurityType_CHACHA20_POLY1305:
  291. aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(c.responseBodyKey[:]))
  292. auth := &crypto.AEADAuthenticator{
  293. AEAD: aead,
  294. NonceGenerator: GenerateChunkNonce(c.responseBodyIV[:], uint32(aead.NonceSize())),
  295. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  296. }
  297. return crypto.NewAuthenticationReader(auth, sizeParser, reader, request.Command.TransferType(), padding)
  298. default:
  299. panic("Unknown security type.")
  300. }
  301. }
  302. func GenerateChunkNonce(nonce []byte, size uint32) crypto.BytesGenerator {
  303. c := append([]byte(nil), nonce...)
  304. count := uint16(0)
  305. return func() []byte {
  306. binary.BigEndian.PutUint16(c, count)
  307. count++
  308. return c[:size]
  309. }
  310. }