server.go 18 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499
  1. package encoding
  2. import (
  3. "bytes"
  4. "crypto/aes"
  5. "crypto/cipher"
  6. "crypto/md5"
  7. "crypto/sha256"
  8. "encoding/binary"
  9. "hash/fnv"
  10. "io"
  11. "io/ioutil"
  12. "sync"
  13. "time"
  14. "golang.org/x/crypto/chacha20poly1305"
  15. "github.com/v2fly/v2ray-core/v4/common"
  16. "github.com/v2fly/v2ray-core/v4/common/bitmask"
  17. "github.com/v2fly/v2ray-core/v4/common/buf"
  18. "github.com/v2fly/v2ray-core/v4/common/crypto"
  19. "github.com/v2fly/v2ray-core/v4/common/dice"
  20. "github.com/v2fly/v2ray-core/v4/common/net"
  21. "github.com/v2fly/v2ray-core/v4/common/protocol"
  22. "github.com/v2fly/v2ray-core/v4/common/task"
  23. "github.com/v2fly/v2ray-core/v4/proxy/vmess"
  24. vmessaead "github.com/v2fly/v2ray-core/v4/proxy/vmess/aead"
  25. )
  26. type sessionID struct {
  27. user [16]byte
  28. key [16]byte
  29. nonce [16]byte
  30. }
  31. // SessionHistory keeps track of historical session ids, to prevent replay attacks.
  32. type SessionHistory struct {
  33. sync.RWMutex
  34. cache map[sessionID]time.Time
  35. task *task.Periodic
  36. }
  37. // NewSessionHistory creates a new SessionHistory object.
  38. func NewSessionHistory() *SessionHistory {
  39. h := &SessionHistory{
  40. cache: make(map[sessionID]time.Time, 128),
  41. }
  42. h.task = &task.Periodic{
  43. Interval: time.Second * 30,
  44. Execute: h.removeExpiredEntries,
  45. }
  46. return h
  47. }
  48. // Close implements common.Closable.
  49. func (h *SessionHistory) Close() error {
  50. return h.task.Close()
  51. }
  52. func (h *SessionHistory) addIfNotExits(session sessionID) bool {
  53. h.Lock()
  54. if expire, found := h.cache[session]; found && expire.After(time.Now()) {
  55. h.Unlock()
  56. return false
  57. }
  58. h.cache[session] = time.Now().Add(time.Minute * 3)
  59. h.Unlock()
  60. common.Must(h.task.Start())
  61. return true
  62. }
  63. func (h *SessionHistory) removeExpiredEntries() error {
  64. now := time.Now()
  65. h.Lock()
  66. defer h.Unlock()
  67. if len(h.cache) == 0 {
  68. return newError("nothing to do")
  69. }
  70. for session, expire := range h.cache {
  71. if expire.Before(now) {
  72. delete(h.cache, session)
  73. }
  74. }
  75. if len(h.cache) == 0 {
  76. h.cache = make(map[sessionID]time.Time, 128)
  77. }
  78. return nil
  79. }
  80. // ServerSession keeps information for a session in VMess server.
  81. type ServerSession struct {
  82. userValidator *vmess.TimedUserValidator
  83. sessionHistory *SessionHistory
  84. requestBodyKey [16]byte
  85. requestBodyIV [16]byte
  86. responseBodyKey [16]byte
  87. responseBodyIV [16]byte
  88. responseWriter io.Writer
  89. responseHeader byte
  90. isAEADRequest bool
  91. isAEADForced bool
  92. }
  93. // NewServerSession creates a new ServerSession, using the given UserValidator.
  94. // The ServerSession instance doesn't take ownership of the validator.
  95. func NewServerSession(validator *vmess.TimedUserValidator, sessionHistory *SessionHistory) *ServerSession {
  96. return &ServerSession{
  97. userValidator: validator,
  98. sessionHistory: sessionHistory,
  99. }
  100. }
  101. // SetAEADForced sets isAEADForced for a ServerSession.
  102. func (s *ServerSession) SetAEADForced(isAEADForced bool) {
  103. s.isAEADForced = isAEADForced
  104. }
  105. func parseSecurityType(b byte) protocol.SecurityType {
  106. if _, f := protocol.SecurityType_name[int32(b)]; f {
  107. st := protocol.SecurityType(b)
  108. // For backward compatibility.
  109. if st == protocol.SecurityType_UNKNOWN {
  110. st = protocol.SecurityType_LEGACY
  111. }
  112. return st
  113. }
  114. return protocol.SecurityType_UNKNOWN
  115. }
  116. // DecodeRequestHeader decodes and returns (if successful) a RequestHeader from an input stream.
  117. func (s *ServerSession) DecodeRequestHeader(reader io.Reader) (*protocol.RequestHeader, error) {
  118. buffer := buf.New()
  119. behaviorRand := dice.NewDeterministicDice(int64(s.userValidator.GetBehaviorSeed()))
  120. BaseDrainSize := behaviorRand.Roll(3266)
  121. RandDrainMax := behaviorRand.Roll(64) + 1
  122. RandDrainRolled := dice.Roll(RandDrainMax)
  123. DrainSize := BaseDrainSize + 16 + 38 + RandDrainRolled
  124. readSizeRemain := DrainSize
  125. drainConnection := func(e error) error {
  126. // We read a deterministic generated length of data before closing the connection to offset padding read pattern
  127. readSizeRemain -= int(buffer.Len())
  128. if readSizeRemain > 0 {
  129. err := s.DrainConnN(reader, readSizeRemain)
  130. if err != nil {
  131. return newError("failed to drain connection DrainSize = ", BaseDrainSize, " ", RandDrainMax, " ", RandDrainRolled).Base(err).Base(e)
  132. }
  133. return newError("connection drained DrainSize = ", BaseDrainSize, " ", RandDrainMax, " ", RandDrainRolled).Base(e)
  134. }
  135. return e
  136. }
  137. defer func() {
  138. buffer.Release()
  139. }()
  140. if _, err := buffer.ReadFullFrom(reader, protocol.IDBytesLen); err != nil {
  141. return nil, newError("failed to read request header").Base(err)
  142. }
  143. var decryptor io.Reader
  144. var vmessAccount *vmess.MemoryAccount
  145. user, foundAEAD, errorAEAD := s.userValidator.GetAEAD(buffer.Bytes())
  146. var fixedSizeAuthID [16]byte
  147. copy(fixedSizeAuthID[:], buffer.Bytes())
  148. switch {
  149. case foundAEAD:
  150. vmessAccount = user.Account.(*vmess.MemoryAccount)
  151. var fixedSizeCmdKey [16]byte
  152. copy(fixedSizeCmdKey[:], vmessAccount.ID.CmdKey())
  153. aeadData, shouldDrain, bytesRead, errorReason := vmessaead.OpenVMessAEADHeader(fixedSizeCmdKey, fixedSizeAuthID, reader)
  154. if errorReason != nil {
  155. if shouldDrain {
  156. readSizeRemain -= bytesRead
  157. return nil, drainConnection(newError("AEAD read failed").Base(errorReason))
  158. }
  159. return nil, drainConnection(newError("AEAD read failed, drain skipped").Base(errorReason))
  160. }
  161. decryptor = bytes.NewReader(aeadData)
  162. s.isAEADRequest = true
  163. case errorAEAD == vmessaead.ErrNotFound:
  164. userLegacy, timestamp, valid, userValidationError := s.userValidator.Get(buffer.Bytes())
  165. if !valid || userValidationError != nil {
  166. return nil, drainConnection(newError("invalid user").Base(userValidationError))
  167. }
  168. if s.isAEADForced {
  169. return nil, drainConnection(newError("invalid user: VMessAEAD is enforced and a non VMessAEAD connection is received. You can still disable this security feature with environment variable v2ray.vmess.aead.forced = false . You will not be able to enable legacy header workaround in the future."))
  170. }
  171. newError("Critical Warning: potentially invalid user: a non VMessAEAD connection is received. From 2022 Jan 1st, this kind of connection will be rejected by default. You should update or replace your client software now. ").AtWarning().WriteToLog()
  172. user = userLegacy
  173. iv := hashTimestamp(md5.New(), timestamp)
  174. vmessAccount = userLegacy.Account.(*vmess.MemoryAccount)
  175. aesStream := crypto.NewAesDecryptionStream(vmessAccount.ID.CmdKey(), iv)
  176. decryptor = crypto.NewCryptionReader(aesStream, reader)
  177. default:
  178. return nil, drainConnection(newError("invalid user").Base(errorAEAD))
  179. }
  180. readSizeRemain -= int(buffer.Len())
  181. buffer.Clear()
  182. if _, err := buffer.ReadFullFrom(decryptor, 38); err != nil {
  183. return nil, newError("failed to read request header").Base(err)
  184. }
  185. request := &protocol.RequestHeader{
  186. User: user,
  187. Version: buffer.Byte(0),
  188. }
  189. copy(s.requestBodyIV[:], buffer.BytesRange(1, 17)) // 16 bytes
  190. copy(s.requestBodyKey[:], buffer.BytesRange(17, 33)) // 16 bytes
  191. var sid sessionID
  192. copy(sid.user[:], vmessAccount.ID.Bytes())
  193. sid.key = s.requestBodyKey
  194. sid.nonce = s.requestBodyIV
  195. if !s.sessionHistory.addIfNotExits(sid) {
  196. if !s.isAEADRequest {
  197. drainErr := s.userValidator.BurnTaintFuse(fixedSizeAuthID[:])
  198. if drainErr != nil {
  199. return nil, drainConnection(newError("duplicated session id, possibly under replay attack, and failed to taint userHash").Base(drainErr))
  200. }
  201. return nil, drainConnection(newError("duplicated session id, possibly under replay attack, userHash tainted"))
  202. }
  203. return nil, newError("duplicated session id, possibly under replay attack, but this is a AEAD request")
  204. }
  205. s.responseHeader = buffer.Byte(33) // 1 byte
  206. request.Option = bitmask.Byte(buffer.Byte(34)) // 1 byte
  207. paddingLen := int(buffer.Byte(35) >> 4)
  208. request.Security = parseSecurityType(buffer.Byte(35) & 0x0F)
  209. // 1 bytes reserved
  210. request.Command = protocol.RequestCommand(buffer.Byte(37))
  211. switch request.Command {
  212. case protocol.RequestCommandMux:
  213. request.Address = net.DomainAddress("v1.mux.cool")
  214. request.Port = 0
  215. case protocol.RequestCommandTCP, protocol.RequestCommandUDP:
  216. if addr, port, err := addrParser.ReadAddressPort(buffer, decryptor); err == nil {
  217. request.Address = addr
  218. request.Port = port
  219. }
  220. }
  221. if paddingLen > 0 {
  222. if _, err := buffer.ReadFullFrom(decryptor, int32(paddingLen)); err != nil {
  223. if !s.isAEADRequest {
  224. burnErr := s.userValidator.BurnTaintFuse(fixedSizeAuthID[:])
  225. if burnErr != nil {
  226. return nil, newError("failed to read padding, failed to taint userHash").Base(burnErr).Base(err)
  227. }
  228. return nil, newError("failed to read padding, userHash tainted").Base(err)
  229. }
  230. return nil, newError("failed to read padding").Base(err)
  231. }
  232. }
  233. if _, err := buffer.ReadFullFrom(decryptor, 4); err != nil {
  234. if !s.isAEADRequest {
  235. burnErr := s.userValidator.BurnTaintFuse(fixedSizeAuthID[:])
  236. if burnErr != nil {
  237. return nil, newError("failed to read checksum, failed to taint userHash").Base(burnErr).Base(err)
  238. }
  239. return nil, newError("failed to read checksum, userHash tainted").Base(err)
  240. }
  241. return nil, newError("failed to read checksum").Base(err)
  242. }
  243. fnv1a := fnv.New32a()
  244. common.Must2(fnv1a.Write(buffer.BytesTo(-4)))
  245. actualHash := fnv1a.Sum32()
  246. expectedHash := binary.BigEndian.Uint32(buffer.BytesFrom(-4))
  247. if actualHash != expectedHash {
  248. if !s.isAEADRequest {
  249. Autherr := newError("invalid auth, legacy userHash tainted")
  250. burnErr := s.userValidator.BurnTaintFuse(fixedSizeAuthID[:])
  251. if burnErr != nil {
  252. Autherr = newError("invalid auth, can't taint legacy userHash").Base(burnErr)
  253. }
  254. // It is possible that we are under attack described in https://github.com/v2ray/v2ray-core/issues/2523
  255. return nil, drainConnection(Autherr)
  256. }
  257. return nil, newError("invalid auth, but this is a AEAD request")
  258. }
  259. if request.Address == nil {
  260. return nil, newError("invalid remote address")
  261. }
  262. if request.Security == protocol.SecurityType_UNKNOWN || request.Security == protocol.SecurityType_AUTO {
  263. return nil, newError("unknown security type: ", request.Security)
  264. }
  265. return request, nil
  266. }
  267. // DecodeRequestBody returns Reader from which caller can fetch decrypted body.
  268. func (s *ServerSession) DecodeRequestBody(request *protocol.RequestHeader, reader io.Reader) buf.Reader {
  269. var sizeParser crypto.ChunkSizeDecoder = crypto.PlainChunkSizeParser{}
  270. if request.Option.Has(protocol.RequestOptionChunkMasking) {
  271. sizeParser = NewShakeSizeParser(s.requestBodyIV[:])
  272. }
  273. var padding crypto.PaddingLengthGenerator
  274. if request.Option.Has(protocol.RequestOptionGlobalPadding) {
  275. padding = sizeParser.(crypto.PaddingLengthGenerator)
  276. }
  277. switch request.Security {
  278. case protocol.SecurityType_NONE:
  279. if request.Option.Has(protocol.RequestOptionChunkStream) {
  280. if request.Command.TransferType() == protocol.TransferTypeStream {
  281. return crypto.NewChunkStreamReader(sizeParser, reader)
  282. }
  283. auth := &crypto.AEADAuthenticator{
  284. AEAD: new(NoOpAuthenticator),
  285. NonceGenerator: crypto.GenerateEmptyBytes(),
  286. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  287. }
  288. return crypto.NewAuthenticationReader(auth, sizeParser, reader, protocol.TransferTypePacket, padding)
  289. }
  290. return buf.NewReader(reader)
  291. case protocol.SecurityType_LEGACY:
  292. aesStream := crypto.NewAesDecryptionStream(s.requestBodyKey[:], s.requestBodyIV[:])
  293. cryptionReader := crypto.NewCryptionReader(aesStream, reader)
  294. if request.Option.Has(protocol.RequestOptionChunkStream) {
  295. auth := &crypto.AEADAuthenticator{
  296. AEAD: new(FnvAuthenticator),
  297. NonceGenerator: crypto.GenerateEmptyBytes(),
  298. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  299. }
  300. return crypto.NewAuthenticationReader(auth, sizeParser, cryptionReader, request.Command.TransferType(), padding)
  301. }
  302. return buf.NewReader(cryptionReader)
  303. case protocol.SecurityType_AES128_GCM:
  304. aead := crypto.NewAesGcm(s.requestBodyKey[:])
  305. auth := &crypto.AEADAuthenticator{
  306. AEAD: aead,
  307. NonceGenerator: GenerateChunkNonce(s.requestBodyIV[:], uint32(aead.NonceSize())),
  308. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  309. }
  310. return crypto.NewAuthenticationReader(auth, sizeParser, reader, request.Command.TransferType(), padding)
  311. case protocol.SecurityType_CHACHA20_POLY1305:
  312. aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(s.requestBodyKey[:]))
  313. auth := &crypto.AEADAuthenticator{
  314. AEAD: aead,
  315. NonceGenerator: GenerateChunkNonce(s.requestBodyIV[:], uint32(aead.NonceSize())),
  316. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  317. }
  318. return crypto.NewAuthenticationReader(auth, sizeParser, reader, request.Command.TransferType(), padding)
  319. default:
  320. panic("Unknown security type.")
  321. }
  322. }
  323. // EncodeResponseHeader writes encoded response header into the given writer.
  324. func (s *ServerSession) EncodeResponseHeader(header *protocol.ResponseHeader, writer io.Writer) {
  325. var encryptionWriter io.Writer
  326. if !s.isAEADRequest {
  327. s.responseBodyKey = md5.Sum(s.requestBodyKey[:])
  328. s.responseBodyIV = md5.Sum(s.requestBodyIV[:])
  329. } else {
  330. BodyKey := sha256.Sum256(s.requestBodyKey[:])
  331. copy(s.responseBodyKey[:], BodyKey[:16])
  332. BodyIV := sha256.Sum256(s.requestBodyIV[:])
  333. copy(s.responseBodyIV[:], BodyIV[:16])
  334. }
  335. aesStream := crypto.NewAesEncryptionStream(s.responseBodyKey[:], s.responseBodyIV[:])
  336. encryptionWriter = crypto.NewCryptionWriter(aesStream, writer)
  337. s.responseWriter = encryptionWriter
  338. aeadEncryptedHeaderBuffer := bytes.NewBuffer(nil)
  339. if s.isAEADRequest {
  340. encryptionWriter = aeadEncryptedHeaderBuffer
  341. }
  342. common.Must2(encryptionWriter.Write([]byte{s.responseHeader, byte(header.Option)}))
  343. err := MarshalCommand(header.Command, encryptionWriter)
  344. if err != nil {
  345. common.Must2(encryptionWriter.Write([]byte{0x00, 0x00}))
  346. }
  347. if s.isAEADRequest {
  348. aeadResponseHeaderLengthEncryptionKey := vmessaead.KDF16(s.responseBodyKey[:], vmessaead.KDFSaltConstAEADRespHeaderLenKey)
  349. aeadResponseHeaderLengthEncryptionIV := vmessaead.KDF(s.responseBodyIV[:], vmessaead.KDFSaltConstAEADRespHeaderLenIV)[:12]
  350. aeadResponseHeaderLengthEncryptionKeyAESBlock := common.Must2(aes.NewCipher(aeadResponseHeaderLengthEncryptionKey)).(cipher.Block)
  351. aeadResponseHeaderLengthEncryptionAEAD := common.Must2(cipher.NewGCM(aeadResponseHeaderLengthEncryptionKeyAESBlock)).(cipher.AEAD)
  352. aeadResponseHeaderLengthEncryptionBuffer := bytes.NewBuffer(nil)
  353. decryptedResponseHeaderLengthBinaryDeserializeBuffer := uint16(aeadEncryptedHeaderBuffer.Len())
  354. common.Must(binary.Write(aeadResponseHeaderLengthEncryptionBuffer, binary.BigEndian, decryptedResponseHeaderLengthBinaryDeserializeBuffer))
  355. AEADEncryptedLength := aeadResponseHeaderLengthEncryptionAEAD.Seal(nil, aeadResponseHeaderLengthEncryptionIV, aeadResponseHeaderLengthEncryptionBuffer.Bytes(), nil)
  356. common.Must2(io.Copy(writer, bytes.NewReader(AEADEncryptedLength)))
  357. aeadResponseHeaderPayloadEncryptionKey := vmessaead.KDF16(s.responseBodyKey[:], vmessaead.KDFSaltConstAEADRespHeaderPayloadKey)
  358. aeadResponseHeaderPayloadEncryptionIV := vmessaead.KDF(s.responseBodyIV[:], vmessaead.KDFSaltConstAEADRespHeaderPayloadIV)[:12]
  359. aeadResponseHeaderPayloadEncryptionKeyAESBlock := common.Must2(aes.NewCipher(aeadResponseHeaderPayloadEncryptionKey)).(cipher.Block)
  360. aeadResponseHeaderPayloadEncryptionAEAD := common.Must2(cipher.NewGCM(aeadResponseHeaderPayloadEncryptionKeyAESBlock)).(cipher.AEAD)
  361. aeadEncryptedHeaderPayload := aeadResponseHeaderPayloadEncryptionAEAD.Seal(nil, aeadResponseHeaderPayloadEncryptionIV, aeadEncryptedHeaderBuffer.Bytes(), nil)
  362. common.Must2(io.Copy(writer, bytes.NewReader(aeadEncryptedHeaderPayload)))
  363. }
  364. }
  365. // EncodeResponseBody returns a Writer that auto-encrypt content written by caller.
  366. func (s *ServerSession) EncodeResponseBody(request *protocol.RequestHeader, writer io.Writer) buf.Writer {
  367. var sizeParser crypto.ChunkSizeEncoder = crypto.PlainChunkSizeParser{}
  368. if request.Option.Has(protocol.RequestOptionChunkMasking) {
  369. sizeParser = NewShakeSizeParser(s.responseBodyIV[:])
  370. }
  371. var padding crypto.PaddingLengthGenerator
  372. if request.Option.Has(protocol.RequestOptionGlobalPadding) {
  373. padding = sizeParser.(crypto.PaddingLengthGenerator)
  374. }
  375. switch request.Security {
  376. case protocol.SecurityType_NONE:
  377. if request.Option.Has(protocol.RequestOptionChunkStream) {
  378. if request.Command.TransferType() == protocol.TransferTypeStream {
  379. return crypto.NewChunkStreamWriter(sizeParser, writer)
  380. }
  381. auth := &crypto.AEADAuthenticator{
  382. AEAD: new(NoOpAuthenticator),
  383. NonceGenerator: crypto.GenerateEmptyBytes(),
  384. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  385. }
  386. return crypto.NewAuthenticationWriter(auth, sizeParser, writer, protocol.TransferTypePacket, padding)
  387. }
  388. return buf.NewWriter(writer)
  389. case protocol.SecurityType_LEGACY:
  390. if request.Option.Has(protocol.RequestOptionChunkStream) {
  391. auth := &crypto.AEADAuthenticator{
  392. AEAD: new(FnvAuthenticator),
  393. NonceGenerator: crypto.GenerateEmptyBytes(),
  394. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  395. }
  396. return crypto.NewAuthenticationWriter(auth, sizeParser, s.responseWriter, request.Command.TransferType(), padding)
  397. }
  398. return &buf.SequentialWriter{Writer: s.responseWriter}
  399. case protocol.SecurityType_AES128_GCM:
  400. aead := crypto.NewAesGcm(s.responseBodyKey[:])
  401. auth := &crypto.AEADAuthenticator{
  402. AEAD: aead,
  403. NonceGenerator: GenerateChunkNonce(s.responseBodyIV[:], uint32(aead.NonceSize())),
  404. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  405. }
  406. return crypto.NewAuthenticationWriter(auth, sizeParser, writer, request.Command.TransferType(), padding)
  407. case protocol.SecurityType_CHACHA20_POLY1305:
  408. aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(s.responseBodyKey[:]))
  409. auth := &crypto.AEADAuthenticator{
  410. AEAD: aead,
  411. NonceGenerator: GenerateChunkNonce(s.responseBodyIV[:], uint32(aead.NonceSize())),
  412. AdditionalDataGenerator: crypto.GenerateEmptyBytes(),
  413. }
  414. return crypto.NewAuthenticationWriter(auth, sizeParser, writer, request.Command.TransferType(), padding)
  415. default:
  416. panic("Unknown security type.")
  417. }
  418. }
  419. func (s *ServerSession) DrainConnN(reader io.Reader, n int) error {
  420. _, err := io.CopyN(ioutil.Discard, reader, int64(n))
  421. return err
  422. }