| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270 | package encodingimport (	"crypto/aes"	"crypto/cipher"	"crypto/md5"	"crypto/rand"	"hash/fnv"	"io"	"golang.org/x/crypto/chacha20poly1305"	"v2ray.com/core/common"	"v2ray.com/core/common/bitmask"	"v2ray.com/core/common/buf"	"v2ray.com/core/common/crypto"	"v2ray.com/core/common/dice"	"v2ray.com/core/common/protocol"	"v2ray.com/core/common/serial"	"v2ray.com/core/proxy/vmess")func hashTimestamp(t protocol.Timestamp) []byte {	bytes := make([]byte, 0, 32)	bytes = t.Bytes(bytes)	bytes = t.Bytes(bytes)	bytes = t.Bytes(bytes)	bytes = t.Bytes(bytes)	return bytes}// ClientSession stores connection session info for VMess client.type ClientSession struct {	idHash          protocol.IDHash	requestBodyKey  [16]byte	requestBodyIV   [16]byte	responseBodyKey [16]byte	responseBodyIV  [16]byte	responseReader  io.Reader	responseHeader  byte}// NewClientSession creates a new ClientSession.func NewClientSession(idHash protocol.IDHash) *ClientSession {	randomBytes := make([]byte, 33) // 16 + 16 + 1	common.Must2(rand.Read(randomBytes))	session := &ClientSession{}	copy(session.requestBodyKey[:], randomBytes[:16])	copy(session.requestBodyIV[:], randomBytes[16:32])	session.responseHeader = randomBytes[32]	session.responseBodyKey = md5.Sum(session.requestBodyKey[:])	session.responseBodyIV = md5.Sum(session.requestBodyIV[:])	session.idHash = idHash	return session}func (c *ClientSession) EncodeRequestHeader(header *protocol.RequestHeader, writer io.Writer) error {	timestamp := protocol.NewTimestampGenerator(protocol.NowTime(), 30)()	account := header.User.Account.(*vmess.InternalAccount)	idHash := c.idHash(account.AnyValidID().Bytes())	common.Must2(idHash.Write(timestamp.Bytes(nil)))	common.Must2(writer.Write(idHash.Sum(nil)))	buffer := buf.New()	defer buffer.Release()	common.Must2(buffer.WriteBytes(Version))	common.Must2(buffer.Write(c.requestBodyIV[:]))	common.Must2(buffer.Write(c.requestBodyKey[:]))	common.Must2(buffer.WriteBytes(c.responseHeader, byte(header.Option)))	padingLen := dice.Roll(16)	security := byte(padingLen<<4) | byte(header.Security)	common.Must2(buffer.WriteBytes(security, byte(0), byte(header.Command)))	if header.Command != protocol.RequestCommandMux {		if err := addrParser.WriteAddressPort(buffer, header.Address, header.Port); err != nil {			return newError("failed to writer address and port").Base(err)		}	}	if padingLen > 0 {		common.Must(buffer.AppendSupplier(buf.ReadFullFrom(rand.Reader, int32(padingLen))))	}	{		fnv1a := fnv.New32a()		common.Must2(fnv1a.Write(buffer.Bytes()))		common.Must(buffer.AppendSupplier(serial.WriteHash(fnv1a)))	}	timestampHash := md5.New()	common.Must2(timestampHash.Write(hashTimestamp(timestamp)))	iv := timestampHash.Sum(nil)	aesStream := crypto.NewAesEncryptionStream(account.ID.CmdKey(), iv)	aesStream.XORKeyStream(buffer.Bytes(), buffer.Bytes())	common.Must2(writer.Write(buffer.Bytes()))	return nil}func (c *ClientSession) EncodeRequestBody(request *protocol.RequestHeader, writer io.Writer) buf.Writer {	var sizeParser crypto.ChunkSizeEncoder = crypto.PlainChunkSizeParser{}	if request.Option.Has(protocol.RequestOptionChunkMasking) {		sizeParser = NewShakeSizeParser(c.requestBodyIV[:])	}	var padding crypto.PaddingLengthGenerator = nil	if request.Option.Has(protocol.RequestOptionGlobalPadding) {		padding = sizeParser.(crypto.PaddingLengthGenerator)	}	switch request.Security {	case protocol.SecurityType_NONE:		if request.Option.Has(protocol.RequestOptionChunkStream) {			if request.Command.TransferType() == protocol.TransferTypeStream {				return crypto.NewChunkStreamWriter(sizeParser, writer)			}			auth := &crypto.AEADAuthenticator{				AEAD:                    new(NoOpAuthenticator),				NonceGenerator:          crypto.GenerateEmptyBytes(),				AdditionalDataGenerator: crypto.GenerateEmptyBytes(),			}			return crypto.NewAuthenticationWriter(auth, sizeParser, writer, protocol.TransferTypePacket, padding)		}		return buf.NewWriter(writer)	case protocol.SecurityType_LEGACY:		aesStream := crypto.NewAesEncryptionStream(c.requestBodyKey[:], c.requestBodyIV[:])		cryptionWriter := crypto.NewCryptionWriter(aesStream, writer)		if request.Option.Has(protocol.RequestOptionChunkStream) {			auth := &crypto.AEADAuthenticator{				AEAD:                    new(FnvAuthenticator),				NonceGenerator:          crypto.GenerateEmptyBytes(),				AdditionalDataGenerator: crypto.GenerateEmptyBytes(),			}			return crypto.NewAuthenticationWriter(auth, sizeParser, cryptionWriter, request.Command.TransferType(), padding)		}		return &buf.SequentialWriter{Writer: cryptionWriter}	case protocol.SecurityType_AES128_GCM:		block, _ := aes.NewCipher(c.requestBodyKey[:])		aead, _ := cipher.NewGCM(block)		auth := &crypto.AEADAuthenticator{			AEAD:                    aead,			NonceGenerator:          GenerateChunkNonce(c.requestBodyIV[:], uint32(aead.NonceSize())),			AdditionalDataGenerator: crypto.GenerateEmptyBytes(),		}		return crypto.NewAuthenticationWriter(auth, sizeParser, writer, request.Command.TransferType(), padding)	case protocol.SecurityType_CHACHA20_POLY1305:		aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(c.requestBodyKey[:]))		auth := &crypto.AEADAuthenticator{			AEAD:                    aead,			NonceGenerator:          GenerateChunkNonce(c.requestBodyIV[:], uint32(aead.NonceSize())),			AdditionalDataGenerator: crypto.GenerateEmptyBytes(),		}		return crypto.NewAuthenticationWriter(auth, sizeParser, writer, request.Command.TransferType(), padding)	default:		panic("Unknown security type.")	}}func (c *ClientSession) DecodeResponseHeader(reader io.Reader) (*protocol.ResponseHeader, error) {	aesStream := crypto.NewAesDecryptionStream(c.responseBodyKey[:], c.responseBodyIV[:])	c.responseReader = crypto.NewCryptionReader(aesStream, reader)	buffer := buf.New()	defer buffer.Release()	if err := buffer.AppendSupplier(buf.ReadFullFrom(c.responseReader, 4)); err != nil {		return nil, newError("failed to read response header").Base(err)	}	if buffer.Byte(0) != c.responseHeader {		return nil, newError("unexpected response header. Expecting ", int(c.responseHeader), " but actually ", int(buffer.Byte(0)))	}	header := &protocol.ResponseHeader{		Option: bitmask.Byte(buffer.Byte(1)),	}	if buffer.Byte(2) != 0 {		cmdID := buffer.Byte(2)		dataLen := int32(buffer.Byte(3))		if err := buffer.Reset(buf.ReadFullFrom(c.responseReader, dataLen)); err != nil {			return nil, newError("failed to read response command").Base(err)		}		command, err := UnmarshalCommand(cmdID, buffer.Bytes())		if err == nil {			header.Command = command		}	}	return header, nil}func (c *ClientSession) DecodeResponseBody(request *protocol.RequestHeader, reader io.Reader) buf.Reader {	var sizeParser crypto.ChunkSizeDecoder = crypto.PlainChunkSizeParser{}	if request.Option.Has(protocol.RequestOptionChunkMasking) {		sizeParser = NewShakeSizeParser(c.responseBodyIV[:])	}	var padding crypto.PaddingLengthGenerator = nil	if request.Option.Has(protocol.RequestOptionGlobalPadding) {		padding = sizeParser.(crypto.PaddingLengthGenerator)	}	switch request.Security {	case protocol.SecurityType_NONE:		if request.Option.Has(protocol.RequestOptionChunkStream) {			if request.Command.TransferType() == protocol.TransferTypeStream {				return crypto.NewChunkStreamReader(sizeParser, reader)			}			auth := &crypto.AEADAuthenticator{				AEAD:                    new(NoOpAuthenticator),				NonceGenerator:          crypto.GenerateEmptyBytes(),				AdditionalDataGenerator: crypto.GenerateEmptyBytes(),			}			return crypto.NewAuthenticationReader(auth, sizeParser, reader, protocol.TransferTypePacket, padding)		}		return buf.NewReader(reader)	case protocol.SecurityType_LEGACY:		if request.Option.Has(protocol.RequestOptionChunkStream) {			auth := &crypto.AEADAuthenticator{				AEAD:                    new(FnvAuthenticator),				NonceGenerator:          crypto.GenerateEmptyBytes(),				AdditionalDataGenerator: crypto.GenerateEmptyBytes(),			}			return crypto.NewAuthenticationReader(auth, sizeParser, c.responseReader, request.Command.TransferType(), padding)		}		return buf.NewReader(c.responseReader)	case protocol.SecurityType_AES128_GCM:		block, _ := aes.NewCipher(c.responseBodyKey[:])		aead, _ := cipher.NewGCM(block)		auth := &crypto.AEADAuthenticator{			AEAD:                    aead,			NonceGenerator:          GenerateChunkNonce(c.responseBodyIV[:], uint32(aead.NonceSize())),			AdditionalDataGenerator: crypto.GenerateEmptyBytes(),		}		return crypto.NewAuthenticationReader(auth, sizeParser, reader, request.Command.TransferType(), padding)	case protocol.SecurityType_CHACHA20_POLY1305:		aead, _ := chacha20poly1305.New(GenerateChacha20Poly1305Key(c.responseBodyKey[:]))		auth := &crypto.AEADAuthenticator{			AEAD:                    aead,			NonceGenerator:          GenerateChunkNonce(c.responseBodyIV[:], uint32(aead.NonceSize())),			AdditionalDataGenerator: crypto.GenerateEmptyBytes(),		}		return crypto.NewAuthenticationReader(auth, sizeParser, reader, request.Command.TransferType(), padding)	default:		panic("Unknown security type.")	}}func GenerateChunkNonce(nonce []byte, size uint32) crypto.BytesGenerator {	c := append([]byte(nil), nonce...)	count := uint16(0)	return func() []byte {		serial.Uint16ToBytes(count, c[:0])		count++		return c[:size]	}}
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