| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172 | package vmessimport (	"crypto/md5"	"crypto/rand"	"io"	mrand "math/rand"	"net"	"github.com/v2ray/v2ray-core"	v2io "github.com/v2ray/v2ray-core/io"	vmessio "github.com/v2ray/v2ray-core/io/vmess"	"github.com/v2ray/v2ray-core/log"	v2net "github.com/v2ray/v2ray-core/net")// VNext is the next VPoint server in the connection chain.type VNextServer struct {	Address v2net.VAddress // Address of VNext server	Users   []core.VUser   // User accounts for accessing VNext.}type VMessOutboundHandler struct {	vPoint    *core.VPoint	dest      v2net.VAddress	vNextList []VNextServer}func NewVMessOutboundHandler(vp *core.VPoint, vNextList []VNextServer, dest v2net.VAddress) *VMessOutboundHandler {	handler := new(VMessOutboundHandler)	handler.vPoint = vp	handler.dest = dest	handler.vNextList = vNextList	return handler}func (handler *VMessOutboundHandler) pickVNext() (v2net.VAddress, core.VUser) {	vNextLen := len(handler.vNextList)	if vNextLen == 0 {		panic("Zero vNext is configured.")	}	vNextIndex := mrand.Intn(vNextLen)	vNext := handler.vNextList[vNextIndex]	vNextUserLen := len(vNext.Users)	if vNextUserLen == 0 {		panic("Zero User account.")	}	vNextUserIndex := mrand.Intn(vNextUserLen)	vNextUser := vNext.Users[vNextUserIndex]	return vNext.Address, vNextUser}func (handler *VMessOutboundHandler) Start(ray core.OutboundVRay) error {	vNextAddress, vNextUser := handler.pickVNext()	request := new(vmessio.VMessRequest)	request.Version = vmessio.Version	request.UserId = vNextUser.Id	rand.Read(request.RequestIV[:])	rand.Read(request.RequestKey[:])	rand.Read(request.ResponseHeader[:])	request.Command = byte(0x01)	request.Address = handler.dest	go handler.startCommunicate(request, vNextAddress, ray)	return nil}func (handler *VMessOutboundHandler) startCommunicate(request *vmessio.VMessRequest, dest v2net.VAddress, ray core.OutboundVRay) error {	conn, err := net.Dial("tcp", dest.String())	log.Debug("VMessOutbound dialing tcp: %s", dest.String())	if err != nil {		log.Error("Failed to open tcp (%s): %v", dest.String(), err)		return err	}	defer conn.Close()	requestWriter := vmessio.NewVMessRequestWriter()	err = requestWriter.Write(conn, request)	if err != nil {		log.Error("Failed to write VMess request: %v", err)		return err	}	requestKey := request.RequestKey[:]	requestIV := request.RequestIV[:]	responseKey := md5.Sum(requestKey)	responseIV := md5.Sum(requestIV)	response := vmessio.VMessResponse{}	nBytes, err := conn.Read(response[:])	if err != nil {		log.Error("Failed to read VMess response (%d bytes): %v", nBytes, err)		return err	}	log.Debug("Got response %v", response)	// TODO: check response	encryptRequestWriter, err := v2io.NewAesEncryptWriter(requestKey, requestIV, conn)	if err != nil {		log.Error("Failed to create encrypt writer: %v", err)		return err	}	decryptResponseReader, err := v2io.NewAesDecryptReader(responseKey[:], responseIV[:], conn)	if err != nil {		log.Error("Failed to create decrypt reader: %v", err)		return err	}	input := ray.OutboundInput()	output := ray.OutboundOutput()	finish := make(chan bool, 2)	go handler.dumpInput(encryptRequestWriter, input, finish)	go handler.dumpOutput(decryptResponseReader, output, finish)	handler.waitForFinish(finish)	return nil}func (handler *VMessOutboundHandler) dumpOutput(reader io.Reader, output chan<- []byte, finish chan<- bool) {	for {		buffer := make([]byte, BufferSize)		nBytes, err := reader.Read(buffer)		log.Debug("VMessOutbound: Reading %d bytes, with error %v", nBytes, err)		if err == io.EOF {			close(output)			finish <- true			log.Debug("VMessOutbound finishing output.")			break		}		output <- buffer[:nBytes]	}}func (handler *VMessOutboundHandler) dumpInput(writer io.Writer, input <-chan []byte, finish chan<- bool) {	for {		buffer, open := <-input		if !open {			finish <- true			log.Debug("VMessOutbound finishing input.")			break		}		nBytes, err := writer.Write(buffer)		log.Debug("VMessOutbound: Wrote %d bytes with error %v", nBytes, err)	}}func (handler *VMessOutboundHandler) waitForFinish(finish <-chan bool) {	for i := 0; i < 2; i++ {		<-finish	}	log.Debug("Finishing waiting for VMessOutbound ending.")}type VMessOutboundHandlerFactory struct {}func (factory *VMessOutboundHandlerFactory) Create(vp *core.VPoint, rawConfig []byte, destination v2net.VAddress) (core.OutboundConnectionHandler, error) {	config, err := loadOutboundConfig(rawConfig)	if err != nil {		panic(log.Error("Failed to load VMess outbound config: %v", err))	}	servers := make([]VNextServer, 0, len(config.VNextList))	for _, server := range config.VNextList {		servers = append(servers, server.ToVNextServer())	}	return NewVMessOutboundHandler(vp, servers, destination), nil}func init() {	core.RegisterOutboundConnectionHandlerFactory("vmess", &VMessOutboundHandlerFactory{})}
 |