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main.go
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main.go
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package main
import (
"flag"
"fmt"
"os"
"os/signal"
"os/user"
"runtime"
"strconv"
"strings"
"syscall"
"github.com/golang/protobuf/proto"
_ "github.com/v2fly/v2ray-core/v4/app/proxyman/inbound"
_ "github.com/v2fly/v2ray-core/v4/app/proxyman/outbound"
core "github.com/v2fly/v2ray-core/v4"
vlog "github.com/v2fly/v2ray-core/v4/app/log"
clog "github.com/v2fly/v2ray-core/v4/common/log"
"github.com/v2fly/v2ray-core/v4/app/dispatcher"
"github.com/v2fly/v2ray-core/v4/app/proxyman"
"github.com/v2fly/v2ray-core/v4/common/net"
"github.com/v2fly/v2ray-core/v4/common/platform/filesystem"
"github.com/v2fly/v2ray-core/v4/common/protocol"
"github.com/v2fly/v2ray-core/v4/common/serial"
"github.com/v2fly/v2ray-core/v4/proxy/dokodemo"
"github.com/v2fly/v2ray-core/v4/proxy/freedom"
"github.com/v2fly/v2ray-core/v4/transport/internet"
"github.com/v2fly/v2ray-core/v4/transport/internet/quic"
"github.com/v2fly/v2ray-core/v4/transport/internet/tls"
"github.com/v2fly/v2ray-core/v4/transport/internet/websocket"
)
var (
VERSION = "custom"
vpn = flag.Bool("V", false, "Run in VPN mode.")
fastOpen = flag.Bool("fast-open", false, "Enable TCP fast open.")
localAddr = flag.String("localAddr", "127.0.0.1", "local address to listen on.")
localPort = flag.String("localPort", "1984", "local port to listen on.")
remoteAddr = flag.String("remoteAddr", "127.0.0.1", "remote address to forward.")
remotePort = flag.String("remotePort", "1080", "remote port to forward.")
path = flag.String("path", "/", "URL path for websocket.")
host = flag.String("host", "cloudfront.com", "Hostname for server.")
tlsEnabled = flag.Bool("tls", false, "Enable TLS.")
cert = flag.String("cert", "", "Path to TLS certificate file. Overrides certRaw. Default: ~/.acme.sh/{host}/fullchain.cer")
certRaw = flag.String("certRaw", "", "Raw TLS certificate content. Intended only for Android.")
key = flag.String("key", "", "(server) Path to TLS key file. Default: ~/.acme.sh/{host}/{host}.key")
mode = flag.String("mode", "websocket", "Transport mode: websocket, quic (enforced tls).")
mux = flag.Int("mux", 1, "Concurrent multiplexed connections (websocket client mode only).")
server = flag.Bool("server", false, "Run in server mode")
logLevel = flag.String("loglevel", "", "loglevel for v2ray: debug, info, warning (default), error, none.")
version = flag.Bool("version", false, "Show current version of v2ray-plugin")
fwmark = flag.Int("fwmark", 0, "Set SO_MARK option for outbound sockets.")
)
func homeDir() string {
usr, err := user.Current()
if err != nil {
logFatal(err)
os.Exit(1)
}
return usr.HomeDir
}
func readCertificate() ([]byte, error) {
if *cert != "" {
return filesystem.ReadFile(*cert)
}
if *certRaw != "" {
certHead := "-----BEGIN CERTIFICATE-----"
certTail := "-----END CERTIFICATE-----"
fixedCert := certHead + "\n" + *certRaw + "\n" + certTail
return []byte(fixedCert), nil
}
panic("thou shalt not reach hear")
}
func logConfig(logLevel string) *vlog.Config {
config := &vlog.Config{
ErrorLogLevel: clog.Severity_Warning,
ErrorLogType: vlog.LogType_Console,
AccessLogType: vlog.LogType_Console,
}
level := strings.ToLower(logLevel)
switch level {
case "debug":
config.ErrorLogLevel = clog.Severity_Debug
case "info":
config.ErrorLogLevel = clog.Severity_Info
case "error":
config.ErrorLogLevel = clog.Severity_Error
case "none":
config.ErrorLogType = vlog.LogType_None
config.AccessLogType = vlog.LogType_None
}
return config
}
func parseLocalAddr(localAddr string) []string {
return strings.Split(localAddr, "|")
}
func generateConfig() (*core.Config, error) {
lport, err := net.PortFromString(*localPort)
if err != nil {
return nil, newError("invalid localPort:", *localPort).Base(err)
}
rport, err := strconv.ParseUint(*remotePort, 10, 32)
if err != nil {
return nil, newError("invalid remotePort:", *remotePort).Base(err)
}
outboundProxy := serial.ToTypedMessage(&freedom.Config{
DestinationOverride: &freedom.DestinationOverride{
Server: &protocol.ServerEndpoint{
Address: net.NewIPOrDomain(net.ParseAddress(*remoteAddr)),
Port: uint32(rport),
},
},
})
var transportSettings proto.Message
var connectionReuse bool
switch *mode {
case "websocket":
transportSettings = &websocket.Config{
Path: *path,
Header: []*websocket.Header{
{Key: "Host", Value: *host},
},
}
if *mux != 0 {
connectionReuse = true
}
case "quic":
transportSettings = &quic.Config{
Security: &protocol.SecurityConfig{Type: protocol.SecurityType_NONE},
}
*tlsEnabled = true
default:
return nil, newError("unsupported mode:", *mode)
}
streamConfig := internet.StreamConfig{
ProtocolName: *mode,
TransportSettings: []*internet.TransportConfig{{
ProtocolName: *mode,
Settings: serial.ToTypedMessage(transportSettings),
}},
}
if *fastOpen || *fwmark != 0 {
socketConfig := &internet.SocketConfig{}
if *fastOpen {
socketConfig.Tfo = internet.SocketConfig_Enable
}
if *fwmark != 0 {
socketConfig.Mark = int32(*fwmark)
}
streamConfig.SocketSettings = socketConfig
}
if *tlsEnabled {
tlsConfig := tls.Config{ServerName: *host}
if *server {
certificate := tls.Certificate{}
if *cert == "" && *certRaw == "" {
*cert = fmt.Sprintf("%s/.acme.sh/%s/fullchain.cer", homeDir(), *host)
logWarn("No TLS cert specified, trying", *cert)
}
certificate.Certificate, err = readCertificate()
if err != nil {
return nil, newError("failed to read cert").Base(err)
}
if *key == "" {
*key = fmt.Sprintf("%[1]s/.acme.sh/%[2]s/%[2]s.key", homeDir(), *host)
logWarn("No TLS key specified, trying", *key)
}
certificate.Key, err = filesystem.ReadFile(*key)
if err != nil {
return nil, newError("failed to read key file").Base(err)
}
tlsConfig.Certificate = []*tls.Certificate{&certificate}
} else if *cert != "" || *certRaw != "" {
certificate := tls.Certificate{Usage: tls.Certificate_AUTHORITY_VERIFY}
certificate.Certificate, err = readCertificate()
if err != nil {
return nil, newError("failed to read cert").Base(err)
}
tlsConfig.Certificate = []*tls.Certificate{&certificate}
}
streamConfig.SecurityType = serial.GetMessageType(&tlsConfig)
streamConfig.SecuritySettings = []*serial.TypedMessage{serial.ToTypedMessage(&tlsConfig)}
}
apps := []*serial.TypedMessage{
serial.ToTypedMessage(&dispatcher.Config{}),
serial.ToTypedMessage(&proxyman.InboundConfig{}),
serial.ToTypedMessage(&proxyman.OutboundConfig{}),
serial.ToTypedMessage(logConfig(*logLevel)),
}
if *server {
proxyAddress := net.LocalHostIP
if connectionReuse {
// This address is required when mux is used on client.
// dokodemo is not aware of mux connections by itself.
proxyAddress = net.ParseAddress("v1.mux.cool")
}
localAddrs := parseLocalAddr(*localAddr)
inbounds := make([]*core.InboundHandlerConfig, len(localAddrs))
for i := 0; i < len(localAddrs); i++ {
inbounds[i] = &core.InboundHandlerConfig{
ReceiverSettings: serial.ToTypedMessage(&proxyman.ReceiverConfig{
PortRange: net.SinglePortRange(lport),
Listen: net.NewIPOrDomain(net.ParseAddress(localAddrs[i])),
StreamSettings: &streamConfig,
}),
ProxySettings: serial.ToTypedMessage(&dokodemo.Config{
Address: net.NewIPOrDomain(proxyAddress),
Networks: []net.Network{net.Network_TCP},
}),
}
}
return &core.Config{
Inbound: inbounds,
Outbound: []*core.OutboundHandlerConfig{{
ProxySettings: outboundProxy,
}},
App: apps,
}, nil
} else {
senderConfig := proxyman.SenderConfig{StreamSettings: &streamConfig}
if connectionReuse {
senderConfig.MultiplexSettings = &proxyman.MultiplexingConfig{Enabled: true, Concurrency: uint32(*mux)}
}
return &core.Config{
Inbound: []*core.InboundHandlerConfig{{
ReceiverSettings: serial.ToTypedMessage(&proxyman.ReceiverConfig{
PortRange: net.SinglePortRange(lport),
Listen: net.NewIPOrDomain(net.ParseAddress(*localAddr)),
}),
ProxySettings: serial.ToTypedMessage(&dokodemo.Config{
Address: net.NewIPOrDomain(net.LocalHostIP),
Networks: []net.Network{net.Network_TCP},
}),
}},
Outbound: []*core.OutboundHandlerConfig{{
SenderSettings: serial.ToTypedMessage(&senderConfig),
ProxySettings: outboundProxy,
}},
App: apps,
}, nil
}
}
func startV2Ray() (core.Server, error) {
opts, err := parseEnv()
if err == nil {
if c, b := opts.Get("mode"); b {
*mode = c
}
if c, b := opts.Get("mux"); b {
if i, err := strconv.Atoi(c); err == nil {
*mux = i
} else {
logWarn("failed to parse mux, use default value")
}
}
if _, b := opts.Get("tls"); b {
*tlsEnabled = true
}
if c, b := opts.Get("host"); b {
*host = c
}
if c, b := opts.Get("path"); b {
*path = c
}
if c, b := opts.Get("cert"); b {
*cert = c
}
if c, b := opts.Get("certRaw"); b {
*certRaw = c
}
if c, b := opts.Get("key"); b {
*key = c
}
if c, b := opts.Get("loglevel"); b {
*logLevel = c
}
if _, b := opts.Get("server"); b {
*server = true
}
if c, b := opts.Get("localAddr"); b {
if *server {
*remoteAddr = c
} else {
*localAddr = c
}
}
if c, b := opts.Get("localPort"); b {
if *server {
*remotePort = c
} else {
*localPort = c
}
}
if c, b := opts.Get("remoteAddr"); b {
if *server {
*localAddr = c
} else {
*remoteAddr = c
}
}
if c, b := opts.Get("remotePort"); b {
if *server {
*localPort = c
} else {
*remotePort = c
}
}
if _, b := opts.Get("fastOpen"); b {
*fastOpen = true
}
if _, b := opts.Get("__android_vpn"); b {
*vpn = true
}
if c, b := opts.Get("fwmark"); b {
if i, err := strconv.Atoi(c); err == nil {
*fwmark = i
} else {
logWarn("failed to parse fwmark, use default value")
}
}
if *vpn {
registerControlFunc()
}
}
config, err := generateConfig()
if err != nil {
return nil, newError("failed to parse config").Base(err)
}
instance, err := core.New(config)
if err != nil {
return nil, newError("failed to create v2ray instance").Base(err)
}
return instance, nil
}
func printCoreVersion() {
version := core.VersionStatement()
for _, s := range version {
logInfo(s)
}
}
func printVersion() {
fmt.Println("v2ray-plugin", VERSION)
fmt.Println("Go version", runtime.Version())
fmt.Println("Yet another SIP003 plugin for shadowsocks")
}
func main() {
flag.Parse()
if *version {
printVersion()
return
}
logInit()
printCoreVersion()
server, err := startV2Ray()
if err != nil {
logFatal(err.Error())
// Configuration error. Exit with a special value to prevent systemd from restarting.
os.Exit(23)
}
if err := server.Start(); err != nil {
logFatal("failed to start server:", err.Error())
os.Exit(1)
}
defer func() {
err := server.Close()
if err != nil {
logWarn(err.Error())
}
}()
{
osSignals := make(chan os.Signal, 1)
signal.Notify(osSignals, os.Interrupt, os.Kill, syscall.SIGTERM)
<-osSignals
}
}