v2fly/proxy/dokodemo/dokodemo.go

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package dokodemo
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//go:generate go run $GOPATH/src/v2ray.com/core/common/errors/errorgen/main.go -pkg dokodemo -path Proxy,Dokodemo
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import (
"context"
"time"
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"v2ray.com/core"
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"v2ray.com/core/common"
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"v2ray.com/core/common/buf"
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"v2ray.com/core/common/net"
"v2ray.com/core/common/session"
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"v2ray.com/core/common/signal"
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"v2ray.com/core/common/task"
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"v2ray.com/core/proxy"
"v2ray.com/core/transport/internet"
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"v2ray.com/core/transport/internet/udp"
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"v2ray.com/core/transport/pipe"
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)
type DokodemoDoor struct {
policyManager core.PolicyManager
config *Config
address net.Address
port net.Port
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}
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func New(ctx context.Context, config *Config) (*DokodemoDoor, error) {
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if config.NetworkList == nil || config.NetworkList.Size() == 0 {
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return nil, newError("no network specified")
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}
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v := core.MustFromContext(ctx)
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d := &DokodemoDoor{
config: config,
address: config.GetPredefinedAddress(),
port: net.Port(config.Port),
policyManager: v.PolicyManager(),
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}
return d, nil
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}
func (d *DokodemoDoor) Network() net.NetworkList {
return *(d.config.NetworkList)
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}
func (d *DokodemoDoor) policy() core.Policy {
config := d.config
p := d.policyManager.ForLevel(config.UserLevel)
if config.Timeout > 0 && config.UserLevel == 0 {
p.Timeouts.ConnectionIdle = time.Duration(config.Timeout) * time.Second
}
return p
}
type hasHandshakeAddress interface {
HandshakeAddress() net.Address
}
func (d *DokodemoDoor) Process(ctx context.Context, network net.Network, conn internet.Connection, dispatcher core.Dispatcher) error {
newError("processing connection from: ", conn.RemoteAddr()).AtDebug().WriteToLog(session.ExportIDToError(ctx))
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dest := net.Destination{
Network: network,
Address: d.address,
Port: d.port,
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}
if d.config.FollowRedirect {
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if origDest, ok := proxy.OriginalTargetFromContext(ctx); ok {
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dest = origDest
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} else if handshake, ok := conn.(hasHandshakeAddress); ok {
addr := handshake.HandshakeAddress()
if addr != nil {
dest.Address = addr
}
}
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}
if !dest.IsValid() || dest.Address == nil {
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return newError("unable to get destination")
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}
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plcy := d.policy()
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ctx, cancel := context.WithCancel(ctx)
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timer := signal.CancelAfterInactivity(ctx, cancel, plcy.Timeouts.ConnectionIdle)
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ctx = core.ContextWithBufferPolicy(ctx, plcy.Buffer)
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link, err := dispatcher.Dispatch(ctx, dest)
if err != nil {
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return newError("failed to dispatch request").Base(err)
}
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requestDone := func() error {
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defer timer.SetTimeout(plcy.Timeouts.DownlinkOnly)
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chunkReader := buf.NewReader(conn)
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if err := buf.Copy(chunkReader, link.Writer, buf.UpdateActivity(timer)); err != nil {
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return newError("failed to transport request").Base(err)
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}
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return nil
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}
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responseDone := func() error {
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defer timer.SetTimeout(plcy.Timeouts.UplinkOnly)
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var writer buf.Writer
if network == net.Network_TCP {
writer = buf.NewWriter(conn)
} else {
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//if we are in TPROXY mode, use linux's udp forging functionality
if !d.config.FollowRedirect {
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writer = &buf.SequentialWriter{Writer: conn}
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} else {
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srca := net.UDPAddr{IP: dest.Address.IP(), Port: int(dest.Port.Value())}
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origsend, err := udp.TransmitSocket(&srca, conn.RemoteAddr())
if err != nil {
return err
}
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writer = &buf.SequentialWriter{Writer: origsend}
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}
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}
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if err := buf.Copy(link.Reader, writer, buf.UpdateActivity(timer)); err != nil {
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return newError("failed to transport response").Base(err)
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}
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return nil
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}
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if err := task.Run(task.WithContext(ctx),
task.Parallel(
task.Single(requestDone, task.OnSuccess(task.Close(link.Writer))),
responseDone))(); err != nil {
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pipe.CloseError(link.Reader)
pipe.CloseError(link.Writer)
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return newError("connection ends").Base(err)
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}
return nil
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}
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func init() {
common.Must(common.RegisterConfig((*Config)(nil), func(ctx context.Context, config interface{}) (interface{}, error) {
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return New(ctx, config.(*Config))
}))
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}