Files
Xray-core/transport/internet/finalmask/udphop/conn.go
T

306 lines
6.1 KiB
Go

package udphop
import (
"context"
"crypto/rand"
goerrors "errors"
"io"
mrand "math/rand"
gonet "net"
"net/netip"
"reflect"
"sync"
"time"
"github.com/xtls/xray-core/common"
"github.com/xtls/xray-core/common/crypto"
"github.com/xtls/xray-core/common/errors"
"github.com/xtls/xray-core/common/net"
"github.com/xtls/xray-core/common/net/cnc"
"github.com/xtls/xray-core/transport/internet"
"github.com/xtls/xray-core/transport/internet/finalmask"
)
var pool = sync.Pool{
New: func() any {
return make([]byte, finalmask.UDPSize)
},
}
type packet struct {
p []byte
addr net.Addr
err error
}
type udpHopConn struct {
conn net.PacketConn
sockopt *internet.SocketConfig
local bool
remote bool
remoteOnce bool
intervalMin int64
intervalMax int64
remotePorts []uint32
remoteIPs []netip.Prefix
deadline time.Time
readDeadline time.Time
writeDeadline time.Time
pre net.PacketConn
cur net.PacketConn
addr *net.UDPAddr
readCh chan packet
closeCh chan struct{}
wg sync.WaitGroup
mu sync.Mutex
}
func NewUDPHopConn(c *Config, raw net.PacketConn) (net.PacketConn, error) {
if c.IntervalMin < 5 || c.IntervalMax < 5 {
return nil, errors.New("invalid interval")
}
remoteIPs := make([]netip.Prefix, 0, len(c.RemoteIPs))
for _, ip := range c.RemoteIPs {
remoteIPs = append(remoteIPs, netip.MustParsePrefix(ip))
}
conn := &udpHopConn{
conn: raw,
sockopt: c.Sockopt,
local: c.Local,
remote: c.Remote,
remoteOnce: c.RemoteOnce,
intervalMin: c.IntervalMin,
intervalMax: c.IntervalMax,
remotePorts: c.RemotePorts,
remoteIPs: remoteIPs,
readCh: make(chan packet),
closeCh: make(chan struct{}),
}
return conn, nil
}
func (c *udpHopConn) closed() bool {
select {
case <-c.closeCh:
return true
default:
return false
}
}
func (c *udpHopConn) hop(addr *net.UDPAddr) {
if c.closed() {
return
}
newAddr := &net.UDPAddr{IP: addr.IP, Port: addr.Port}
newConn := c.conn
if c.remote || c.remoteOnce && c.addr == nil {
if len(c.remotePorts) > 0 {
newAddr.Port = int(c.remotePorts[mrand.Intn(len(c.remotePorts))])
}
if len(c.remoteIPs) > 0 {
newAddr.IP = randPrefix(c.remoteIPs[mrand.Intn(len(c.remoteIPs))])
}
}
if c.local {
raw, err := internet.DialSystem(context.Background(), net.UDPDestination(net.IPAddress(newAddr.IP), net.Port(newAddr.Port)), c.sockopt)
if err != nil {
errors.LogErrorInner(context.Background(), err, "hop err")
return
}
switch c := raw.(type) {
case *internet.PacketConnWrapper:
newConn = c.PacketConn
case *cnc.Connection:
newConn = &internet.FakePacketConn{Conn: c}
default:
panic(reflect.TypeOf(c))
}
newConn.SetDeadline(c.deadline)
newConn.SetReadDeadline(c.readDeadline)
newConn.SetWriteDeadline(c.writeDeadline)
if c.pre != nil {
_ = c.pre.Close()
}
c.pre = c.cur
c.wg.Add(1)
go c.recv(newConn)
}
c.addr = newAddr
c.cur = newConn
}
func (c *udpHopConn) recv(conn net.PacketConn) {
defer c.wg.Done()
for {
if c.closed() {
return
}
p := pool.Get().([]byte)
n, addr, err := conn.ReadFrom(p)
if err != nil {
pool.Put(p[:cap(p)])
if goerrors.Is(err, io.EOF) || goerrors.Is(err, io.ErrClosedPipe) || goerrors.Is(err, gonet.ErrClosed) {
break
}
var netErr net.Error
if goerrors.As(err, &netErr) && netErr.Timeout() {
select {
case c.readCh <- packet{err: err}:
case <-c.closeCh:
return
}
}
errors.LogErrorInner(context.Background(), err, "recv err")
continue
}
select {
case c.readCh <- packet{p: p[:n], addr: addr}:
case <-c.closeCh:
pool.Put(p[:cap(p)])
return
}
}
}
func (c *udpHopConn) hopLoop() {
ticker := time.NewTicker(time.Second * time.Duration(crypto.RandBetween(c.intervalMin, c.intervalMax+1)))
defer ticker.Stop()
for {
select {
case <-ticker.C:
ticker.Reset(time.Second * time.Duration(crypto.RandBetween(c.intervalMin, c.intervalMax+1)))
c.mu.Lock()
c.hop(c.addr)
c.mu.Unlock()
case <-c.closeCh:
return
}
}
}
func (c *udpHopConn) ReadFrom(p []byte) (n int, addr net.Addr, err error) {
packet, ok := <-c.readCh
if ok {
if packet.p != nil {
n = copy(p, packet.p)
pool.Put(packet.p[:cap(packet.p)])
}
return n, packet.addr, packet.err
}
return 0, nil, io.EOF
}
func (c *udpHopConn) WriteTo(p []byte, addr net.Addr) (n int, err error) {
c.mu.Lock()
defer c.mu.Unlock()
if c.cur == nil {
c.hop(addr.(*net.UDPAddr))
if c.cur == nil {
return 0, nil
}
go c.hopLoop()
}
_, err = c.cur.WriteTo(p, c.addr)
if err != nil {
errors.LogErrorInner(context.Background(), err, "send err")
return 0, err
}
return len(p), nil
}
func (c *udpHopConn) Close() error {
c.mu.Lock()
defer c.mu.Unlock()
if c.closed() {
return nil
}
close(c.closeCh)
if c.pre != nil {
_ = c.pre.Close()
}
if c.cur != nil {
_ = c.cur.Close()
}
_ = c.conn.Close()
c.wg.Wait()
select {
case p := <-c.readCh:
if p.p != nil {
pool.Put(p.p[:cap(p.p)])
}
default:
}
close(c.readCh)
return nil
}
func (c *udpHopConn) LocalAddr() net.Addr {
return c.conn.LocalAddr()
}
func (c *udpHopConn) SetDeadline(t time.Time) error {
c.mu.Lock()
defer c.mu.Unlock()
c.deadline = t
if c.pre != nil {
_ = c.pre.SetDeadline(t)
}
if c.cur != nil {
_ = c.cur.SetDeadline(t)
}
return nil
}
func (c *udpHopConn) SetReadDeadline(t time.Time) error {
c.mu.Lock()
defer c.mu.Unlock()
c.readDeadline = t
if c.pre != nil {
_ = c.pre.SetReadDeadline(t)
}
if c.cur != nil {
_ = c.cur.SetReadDeadline(t)
}
return nil
}
func (c *udpHopConn) SetWriteDeadline(t time.Time) error {
c.mu.Lock()
defer c.mu.Unlock()
c.writeDeadline = t
if c.pre != nil {
_ = c.pre.SetWriteDeadline(t)
}
if c.cur != nil {
_ = c.cur.SetWriteDeadline(t)
}
return nil
}
func randPrefix(p netip.Prefix) []byte {
if p.IsSingleIP() {
return p.Addr().AsSlice()
}
b := p.Addr().AsSlice()
prefix := p.Bits()
var new [16]byte
common.Must2(rand.Read(new[:len(b)]))
i := prefix / 8
j := prefix % 8
if i+1 < len(b) {
copy(b[i+1:], new[i+1:])
}
mask := byte(0xff << (8 - j))
b[i] = (b[i] & mask) | (new[i] &^ mask)
return b
}