V2bX/core/sing/hook.go

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package sing
import (
"context"
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"fmt"
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"net"
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"sync"
"github.com/InazumaV/V2bX/common/format"
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"github.com/InazumaV/V2bX/common/rate"
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"github.com/InazumaV/V2bX/limiter"
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"github.com/InazumaV/V2bX/common/counter"
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"github.com/sagernet/sing-box/adapter"
"github.com/sagernet/sing-box/log"
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N "github.com/sagernet/sing/common/network"
)
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var _ adapter.ConnectionTracker = (*HookServer)(nil)
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type HookServer struct {
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counter sync.Map //map[string]*counter.TrafficCounter
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}
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func (h *HookServer) ModeList() []string {
return nil
}
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func NewHookServer() *HookServer {
server := &HookServer{
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counter: sync.Map{},
}
return server
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}
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func (h *HookServer) RoutedConnection(_ context.Context, conn net.Conn, m adapter.InboundContext, _ adapter.Rule, _ adapter.Outbound) net.Conn {
l, err := limiter.GetLimiter(m.Inbound)
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if err != nil {
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log.Warn("get limiter for ", m.Inbound, " error: ", err)
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return conn
}
taguuid := format.UserTag(m.Inbound, m.User)
ip := m.Source.Addr.String()
if b, r := l.CheckLimit(taguuid, ip, true, true); r {
conn.Close()
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log.Error("[", m.Inbound, "] ", "Limited ", m.User, " by ip or conn")
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return conn
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} else if b != nil {
conn = rate.NewConnRateLimiter(conn, b)
}
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if l != nil {
destStr := m.Destination.AddrString()
protocol := m.Destination.Network()
if l.CheckDomainRule(destStr) {
log.Error(fmt.Sprintf(
"User %s access domain %s reject by rule",
m.User,
destStr))
conn.Close()
return conn
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}
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if len(protocol) != 0 {
if l.CheckProtocolRule(protocol) {
log.Error(fmt.Sprintf(
"User %s access protocol %s reject by rule",
m.User,
protocol))
conn.Close()
return conn
}
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}
}
var t *counter.TrafficCounter
if c, ok := h.counter.Load(m.Inbound); !ok {
t = counter.NewTrafficCounter()
h.counter.Store(m.Inbound, t)
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} else {
t = c.(*counter.TrafficCounter)
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}
conn = counter.NewConnCounter(conn, t.GetCounter(m.User))
return conn
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}
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func (h *HookServer) RoutedPacketConnection(_ context.Context, conn N.PacketConn, m adapter.InboundContext, _ adapter.Rule, _ adapter.Outbound) N.PacketConn {
l, err := limiter.GetLimiter(m.Inbound)
if err != nil {
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log.Warn("get limiter for ", m.Inbound, " error: ", err)
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return conn
}
ip := m.Source.Addr.String()
taguuid := format.UserTag(m.Inbound, m.User)
if b, r := l.CheckLimit(taguuid, ip, false, false); r {
conn.Close()
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log.Error("[", m.Inbound, "] ", "Limited ", m.User, " by ip or conn")
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return conn
} else if b != nil {
//conn = rate.NewPacketConnCounter(conn, b)
}
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if l != nil {
destStr := m.Destination.AddrString()
protocol := m.Destination.Network()
if l.CheckDomainRule(destStr) {
log.Error(fmt.Sprintf(
"User %s access domain %s reject by rule",
m.User,
destStr))
conn.Close()
return conn
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}
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if len(protocol) != 0 {
if l.CheckProtocolRule(protocol) {
log.Error(fmt.Sprintf(
"User %s access protocol %s reject by rule",
m.User,
protocol))
conn.Close()
return conn
}
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}
}
var t *counter.TrafficCounter
if c, ok := h.counter.Load(m.Inbound); !ok {
t = counter.NewTrafficCounter()
h.counter.Store(m.Inbound, t)
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} else {
t = c.(*counter.TrafficCounter)
}
conn = counter.NewPacketConnCounter(conn, t.GetCounter(m.User))
return conn
}