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391 lines
10 KiB
Go
391 lines
10 KiB
Go
5 days ago
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//go:build windows && (amd64 || 386)
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package tcpkill
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import (
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"b612.me/bcap"
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"b612.me/bcap/libpcap"
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"b612.me/starlog"
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"context"
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"fmt"
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"github.com/google/gopacket"
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"github.com/google/gopacket/layers"
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"github.com/google/gopacket/pcap"
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netm "github.com/shirou/gopsutil/v4/net"
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"net"
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"os"
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"os/signal"
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"strconv"
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"strings"
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"sync"
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"syscall"
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"time"
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)
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type TCPKill struct {
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NFQNums int
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AutoIptables bool
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BPF string
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Eth string
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Host string
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SrcIP string
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SrcPort int
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DstIP string
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DstPort int
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KillType string
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RstNumbers int
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WaitMode bool
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Status string
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matchConns sync.Map
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matchCount uint
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sync.Mutex
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cache []string
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cap *bcap.Packets
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ctx context.Context
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stopFn context.CancelFunc
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requests chan *handler
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pc *libpcap.NetCatch
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macCache map[string]net.HardwareAddr
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}
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type handler struct {
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}
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func (t *TCPKill) presetWindows() {
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t.macCache = make(map[string]net.HardwareAddr)
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if t.BPF == "" {
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if t.DstIP != "" {
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t.BPF = fmt.Sprintf("tcp and host %s", t.DstIP)
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} else if t.SrcIP != "" {
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t.BPF = fmt.Sprintf("tcp and host %s", t.SrcIP)
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} else if t.SrcPort != 0 {
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t.BPF = fmt.Sprintf("tcp and port %d", t.SrcPort)
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} else if t.DstPort != 0 {
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t.BPF = fmt.Sprintf("tcp and port %d", t.DstPort)
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} else {
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t.BPF = "tcp"
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}
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}
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if t.Eth == "" && t.Host == "" {
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allDevice, err := pcap.FindAllDevs()
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if err != nil {
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starlog.Errorf("get pcap devices failed:%v\n", err)
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return
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}
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if t.SrcIP == "" {
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defer func() {
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t.SrcIP = ""
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}()
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ip := t.DstIP
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if ip == "" {
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ip = "223.6.6.6"
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}
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if strings.Contains(ip, ":") {
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ip = "[" + ip + "]"
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}
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l, err := net.Dial("udp", ip+":53")
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if err == nil {
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t.SrcIP = l.LocalAddr().(*net.UDPAddr).IP.String()
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starlog.Infof("No eth or ip detected,use %s as source ip\n", t.SrcIP)
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l.Close()
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} else {
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starlog.Errorf("Failed to get source ip:%v\n", err)
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}
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}
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for _, v := range allDevice {
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if t.SrcIP == "127.0.0.1" && v.Name == "\\Device\\NPF_Loopback" {
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t.Eth = v.Name
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return
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}
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for _, addr := range v.Addresses {
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if addr.IP.String() == t.SrcIP {
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t.Eth = v.Name
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return
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}
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}
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}
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}
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}
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func (t *TCPKill) Run() error {
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var err error
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if err = t.PreRun(); err != nil {
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return err
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}
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t.presetWindows()
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stopSignal := make(chan os.Signal)
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starlog.Noticef("Starting capture\n")
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signal.Notify(stopSignal, syscall.SIGINT, syscall.SIGTERM, syscall.SIGKILL)
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if t.Eth != "" {
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t.pc, err = libpcap.NewCatchEth(t.Eth, t.BPF)
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if err != nil {
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starlog.Errorf("Failed to create pcap handle:%v\n", err)
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return err
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}
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}
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if t.Host != "" {
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t.pc, err = libpcap.NewCatch(t.Host, t.BPF)
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if err != nil {
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starlog.Errorf("Failed to create pcap handle:%v\n", err)
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return err
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}
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}
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if t.pc == nil {
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starlog.Errorf("No pcap handle\n")
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return fmt.Errorf("No pcap handle")
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}
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t.pc.SetRecall(t.handlePacket)
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go func() {
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if err := t.pc.Run(); err != nil {
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starlog.Errorln(err)
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stopSignal <- syscall.SIGKILL
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}
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}()
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go t.SynSent()
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select {
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//todo need nf.Stop()
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case <-stopSignal:
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starlog.Warningf("Received stop signal\n")
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case <-t.ctx.Done():
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starlog.Infoln("TCPKILL Task Finished")
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}
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return nil
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}
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func (t *TCPKill) SynSent() {
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for {
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time.Sleep(time.Millisecond * 2500)
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realConns, err := netm.Connections("tcp")
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if err != nil {
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continue
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}
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t.matchConns.Range(func(key, value any) bool {
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t.matchConns.Delete(key)
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t.matchCount--
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return true
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})
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for _, conn := range realConns {
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if t.Match(conn) {
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t.matchConns.Store(key(conn), conn)
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t.matchCount++
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}
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}
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if t.matchCount == 0 && !t.WaitMode {
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starlog.Warningln("No matched connection anymore")
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t.stopFn()
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return
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}
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t.matchConns.Range(func(k, v any) bool {
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conn := v.(netm.ConnectionStat)
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if t.macCache[conn.Laddr.IP] == nil || t.macCache[conn.Raddr.IP] == nil {
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target := conn.Raddr.IP + ":" + strconv.Itoa(int(conn.Raddr.Port))
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if strings.Contains(conn.Raddr.IP, ":") {
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target = "[" + conn.Raddr.IP + "]:" + strconv.Itoa(int(conn.Raddr.Port))
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}
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starlog.Warningf("No mac address for %v or %v,try send syn to %v\n", conn.Laddr.IP, conn.Raddr.IP, target)
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tcpConn, err := net.DialTimeout("tcp", target, time.Millisecond*800)
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if err == nil {
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tcpConn.(*net.TCPConn).SetLinger(0)
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tcpConn.Close()
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}
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time.Sleep(time.Millisecond * 600)
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}
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t.Lock()
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if err := SendSYN(t.pc.Handle, t.macCache[conn.Laddr.IP], t.macCache[conn.Raddr.IP], conn.Laddr.IP, strconv.Itoa(int(conn.Laddr.Port)), conn.Raddr.IP, strconv.Itoa(int(conn.Raddr.Port)), 1127); err != nil {
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starlog.Errorf("Failed to send SYN:%v\n", err)
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}
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if err := SendSYN(t.pc.Handle, t.macCache[conn.Raddr.IP], t.macCache[conn.Laddr.IP], conn.Raddr.IP, strconv.Itoa(int(conn.Raddr.Port)), conn.Laddr.IP, strconv.Itoa(int(conn.Laddr.Port)), 1127); err != nil {
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starlog.Errorf("Failed to send SYN:%v\n", err)
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}
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t.Unlock()
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starlog.Infof("Send SYN to %v <==> %v\n", conn.Laddr.String(), conn.Raddr.String())
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return true
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})
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}
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}
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func (t *TCPKill) handlePacket(p gopacket.Packet) {
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t.Lock()
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info, err := t.cap.ParsePacket(p)
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t.Unlock()
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if err != nil {
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return
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}
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tcpLayer := p.Layer(layers.LayerTypeTCP)
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if tcpLayer == nil {
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return
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}
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tcp := tcpLayer.(*layers.TCP)
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if tcp.SYN && !tcp.ACK {
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return
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}
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t.Lock()
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//fmt.Println(info.SrcIP, hex.EncodeToString(info.SrcMac), info.DstIP, hex.EncodeToString(info.DstMac))
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t.macCache[info.SrcIP] = info.SrcMac
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t.macCache[info.DstIP] = info.DstMac
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t.Unlock()
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if tcp.RST {
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starlog.Warningf("RST packet:%v <==> %v\n", info.SrcIP+":"+info.SrcPort, info.DstIP+":"+info.DstPort)
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return
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}
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//starlog.Debugf("packet:%v <==> %v\n", info.SrcIP+":"+info.SrcPort, info.DstIP+":"+info.DstPort)
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if !t.Match(netm.ConnectionStat{
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Status: "PCAP",
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Laddr: netm.Addr{
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IP: info.SrcIP,
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Port: uint32(tcp.SrcPort),
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},
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Raddr: netm.Addr{
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IP: info.DstIP,
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Port: uint32(tcp.DstPort),
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},
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}) && !t.Match(netm.ConnectionStat{
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Status: "PCAP",
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Raddr: netm.Addr{
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IP: info.SrcIP,
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Port: uint32(tcp.SrcPort),
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},
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Laddr: netm.Addr{
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IP: info.DstIP,
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Port: uint32(tcp.DstPort),
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},
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}) {
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return
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}
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starlog.Noticef("Sending RST... %v:%v <==> %v:%v SEQ=%d ACK=%d\n", info.SrcIP, info.SrcPort, info.DstIP, info.DstPort, info.TcpSeq(), info.TcpAck())
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RealSendRST(t.pc.Handle, info, t.KillType, t.RstNumbers)
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}
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func RealSendRST(p *pcap.Handle, info bcap.PacketInfo, target string, number int) {
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for i := 0; i < number; i++ {
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if target == "both" || target == "target" {
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seq := uint32(info.TcpPayloads()) + info.TcpSeq() + (uint32(i) * uint32(info.TcpWindow()))
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SendRST(p, info.SrcMac, info.DstMac, info.SrcIP, info.SrcPort, info.DstIP, info.DstPort, seq)
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//SendRST(p, info.DstMac, info.SrcMac, info.SrcIP, info.SrcPort, info.DstIP, info.DstPort, info.TcpSeq()+(uint32(i)*uint32(info.TcpWindow())))
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}
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if target == "both" || target == "reverse" {
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SendRST(p, info.DstMac, info.SrcMac, info.DstIP, info.DstPort, info.SrcIP, info.SrcPort, info.TcpAck()+(uint32(i)*uint32(info.TcpWindow())))
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//SendRST(p, info.SrcMac, info.DstMac, info.DstIP, info.DstPort, info.SrcIP, info.SrcPort, info.TcpAck()+(uint32(i)*uint32(info.TcpWindow())))
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}
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}
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}
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func SendRST(p *pcap.Handle, srcMac, dstMac []byte, srcIP, srcPort, dstIP, dstPort string, seq uint32) error {
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if net.ParseIP(dstIP).To4() != nil {
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return sendIPv4(p, srcMac, dstMac, srcIP, srcPort, dstIP, dstPort, seq, false)
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}
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return sendIPv6(p, srcMac, dstMac, srcIP, srcPort, dstIP, dstPort, seq, false)
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}
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func SendSYN(p *pcap.Handle, srcMac, dstMac []byte, srcIP, srcPort, dstIP, dstPort string, seq uint32) error {
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if net.ParseIP(dstIP).To4() != nil {
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return sendIPv4(p, srcMac, dstMac, srcIP, srcPort, dstIP, dstPort, seq, true)
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}
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return sendIPv6(p, srcMac, dstMac, srcIP, srcPort, dstIP, dstPort, seq, true)
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}
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func sendIPv4(p *pcap.Handle, srcMac, dstMac []byte, srcIP, srcPort, dstIP, dstPort string, seq uint32, isSyn bool) error {
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dstNetIP := net.ParseIP(dstIP)
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eth := layers.Ethernet{
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SrcMAC: srcMac,
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DstMAC: dstMac,
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EthernetType: layers.EthernetTypeIPv4,
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}
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iPv4 := layers.IPv4{
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SrcIP: net.ParseIP(srcIP),
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DstIP: dstNetIP,
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Version: 4,
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TTL: 64,
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Protocol: layers.IPProtocolTCP,
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}
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sPort, err := strconv.Atoi(srcPort)
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if err != nil {
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return err
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}
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dPort, err := strconv.Atoi(dstPort)
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if err != nil {
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return err
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}
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tcp := layers.TCP{
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SrcPort: layers.TCPPort(sPort),
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DstPort: layers.TCPPort(dPort),
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Seq: seq,
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RST: !isSyn,
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SYN: isSyn,
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}
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if err = tcp.SetNetworkLayerForChecksum(&iPv4); err != nil {
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return err
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}
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buffer := gopacket.NewSerializeBuffer()
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options := gopacket.SerializeOptions{
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FixLengths: true,
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ComputeChecksums: true,
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}
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if srcMac == nil && dstMac == nil {
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if err = gopacket.SerializeLayers(buffer, options, &iPv4, &tcp); err != nil {
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return err
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}
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} else {
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if err = gopacket.SerializeLayers(buffer, options, ð, &iPv4, &tcp); err != nil {
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return err
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}
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}
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return p.WritePacketData(buffer.Bytes())
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}
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func sendIPv6(p *pcap.Handle, srcMac, dstMac []byte, srcIP, srcPort, dstIP, dstPort string, seq uint32, isSyn bool) error {
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dstNetIP := net.ParseIP(dstIP)
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eth := layers.Ethernet{
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SrcMAC: srcMac,
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DstMAC: dstMac,
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EthernetType: layers.EthernetTypeIPv6,
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}
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iPv6 := layers.IPv6{
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SrcIP: net.ParseIP(srcIP),
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DstIP: dstNetIP,
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Version: 6,
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NextHeader: layers.IPProtocolTCP,
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HopLimit: 64,
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}
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sPort, err := strconv.Atoi(srcPort)
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if err != nil {
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return err
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}
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dPort, err := strconv.Atoi(dstPort)
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if err != nil {
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return err
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}
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tcp := layers.TCP{
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SrcPort: layers.TCPPort(sPort),
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DstPort: layers.TCPPort(dPort),
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Seq: seq,
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RST: !isSyn,
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SYN: isSyn,
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}
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if err := tcp.SetNetworkLayerForChecksum(&iPv6); err != nil {
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return err
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}
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buffer := gopacket.NewSerializeBuffer()
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options := gopacket.SerializeOptions{
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FixLengths: true,
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ComputeChecksums: true,
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}
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if srcMac == nil && dstMac == nil {
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if err = gopacket.SerializeLayers(buffer, options, &iPv6, &tcp); err != nil {
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return err
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}
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} else {
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if err = gopacket.SerializeLayers(buffer, options, ð, &iPv6, &tcp); err != nil {
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return err
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}
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}
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return p.WritePacketData(buffer.Bytes())
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}
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