248 lines
5.2 KiB
Go
248 lines
5.2 KiB
Go
package pcap
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import (
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"fmt"
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"sort"
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"sync"
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"git.loafle.net/overflow/overflow_discovery/api/module/discovery/model"
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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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)
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func newPCapScanner(zone *model.Zone) PCapScanner {
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ps := &pCapScan{
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zone: zone,
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}
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return ps
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}
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type PCapScanner interface {
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OpenARP() chan *layers.ARP
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CloseARP(ch chan *layers.ARP)
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OpenTCP(ip string) chan *layers.TCP
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CloseTCP(ip string, ch chan *layers.TCP)
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OpenUDP(ip string) chan gopacket.Packet
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CloseUDP(ip string, ch chan gopacket.Packet)
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WritePacketData(data []byte) (err error)
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start() error
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stop()
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retain()
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release() bool
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}
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type pCapScan struct {
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zone *model.Zone
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pCapHandle *pcap.Handle
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arpListenerChanMtx sync.RWMutex
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arpListenerChans []chan *layers.ARP
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tcpListenerChanMtx sync.RWMutex
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tcpListenerChans map[string][]chan *layers.TCP
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udpListenerChanMtx sync.RWMutex
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udpListenerChans map[string][]chan gopacket.Packet
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refCount int
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stopChan chan struct{}
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stopWg sync.WaitGroup
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}
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func (ps *pCapScan) start() error {
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if ps.stopChan != nil {
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return fmt.Errorf("PCapScanner: already running. Stop it before starting it again")
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}
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// new pcap handle
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var h *pcap.Handle
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var err error
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if h, err = pcap.OpenLive(ps.zone.Iface, 65536, true, pcap.BlockForever); nil != err {
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return err
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}
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// set filter
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// todo add tcp, udp filter
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if err = h.SetBPFFilter("arp and src net " + ps.zone.Network + " or (((tcp[tcpflags] & (tcp-syn|tcp-ack) != 0) or (tcp[tcpflags] & (tcp-rst) != 0)) and port 60000) or udp "); nil != err {
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h.Close()
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return err
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}
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ps.arpListenerChans = make([]chan *layers.ARP, 0)
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ps.tcpListenerChans = make(map[string][]chan *layers.TCP, 0)
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ps.udpListenerChans = make(map[string][]chan gopacket.Packet, 0)
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ps.stopChan = make(chan struct{})
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ps.stopWg.Add(1)
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go handleReceive(ps)
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return nil
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}
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func (ps *pCapScan) stop() {
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if ps.stopChan == nil {
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panic("PCapScanner: must be started before stopping it")
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}
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close(ps.stopChan)
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ps.stopWg.Wait()
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ps.stopChan = nil
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}
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func (ps *pCapScan) OpenARP() chan *layers.ARP {
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ps.arpListenerChanMtx.Lock()
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defer ps.arpListenerChanMtx.Unlock()
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c := make(chan *layers.ARP, 0)
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ps.arpListenerChans = append(ps.arpListenerChans, c)
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return c
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}
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func (ps *pCapScan) CloseARP(ch chan *layers.ARP) {
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ps.arpListenerChanMtx.Lock()
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defer ps.arpListenerChanMtx.Unlock()
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i := sort.Search(len(ps.arpListenerChans), func(i int) bool {
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return ch == ps.arpListenerChans[i]
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})
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if -1 != i {
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close(ch)
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ps.arpListenerChans = append(ps.arpListenerChans[:i], ps.arpListenerChans[i+1:]...)
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}
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}
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func (ps *pCapScan) OpenTCP(ip string) chan *layers.TCP {
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ps.tcpListenerChanMtx.Lock()
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defer ps.tcpListenerChanMtx.Unlock()
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if _, ok := ps.tcpListenerChans[ip]; !ok {
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ps.tcpListenerChans[ip] = make([]chan *layers.TCP, 0)
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}
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ch := make(chan *layers.TCP, 0)
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ps.tcpListenerChans[ip] = append(ps.tcpListenerChans[ip], ch)
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return ch
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}
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func (ps *pCapScan) CloseTCP(ip string, ch chan *layers.TCP) {
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ps.tcpListenerChanMtx.Lock()
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defer ps.tcpListenerChanMtx.Unlock()
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if _, ok := ps.tcpListenerChans[ip]; !ok {
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return
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}
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chs := ps.tcpListenerChans[ip]
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i := sort.Search(len(chs), func(i int) bool {
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return ch == chs[i]
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})
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if -1 != i {
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close(ch)
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ps.tcpListenerChans[ip] = append(ps.tcpListenerChans[ip][:i], ps.tcpListenerChans[ip][i+1:]...)
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}
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}
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func (ps *pCapScan) OpenUDP(ip string) chan gopacket.Packet {
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ps.udpListenerChanMtx.Lock()
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defer ps.udpListenerChanMtx.Unlock()
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if _, ok := ps.udpListenerChans[ip]; !ok {
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ps.udpListenerChans[ip] = make([]chan gopacket.Packet, 0)
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}
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ch := make(chan gopacket.Packet, 0)
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ps.udpListenerChans[ip] = append(ps.udpListenerChans[ip], ch)
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return ch
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}
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func (ps *pCapScan) CloseUDP(ip string, ch chan gopacket.Packet) {
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ps.udpListenerChanMtx.Lock()
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defer ps.udpListenerChanMtx.Unlock()
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if _, ok := ps.udpListenerChans[ip]; !ok {
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return
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}
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chs := ps.udpListenerChans[ip]
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i := sort.Search(len(chs), func(i int) bool {
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return ch == chs[i]
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})
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if -1 != i {
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close(ch)
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ps.udpListenerChans[ip] = append(ps.udpListenerChans[ip][:i], ps.udpListenerChans[ip][i+1:]...)
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}
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}
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func (ps *pCapScan) WritePacketData(data []byte) (err error) {
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return ps.pCapHandle.WritePacketData(data)
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}
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func (ps *pCapScan) retain() {
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ps.refCount++
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}
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func (ps *pCapScan) release() bool {
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ps.refCount--
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if 0 > ps.refCount {
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ps.refCount = 0
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}
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return 0 == ps.refCount
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}
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func (ps *pCapScan) destroy() {
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ps.tcpListenerChanMtx.Lock()
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for k, v := range ps.tcpListenerChans {
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for _, ch := range v {
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close(ch)
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}
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v = v[:0]
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delete(ps.tcpListenerChans, k)
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}
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ps.tcpListenerChanMtx.Unlock()
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ps.udpListenerChanMtx.Lock()
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for k, v := range ps.udpListenerChans {
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for _, ch := range v {
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close(ch)
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}
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v = v[:0]
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delete(ps.udpListenerChans, k)
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}
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ps.udpListenerChanMtx.Unlock()
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ps.arpListenerChanMtx.Lock()
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for _, v := range ps.arpListenerChans {
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close(v)
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}
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ps.arpListenerChans = ps.arpListenerChans[:0]
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ps.arpListenerChanMtx.Unlock()
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ps.pCapHandle.Close()
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}
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func handleReceive(ps *pCapScan) {
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defer ps.stopWg.Done()
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pSrc := gopacket.NewPacketSource(ps.pCapHandle, layers.LayerTypeEthernet)
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inPacket := pSrc.Packets()
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for {
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select {
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case packet := <-inPacket:
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handlePacket(ps, packet)
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case <-ps.stopChan:
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ps.destroy()
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}
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}
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}
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