2019-09-21 01:48:48 +00:00
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/*
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* Copyright (c)2019 ZeroTier, Inc.
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*
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* Use of this software is governed by the Business Source License included
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* in the LICENSE.TXT file in the project's root directory.
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*
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* Change Date: 2023-01-01
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*
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* On the date above, in accordance with the Business Source License, use
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* of this software will be governed by version 2.0 of the Apache License.
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*/
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/****/
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package zerotier
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//#cgo CFLAGS: -O3
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//#define ZT_CGO 1
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//#include <stdint.h>
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//#include <stdlib.h>
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//#include <string.h>
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//#include "../../native/GoGlue.h"
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import "C"
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import (
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"net"
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"sync"
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"sync/atomic"
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"unsafe"
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)
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const (
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2019-09-21 03:34:31 +00:00
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afInet int = C.AF_INET
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afInet6 int = C.AF_INET6
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2019-09-21 01:48:48 +00:00
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networkStatusRequestingConfiguration = C.ZT_NETWORK_STATUS_REQUESTING_CONFIGURATION
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networkStatusOK = C.ZT_NETWORK_STATUS_OK
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networkStatusAccessDenied = C.ZT_NETWORK_STATUS_ACCESS_DENIED
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networkStatusNotFound = C.ZT_NETWORK_STATUS_NOT_FOUND
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networkStatusPortError = C.ZT_NETWORK_STATUS_PORT_ERROR
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networkStatusClientTooOld = C.ZT_NETWORK_STATUS_CLIENT_TOO_OLD
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)
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var (
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nodesByUserPtr map[uintptr]*Node
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nodesByUserPtrLock sync.RWMutex
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)
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//export goPathCheckFunc
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func goPathCheckFunc(gn unsafe.Pointer, ztAddress C.uint64_t, af C.int, ip unsafe.Pointer, port C.int) C.int {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node != nil && node.pathCheck(uint64(ztAddress), int(af), nil, int(port)) {
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return 1
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}
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return 0
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}
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//export goPathLookupFunc
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func goPathLookupFunc(gn unsafe.Pointer, ztAddress C.uint64_t, desiredAddressFamily int, familyP, ipP, portP unsafe.Pointer) C.int {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return 0
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}
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ip, port := node.pathLookup(uint64(ztAddress))
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ip4 := ip.To4()
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if len(ip4) == 4 {
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*((*C.int)(familyP)) = C.int(afInet)
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copy((*[4]byte)(ipP)[:], ip4)
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*((*C.int)(portP)) = C.int(port)
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} else if len(ip) == 16 {
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*((*C.int)(familyP)) = C.int(afInet6)
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copy((*[16]byte)(ipP)[:], ip)
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*((*C.int)(portP)) = C.int(port)
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}
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return 0
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}
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//export goStateObjectPutFunc
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func goStateObjectPutFunc(gn unsafe.Pointer, objType C.int, id, data unsafe.Pointer, len C.int) {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return
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}
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if len < 0 {
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node.stateObjectDelete(int(objType), *((*[2]uint64)(id)))
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} else {
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node.stateObjectPut(int(objType), *((*[2]uint64)(id)), C.GoBytes(data, len))
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}
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}
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//export goStateObjectGetFunc
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func goStateObjectGetFunc(gn unsafe.Pointer, objType C.int, id, data unsafe.Pointer, bufSize C.uint) C.int {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return -1
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}
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tmp, found := node.stateObjectGet(int(objType), *((*[2]uint64)(id)))
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if found && len(tmp) < int(bufSize) {
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if len(tmp) > 0 {
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C.memcpy(data, unsafe.Pointer(&(tmp[0])), C.ulong(len(tmp)))
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}
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return C.int(len(tmp))
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}
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return -1
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}
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//export goDNSResolverFunc
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func goDNSResolverFunc(gn unsafe.Pointer, dnsRecordTypes unsafe.Pointer, numDNSRecordTypes C.int, name unsafe.Pointer, requestID C.uintptr_t) {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return
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}
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recordTypes := C.GoBytes(dnsRecordTypes, numDNSRecordTypes)
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recordName := C.GoString((*C.char)(name))
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go func() {
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recordNameCStrCopy := C.CString(recordName)
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for _, rt := range recordTypes {
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switch rt {
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case C.ZT_DNS_RECORD_TXT:
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recs, _ := net.LookupTXT(recordName)
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for _, rec := range recs {
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if len(rec) > 0 {
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rnCS := C.CString(rec)
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C.ZT_Node_processDNSResult(unsafe.Pointer(node.zn), nil, requestID, recordNameCStrCopy, C.ZT_DNS_RECORD_TXT, unsafe.Pointer(rnCS), C.uint(len(rec)), 0)
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C.free(unsafe.Pointer(rnCS))
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}
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}
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}
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}
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C.ZT_Node_processDNSResult(unsafe.Pointer(node.zn), nil, requestID, recordNameCStrCopy, C.ZT_DNS_RECORD__END_OF_RESULTS, nil, 0, 0)
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C.free(unsafe.Pointer(recordNameCStrCopy))
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}()
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}
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//export goVirtualNetworkConfigFunc
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func goVirtualNetworkConfigFunc(gn, tapP unsafe.Pointer, nwid C.uint64_t, op C.int, conf unsafe.Pointer) C.int {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return 255
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}
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return C.int(node.handleNetworkConfigUpdate(int(op), (*C.ZT_VirtualNetworkConfig)(conf)))
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}
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//export goZtEvent
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func goZtEvent(gn unsafe.Pointer, eventType C.int, data unsafe.Pointer) {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return
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}
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switch eventType {
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case C.ZT_EVENT_OFFLINE:
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atomic.StoreUint32(&node.online, 0)
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case C.ZT_EVENT_ONLINE:
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atomic.StoreUint32(&node.online, 1)
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case C.ZT_EVENT_TRACE:
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node.handleTrace(C.GoString((*C.char)(data)))
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case C.ZT_EVENT_USER_MESSAGE:
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um := (*C.ZT_UserMessage)(data)
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node.handleUserMessage(uint64(um.origin), uint64(um.typeId), C.GoBytes(um.data, C.int(um.length)))
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case C.ZT_EVENT_REMOTE_TRACE:
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rt := (*C.ZT_RemoteTrace)(data)
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node.handleRemoteTrace(uint64(rt.origin), C.GoBytes(unsafe.Pointer(rt.data), C.int(rt.len)))
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}
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}
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2019-09-21 03:34:31 +00:00
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func handleTapMulticastGroupChange(gn unsafe.Pointer, nwid, mac C.uint64_t, adi C.uint32_t, added bool) {
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nodesByUserPtrLock.RLock()
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node := nodesByUserPtr[uintptr(gn)]
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nodesByUserPtrLock.RUnlock()
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if node == nil {
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return
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}
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node.networksLock.RLock()
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network := node.networks[uint64(nwid)]
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node.networksLock.RUnlock()
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network.tapLock.Lock()
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tap, _ := network.tap.(*nativeTap)
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network.tapLock.Unlock()
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if tap != nil {
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mg := &MulticastGroup{MAC: MAC(mac), ADI: uint32(adi)}
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tap.multicastGroupHandlersLock.Lock()
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defer tap.multicastGroupHandlersLock.Unlock()
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for _, h := range tap.multicastGroupHandlers {
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h(added, mg)
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}
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}
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}
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//export goHandleTapAddedMulticastGroup
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func goHandleTapAddedMulticastGroup(gn, tapP unsafe.Pointer, nwid, mac C.uint64_t, adi C.uint32_t) {
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handleTapMulticastGroupChange(gn, nwid, mac, adi, true)
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}
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//export goHandleTapRemovedMulticastGroup
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func goHandleTapRemovedMulticastGroup(gn, tapP unsafe.Pointer, nwid, mac C.uint64_t, adi C.uint32_t) {
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handleTapMulticastGroupChange(gn, nwid, mac, adi, false)
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}
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