mirror of
https://github.com/SoftEtherVPN/SoftEtherVPN.git
synced 2024-11-22 17:39:53 +03:00
Merge pull request #405 from dnobori/dev
Fixed the bug which occurs the L2TP/IPsec connection error with Android Oreo, etc.
This commit is contained in:
commit
e391b4d503
@ -3055,7 +3055,7 @@ void IkeHMac(IKE_HASH *h, void *dst, void *key, UINT key_size, void *data, UINT
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// Generation of data 2
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data2_size = h->HashSize + hmac_block_size;
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for (i = 0;i < HMAC_BLOCK_SIZE;i++)
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for (i = 0;i < hmac_block_size;i++)
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{
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data2[i] = k[i] ^ 0x5c;
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}
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@ -1307,6 +1307,11 @@ UINT CalcPacketLoggingLevelEx(HUB_LOG *g, PKT *packet)
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// OpenVPN connection request
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ret = MAX(ret, g->PacketLogConfig[PACKET_LOG_TCP_CONN]);
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break;
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case L7_DNS:
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// DNS request
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ret = MAX(ret, g->PacketLogConfig[PACKET_LOG_TCP_CONN]);
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break;
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}
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break;
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@ -1354,6 +1359,11 @@ UINT CalcPacketLoggingLevelEx(HUB_LOG *g, PKT *packet)
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// OpenVPN connection request
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ret = MAX(ret, g->PacketLogConfig[PACKET_LOG_TCP_CONN]);
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break;
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case L7_DNS:
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// DNS request
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ret = MAX(ret, g->PacketLogConfig[PACKET_LOG_TCP_CONN]);
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break;
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}
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break;
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@ -1759,6 +1769,13 @@ char *PacketLogParseProc(RECORD *rec)
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}
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break;
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case L7_DNS:
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// DNS query
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t->Token[6] = CopyStr("DNSv4");
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t->Token[7] = CopyStr("DNS_Query");
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t->Token[14] = CopyStr(p->DnsQueryHost);
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break;
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default:
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// Unknown Packet
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t->Token[6] = CopyStr("UDPv4");
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@ -2024,6 +2041,13 @@ char *PacketLogParseProc(RECORD *rec)
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}
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break;
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case L7_DNS:
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// DNS query
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t->Token[6] = CopyStr("DNSv6");
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t->Token[7] = CopyStr("DNS_Query");
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t->Token[14] = CopyStr(p->DnsQueryHost);
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break;
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default:
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t->Token[6] = CopyStr("UDPv6");
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break;
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@ -924,7 +924,7 @@ void SiWriteSysLog(SERVER *s, char *typestr, char *hubname, wchar_t *message)
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// Date and time
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LocalTime(&st);
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if(s->StrictSyslogDatetimeFormat){
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GetDateTimeStrRFC3164(datetime, sizeof(datetime), &st, GetCurrentTimezone());
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GetDateTimeStrRFC3339(datetime, sizeof(datetime), &st, GetCurrentTimezone());
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}else{
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GetDateTimeStrMilli(datetime, sizeof(datetime), &st);
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}
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@ -6955,104 +6955,6 @@ NAT_ENTRY *CreateNatDns(VH *v, UINT src_ip, UINT src_port, UINT dest_ip, UINT de
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return n;
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}
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// Get the next byte
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UCHAR GetNextByte(BUF *b)
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{
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UCHAR c = 0;
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// Validate arguments
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if (b == NULL)
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{
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return 0;
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}
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if (ReadBuf(b, &c, 1) != 1)
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{
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return 0;
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}
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return c;
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}
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// Interpret the DNS query
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bool ParseDnsQuery(char *name, UINT name_size, void *data, UINT data_size)
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{
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BUF *b;
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char tmp[257];
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bool ok = true;
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USHORT val;
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// Validate arguments
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if (name == NULL || data == NULL || data_size == 0)
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{
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return false;
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}
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StrCpy(name, name_size, "");
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b = NewBuf();
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WriteBuf(b, data, data_size);
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SeekBuf(b, 0, 0);
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while (true)
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{
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UINT next_len = (UINT)GetNextByte(b);
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if (next_len > 0)
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{
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// Read only the specified length
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Zero(tmp, sizeof(tmp));
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if (ReadBuf(b, tmp, next_len) != next_len)
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{
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ok = false;
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break;
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}
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// Append
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if (StrLen(name) != 0)
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{
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StrCat(name, name_size, ".");
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}
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StrCat(name, name_size, tmp);
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}
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else
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{
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// Read all
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break;
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}
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}
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if (ReadBuf(b, &val, sizeof(val)) != sizeof(val))
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{
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ok = false;
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}
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else
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{
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if (Endian16(val) != 0x01 && Endian16(val) != 0x0c)
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{
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ok = false;
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}
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}
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if (ReadBuf(b, &val, sizeof(val)) != sizeof(val))
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{
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ok = false;
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}
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else
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{
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if (Endian16(val) != 0x01)
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{
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ok = false;
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}
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}
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FreeBuf(b);
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if (ok == false || StrLen(name) == 0)
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{
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return false;
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}
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else
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{
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return true;
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}
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}
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// Set the VGS host name
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void SetDnsProxyVgsHostname(char *hostname)
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{
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@ -594,9 +594,7 @@ void SendTcp(VH *v, UINT src_ip, UINT src_port, UINT dest_ip, UINT dest_port, UI
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void DnsProxy(VH *v, UINT src_ip, UINT src_port, UINT dest_ip, UINT dest_port, void *data, UINT size);
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bool ParseDnsPacket(VH *v, UINT src_ip, UINT src_port, UINT dest_ip, UINT dest_port, void *data, UINT size);
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bool ParseDnsPacketEx(VH *v, UINT src_ip, UINT src_port, UINT dest_ip, UINT dest_port, void *data, UINT size, DNS_PARSED_PACKET *parsed_result);
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bool ParseDnsQuery(char *name, UINT name_size, void *data, UINT data_size);
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void SetDnsProxyVgsHostname(char *hostname);
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UCHAR GetNextByte(BUF *b);
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bool NatTransactDns(VH *v, NAT_ENTRY *n);
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void NatDnsThread(THREAD *t, void *param);
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bool NatGetIP(IP *ip, char *hostname);
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@ -1631,8 +1631,8 @@ void GetDateTimeStrMilli(char *str, UINT size, SYSTEMTIME *st)
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st->wMilliseconds);
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}
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// Get the date and time string in RFC3164 format (example: 2017-09-27T18:25:55.434-9:00)
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void GetDateTimeStrRFC3164(char *str, UINT size, SYSTEMTIME *st, int timezone_min){
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// Get the date and time string in RFC3339 format (example: 2017-09-27T18:25:55.434-9:00)
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void GetDateTimeStrRFC3339(char *str, UINT size, SYSTEMTIME *st, int timezone_min){
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// Validate arguments
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if (str == NULL || st == NULL)
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{
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@ -248,7 +248,7 @@ void GetTimeStrEx64(wchar_t *str, UINT size, UINT64 sec64, LOCALE *locale);
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void GetDateStrEx64(wchar_t *str, UINT size, UINT64 sec64, LOCALE *locale);
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void GetTimeStrMilli64(char *str, UINT size, UINT64 sec64);
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void GetTimeStr64(char *str, UINT size, UINT64 sec64);
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void GetDateTimeStrRFC3164(char *str, UINT size, SYSTEMTIME *st, int timezone_min);
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void GetDateTimeStrRFC3339(char *str, UINT size, SYSTEMTIME *st, int timezone_min);
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UINT64 SafeTime64(UINT64 sec64);
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bool Run(char *filename, char *arg, bool hide, bool wait);
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bool RunW(wchar_t *filename, wchar_t *arg, bool hide, bool wait);
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@ -1688,6 +1688,10 @@ PKT *ClonePacket(PKT *p, bool copy_data)
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ret->L7.IkeHeader = MallocFast(sizeof(IKE_HEADER));
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Copy(ret->L7.IkeHeader, p->L7.IkeHeader, sizeof(IKE_HEADER));
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break;
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case L7_DNS:
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StrCpy(ret->DnsQueryHost, sizeof(ret->DnsQueryHost), p->DnsQueryHost);
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break;
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}
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// Address data
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@ -1845,12 +1849,13 @@ PKT *ParsePacketEx4(UCHAR *buf, UINT size, bool no_l3, UINT vlan_type_id, bool b
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USHORT port_raw = Endian16(80);
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USHORT port_raw2 = Endian16(8080);
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USHORT port_raw3 = Endian16(443);
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USHORT port_raw4 = Endian16(3128);
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// Analyze if the packet is a part of HTTP
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if ((p->TypeL3 == L3_IPV4 || p->TypeL3 == L3_IPV6) && p->TypeL4 == L4_TCP)
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{
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TCP_HEADER *tcp = p->L4.TCPHeader;
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if (tcp != NULL && (tcp->DstPort == port_raw || tcp->DstPort == port_raw2) &&
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if (tcp != NULL && (tcp->DstPort == port_raw || tcp->DstPort == port_raw2 || tcp->DstPort == port_raw4) &&
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(!((tcp->Flag & TCP_SYN) || (tcp->Flag & TCP_RST) || (tcp->Flag & TCP_FIN))))
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{
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if (p->PayloadSize >= 1)
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@ -3010,6 +3015,148 @@ bool ParseTCP(PKT *p, UCHAR *buf, UINT size)
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return true;
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}
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// Get the next byte
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UCHAR GetNextByte(BUF *b)
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{
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UCHAR c = 0;
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// Validate arguments
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if (b == NULL)
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{
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return 0;
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}
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if (ReadBuf(b, &c, 1) != 1)
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{
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return 0;
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}
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return c;
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}
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// Interpret the DNS query
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bool ParseDnsQuery(char *name, UINT name_size, void *data, UINT data_size)
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{
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BUF *b;
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char tmp[257];
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bool ok = true;
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USHORT val;
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// Validate arguments
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if (name == NULL || data == NULL || data_size == 0)
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{
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return false;
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}
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StrCpy(name, name_size, "");
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b = NewBuf();
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WriteBuf(b, data, data_size);
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SeekBuf(b, 0, 0);
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while (true)
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{
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UINT next_len = (UINT)GetNextByte(b);
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if (next_len > 0)
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{
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// Read only the specified length
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Zero(tmp, sizeof(tmp));
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if (ReadBuf(b, tmp, next_len) != next_len)
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{
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ok = false;
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break;
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}
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// Append
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if (StrLen(name) != 0)
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{
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StrCat(name, name_size, ".");
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}
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StrCat(name, name_size, tmp);
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}
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else
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{
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// Read all
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break;
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}
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}
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if (ReadBuf(b, &val, sizeof(val)) != sizeof(val))
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{
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ok = false;
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}
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else
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{
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if (Endian16(val) != 0x01 && Endian16(val) != 0x0c)
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{
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ok = false;
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}
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}
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if (ReadBuf(b, &val, sizeof(val)) != sizeof(val))
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{
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ok = false;
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}
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else
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{
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if (Endian16(val) != 0x01)
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{
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ok = false;
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}
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}
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FreeBuf(b);
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if (ok == false || StrLen(name) == 0)
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{
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return false;
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}
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else
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{
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return true;
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}
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}
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// DNS parsing
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void ParseDNS(PKT *p, UCHAR *buf, UINT size)
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{
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UCHAR *query_data;
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UINT query_data_size;
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DNSV4_HEADER *dns;
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char hostname[MAX_SIZE];
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if (p == NULL|| buf == NULL)
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{
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return;
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}
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if (size < sizeof(DNSV4_HEADER))
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{
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return;
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}
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dns = (DNSV4_HEADER *)buf;
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if ((dns->Flag1 & 78) != 0 || (dns->Flag1 & 0x80) != 0)
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{
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// Illegal opcode
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return;
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}
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if (Endian16(dns->NumQuery) != 1)
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{
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// Number of queries is invalid
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return;
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}
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query_data = ((UCHAR *)dns) + sizeof(DNSV4_HEADER);
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query_data_size = size - sizeof(DNSV4_HEADER);
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// Interpret the query
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if (ParseDnsQuery(hostname, sizeof(hostname), query_data, query_data_size) == false)
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{
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// Interpretation fails
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return;
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}
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StrCpy(p->DnsQueryHost, sizeof(p->DnsQueryHost), hostname);
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p->TypeL7 = L7_DNS;
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}
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// UDP parsing
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bool ParseUDP(PKT *p, UCHAR *buf, UINT size)
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{
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@ -3053,6 +3200,13 @@ bool ParseUDP(PKT *p, UCHAR *buf, UINT size)
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}
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}
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if (dst_port == 53)
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{
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ParseDNS(p, buf, size);
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return true;
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}
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if (src_port == 500 || dst_port == 500 || src_port == 4500 || dst_port == 4500)
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{
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if (p->PayloadSize >= sizeof(IKE_HEADER))
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@ -705,6 +705,7 @@ struct PKT
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UCHAR *Payload; // Pointer to the payload of TCP or UDP
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UINT PayloadSize; // Payload size
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struct HTTPLOG *HttpLog; // HTTP log
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char DnsQueryHost[64]; // DNS hostname
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} GCC_PACKED;
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// Layer-3 packet classification
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@ -728,6 +729,7 @@ struct PKT
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#define L7_DHCPV4 1 // DHCPv4 packet
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#define L7_IKECONN 2 // IKE connection request packet
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#define L7_OPENVPNCONN 3 // OpenVPN connection request packet
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#define L7_DNS 4 // DNS packet
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// IKE header
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@ -869,6 +871,7 @@ bool ParseICMPv6(PKT *p, UCHAR *buf, UINT size);
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bool ParseTCP(PKT *p, UCHAR *buf, UINT size);
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bool ParseUDP(PKT *p, UCHAR *buf, UINT size);
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void ParseDHCPv4(PKT *p, UCHAR *buf, UINT size);
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void ParseDNS(PKT *p, UCHAR *buf, UINT size);
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PKT *ClonePacket(PKT *p, bool copy_data);
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void FreeClonePacket(PKT *p);
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@ -901,6 +904,8 @@ void FreeDHCPv4Data(DHCPV4_DATA *d);
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bool AdjustTcpMssL3(UCHAR *src, UINT src_size, UINT mss);
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bool AdjustTcpMssL2(UCHAR *src, UINT src_size, UINT mss, USHORT tag_vlan_tpid);
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UINT GetIpHeaderSize(UCHAR *src, UINT src_size);
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bool ParseDnsQuery(char *name, UINT name_size, void *data, UINT data_size);
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UCHAR GetNextByte(BUF *b);
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bool IsDhcpPacketForSpecificMac(UCHAR *data, UINT size, UCHAR *mac_address);
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