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https://github.com/SoftEtherVPN/SoftEtherVPN.git
synced 2024-11-22 17:39:53 +03:00
Adding timeout propagation from user policy in PPP sessions (including L2TP and SSTP).
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@ -1995,6 +1995,7 @@ UINT CalcL2TPMss(L2TP_SERVER *l2tp, L2TP_TUNNEL *t, L2TP_SESSION *s)
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// Start the L2TP thread
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void StartL2TPThread(L2TP_SERVER *l2tp, L2TP_TUNNEL *t, L2TP_SESSION *s)
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{
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PPP_SESSION* underlyingSession;
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// Validate arguments
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if (l2tp == NULL || t == NULL || s == NULL)
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{
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@ -2023,9 +2024,11 @@ void StartL2TPThread(L2TP_SERVER *l2tp, L2TP_TUNNEL *t, L2TP_SESSION *s)
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}
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// Create a PPP thread
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s->Thread = NewPPPSession(l2tp->Cedar, &t->ClientIp, t->ClientPort, &t->ServerIp, t->ServerPort,
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underlyingSession = NewPPPSession(l2tp->Cedar, &t->ClientIp, t->ClientPort, &t->ServerIp, t->ServerPort,
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s->TubeSend, s->TubeRecv, L2TP_IPC_POSTFIX, tmp, t->HostName, l2tp->CryptName,
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CalcL2TPMss(l2tp, t, s));
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s->Thread = underlyingSession->SessionThread;
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s->PPPSession = underlyingSession;
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}
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}
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@ -2122,8 +2125,21 @@ void L2TPProcessInterrupts(L2TP_SERVER *l2tp)
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{
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L2TP_TUNNEL *t = LIST_DATA(l2tp->TunnelList, i);
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LIST *delete_session_list = NULL;
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UINT64 l2tpTimeout = L2TP_TUNNEL_TIMEOUT;
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if ((l2tp->Now >= (t->LastRecvTick + (UINT64)L2TP_TUNNEL_TIMEOUT)) && t->Timedout == false)
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// If we got on ANY session a higher timeout than the default L2TP tunnel timeout, increase it
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for (i = 0; i < LIST_NUM(t->SessionList); i++)
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{
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L2TP_SESSION* s = LIST_DATA(t->SessionList, i);
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if (s->PPPSession != NULL && s->PPPSession->DataTimeout > l2tpTimeout)
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{
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l2tpTimeout = s->PPPSession->DataTimeout;
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}
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}
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if ((l2tp->Now >= (t->LastRecvTick + (UINT64)l2tpTimeout)) && t->Timedout == false)
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{
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// Disconnect the tunnel forcibly if data can not be received for a certain period of time
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t->Timedout = true;
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@ -169,6 +169,7 @@ struct L2TP_SESSION
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UINT64 DisconnectTimeout; // Disconnection completion time-out
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bool HasThread; // Whether have a thread
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THREAD *Thread; // Thread
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PPP_SESSION* PPPSession; // Underlying PPP session
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TUBE *TubeSend; // Tube of PPP to L2TP direction
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TUBE *TubeRecv; // Tube of L2TP to PPP direction
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UINT PseudowireType; // Type of L2TPv3 virtual line
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@ -386,13 +386,22 @@ void PPPThread(THREAD *thread, void *param)
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}
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// Time-out inspection
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if ((p->LastRecvTime + (UINT64)PPP_DATA_TIMEOUT) <= now)
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if ((p->LastRecvTime + (UINT64)p->DataTimeout) <= now)
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{
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// Communication time-out occurs
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PPPLog(p, "LP_DATA_TIMEOUT");
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break;
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}
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// Maximum PPP session time of the user reached inspection
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if (p->UserConnectionTick != 0 && p->UserConnectionTimeout != 0 &&
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p->UserConnectionTick + p->UserConnectionTimeout <= now)
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{
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// User connection time-out occurs
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PPPLog(p, "LP_USER_TIMEOUT");
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break;
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}
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// Terminate if the PPP disconnected
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if (p->IsTerminateReceived)
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{
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@ -444,7 +453,7 @@ void PPPThread(THREAD *thread, void *param)
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// Entry point
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// Create a new PPP session
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THREAD *NewPPPSession(CEDAR *cedar, IP *client_ip, UINT client_port, IP *server_ip, UINT server_port, TUBE *send_tube, TUBE *recv_tube, char *postfix, char *client_software_name, char *client_hostname, char *crypt_name, UINT adjust_mss)
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PPP_SESSION *NewPPPSession(CEDAR *cedar, IP *client_ip, UINT client_port, IP *server_ip, UINT server_port, TUBE *send_tube, TUBE *recv_tube, char *postfix, char *client_software_name, char *client_hostname, char *crypt_name, UINT adjust_mss)
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{
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PPP_SESSION *p;
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THREAD *t;
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@ -474,6 +483,10 @@ THREAD *NewPPPSession(CEDAR *cedar, IP *client_ip, UINT client_port, IP *server_
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p->MsChapV2_ErrorCode = 691;
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p->EapClient = NULL;
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p->DataTimeout = PPP_DATA_TIMEOUT;
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p->PacketRecvTimeout = PPP_PACKET_RECV_TIMEOUT;
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p->UserConnectionTimeout = 0;
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p->Cedar = cedar;
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AddRef(cedar->ref);
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@ -510,7 +523,9 @@ THREAD *NewPPPSession(CEDAR *cedar, IP *client_ip, UINT client_port, IP *server_
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// Thread creation
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t = NewThread(PPPThread, p);
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return t;
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p->SessionThread = t;
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return p;
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}
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// PPP processing functions
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@ -1292,6 +1307,13 @@ bool PPPProcessPAPRequestPacket(PPP_SESSION *p, PPP_PACKET* pp)
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if (ipc != NULL)
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{
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p->Ipc = ipc;
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// Setting user timeouts
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p->PacketRecvTimeout = (UINT64)p->Ipc->Policy->TimeOut * 1000 * 3 / 4; // setting to 3/4 of the user timeout
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p->DataTimeout = (UINT64)p->Ipc->Policy->TimeOut * 1000;
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p->UserConnectionTimeout = (UINT64)p->Ipc->Policy->AutoDisconnect * 1000;
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p->UserConnectionTick = Tick64();
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p->AuthOk = true;
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}
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else
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@ -1889,7 +1911,7 @@ bool PPPSendAndRetransmitRequest(PPP_SESSION *p, USHORT protocol, PPP_LCP *c)
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resend->Id = pp->Lcp->Id;
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resend->Packet = pp;
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resend->ResendTime = now + PPP_PACKET_RESEND_INTERVAL;
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resend->TimeoutTime = now + PPP_PACKET_RECV_TIMEOUT;
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resend->TimeoutTime = now + p->PacketRecvTimeout;
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Add(p->SentReqPacketList, resend);
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@ -1946,7 +1968,7 @@ LABEL_LOOP:
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if (async == false)
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{
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d = TubeRecvSync(p->TubeRecv, PPP_PACKET_RECV_TIMEOUT);
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d = TubeRecvSync(p->TubeRecv, p->PacketRecvTimeout);
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}
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else
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{
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@ -2499,9 +2521,17 @@ bool PPPParseMSCHAP2ResponsePacket(PPP_SESSION* p, PPP_PACKET* pp)
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{
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p->Ipc = ipc;
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// Setting user timeouts
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p->PacketRecvTimeout = (UINT64)p->Ipc->Policy->TimeOut * 1000 * 3 / 4; // setting to 3/4 of the user timeout
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p->DataTimeout = (UINT64)p->Ipc->Policy->TimeOut * 1000;
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p->UserConnectionTimeout = (UINT64)p->Ipc->Policy->AutoDisconnect * 1000;
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p->UserConnectionTick = Tick64();
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Copy(p->MsChapV2_ServerResponse, ipc->MsChapV2_ServerResponse, 20);
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ok = true;
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p->AuthOk = true;
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}
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}
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else
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@ -32,11 +32,11 @@
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//// Constants
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// Time-out value
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#define PPP_PACKET_RECV_TIMEOUT (30 * 1000) // Timeout until the next packet is received
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#define PPP_PACKET_RESEND_INTERVAL (5 * 1000) // Retransmission interval of the last packet
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#define PPP_PACKET_RECV_TIMEOUT (15 * 1000) // Timeout until the next packet is received (3/4 of default policy)
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#define PPP_PACKET_RESEND_INTERVAL (3 * 1000) // Retransmission interval of the last packet
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#define PPP_TERMINATE_TIMEOUT 2000 // Timeout value to complete disconnection after requesting to disconnect in the PPP
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#define PPP_ECHO_SEND_INTERVAL 4792 // Transmission interval of PPP Echo Request
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#define PPP_DATA_TIMEOUT (60 * 1000) // Communication time-out
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#define PPP_DATA_TIMEOUT (20 * 1000) // Communication time-out (from default policy)
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// MRU
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#define PPP_MRU_DEFAULT 1500 // Default value
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@ -238,6 +238,13 @@ struct PPP_SESSION
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PPP_PACKET *CurrentPacket;
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LIST *DelayedPackets;
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UINT64 PacketRecvTimeout;
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UINT64 DataTimeout;
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UINT64 UserConnectionTimeout;
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UINT64 UserConnectionTick;
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THREAD* SessionThread; // Thread of the PPP session
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};
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@ -248,7 +255,7 @@ struct PPP_SESSION
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void PPPThread(THREAD *thread, void *param);
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// Entry point
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THREAD *NewPPPSession(CEDAR *cedar, IP *client_ip, UINT client_port, IP *server_ip, UINT server_port, TUBE *send_tube, TUBE *recv_tube, char *postfix, char *client_software_name, char *client_hostname, char *crypt_name, UINT adjust_mss);
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PPP_SESSION *NewPPPSession(CEDAR *cedar, IP *client_ip, UINT client_port, IP *server_ip, UINT server_port, TUBE *send_tube, TUBE *recv_tube, char *postfix, char *client_software_name, char *client_hostname, char *crypt_name, UINT adjust_mss);
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// PPP processing functions
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bool PPPRejectUnsupportedPacket(PPP_SESSION *p, PPP_PACKET *pp);
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@ -97,6 +97,8 @@ void SstpProcessControlPacket(SSTP_SERVER *s, SSTP_PACKET *p)
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// Process the SSTP received data packet
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void SstpProcessDataPacket(SSTP_SERVER *s, SSTP_PACKET *p)
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{
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PPP_SESSION* underlyingSession;
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// Validate arguments
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if (s == NULL || p == NULL || p->IsControl)
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{
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@ -108,9 +110,11 @@ void SstpProcessDataPacket(SSTP_SERVER *s, SSTP_PACKET *p)
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if (s->PPPThread == NULL)
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{
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// Create a thread to initialize the new PPP module
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s->PPPThread = NewPPPSession(s->Cedar, &s->ClientIp, s->ClientPort, &s->ServerIp, s->ServerPort,
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underlyingSession = NewPPPSession(s->Cedar, &s->ClientIp, s->ClientPort, &s->ServerIp, s->ServerPort,
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s->TubeSend, s->TubeRecv, SSTP_IPC_POSTFIX, SSTP_IPC_CLIENT_NAME,
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s->ClientHostName, s->ClientCipherName, 0);
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s->PPPSession = underlyingSession;
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s->PPPThread = underlyingSession->SessionThread;
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}
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// Pass the received data to the PPP module
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@ -177,6 +181,7 @@ void SstpSendPacket(SSTP_SERVER *s, SSTP_PACKET *p)
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// Process the timer interrupt
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void SstpProcessInterrupt(SSTP_SERVER *s)
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{
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UINT64 sstpTimeout = SSTP_TIMEOUT;
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// Validate arguments
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if (s == NULL)
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{
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@ -261,7 +266,12 @@ void SstpProcessInterrupt(SSTP_SERVER *s)
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}
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}
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if ((s->LastRecvTick + (UINT64)SSTP_TIMEOUT) <= s->Now)
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if (s->PPPSession != NULL && s->PPPSession->DataTimeout > sstpTimeout)
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{
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sstpTimeout = s->PPPSession->DataTimeout;
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}
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if ((s->LastRecvTick + sstpTimeout) <= s->Now)
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{
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// Disconnect the SSTP because a timeout occurred
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SstpAbort(s);
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@ -16,7 +16,7 @@
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#define SSTP_IPC_POSTFIX "SSTP"
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#define SSTP_ECHO_SEND_INTERVAL_MIN 2500 // Transmission interval of Echo Request (minimum)
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#define SSTP_ECHO_SEND_INTERVAL_MAX 4792 // Transmission interval of Echo Request (maximum)
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#define SSTP_TIMEOUT 10000 // Communication time-out of SSTP
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#define SSTP_TIMEOUT 20 * 1000 // Communication time-out of SSTP (from default policy)
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// SSTP Message Type
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#define SSTP_MSG_CALL_CONNECT_REQUEST 0x0001
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@ -116,6 +116,7 @@ struct SSTP_SERVER
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UINT64 LastRecvTick; // Tick when some data has received at the end
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bool FlushRecvTube; // Flag whether to flush the reception tube
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UINT EstablishedCount; // Number of session establishment
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PPP_SESSION* PPPSession; // Underlying PPP Session
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};
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