mirror of
https://github.com/SoftEtherVPN/SoftEtherVPN.git
synced 2024-11-23 01:49:53 +03:00
f0357d4000
- Fixed the RADIUS PEAP client to use the standard TLS versioning. - Implementation of a function to fix the MAC address of L3 VPN protocol by entering e.g. "MAC: 112233445566" in the "Notes" field of the user information. - Implementation of a function to fix the virtual MAC address to be assigned to the L3 VPN client as a string attribute from RADIUS server when authentication.
452 lines
8.6 KiB
C
452 lines
8.6 KiB
C
// SoftEther VPN Source Code - Developer Edition Master Branch
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// Cedar Communication Module
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// Proto_EtherIP.c
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// EtherIP protocol stack
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#include "CedarPch.h"
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// IPC connection processing thread
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void EtherIPIpcConnectThread(THREAD *t, void *p)
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{
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ETHERIP_SERVER *s;
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IPC *ipc = NULL;
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UINT error_code = 0;
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char tmp[MAX_SIZE];
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ETHERIP_ID id;
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// Validate arguments
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if (t == NULL || p == NULL)
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{
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return;
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}
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s = (ETHERIP_SERVER *)p;
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GetHostName(tmp, sizeof(tmp), &s->ClientIP);
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// Get the setting of the virtual HUB to be connected based on the client ID presented
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if (SearchEtherIPId(s->Ike->IPsec, &id, s->ClientId) == false &&
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SearchEtherIPId(s->Ike->IPsec, &id, "*") == false)
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{
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// Failed to get the settings for the virtual HUB
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Debug("Not Found: EtherIP Settings for Client ID \"%s\".\n", s->ClientId);
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EtherIPLog(s, "LE_NO_SETTING", s->ClientId);
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}
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else
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{
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UINT mss = CalcEtherIPTcpMss(s);
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char client_name[MAX_SIZE];
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if (s->L2TPv3 == false)
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{
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StrCpy(client_name, sizeof(client_name), ETHERIP_CLIENT_NAME);
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}
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else
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{
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if (IsEmptyStr(s->VendorName))
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{
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StrCpy(client_name, sizeof(client_name), ETHERIP_L2TPV3_CLIENT_NAME);
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}
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else
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{
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Format(client_name, sizeof(client_name), ETHERIP_L2TPV3_CLIENT_NAME_EX, s->VendorName);
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}
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}
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// Execution of IPC connection process
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EtherIPLog(s, "LE_START_IPC", id.HubName, id.UserName, mss);
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ipc = NewIPC(s->Cedar, client_name,
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(s->L2TPv3 ? ETHERIP_L2TPV3_POSTFIX : ETHERIP_POSTFIX),
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id.HubName, id.UserName, id.Password,
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&error_code,
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&s->ClientIP, s->ClientPort,
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&s->ServerIP, s->ServerPort,
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tmp,
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s->CryptName, true, mss, NULL, NULL, IPC_LAYER_2);
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if (ipc != NULL)
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{
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Copy(&s->CurrentEtherIPIdSetting, &id, sizeof(ETHERIP_ID));
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EtherIPLog(s, "LE_IPC_CONNECT_OK", id.HubName);
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}
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else
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{
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EtherIPLog(s, "LE_IPC_CONNECT_ERROR", id.HubName, error_code, _E(error_code));
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}
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}
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Lock(s->Lock);
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{
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// Set the results
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ReleaseThread(s->IpcConnectThread);
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s->IpcConnectThread = NULL;
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s->Ipc = ipc;
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s->LastConnectFailedTick = Tick64();
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}
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Unlock(s->Lock);
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// Hit the event to cause interrupt
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SetSockEvent(s->SockEvent);
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// Release the EtherIP object that is hold by this thread
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ReleaseEtherIPServer(s);
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}
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// Processing of the interrupt
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void EtherIPProcInterrupts(ETHERIP_SERVER *s)
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{
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// Validate arguments
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if (s == NULL)
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{
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return;
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}
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// If EtherIP settings have been changed, and the change may effect to this connection, disconnect
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if (s->Ipc != NULL)
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{
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if (s->Ike->IPsec->EtherIPIdListSettingVerNo != s->LastEtherIPSettingVerNo)
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{
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ETHERIP_ID id;
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bool ok = true;
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s->LastEtherIPSettingVerNo = s->Ike->IPsec->EtherIPIdListSettingVerNo;
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if (SearchEtherIPId(s->IPsec, &id, s->ClientId) == false &&
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SearchEtherIPId(s->IPsec, &id, "*") == false)
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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 (StrCmpi(s->CurrentEtherIPIdSetting.HubName, id.HubName) != 0 ||
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StrCmpi(s->CurrentEtherIPIdSetting.UserName, id.UserName) != 0 ||
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StrCmp(s->CurrentEtherIPIdSetting.Password, id.Password) != 0)
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{
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ok = false;
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}
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}
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if (ok == false)
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{
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// Disconnect immediately since setting of EtherIP seems to have been changed
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FreeIPC(s->Ipc);
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s->Ipc = NULL;
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EtherIPLog(s, "LE_RECONNECT");
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}
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}
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}
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// Connect if IPC connection is not completed
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Lock(s->Lock);
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{
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if (s->Ipc == NULL)
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{
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if (s->IpcConnectThread == NULL)
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{
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if ((s->LastConnectFailedTick == 0) || ((s->LastConnectFailedTick + (UINT64)ETHERIP_VPN_CONNECT_RETRY_INTERVAL) <= s->Now))
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{
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Lock(s->IPsec->LockSettings);
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{
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Copy(&s->CurrentIPSecServiceSetting, &s->IPsec->Services, sizeof(IPSEC_SERVICES));
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}
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Unlock(s->IPsec->LockSettings);
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s->IpcConnectThread = NewThread(EtherIPIpcConnectThread, s);
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AddThreadToThreadList(s->Ike->ThreadList, s->IpcConnectThread);
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AddRef(s->Ref);
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}
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}
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}
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}
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Unlock(s->Lock);
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if (s->Ipc != NULL)
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{
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// Set to get hit the SockEvent when a packet arrives via the IPC
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IPCSetSockEventWhenRecvL2Packet(s->Ipc, s->SockEvent);
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// IPC interrupt processing
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IPCProcessInterrupts(s->Ipc);
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// Receive the MAC frame which arrived via the IPC
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while (true)
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{
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BLOCK *b = IPCRecvL2(s->Ipc);
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UCHAR *dst;
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UINT dst_size;
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if (b == NULL)
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{
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break;
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}
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if (b->Size >= 14)
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{
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BLOCK *block;
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// Store the arrived MAC frame by adding an EtherIP header to the reception packet queue
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if (s->L2TPv3 == false)
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{
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dst_size = b->Size + 2;
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dst = Malloc(dst_size);
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dst[0] = 0x30;
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dst[1] = 0x00;
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Copy(dst + 2, b->Buf, b->Size);
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}
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else
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{
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dst = Clone(b->Buf, b->Size);
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dst_size = b->Size;
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}
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block = NewBlock(dst, dst_size, 0);
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Add(s->SendPacketList, block);
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}
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FreeBlock(b);
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}
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if (IsIPCConnected(s->Ipc) == false)
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{
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// IPC connection is disconnected
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FreeIPC(s->Ipc);
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s->Ipc = NULL;
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}
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}
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}
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// Process the received packet
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void EtherIPProcRecvPackets(ETHERIP_SERVER *s, BLOCK *b)
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{
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UCHAR *src;
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UINT src_size;
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// Validate arguments
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if (s == NULL || b == NULL)
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{
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return;
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}
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if (s->Ipc == NULL)
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{
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// Not connected to the Virtual HUB
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return;
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}
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src = b->Buf;
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src_size = b->Size;
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if (s->L2TPv3 == false)
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{
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// EtherIP header confirmation
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if (src_size < 2)
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{
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return;
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}
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if ((src[0] & 0xf0) != 0x30)
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{
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return;
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}
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src += 2;
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src_size -= 2;
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}
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if (src_size < 14)
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{
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// The size of the MAC frame is less than 14 bytes
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return;
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}
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// Send by IPC since a MAC frame has been received
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IPCSendL2(s->Ipc, src, src_size);
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}
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// Create a new EtherIP server
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ETHERIP_SERVER *NewEtherIPServer(CEDAR *cedar, IPSEC_SERVER *ipsec, IKE_SERVER *ike,
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IP *client_ip, UINT client_port, IP *server_ip, UINT server_port, char *crypt_name,
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bool is_tunnel_mode, UINT crypt_block_size,
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char *client_id, UINT id)
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{
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ETHERIP_SERVER *s;
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// Validate arguments
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if (cedar == NULL || ipsec == NULL || ike == NULL || client_ip == NULL || server_ip == NULL || client_id == NULL)
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{
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return NULL;
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}
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s = ZeroMalloc(sizeof(ETHERIP_SERVER));
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s->Ref = NewRef();
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s->Id = id;
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s->Cedar = cedar;
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AddRef(s->Cedar->ref);
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s->IPsec = ipsec;
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s->Ike = ike;
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s->IsTunnelMode = is_tunnel_mode;
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StrCpy(s->ClientId, sizeof(s->ClientId), client_id);
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s->SendPacketList = NewList(NULL);
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s->Now = Tick64();
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s->Lock = NewLock();
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Copy(&s->ClientIP, client_ip, sizeof(IP));
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s->ClientPort = client_port;
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Copy(&s->ServerIP, server_ip, sizeof(IP));
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s->ServerPort = server_port;
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StrCpy(s->CryptName, sizeof(s->CryptName), crypt_name);
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s->CryptBlockSize = crypt_block_size;
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EtherIPLog(s, "LE_START_MODULE");
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return s;
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}
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// Release the EtherIP server
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void ReleaseEtherIPServer(ETHERIP_SERVER *s)
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{
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// Validate arguments
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if (s == NULL)
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{
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return;
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}
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if (Release(s->Ref) == 0)
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{
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CleanupEtherIPServer(s);
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}
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}
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void CleanupEtherIPServer(ETHERIP_SERVER *s)
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{
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UINT i;
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// Validate arguments
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if (s == NULL)
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{
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return;
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}
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EtherIPLog(s, "LE_STOP");
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if (s->IpcConnectThread != NULL)
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{
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ReleaseThread(s->IpcConnectThread);
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}
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if (s->Ipc != NULL)
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{
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FreeIPC(s->Ipc);
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}
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for (i = 0;i < LIST_NUM(s->SendPacketList);i++)
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{
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BLOCK *b = LIST_DATA(s->SendPacketList, i);
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FreeBlock(b);
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}
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ReleaseList(s->SendPacketList);
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ReleaseSockEvent(s->SockEvent);
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ReleaseCedar(s->Cedar);
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DeleteLock(s->Lock);
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Free(s);
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}
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// Set SockEvent to EtherIP server
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void SetEtherIPServerSockEvent(ETHERIP_SERVER *s, SOCK_EVENT *e)
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{
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// Validate arguments
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if (s == NULL)
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{
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return;
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}
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if (e != NULL)
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{
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AddRef(e->ref);
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}
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if (s->SockEvent != NULL)
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{
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ReleaseSockEvent(s->SockEvent);
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s->SockEvent = NULL;
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}
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s->SockEvent = e;
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}
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// Calculate the proper TCP MSS in EtherIP communication
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UINT CalcEtherIPTcpMss(ETHERIP_SERVER *s)
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{
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UINT ret = MTU_FOR_PPPOE;
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// Validate arguments
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if (s == NULL)
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{
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return 0;
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}
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// IPv4 / IPv6
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if (IsIP4(&s->ClientIP))
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{
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ret -= 20;
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}
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else
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{
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ret -= 40;
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}
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// IPsec UDP
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ret -= 8;
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// IPsec ESP
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ret -= 20;
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ret -= s->CryptBlockSize * 2;
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// IPsec Tunnel Mode IPv4 / IPv6 Header
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if (s->IsTunnelMode)
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{
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if (IsIP4(&s->ClientIP))
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{
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ret -= 20;
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}
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else
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{
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ret -= 40;
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}
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}
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// EtherIP, L2TPv3
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ret -= 2;
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// Ethernet
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ret -= 14;
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// IPv4
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ret -= 20;
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// TCP
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ret -= 20;
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return ret;
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}
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