mirror of
https://github.com/SoftEtherVPN/SoftEtherVPN.git
synced 2024-11-23 01:49:53 +03:00
599 lines
14 KiB
C
599 lines
14 KiB
C
// SoftEther VPN Source Code - Developer Edition Master Branch
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// Cedar Communication Module
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// AzureClient.c
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// VPN Azure Client
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#include "AzureClient.h"
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#include "Cedar.h"
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#include "Command.h"
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#include "Logging.h"
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#include "Wpc.h"
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#include "Mayaqua/Encrypt.h"
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#include "Mayaqua/Mayaqua.h"
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#include "Mayaqua/MayaType.h"
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#include "Mayaqua/Memory.h"
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#include "Mayaqua/Network.h"
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#include "Mayaqua/Object.h"
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#include "Mayaqua/Pack.h"
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#include "Mayaqua/Str.h"
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#include "Mayaqua/Table.h"
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#include "Mayaqua/Tick64.h"
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#include <stdlib.h>
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// Wait for connection request
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void AcWaitForRequest(AZURE_CLIENT *ac, SOCK *s, AZURE_PARAM *param)
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{
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// Validate arguments
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if (ac == NULL || s == NULL || param == NULL)
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{
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return;
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}
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while (ac->Halt == false)
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{
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UCHAR uc;
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// Receive 1 byte
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if (RecvAll(s, &uc, 1, false) == 0)
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{
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break;
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}
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if (uc != 0)
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{
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// Receive a Pack
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PACK *p = RecvPackWithHash(s);
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if (p == NULL)
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{
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break;
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}
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else
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{
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// Verify contents of Pack
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char opcode[MAX_SIZE];
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char cipher_name[MAX_SIZE];
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char hostname[MAX_SIZE];
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PackGetStr(p, "opcode", opcode, sizeof(opcode));
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PackGetStr(p, "cipher_name", cipher_name, sizeof(cipher_name));
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PackGetStr(p, "hostname", hostname, sizeof(hostname));
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if (StrCmpi(opcode, "relay") == 0)
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{
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IP client_ip, server_ip;
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UINT client_port;
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UINT server_port;
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UCHAR session_id[SHA1_SIZE];
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if (PackGetIp(p, "client_ip", &client_ip) &&
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PackGetIp(p, "server_ip", &server_ip) &&
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PackGetData2(p, "session_id", session_id, sizeof(session_id)))
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{
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client_port = PackGetInt(p, "client_port");
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server_port = PackGetInt(p, "server_port");
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if (client_port != 0 && server_port != 0)
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{
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SOCK *ns;
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Debug("Connect Request from %r:%u\n", &client_ip, client_port);
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char ipstr[128];
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IPToStr(ipstr, sizeof(ipstr), &client_ip);
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SLog(ac->Cedar, "LS_AZURE_START", ipstr, client_port);
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// Create new socket and connect VPN Azure Server
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if (ac->DDnsStatusCopy.InternetSetting.ProxyType == PROXY_DIRECT)
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{
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ns = ConnectEx2(ac->DDnsStatusCopy.CurrentAzureIp, AZURE_SERVER_PORT,
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0, (bool *)&ac->Halt);
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}
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else
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{
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ns = WpcSockConnect2(ac->DDnsStatusCopy.CurrentAzureIp, AZURE_SERVER_PORT,
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&ac->DDnsStatusCopy.InternetSetting, NULL, AZURE_VIA_PROXY_TIMEOUT);
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}
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if (ns == NULL)
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{
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Debug("Connect Error.\n");
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}
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else
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{
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Debug("Connected to the relay server.\n");
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SetTimeout(ns, param->DataTimeout);
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UINT ssl_err = 0;
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Copy(&ns->SslAcceptSettings, &ac->Cedar->SslAcceptSettings, sizeof(SSL_ACCEPT_SETTINGS));
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if (StartSSLEx3(ns, NULL, NULL, NULL, 0, NULL, NULL, &ssl_err))
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{
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// Check certification
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char server_cert_hash_str[MAX_SIZE];
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UCHAR server_cert_hash[SHA1_SIZE];
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Zero(server_cert_hash, sizeof(server_cert_hash));
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GetXDigest(ns->RemoteX, server_cert_hash, true);
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BinToStr(server_cert_hash_str, sizeof(server_cert_hash_str),
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server_cert_hash, SHA1_SIZE);
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if (IsEmptyStr(ac->DDnsStatusCopy.AzureCertHash) || StrCmpi(server_cert_hash_str, ac->DDnsStatusCopy.AzureCertHash) == 0
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|| StrCmpi(server_cert_hash_str, ac->DDnsStatus.AzureCertHash) == 0)
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{
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if (SendAll(ns, AZURE_PROTOCOL_DATA_SIANGTURE, 24, true))
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{
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PACK *p2 = NewPack();
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PackAddStr(p2, "hostname", hostname);
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PackAddData(p2, "session_id", session_id, sizeof(session_id));
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if (SendPackWithHash(ns, p2))
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{
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UCHAR uc;
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if (RecvAll(ns, &uc, 1, true) != false)
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{
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if (uc != 0)
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{
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SOCK *accept_sock = GetReverseListeningSock(ac->Cedar);
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if (accept_sock != NULL)
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{
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AddRef(ns->ref);
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SetTimeout(ns, INFINITE);
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Copy(&ns->Reverse_MyServerGlobalIp, &server_ip, sizeof(IP));
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ns->Reverse_MyServerPort = server_port;
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InjectNewReverseSocketToAccept(accept_sock, ns,
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&client_ip, client_port);
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ReleaseSock(accept_sock);
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}
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}
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}
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}
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FreePack(p2);
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}
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}
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}
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else
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{
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if (ssl_err != 0)
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{
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SLog(ac->Cedar, "LS_AZURE_SSL_ERROR", GetUniErrorStr(ssl_err), ssl_err);
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}
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}
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ReleaseSock(ns);
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}
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}
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}
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}
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FreePack(p);
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}
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}
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// Send 1 byte
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uc = 0;
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if (SendAll(s, &uc, 1, false) == 0)
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{
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break;
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}
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}
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}
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// VPN Azure client main thread
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void AcMainThread(THREAD *thread, void *param)
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{
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AZURE_CLIENT *ac = (AZURE_CLIENT *)param;
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UINT last_ip_revision = INFINITE;
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UINT64 last_reconnect_tick = 0;
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UINT64 next_reconnect_interval = AZURE_CONNECT_INITIAL_RETRY_INTERVAL;
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UINT num_reconnect_retry = 0;
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UINT64 next_ddns_retry_tick = 0;
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bool last_connect_ok = false;
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// Validate arguments
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if (ac == NULL || thread == NULL)
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{
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return;
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}
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while (ac->Halt == false)
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{
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UINT64 now = Tick64();
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bool connect_was_ok = false;
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// Wait for enabling VPN Azure function
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if (ac->IsEnabled)
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{
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// VPN Azure is enabled
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DDNS_CLIENT_STATUS st;
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bool connect_now = false;
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bool azure_ip_changed = false;
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Lock(ac->Lock);
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{
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Copy(&st, &ac->DDnsStatus, sizeof(DDNS_CLIENT_STATUS));
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if (StrCmpi(st.CurrentAzureIp, ac->DDnsStatusCopy.CurrentAzureIp) != 0)
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{
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if (IsEmptyStr(st.CurrentAzureIp) == false)
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{
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// Destination IP address is changed
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connect_now = true;
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num_reconnect_retry = 0;
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}
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}
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if (StrCmpi(st.CurrentHostName, ac->DDnsStatusCopy.CurrentHostName) != 0)
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{
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// DDNS host name is changed
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connect_now = true;
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num_reconnect_retry = 0;
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}
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Copy(&ac->DDnsStatusCopy, &st, sizeof(DDNS_CLIENT_STATUS));
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}
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Unlock(ac->Lock);
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if (last_ip_revision != ac->IpStatusRevision)
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{
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last_ip_revision = ac->IpStatusRevision;
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connect_now = true;
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num_reconnect_retry = 0;
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}
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if (last_reconnect_tick == 0 || (now >= (last_reconnect_tick + next_reconnect_interval)))
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{
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UINT r;
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last_reconnect_tick = now;
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num_reconnect_retry++;
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next_reconnect_interval = (UINT64)num_reconnect_retry * AZURE_CONNECT_INITIAL_RETRY_INTERVAL;
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next_reconnect_interval = MIN(next_reconnect_interval, AZURE_CONNECT_MAX_RETRY_INTERVAL);
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r = (UINT)next_reconnect_interval;
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r = GenRandInterval(r / 2, r);
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next_reconnect_interval = r;
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connect_now = true;
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}
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if (IsEmptyStr(st.CurrentAzureIp) == false && IsEmptyStr(st.CurrentHostName) == false)
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{
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if (connect_now)
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{
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SOCK *s;
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char *host = NULL;
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UINT port = AZURE_SERVER_PORT;
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Debug("VPN Azure: Connecting to %s...\n", st.CurrentAzureIp);
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if (ParseHostPort(st.CurrentAzureIp, &host, &port, AZURE_SERVER_PORT))
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{
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if (st.InternetSetting.ProxyType == PROXY_DIRECT)
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{
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s = ConnectEx2(host, port, 0, (bool *)&ac->Halt);
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}
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else
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{
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s = WpcSockConnect2(host, port, &st.InternetSetting, NULL, AZURE_VIA_PROXY_TIMEOUT);
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}
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if (s != NULL)
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{
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PACK *p;
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UINT64 established_tick = 0;
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Debug("VPN Azure: Connected.\n");
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SetTimeout(s, AZURE_PROTOCOL_CONTROL_TIMEOUT_DEFAULT);
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Lock(ac->Lock);
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{
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ac->CurrentSock = s;
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ac->IsConnected = true;
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StrCpy(ac->ConnectingAzureIp, sizeof(ac->ConnectingAzureIp), st.CurrentAzureIp);
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}
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Unlock(ac->Lock);
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SendAll(s, AZURE_PROTOCOL_CONTROL_SIGNATURE, StrLen(AZURE_PROTOCOL_CONTROL_SIGNATURE), false);
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// Receive parameter
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p = RecvPackWithHash(s);
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if (p != NULL)
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{
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UCHAR c;
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AZURE_PARAM param;
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bool hostname_changed = false;
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Zero(¶m, sizeof(param));
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param.ControlKeepAlive = PackGetInt(p, "ControlKeepAlive");
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param.ControlTimeout = PackGetInt(p, "ControlTimeout");
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param.DataTimeout = PackGetInt(p, "DataTimeout");
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param.SslTimeout = PackGetInt(p, "SslTimeout");
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FreePack(p);
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param.ControlKeepAlive = MAKESURE(param.ControlKeepAlive, 1000, AZURE_SERVER_MAX_KEEPALIVE);
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param.ControlTimeout = MAKESURE(param.ControlTimeout, 1000, AZURE_SERVER_MAX_TIMEOUT);
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param.DataTimeout = MAKESURE(param.DataTimeout, 1000, AZURE_SERVER_MAX_TIMEOUT);
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param.SslTimeout = MAKESURE(param.SslTimeout, 1000, AZURE_SERVER_MAX_TIMEOUT);
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Lock(ac->Lock);
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{
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Copy(&ac->AzureParam, ¶m, sizeof(AZURE_PARAM));
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}
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Unlock(ac->Lock);
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SetTimeout(s, param.ControlTimeout);
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// Send parameter
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p = NewPack();
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PackAddStr(p, "CurrentHostName", st.CurrentHostName);
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PackAddStr(p, "CurrentAzureIp", st.CurrentAzureIp);
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PackAddInt64(p, "CurrentAzureTimestamp", st.CurrentAzureTimestamp);
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PackAddStr(p, "CurrentAzureSignature", st.CurrentAzureSignature);
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Lock(ac->Lock);
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{
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if (StrCmpi(st.CurrentHostName, ac->DDnsStatus.CurrentHostName) != 0)
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{
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hostname_changed = true;
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}
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}
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Unlock(ac->Lock);
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if (hostname_changed == false)
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{
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if (SendPackWithHash(s, p))
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{
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// Receive result
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if (RecvAll(s, &c, 1, false))
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{
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if (c && ac->Halt == false)
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{
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connect_was_ok = true;
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established_tick = Tick64();
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AcWaitForRequest(ac, s, ¶m);
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}
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}
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}
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}
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FreePack(p);
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}
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else
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{
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WHERE;
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}
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Debug("VPN Azure: Disconnected.\n");
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Lock(ac->Lock);
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{
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ac->IsConnected = false;
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ac->CurrentSock = NULL;
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ClearStr(ac->ConnectingAzureIp, sizeof(ac->ConnectingAzureIp));
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}
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Unlock(ac->Lock);
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if (established_tick != 0)
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{
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if ((established_tick + (UINT64)AZURE_CONNECT_MAX_RETRY_INTERVAL) <= Tick64())
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{
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// If the connected time exceeds the AZURE_CONNECT_MAX_RETRY_INTERVAL, reset the retry counter.
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last_reconnect_tick = 0;
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num_reconnect_retry = 0;
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next_reconnect_interval = AZURE_CONNECT_INITIAL_RETRY_INTERVAL;
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}
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}
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Disconnect(s);
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ReleaseSock(s);
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}
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else
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{
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Debug("VPN Azure: Error: Connect Failed.\n");
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}
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Free(host);
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}
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}
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}
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}
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else
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{
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last_reconnect_tick = 0;
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num_reconnect_retry = 0;
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next_reconnect_interval = AZURE_CONNECT_INITIAL_RETRY_INTERVAL;
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}
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if (ac->Halt)
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{
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break;
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}
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if (connect_was_ok)
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{
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// If connection goes out after connected, increment connection success count to urge DDNS client query
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next_ddns_retry_tick = Tick64() + MIN((UINT64)DDNS_VPN_AZURE_CONNECT_ERROR_DDNS_RETRY_TIME_DIFF * (UINT64)(num_reconnect_retry + 1), (UINT64)DDNS_VPN_AZURE_CONNECT_ERROR_DDNS_RETRY_TIME_DIFF_MAX);
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}
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if ((next_ddns_retry_tick != 0) && (Tick64() >= next_ddns_retry_tick))
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{
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next_ddns_retry_tick = 0;
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ac->DDnsTriggerInt++;
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}
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Wait(ac->Event, rand() % 1000);
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}
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}
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// Enable or disable VPN Azure client
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void AcSetEnable(AZURE_CLIENT *ac, bool enabled)
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{
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bool old_status;
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// Validate arguments
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if (ac == NULL)
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{
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return;
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}
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old_status = ac->IsEnabled;
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ac->IsEnabled = enabled;
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if (ac->IsEnabled && (ac->IsEnabled != old_status))
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{
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ac->DDnsTriggerInt++;
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}
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AcApplyCurrentConfig(ac, NULL);
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}
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// Set current configuration to VPN Azure client
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void AcApplyCurrentConfig(AZURE_CLIENT *ac, DDNS_CLIENT_STATUS *ddns_status)
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{
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bool disconnect_now = false;
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SOCK *disconnect_sock = NULL;
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// Validate arguments
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if (ac == NULL)
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{
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return;
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}
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// Get current DDNS configuration
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Lock(ac->Lock);
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{
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if (ddns_status != NULL)
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{
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if (StrCmpi(ac->DDnsStatus.CurrentHostName, ddns_status->CurrentHostName) != 0)
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{
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// If host name is changed, disconnect current data connection
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disconnect_now = true;
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}
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if (Cmp(&ac->DDnsStatus.InternetSetting, &ddns_status->InternetSetting, sizeof(INTERNET_SETTING)) != 0)
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{
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// If proxy setting is changed, disconnect current data connection
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disconnect_now = true;
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}
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Copy(&ac->DDnsStatus, ddns_status, sizeof(DDNS_CLIENT_STATUS));
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}
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if (ac->IsEnabled == false)
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{
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// If VPN Azure client is disabled, disconnect current data connection
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disconnect_now = true;
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}
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if (disconnect_now)
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{
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if (ac->CurrentSock != NULL)
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{
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disconnect_sock = ac->CurrentSock;
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AddRef(disconnect_sock->ref);
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}
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}
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}
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Unlock(ac->Lock);
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if (disconnect_sock != NULL)
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{
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Disconnect(disconnect_sock);
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ReleaseSock(disconnect_sock);
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}
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Set(ac->Event);
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}
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// Free VPN Azure client
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void FreeAzureClient(AZURE_CLIENT *ac)
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{
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SOCK *disconnect_sock = NULL;
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// Validate arguments
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if (ac == NULL)
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{
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return;
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}
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ac->Halt = true;
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Lock(ac->Lock);
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{
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if (ac->CurrentSock != NULL)
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{
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disconnect_sock = ac->CurrentSock;
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AddRef(disconnect_sock->ref);
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}
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}
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Unlock(ac->Lock);
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if (disconnect_sock != NULL)
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{
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Disconnect(disconnect_sock);
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ReleaseSock(disconnect_sock);
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}
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Set(ac->Event);
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// Stop main thread
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WaitThread(ac->MainThread, INFINITE);
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ReleaseThread(ac->MainThread);
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ReleaseEvent(ac->Event);
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DeleteLock(ac->Lock);
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Free(ac);
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}
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|
// Create new VPN Azure client
|
|
AZURE_CLIENT *NewAzureClient(CEDAR *cedar, SERVER *server)
|
|
{
|
|
AZURE_CLIENT *ac;
|
|
// Validate arguments
|
|
if (cedar == NULL || server == NULL)
|
|
{
|
|
return NULL;
|
|
}
|
|
|
|
ac = ZeroMalloc(sizeof(AZURE_CLIENT));
|
|
|
|
ac->Cedar = cedar;
|
|
|
|
ac->Server = server;
|
|
|
|
ac->Lock = NewLock();
|
|
|
|
ac->IsEnabled = false;
|
|
|
|
ac->Event = NewEvent();
|
|
|
|
// Start main thread
|
|
ac->MainThread = NewThread(AcMainThread, ac);
|
|
|
|
return ac;
|
|
}
|
|
|