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538 lines
13 KiB
C++
538 lines
13 KiB
C++
//========= Copyright Valve Corporation, All rights reserved. ============//
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//
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// hltvclient.cpp: implementation of the CHLTVClient class.
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//
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// $NoKeywords: $
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//
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//===========================================================================//
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#include <tier0/vprof.h>
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#include "hltvclient.h"
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#include "netmessages.h"
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#include "hltvserver.h"
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#include "framesnapshot.h"
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#include "networkstringtable.h"
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#include "dt_send_eng.h"
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#include "GameEventManager.h"
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#include "cmd.h"
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#include "ihltvdirector.h"
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#include "host.h"
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// memdbgon must be the last include file in a .cpp file!!!
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#include "tier0/memdbgon.h"
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static ConVar tv_maxrate( "tv_maxrate", "8000", 0, "Max SourceTV spectator bandwidth rate allowed, 0 == unlimited" );
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static ConVar tv_relaypassword( "tv_relaypassword", "", FCVAR_NOTIFY | FCVAR_PROTECTED | FCVAR_DONTRECORD, "SourceTV password for relay proxies" );
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static ConVar tv_chattimelimit( "tv_chattimelimit", "8", 0, "Limits spectators to chat only every n seconds" );
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static ConVar tv_chatgroupsize( "tv_chatgroupsize", "0", 0, "Set the default chat group size" );
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//////////////////////////////////////////////////////////////////////
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// Construction/Destruction
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//////////////////////////////////////////////////////////////////////
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CHLTVClient::CHLTVClient(int slot, CBaseServer *pServer)
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{
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Clear();
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Assert( hltv == pServer );
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m_nClientSlot = slot;
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m_Server = pServer;
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m_pHLTV = dynamic_cast<CHLTVServer*>(pServer);
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m_nEntityIndex = m_pHLTV->GetHLTVSlot() + 1;
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m_nLastSendTick = 0;
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m_fLastSendTime = 0.0f;
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m_flLastChatTime = 0.0f;
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m_bNoChat = false;
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if ( tv_chatgroupsize.GetInt() > 0 )
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{
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Q_snprintf( m_szChatGroup, sizeof(m_szChatGroup), "group%d", slot%tv_chatgroupsize.GetInt() );
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}
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else
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{
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Q_strncpy( m_szChatGroup, "all", sizeof(m_szChatGroup) );
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}
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}
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CHLTVClient::~CHLTVClient()
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{
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}
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bool CHLTVClient::SendSignonData( void )
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{
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// check class table CRCs
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if ( m_nSendtableCRC != SendTable_GetCRC() )
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{
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Disconnect( "Server uses different class tables" );
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return false;
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}
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else
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{
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// use your class infos, CRC is correct
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SVC_ClassInfo classmsg( true, m_Server->serverclasses );
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m_NetChannel->SendNetMsg( classmsg );
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}
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return CBaseClient::SendSignonData();
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}
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bool CHLTVClient::ProcessClientInfo( CLC_ClientInfo *msg )
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{
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if ( !CBaseClient::ProcessClientInfo( msg ) )
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return false;
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return true;
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}
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bool CHLTVClient::ProcessMove(CLC_Move *msg)
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{
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// HLTV clients can't move
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return true;
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}
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bool CHLTVClient::ProcessListenEvents( CLC_ListenEvents *msg )
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{
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// HLTV clients can't subscribe to events, we just send them
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return true;
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}
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bool CHLTVClient::ProcessRespondCvarValue( CLC_RespondCvarValue *msg )
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{
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return true;
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}
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bool CHLTVClient::ProcessFileCRCCheck( CLC_FileCRCCheck *msg )
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{
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return true;
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}
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bool CHLTVClient::ProcessSaveReplay( CLC_SaveReplay *msg )
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{
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return true;
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}
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bool CHLTVClient::ProcessVoiceData(CLC_VoiceData *msg)
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{
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// HLTV clients can't speak
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return true;
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}
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void CHLTVClient::ConnectionClosing(const char *reason)
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{
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Disconnect ( (reason!=NULL)?reason:"Connection closing" );
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}
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void CHLTVClient::ConnectionCrashed(const char *reason)
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{
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DebuggerBreakIfDebugging_StagingOnly();
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Disconnect ( (reason!=NULL)?reason:"Connection lost" );
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}
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void CHLTVClient::PacketStart(int incoming_sequence, int outgoing_acknowledged)
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{
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// During connection, only respond if client sends a packet
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m_bReceivedPacket = true;
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}
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void CHLTVClient::PacketEnd()
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{
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}
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void CHLTVClient::FileRequested(const char *fileName, unsigned int transferID )
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{
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DevMsg( "CHLTVClient::FileRequested: %s.\n", fileName );
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m_NetChannel->DenyFile( fileName, transferID );
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}
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void CHLTVClient::FileDenied(const char *fileName, unsigned int transferID )
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{
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DevMsg( "CHLTVClient::FileDenied: %s.\n", fileName );
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}
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void CHLTVClient::FileReceived( const char *fileName, unsigned int transferID )
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{
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DevMsg( "CHLTVClient::FileReceived: %s.\n", fileName );
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}
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void CHLTVClient::FileSent(const char *fileName, unsigned int transferID )
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{
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}
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CClientFrame *CHLTVClient::GetDeltaFrame( int nTick )
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{
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return m_pHLTV->GetDeltaFrame( nTick );
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}
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bool CHLTVClient::ExecuteStringCommand( const char *pCommandString )
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{
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// first let the baseclass handle it
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if ( CBaseClient::ExecuteStringCommand( pCommandString ) )
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return true;
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if ( !pCommandString || !pCommandString[0] )
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return true;
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CCommand args;
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if ( !args.Tokenize( pCommandString ) )
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return true;
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const char *cmd = args[ 0 ];
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if ( !Q_stricmp( cmd, "spec_next" ) ||
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!Q_stricmp( cmd, "spec_prev" ) ||
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!Q_stricmp( cmd, "spec_mode" ) )
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{
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ClientPrintf("Camera settings can't be changed during a live broadcast.\n");
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return true;
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}
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if ( !Q_stricmp( cmd, "say" ) && args.ArgC() > 1 )
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{
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// if tv_chattimelimit = 0, chat is turned off
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if ( tv_chattimelimit.GetFloat() <= 0 )
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return true;
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if ( (m_flLastChatTime + tv_chattimelimit.GetFloat()) > net_time )
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return true;
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m_flLastChatTime = net_time;
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char chattext[128];
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Q_snprintf( chattext, sizeof(chattext), "%s : %s", GetClientName(), args[1] );
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m_pHLTV->BroadcastLocalChat( chattext, m_szChatGroup );
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return true;
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}
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else if ( !Q_strcmp( cmd, "tv_chatgroup" ) )
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{
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if ( args.ArgC() > 1 )
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{
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Q_strncpy( m_szChatGroup, args[1], sizeof(m_szChatGroup) );
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}
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else
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{
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ClientPrintf("Your current chat group is \"%s\"\n", m_szChatGroup );
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}
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return true;
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}
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else if ( !Q_strcmp( cmd, "status" ) )
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{
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int slots, proxies, clients;
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char gd[MAX_OSPATH];
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Q_FileBase( com_gamedir, gd, sizeof( gd ) );
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if ( m_pHLTV->IsMasterProxy() )
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{
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ClientPrintf("SourceTV Master \"%s\", delay %.0f\n",
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m_pHLTV->GetName(), m_pHLTV->GetDirector()->GetDelay() );
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}
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else // if ( m_Server->IsRelayProxy() )
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{
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if ( m_pHLTV->GetRelayAddress() )
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{
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ClientPrintf("SourceTV Relay \"%s\", connected.\n",
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m_pHLTV->GetName() );
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}
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else
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{
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ClientPrintf("SourceTV Relay \"%s\", not connect.\n", m_pHLTV->GetName() );
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}
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}
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ClientPrintf("IP %s:%i, Online %s, Version %i (%s)\n",
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net_local_adr.ToString( true ), m_pHLTV->GetUDPPort(),
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COM_FormatSeconds( m_pHLTV->GetOnlineTime() ), build_number(),
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#ifdef _WIN32
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"Win32" );
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#else
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"Linux" );
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#endif
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ClientPrintf("Game Time %s, Mod \"%s\", Map \"%s\", Players %i\n", COM_FormatSeconds( m_pHLTV->GetTime() ),
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gd, m_pHLTV->GetMapName(), m_pHLTV->GetNumPlayers() );
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m_pHLTV->GetLocalStats( proxies, slots, clients );
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ClientPrintf("Local Slots %i, Spectators %i, Proxies %i\n",
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slots, clients-proxies, proxies );
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m_pHLTV->GetGlobalStats( proxies, slots, clients);
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ClientPrintf("Total Slots %i, Spectators %i, Proxies %i\n",
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slots, clients-proxies, proxies);
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}
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else
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{
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DevMsg( "CHLTVClient::ExecuteStringCommand: Unknown command %s.\n", pCommandString );
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}
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return true;
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}
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bool CHLTVClient::ShouldSendMessages( void )
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{
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if ( !IsActive() )
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{
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// during signon behave like normal client
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return CBaseClient::ShouldSendMessages();
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}
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// HLTV clients use snapshot rate used by HLTV server, not given by HLTV client
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// if the reliable message overflowed, drop the client
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if ( m_NetChannel->IsOverflowed() )
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{
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m_NetChannel->Reset();
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Disconnect ("%s overflowed reliable buffer\n", m_Name );
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return false;
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}
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// send a packet if server has a new tick we didn't already send
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bool bSendMessage = ( m_nLastSendTick != m_Server->m_nTickCount );
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// send a packet at least every 2 seconds
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if ( !bSendMessage && (m_fLastSendTime + 2.0f) < net_time )
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{
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bSendMessage = true; // force sending a message even if server didn't update
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}
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if ( bSendMessage && !m_NetChannel->CanPacket() )
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{
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// we would like to send a message, but bandwidth isn't available yet
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// in HLTV we don't send choke information, doesn't matter
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bSendMessage = false;
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}
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return bSendMessage;
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}
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void CHLTVClient::SpawnPlayer( void )
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{
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// set view entity
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SVC_SetView setView( m_pHLTV->m_nViewEntity );
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SendNetMsg( setView );
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m_pHLTV->BroadcastLocalTitle( this );
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m_flLastChatTime = net_time;
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CBaseClient::SpawnPlayer();
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}
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void CHLTVClient::SetRate(int nRate, bool bForce )
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{
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if ( !bForce )
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{
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if ( m_bIsHLTV )
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{
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// allow higher bandwidth rates for HLTV proxies
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nRate = clamp( nRate, MIN_RATE, MAX_RATE );
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}
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else if ( tv_maxrate.GetInt() > 0 )
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{
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// restrict rate for normal clients to hltv_maxrate
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nRate = clamp( nRate, MIN_RATE, tv_maxrate.GetInt() );
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}
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}
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CBaseClient::SetRate( nRate, bForce );
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}
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void CHLTVClient::SetUpdateRate(int udpaterate, bool bForce)
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{
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// for HLTV clients ignore update rate settings, speed is tv_snapshotrate
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m_fSnapshotInterval = 1.0f / 100.0f;
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}
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bool CHLTVClient::ProcessSetConVar(NET_SetConVar *msg)
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{
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if ( !CBaseClient::ProcessSetConVar( msg ) )
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return false;
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// if this is the first time we get user settings, check password etc
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if ( m_nSignonState == SIGNONSTATE_CONNECTED )
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{
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const char *checkpwd = NULL;
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m_bIsHLTV = m_ConVars->GetInt( "tv_relay", 0 ) != 0;
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if ( m_bIsHLTV )
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{
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// if the connecting client is a TV relay, check the password
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checkpwd = tv_relaypassword.GetString();
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if ( checkpwd && checkpwd[0] && Q_stricmp( checkpwd, "none") )
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{
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if ( Q_stricmp( m_szPassword, checkpwd ) )
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{
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Disconnect("Bad relay password");
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return false;
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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 client is a normal spectator, check if we can to forward him to other relays
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if ( m_pHLTV->DispatchToRelay( this ) )
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{
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return false;
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}
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// if client stays here, check the normal password
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checkpwd = m_pHLTV->GetPassword();
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if ( checkpwd )
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{
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if ( Q_stricmp( m_szPassword, checkpwd ) )
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{
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Disconnect("Bad spectator password");
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return false;
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}
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}
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// check if server is LAN only
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if ( !m_pHLTV->CheckIPRestrictions( m_NetChannel->GetRemoteAddress(), PROTOCOL_HASHEDCDKEY ) )
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{
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Disconnect( "SourceTV server is restricted to local spectators (class C).\n" );
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return false;
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}
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}
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}
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return true;
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}
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void CHLTVClient::UpdateUserSettings()
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{
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// set voice loopback
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m_bNoChat = m_ConVars->GetInt( "tv_nochat", 0 ) != 0;
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CBaseClient::UpdateUserSettings();
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}
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void CHLTVClient::SendSnapshot( CClientFrame * pFrame )
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{
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VPROF_BUDGET( "CHLTVClient::SendSnapshot", "HLTV" );
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ALIGN4 byte buf[NET_MAX_PAYLOAD] ALIGN4_POST;
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bf_write msg( "CHLTVClient::SendSnapshot", buf, sizeof(buf) );
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// if we send a full snapshot (no delta-compression) before, wait until client
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// received and acknowledge that update. don't spam client with full updates
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if ( m_pLastSnapshot == pFrame->GetSnapshot() )
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{
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// never send the same snapshot twice
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m_NetChannel->Transmit();
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return;
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}
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if ( m_nForceWaitForTick > 0 )
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{
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// just continue transmitting reliable data
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Assert( !m_bFakePlayer ); // Should never happen
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m_NetChannel->Transmit();
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return;
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}
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CClientFrame *pDeltaFrame = GetDeltaFrame( m_nDeltaTick ); // NULL if delta_tick is not found
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CHLTVFrame *pLastFrame = (CHLTVFrame*) GetDeltaFrame( m_nLastSendTick );
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if ( pLastFrame )
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{
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// start first frame after last send
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pLastFrame = (CHLTVFrame*) pLastFrame->m_pNext;
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}
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// add all reliable messages between ]lastframe,currentframe]
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// add all tempent & sound messages between ]lastframe,currentframe]
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while ( pLastFrame && pLastFrame->tick_count <= pFrame->tick_count )
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{
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m_NetChannel->SendData( pLastFrame->m_Messages[HLTV_BUFFER_RELIABLE], true );
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if ( pDeltaFrame )
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{
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// if we send entities delta compressed, also send unreliable data
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m_NetChannel->SendData( pLastFrame->m_Messages[HLTV_BUFFER_UNRELIABLE], false );
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}
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pLastFrame = (CHLTVFrame*) pLastFrame->m_pNext;
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}
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// now create client snapshot packet
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// send tick time
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NET_Tick tickmsg( pFrame->tick_count, host_frametime_unbounded, host_frametime_stddeviation );
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tickmsg.WriteToBuffer( msg );
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// Update shared client/server string tables. Must be done before sending entities
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m_Server->m_StringTables->WriteUpdateMessage( NULL, GetMaxAckTickCount(), msg );
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// TODO delta cache whole snapshots, not just packet entities. then use net_Align
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// send entity update, delta compressed if deltaFrame != NULL
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m_Server->WriteDeltaEntities( this, pFrame, pDeltaFrame, msg );
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// write message to packet and check for overflow
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if ( msg.IsOverflowed() )
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{
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if ( !pDeltaFrame )
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{
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// if this is a reliable snapshot, drop the client
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Disconnect( "ERROR! Reliable snapshot overflow." );
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return;
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}
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else
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{
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// unreliable snapshots may be dropped
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ConMsg ("WARNING: msg overflowed for %s\n", m_Name);
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msg.Reset();
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}
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}
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// remember this snapshot
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m_pLastSnapshot = pFrame->GetSnapshot();
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m_nLastSendTick = pFrame->tick_count;
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// Don't send the datagram to fakeplayers
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if ( m_bFakePlayer )
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{
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m_nDeltaTick = pFrame->tick_count;
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return;
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}
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bool bSendOK;
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// is this is a full entity update (no delta) ?
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if ( !pDeltaFrame )
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{
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// transmit snapshot as reliable data chunk
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bSendOK = m_NetChannel->SendData( msg );
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bSendOK = bSendOK && m_NetChannel->Transmit();
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// remember this tickcount we send the reliable snapshot
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// so we can continue sending other updates if this has been acknowledged
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m_nForceWaitForTick = pFrame->tick_count;
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}
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else
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{
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// just send it as unreliable snapshot
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bSendOK = m_NetChannel->SendDatagram( &msg ) > 0;
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}
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if ( !bSendOK )
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{
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Disconnect( "ERROR! Couldn't send snapshot." );
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}
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}
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