201 lines
6.7 KiB
C++
201 lines
6.7 KiB
C++
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//========= Copyright <20> 1996-2005, Valve Corporation, All rights reserved. ====
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//
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// When triggered, will attempt to fire off each of its outputs. Each output
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// has its own chance of firing.
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//
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//=============================================================================
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#include "cbase.h"
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#include "entityinput.h"
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#include "entityoutput.h"
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#include "eventqueue.h"
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#include "soundent.h"
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#include "logic_random_outputs.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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const int SF_REMOVE_ON_FIRE = 0x001; // Relay will remove itself after being triggered.
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const int SF_ALLOW_FAST_RETRIGGER = 0x002; // Unless set, entity will disable itself until the last output is sent.
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LINK_ENTITY_TO_CLASS(logic_random_outputs, CLogicRandomOutputs);
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BEGIN_DATADESC( CLogicRandomOutputs )
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DEFINE_FIELD(m_bWaitForRefire, FIELD_BOOLEAN),
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DEFINE_KEYFIELD(m_bDisabled, FIELD_BOOLEAN, "StartDisabled"),
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DEFINE_AUTO_ARRAY( m_flOnTriggerChance, FIELD_FLOAT ),
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// Inputs
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DEFINE_INPUTFUNC(FIELD_VOID, "Enable", InputEnable),
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DEFINE_INPUTFUNC(FIELD_VOID, "EnableRefire", InputEnableRefire),
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DEFINE_INPUTFUNC(FIELD_VOID, "Disable", InputDisable),
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DEFINE_INPUTFUNC(FIELD_VOID, "Toggle", InputToggle),
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DEFINE_INPUTFUNC(FIELD_VOID, "Trigger", InputTrigger),
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DEFINE_INPUTFUNC(FIELD_VOID, "CancelPending", InputCancelPending),
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// Outputs
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DEFINE_OUTPUT(m_OnSpawn, "OnSpawn"),
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DEFINE_OUTPUT(m_Output[0], "OnTrigger1"),
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DEFINE_OUTPUT(m_Output[1], "OnTrigger2"),
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DEFINE_OUTPUT(m_Output[2], "OnTrigger3"),
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DEFINE_OUTPUT(m_Output[3], "OnTrigger4"),
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DEFINE_OUTPUT(m_Output[4], "OnTrigger5"),
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DEFINE_OUTPUT(m_Output[5], "OnTrigger6"),
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DEFINE_OUTPUT(m_Output[6], "OnTrigger7"),
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DEFINE_OUTPUT(m_Output[7], "OnTrigger8"),
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END_DATADESC()
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//-----------------------------------------------------------------------------
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// Purpose: Constructor.
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//-----------------------------------------------------------------------------
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CLogicRandomOutputs::CLogicRandomOutputs(void)
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{
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}
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//-----------------------------------------------------------------------------
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// Purpose: Read in the chance of firing each output
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//-----------------------------------------------------------------------------
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bool CLogicRandomOutputs::KeyValue( const char *szKeyName, const char *szValue )
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{
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if ( szValue && szValue[0] )
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{
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for ( int i=0; i < NUM_RANDOM_OUTPUTS; i++ )
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{
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if ( FStrEq( szKeyName, UTIL_VarArgs( "OnTriggerChance%d", i ) ) )
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{
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m_flOnTriggerChance[i] = atof( szValue );
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return true;
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}
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}
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}
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return BaseClass::KeyValue( szKeyName, szValue );
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}
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//------------------------------------------------------------------------------
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// Kickstarts a think if we have OnSpawn connections.
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//------------------------------------------------------------------------------
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void CLogicRandomOutputs::Activate()
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{
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BaseClass::Activate();
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if ( m_OnSpawn.NumberOfElements() > 0)
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{
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SetNextThink( gpGlobals->curtime + 0.01 );
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}
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}
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//-----------------------------------------------------------------------------
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// If we have OnSpawn connections, this is called shortly after spawning to
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// fire the OnSpawn output.
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//-----------------------------------------------------------------------------
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void CLogicRandomOutputs::Think()
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{
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// Fire an output when we spawn. This is used for self-starting an entity
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// template -- since the logic_random_outputs is inside the template, it gets all the
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// name and I/O connection fixup, so can target other entities in the template.
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m_OnSpawn.FireOutput( this, this );
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// We only get here if we had OnSpawn connections, so this is safe.
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if ( m_spawnflags & SF_REMOVE_ON_FIRE )
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{
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UTIL_Remove(this);
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}
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}
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//------------------------------------------------------------------------------
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// Purpose: Turns on the entity, allowing it to fire outputs.
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//------------------------------------------------------------------------------
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void CLogicRandomOutputs::InputEnable( inputdata_t &inputdata )
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{
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m_bDisabled = false;
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}
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//------------------------------------------------------------------------------
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// Purpose: Enables us to fire again. This input is only posted from our Trigger
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// function to prevent rapid refire.
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//------------------------------------------------------------------------------
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void CLogicRandomOutputs::InputEnableRefire( inputdata_t &inputdata )
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{
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Msg(" now enabling refire\n" );
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m_bWaitForRefire = false;
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}
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//------------------------------------------------------------------------------
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// Purpose: Cancels any I/O events in the queue that were fired by us.
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//------------------------------------------------------------------------------
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void CLogicRandomOutputs::InputCancelPending( inputdata_t &inputdata )
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{
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g_EventQueue.CancelEvents( this );
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// Stop waiting; allow another Trigger.
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m_bWaitForRefire = false;
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}
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//------------------------------------------------------------------------------
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// Purpose: Turns off the entity, preventing it from firing outputs.
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//------------------------------------------------------------------------------
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void CLogicRandomOutputs::InputDisable( inputdata_t &inputdata )
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{
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m_bDisabled = true;
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}
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//------------------------------------------------------------------------------
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// Purpose: Toggles the enabled/disabled state of the entity.
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//------------------------------------------------------------------------------
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void CLogicRandomOutputs::InputToggle( inputdata_t &inputdata )
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{
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m_bDisabled = !m_bDisabled;
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}
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//-----------------------------------------------------------------------------
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// Purpose: Input handler that triggers the logic_random_outputs.
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//-----------------------------------------------------------------------------
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void CLogicRandomOutputs::InputTrigger( inputdata_t &inputdata )
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{
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if ((!m_bDisabled) && (!m_bWaitForRefire))
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{
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for ( int i=0 ; i < NUM_RANDOM_OUTPUTS ; i++ )
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{
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if ( RandomFloat() <= m_flOnTriggerChance[i] )
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{
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m_Output[i].FireOutput( inputdata.pActivator, this );
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}
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}
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if (m_spawnflags & SF_REMOVE_ON_FIRE)
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{
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UTIL_Remove(this);
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}
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else if (!(m_spawnflags & SF_ALLOW_FAST_RETRIGGER))
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{
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// find the max delay from all our outputs
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float fMaxDelay = 0;
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for ( int i=0 ; i < NUM_RANDOM_OUTPUTS ; i++ )
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{
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fMaxDelay = MAX( fMaxDelay, m_Output[i].GetMaxDelay() );
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}
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if ( fMaxDelay > 0 )
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{
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// Disable the relay so that it cannot be refired until after the last output
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// has been fired and post an input to re-enable ourselves.
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m_bWaitForRefire = true;
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g_EventQueue.AddEvent(this, "EnableRefire", fMaxDelay + 0.001, this, this);
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}
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}
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}
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}
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