prime/include/MetroidPrime/CExplosion.hpp

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#ifndef _CEXPLOSION
#define _CEXPLOSION
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#include "types.h"
#include "MetroidPrime/CEffect.hpp"
#include "rstl/single_ptr.hpp"
class CParticleGen;
class CGenDescription;
class CElectricDescription;
class CExplosion : public CEffect {
public:
CExplosion(const TLockedToken< CGenDescription >& particle, TUniqueId uid, bool active,
const CEntityInfo& info, const rstl::string& name, const CTransform4f& xf, uint flags,
const CVector3f& scale, const CColor& color);
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CExplosion(const TLockedToken< CElectricDescription >& electric, TUniqueId uid, bool active,
const CEntityInfo& info, const rstl::string& name, const CTransform4f& xf, uint flags,
const CVector3f& scale, const CColor& color);
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// CEntity
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~CExplosion() override;
void Accept(IVisitor& visitor) override;
void Think(float dt, CStateManager& mgr) override;
void AcceptScriptMsg(EScriptObjectMessage msg, TUniqueId uid, CStateManager& mgr) override;
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// CActor
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void PreRender(CStateManager&, const CFrustumPlanes&) override;
void AddToRenderer(const CFrustumPlanes&, const CStateManager&) const override;
void Render(const CStateManager&) const override;
void CalculateRenderBounds() override;
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TUniqueId GetExplosionLightId() const { return xec_explosionLight; }
uint GetSourceId() const { return xf0_sourceId; }
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public:
rstl::single_ptr< CParticleGen > xe8_particleGen;
TUniqueId xec_explosionLight;
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uint xf0_sourceId;
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bool xf4_24_renderThermalHot : 1;
bool xf4_25_ : 1;
bool xf4_26_renderXray : 1;
float xf8_time;
};
CHECK_SIZEOF(CExplosion, 0x100)
#endif // _CEXPLOSION