mirror of https://github.com/AxioDL/metaforce.git
171 lines
6.8 KiB
C++
171 lines
6.8 KiB
C++
#ifndef __URDE_CACTOR_HPP__
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#define __URDE_CACTOR_HPP__
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#include "CEntity.hpp"
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#include "Graphics/CGraphics.hpp"
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#include "Graphics/CSimpleShadow.hpp"
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#include "zeus/zeus.hpp"
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#include "Collision/CMaterialFilter.hpp"
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#include "Character/CModelData.hpp"
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#include "Character/CActorLights.hpp"
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#include "Collision/CCollisionResponseData.hpp"
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#include "Audio/CSfxManager.hpp"
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#include "CScannableObjectInfo.hpp"
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namespace urde
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{
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class CActorParameters;
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class CWeaponMode;
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class CHealthInfo;
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class CDamageInfo;
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class CDamageVulnerability;
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class CLightParameters;
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class CScriptWater;
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class CSimpleShadow;
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class CActor : public CEntity
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{
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friend class CStateManager;
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protected:
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zeus::CTransform x34_transform;
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std::unique_ptr<CModelData> x64_modelData;
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CMaterialList x68_material;
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CMaterialFilter x70_materialFilter;
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s16 x88_sfxId = -1;
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std::unique_ptr<CSfxHandle> x8c_sfxHandle;
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std::unique_ptr<CActorLights> x90_actorLights;
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std::unique_ptr<CSimpleShadow> x94_simpleShadow;
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std::unique_ptr<TToken<CScannableObjectInfo>> x98_scanObjectInfo;
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zeus::CAABox x9c_aabox;
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CModelFlags xb4_drawFlags;
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float xbc_time = 0.f;
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s32 xc0_ = 0;
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TUniqueId xc4_fluidId = kInvalidUniqueId;
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TUniqueId xc6_nextDrawNode = kInvalidUniqueId;
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u32 xc8_drawnToken = -1;
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u32 xcc_addedToken = -1;
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float xd0_;
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u8 xd4_ = 0x7F;
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u32 xd8_ = 2;
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union
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{
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struct
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{
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bool xe4_27_ : 1;
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bool xe4_28_ : 1;
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bool xe4_29_ : 1;
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bool xe4_30_ : 1;
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bool xe4_31_lightsDirty : 1;
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bool xe5_24_ : 1;
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bool xe5_25_ : 1;
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bool xe5_26_muted : 1;
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bool xe5_27_useInSortedLists : 1;
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bool xe5_28_callTouch : 1;
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bool xe6_26_inFluid : 1;
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u8 xe6_27_ : 3;
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bool xe6_30_enablePitchBend : 1;
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bool xe7_29_ : 1;
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bool xe7_30_doTargetDistanceTest : 1;
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bool xe7_31_ : 1;
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};
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u32 dummy = 0;
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};
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void _CreateShadow();
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public:
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enum class EFluidState
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{
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};
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enum class EScanState
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{
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Start,
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Processing,
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Done,
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};
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CActor(TUniqueId, bool, const std::string&, const CEntityInfo&, const zeus::CTransform&, CModelData&&,
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const CMaterialList&, const CActorParameters&, TUniqueId);
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virtual void AcceptScriptMsg(EScriptObjectMessage, TUniqueId, CStateManager&);
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virtual void SetActive(bool active)
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{
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xe4_27_ = true;
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xe4_28_ = true;
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xe4_29_ = true;
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xe7_29_ = true;
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CEntity::SetActive(active);
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}
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virtual void PreRender(CStateManager&, const zeus::CFrustum&) {}
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virtual void AddToRenderer(const zeus::CFrustum&, const CStateManager&) const {}
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virtual void Render(const CStateManager&) const {}
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virtual bool CanRenderUnsorted(const CStateManager&) const { return false; }
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virtual void CalculateRenderBounds();
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virtual CHealthInfo* HealthInfo();
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virtual const CDamageVulnerability* GetDamageVulnerability() const;
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virtual const CDamageVulnerability* GetDamageVulnerability(const zeus::CVector3f&, const zeus::CVector3f&,
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const CDamageInfo&) const;
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virtual rstl::optional_object<zeus::CAABox> GetTouchBounds() const;
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virtual void Touch(CActor&, CStateManager&);
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virtual zeus::CVector3f GetOrbitPosition(const CStateManager&) const;
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virtual zeus::CVector3f GetAimPosition(const CStateManager&, float) const;
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virtual zeus::CVector3f GetHomingPosition(const CStateManager&, float) const;
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virtual zeus::CVector3f GetScanObjectIndicatorPosition(const CStateManager&) const;
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virtual EWeaponCollisionResponseTypes GetCollisionResponseType(const zeus::CVector3f&, const zeus::CVector3f&,
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CWeaponMode&, int);
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virtual void FluidFXThink(EFluidState, CScriptWater&, CStateManager&);
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virtual void OnScanStateChanged(EScanState, CStateManager&);
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virtual zeus::CAABox GetSortingBounds(const CStateManager&) const;
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virtual void DoUserAnimEvent(CStateManager&, CInt32POINode&, EUserEventType);
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void RemoveEmitter();
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const zeus::CTransform& GetTransform() const { return x34_transform; }
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const zeus::CVector3f& GetTranslation() const { return x34_transform.origin; }
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const zeus::CTransform GetScaledLocatorTransform(const std::string& segName) const;
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const zeus::CTransform GetLocatorTransform(const std::string& segName) const;
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void RemoveMaterial(EMaterialTypes, EMaterialTypes, EMaterialTypes, EMaterialTypes, CStateManager&);
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void RemoveMaterial(EMaterialTypes, EMaterialTypes, EMaterialTypes, CStateManager&);
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void RemoveMaterial(EMaterialTypes, EMaterialTypes, CStateManager&);
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void RemoveMaterial(EMaterialTypes, CStateManager&);
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void AddMaterial(EMaterialTypes, EMaterialTypes, EMaterialTypes, EMaterialTypes, EMaterialTypes, CStateManager&);
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void AddMaterial(EMaterialTypes, EMaterialTypes, EMaterialTypes, EMaterialTypes, CStateManager&);
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void AddMaterial(EMaterialTypes, EMaterialTypes, EMaterialTypes, CStateManager&);
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void AddMaterial(EMaterialTypes, EMaterialTypes, CStateManager&);
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void AddMaterial(EMaterialTypes, CStateManager&);
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void AddMaterial(const CMaterialList& l);
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void CreateShadow(bool);
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void SetCallTouch(bool callTouch);
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bool GetCallTouch() const;
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void SetUseInSortedLists(bool use);
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bool GetUseInSortedLists() const;
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const CMaterialFilter& GetMaterialFilter() const { return x70_materialFilter; }
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void SetMaterialFilter(const CMaterialFilter& filter) { x70_materialFilter = filter; }
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const CMaterialList& GetMaterialList() const { return x68_material; }
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void SetInFluid(bool in, TUniqueId uid);
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bool HasModelData() const;
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const CSfxHandle* GetSfxHandle() const;
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void SetSfxPitchBend(s32);
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void SetRotation(const zeus::CQuaternion& q);
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void SetTranslation(const zeus::CVector3f& tr);
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void SetTransform(const zeus::CTransform& tr);
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void SetAddedToken(u32 tok);
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float GetPitch() const;
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float GetYaw() const;
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const CModelData* GetModelData() const { return x64_modelData.get(); }
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CModelData* ModelData() { return x64_modelData.get(); }
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void EnsureRendered(const CStateManager&);
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void EnsureRendered(const CStateManager&, const zeus::CVector3f&, const zeus::CAABox&) const;
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SAdvancementDeltas UpdateAnimation(float, CStateManager&, bool);
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void SetActorLights(std::unique_ptr<CActorLights>);
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bool CanDrawStatic() const;
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bool GetE7_29() const { return xe7_29_; }
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const CScannableObjectInfo* GetScannableObjectInfo() const;
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const CHealthInfo* GetHealthInfo() const { return const_cast<CActor*>(this)->HealthInfo(); }
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bool GetDoTargetDistanceTest() const { return xe7_30_doTargetDistanceTest; }
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};
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}
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#endif // __URDE_CACTOR_HPP__
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