2022-10-09 05:13:17 +00:00
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#ifndef _CACTORPARAMETERS
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#define _CACTORPARAMETERS
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2022-08-13 01:26:00 +00:00
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#include "types.h"
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#include "Kyoto/Graphics/CColor.hpp"
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2022-09-18 05:55:13 +00:00
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#include "Kyoto/IObjectStore.hpp"
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2022-08-13 01:26:00 +00:00
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#include "Kyoto/Math/CVector3f.hpp"
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#include "rstl/auto_ptr.hpp"
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#include "rstl/pair.hpp"
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class CActorLights;
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class CLightParameters {
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public:
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enum EShadowTessellation {
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kST_Invalid = -1,
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kST_Zero,
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};
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enum EWorldLightingOptions {
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kLO_Zero,
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kLO_NormalWorld,
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kLO_NoShadowCast,
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kLO_DisableWorld,
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};
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enum ELightRecalculationOptions {
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kLR_Never,
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kLR_EightFrames,
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kLR_FourFrames,
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kLR_OneFrame,
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};
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CLightParameters();
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CLightParameters(bool castShadow, float shadowScale,
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CLightParameters::EShadowTessellation shadowTess, float shadowAlpha,
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float maxShadowHeight, const CColor& ambientColor, bool makeLights,
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CLightParameters::EWorldLightingOptions useWorldLighting,
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CLightParameters::ELightRecalculationOptions lightRecalcOpts,
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const CVector3f& lightingPositionOffset, int maxDynamicLights, int maxAreaLights,
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bool ambChannelOverflow, int useLightSet);
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virtual ~CLightParameters();
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const CColor& GetAmbientColor() const { return x18_ambientColor; }
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bool ShouldMakeLights() const { return x1c_makeLights; }
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bool GetAmbientChannelOverflow() const { return x1d_ambientChannelOverflow; }
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const CVector3f& GetLightingPositionOffset() const { return x2c_lightingPositionOffset; }
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int GetMaxDynamicLights() const { return x38_maxDynamicLights; }
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int GetMaxAreaLights() const { return x3c_maxAreaLights; }
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static CLightParameters None();
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static uint GetFramesBetweenRecalculation(ELightRecalculationOptions opts);
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rstl::auto_ptr< CActorLights > MakeActorLights() const;
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private:
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bool x4_castShadow;
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float x8_shadowScale;
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EShadowTessellation xc_shadowTesselation;
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float x10_shadowAlpha;
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float x14_maxShadowHeight;
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CColor x18_ambientColor;
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bool x1c_makeLights;
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bool x1d_ambientChannelOverflow;
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EWorldLightingOptions x20_useWorldLighting;
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ELightRecalculationOptions x24_lightRecalculation;
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int x28_useLightSet;
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CVector3f x2c_lightingPositionOffset;
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int x38_maxDynamicLights;
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int x3c_maxAreaLights;
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};
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CHECK_SIZEOF(CLightParameters, 0x40)
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class CScannableParameters {
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public:
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CScannableParameters() {}
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CScannableParameters(CAssetId scanId) : x0_scanId(scanId) {}
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CAssetId GetScannableObject0() const { return x0_scanId; }
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private:
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CAssetId x0_scanId;
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};
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CHECK_SIZEOF(CScannableParameters, 0x4)
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class CVisorParameters {
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public:
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CVisorParameters(uchar mask, bool b1, bool scanPassthrough)
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: x0_mask(mask), x0_4_b1(b1), x0_5_scanPassthrough(scanPassthrough) {}
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uchar GetMask() const { return x0_mask; }
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// TODO: GetIsBlockXRay__16CVisorParametersCFv?
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bool GetBool1() const { return x0_4_b1; }
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bool GetScanPassthrough() const { return x0_5_scanPassthrough; }
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static CVisorParameters None() { return CVisorParameters(0xF, false, false); }
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private:
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uint x0_mask : 4;
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uint x0_4_b1 : 1;
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uint x0_5_scanPassthrough : 1;
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};
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CHECK_SIZEOF(CVisorParameters, 0x4)
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class CActorParameters {
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public:
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2022-11-03 23:54:33 +00:00
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CActorParameters();
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CActorParameters(const CLightParameters& lightParms, const CScannableParameters& scanParms,
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const rstl::pair< CAssetId, CAssetId >& xrayAssets,
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const rstl::pair< CAssetId, CAssetId >& thermalAssets,
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const CVisorParameters& visorParms, bool globalTimeProvider, bool thermalHeat,
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bool renderUnsorted, bool noSortThermal, float fadeInTime, float fadeOutTime,
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float thermalMag);
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CActorParameters(const CActorParameters&);
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CActorParameters Scannable(const CScannableParameters& sParms) const;
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CActorParameters HotInThermal(bool hot) const;
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CActorParameters MakeDamageableTriggerActorParms(const CVisorParameters& visorParam) const;
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const CLightParameters& GetLighting() const { return x0_lighting; }
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const CScannableParameters& GetScannable() const { return x40_scannable; }
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const rstl::pair< CAssetId, CAssetId >& GetXRay() const { return x44_xrayAssets; }
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const rstl::pair< CAssetId, CAssetId >& GetInfra() const { return x4c_thermalAssets; }
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const CVisorParameters& GetVisorParameters() const { return x54_visor; }
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float GetThermalMag() const { return x64_thermalMag; }
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bool UseGlobalRenderTime() const { return x58_24_useGlobalRenderTime; }
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bool IsHotInThermal() const { return x58_25_thermalHeat; }
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bool ForceRenderUnsorted() const { return x58_26_forceRenderUnsorted; }
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bool NoSortThermal() const { return x58_27_noSortThermal; }
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float GetFadeInTime() const { return x5c_fadeInTime; }
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float GetFadeOutTime() const { return x60_fadeOutTime; }
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2022-09-14 02:25:08 +00:00
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static CActorParameters None();
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private:
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CLightParameters x0_lighting;
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CScannableParameters x40_scannable;
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rstl::pair< CAssetId, CAssetId > x44_xrayAssets;
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rstl::pair< CAssetId, CAssetId > x4c_thermalAssets;
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CVisorParameters x54_visor;
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uchar x58_24_useGlobalRenderTime : 1;
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uchar x58_25_thermalHeat : 1;
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uchar x58_26_forceRenderUnsorted : 1;
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uchar x58_27_noSortThermal : 1;
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float x5c_fadeInTime;
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float x60_fadeOutTime;
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float x64_thermalMag;
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};
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CHECK_SIZEOF(CActorParameters, 0x68)
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2022-10-09 05:13:17 +00:00
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#endif // _CACTORPARAMETERS
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