mirror of https://github.com/AxioDL/metaforce.git
167 lines
5.8 KiB
C++
167 lines
5.8 KiB
C++
#pragma once
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#include "RetroTypes.hpp"
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#include "CToken.hpp"
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#include "zeus/CAABox.hpp"
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#include "Particle/CGenDescription.hpp"
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#include "Audio/CSfxManager.hpp"
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#include "Graphics/Shaders/CEnvFxShaders.hpp"
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#include "Graphics/CLineRenderer.hpp"
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#include "hecl/VertexBufferPool.hpp"
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#include "hecl/UniformBufferPool.hpp"
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namespace urde
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{
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class CStateManager;
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class CTexture;
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class CActor;
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enum class EEnvFxType
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{
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None,
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Snow,
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Rain,
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UnderwaterFlake
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};
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enum class EPhazonType
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{
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None,
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Blue,
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Orange
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};
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class CVectorFixed8_8
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{
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public:
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union {
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struct
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{
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s16 x, y, z;
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};
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s16 v[3];
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};
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CVectorFixed8_8() { x = y = z = 0; }
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CVectorFixed8_8(s16 xi, s16 yi, s16 zi) { x = xi; y = yi; z = zi; }
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CVectorFixed8_8(const zeus::CVector3f& vec)
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{
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x = s16(vec.x * 256.f);
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y = s16(vec.y * 256.f);
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z = s16(vec.z * 256.f);
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}
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CVectorFixed8_8 operator+(const CVectorFixed8_8& other) const
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{
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return {s16(x + other.x), s16(y + other.y), s16(z + other.z)};
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}
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CVectorFixed8_8 operator-(const CVectorFixed8_8& other) const
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{
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return {s16(x - other.x), s16(y - other.y), s16(z - other.z)};
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}
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zeus::CVector3f toVec3f() const
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{
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return {x / 256.f, y / 256.f, z / 256.f};
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}
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};
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class CEnvFxManagerGrid
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{
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friend class CEnvFxManager;
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friend class CEnvFxShaders;
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bool x0_24_blockDirty = true;
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zeus::CVector2i x4_position; /* 8.8 fixed point */
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zeus::CVector2i xc_extent; /* 8.8 fixed point */
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std::pair<bool, float> x14_block = {false, FLT_MAX}; /* Blocked-bool, Z-coordinate */
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std::vector<CVectorFixed8_8> x1c_particles;
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mutable hecl::VertexBufferPool<CEnvFxShaders::Instance>::Token m_instBuf;
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mutable hecl::UniformBufferPool<CEnvFxShaders::Uniform>::Token m_uniformBuf;
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mutable CLineRenderer m_lineRenderer;
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boo::ObjToken<boo::IShaderDataBinding> m_snowBinding;
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boo::ObjToken<boo::IShaderDataBinding> m_underwaterBinding;
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mutable float m_uvyOffset = 0.f;
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void RenderSnowParticles(const zeus::CTransform& camXf) const;
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void RenderRainParticles(const zeus::CTransform& camXf) const;
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void RenderUnderwaterParticles(const zeus::CTransform& camXf) const;
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public:
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CEnvFxManagerGrid(const zeus::CVector2i& position, const zeus::CVector2i& extent,
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const std::vector<CVectorFixed8_8>& initialParticles, int reserve,
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CEnvFxManager& parent, boo::IGraphicsDataFactory::Context& ctx);
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void Render(const zeus::CTransform& xf, const zeus::CTransform& invXf,
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const zeus::CTransform& camXf, float fxDensity, EEnvFxType fxType,
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const CEnvFxManager& parent) const;
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};
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class CEnvFxManager
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{
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friend class CEnvFxManagerGrid;
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friend class CEnvFxShaders;
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mutable hecl::VertexBufferPool<CEnvFxShaders::Instance> m_instPool;
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mutable hecl::UniformBufferPool<CEnvFxShaders::Uniform> m_uniformPool;
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mutable CEnvFxShaders::Uniform m_uniformData;
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boo::ObjToken<boo::IGraphicsBufferD> m_fogUniformBuf;
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zeus::CAABox x0_particleBounds = zeus::CAABox(-63.5f, 63.5f);
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zeus::CVector3f x18_focusCellPosition = zeus::CVector3f::skZero;
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bool x24_enableSplash = false;
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float x28_firstSnowForce = 0.f;
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s32 x2c_lastBlockedGridIdx = -1;
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float x30_fxDensity = 0.f;
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float x34_targetFxDensity = 0.f;
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float x38_maxDensityDeltaSpeed = 0.f;
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//bool x3c_snowflakeTextureMipBlanked = false; /* Shader simulates this texture mod */
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TLockedToken<CTexture> x40_txtrEnvGradient;
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rstl::reserved_vector<CEnvFxManagerGrid, 64> x50_grids;
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float xb54_baseSplashRate;
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TLockedToken<CGenDescription> xb58_envRainSplash;
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bool xb64_ = true;
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TUniqueId xb68_envRainSplashId = kInvalidUniqueId;
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bool xb6a_rainSoundActive = false;
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CSfxHandle xb6c_leftRainSound;
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CSfxHandle xb70_rightRainSound;
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TLockedToken<CTexture> xb74_txtrSnowFlake;
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bool xb80_ = true;
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rstl::reserved_vector<zeus::CVector3f, 16> xb84_snowZDeltas;
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TLockedToken<CTexture> xc48_underwaterFlake;
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bool xc54_ = true;
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void SetSplashEffectRate(float f, const CStateManager& mgr);
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void UpdateRainSounds(const CStateManager& mgr);
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zeus::CVector3f GetParticleBoundsToWorldScale() const;
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zeus::CTransform GetParticleBoundsToWorldTransform() const;
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void UpdateVisorSplash(CStateManager& mgr, float dt, const zeus::CTransform& camXf);
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void MoveWrapCells(s32, s32);
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void CalculateSnowForces(const CVectorFixed8_8& zVec, rstl::reserved_vector<CVectorFixed8_8, 256>& snowForces,
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EEnvFxType type, const zeus::CVector3f& oopbtws, float dt);
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static void BuildBlockObjectList(rstl::reserved_vector<TUniqueId, 1024>& list, CStateManager& mgr);
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void UpdateBlockedGrids(CStateManager& mgr, EEnvFxType type, const zeus::CTransform& camXf,
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const zeus::CTransform& xf, const zeus::CTransform& invXf);
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void CreateNewParticles(EEnvFxType type);
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void UpdateSnowParticles(const rstl::reserved_vector<CVectorFixed8_8, 256>& snowForces);
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void UpdateRainParticles(const CVectorFixed8_8& zVec, const zeus::CVector3f& oopbtws, float dt);
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void UpdateUnderwaterParticles(const CVectorFixed8_8& zVec);
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void SetupSnowTevs(const CStateManager& mgr) const;
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void SetupRainTevs() const;
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void SetupUnderwaterTevs(const zeus::CTransform& invXf, const CStateManager& mgr) const;
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public:
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CEnvFxManager();
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void AsyncLoadResources(CStateManager& mgr);
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void Update(float, CStateManager& mgr);
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void Render(const CStateManager& mgr) const;
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void SetFxDensity(s32, float);
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void AreaLoaded();
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void SetSplashRate(float f) { xb54_baseSplashRate = f; }
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bool IsSplashActive() const { return x24_enableSplash; }
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float GetRainMagnitude() const { return x30_fxDensity; }
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void Cleanup();
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static void Initialize();
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};
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}
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