mirror of https://github.com/AxioDL/metaforce.git
179 lines
6.7 KiB
C++
179 lines
6.7 KiB
C++
#pragma once
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#include <array>
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#include <vector>
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#include "Runtime/CToken.hpp"
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#include "Runtime/Graphics/CTexture.hpp"
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#include "Runtime/Graphics/Shaders/CModelShaders.hpp"
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#include "Runtime/World/CFluidPlaneManager.hpp"
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#include "Shaders/shader_CFluidPlaneShader.hpp"
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//#include <boo/graphicsdev/IGraphicsDataFactory.hpp>
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#include <zeus/CColor.hpp>
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#include <zeus/CMatrix4f.hpp>
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#include <zeus/CVector3f.hpp>
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#include <zeus/CVector4f.hpp>
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namespace metaforce {
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class CFluidPlaneShader {
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public:
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struct Vertex {
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zeus::CVector3f m_pos;
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zeus::CVector3f m_norm;
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zeus::CVector3f m_binorm;
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zeus::CVector3f m_tangent;
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zeus::CColor m_color;
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Vertex() = default;
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Vertex(const zeus::CVector3f& position) : m_pos(position) {}
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Vertex(const zeus::CVector3f& position, const zeus::CColor& color) : m_pos(position), m_color(color) {}
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Vertex(const zeus::CVector3f& position, const zeus::CVector3f& normal, const zeus::CColor& color)
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: m_pos(position), m_norm(normal), m_color(color) {}
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Vertex(const zeus::CVector3f& position, const zeus::CVector3f& normal, const zeus::CVector3f& binormal,
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const zeus::CVector3f& tangent, const zeus::CColor& color)
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: m_pos(position), m_norm(normal), m_binorm(binormal), m_tangent(tangent), m_color(color) {}
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};
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struct PatchVertex {
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zeus::CVector4f m_pos;
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std::array<float, 4> m_outerLevels{};
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std::array<float, 4> m_innerLevels{};
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};
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struct RenderSetupInfo {
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std::array<zeus::CMatrix4f, 6> texMtxs;
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zeus::CMatrix4f normMtx;
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float indScale = 1.f;
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std::array<zeus::CColor, 4> kColors;
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std::vector<CLight> lights;
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};
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private:
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// struct ShaderPair {
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// boo::ObjToken<boo::IShaderPipeline> m_regular;
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// boo::ObjToken<boo::IShaderPipeline> m_tessellation;
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// void reset() {
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// m_regular.reset();
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// m_tessellation.reset();
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// }
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// };
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//
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// struct BindingPair {
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// boo::ObjToken<boo::IShaderDataBinding> m_regular;
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// boo::ObjToken<boo::IShaderDataBinding> m_tessellation;
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// };
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// class Cache {
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// std::array<ShaderPair, 1024> m_cache{};
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// std::array<ShaderPair, 8> m_doorCache{};
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// ShaderPair& CacheSlot(const SFluidPlaneShaderInfo& info, int i) { return m_cache[i]; }
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// ShaderPair& CacheSlot(const SFluidPlaneDoorShaderInfo& info, int i) { return m_doorCache[i]; }
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// static u16 MakeCacheKey(const SFluidPlaneShaderInfo& info);
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// static u16 MakeCacheKey(const SFluidPlaneDoorShaderInfo& info);
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//
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// public:
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// template <class T>
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// ShaderPair GetOrBuildShader(const T& info);
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// void Clear();
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// };
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// static Cache _cache;
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struct Ripple {
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zeus::CVector4f center; // time, distFalloff
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zeus::CVector4f params; // amplitude, lookupPhase, lookupTime
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};
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// struct Uniform {
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// zeus::CMatrix4f m_mv;
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// zeus::CMatrix4f m_mvNorm;
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// zeus::CMatrix4f m_proj;
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// std::array<zeus::CMatrix4f, 6> m_texMtxs;
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// std::array<Ripple, 20> m_ripple;
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// zeus::CVector4f m_colorMul;
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// std::array<zeus::CVector4f, 3> m_pad; // rippleNormResolution, Pad out to 1280 bytes
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// CModelShaders::LightingUniform m_lighting;
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// zeus::CVector3f m_pad2; // Pad out to 768 bytes, also holds ind scale
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// };
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TLockedToken<CTexture> m_patternTex1;
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TLockedToken<CTexture> m_patternTex2;
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TLockedToken<CTexture> m_colorTex;
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TLockedToken<CTexture> m_bumpMap;
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TLockedToken<CTexture> m_envMap;
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TLockedToken<CTexture> m_envBumpMap;
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TLockedToken<CTexture> m_lightmap;
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aurora::gfx::TextureHandle m_rippleMap;
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// boo::ObjToken<boo::IGraphicsBufferD> m_vbo;
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// boo::ObjToken<boo::IGraphicsBufferD> m_pvbo;
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// boo::ObjToken<boo::IGraphicsBufferD> m_uniBuf;
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// ShaderPair m_pipelines;
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// BindingPair m_dataBind;
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int m_lastBind = -1;
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//#if BOO_HAS_GL
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// static ShaderPair BuildShader(boo::GLDataFactory::Context& ctx, const SFluidPlaneShaderInfo& info);
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// static ShaderPair BuildShader(boo::GLDataFactory::Context& ctx, const SFluidPlaneDoorShaderInfo& info);
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// BindingPair BuildBinding(boo::GLDataFactory::Context& ctx, const ShaderPair& pipeline);
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//#endif
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//#if _WIN32
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// static ShaderPair BuildShader(boo::D3D11DataFactory::Context& ctx, const SFluidPlaneShaderInfo& info);
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// static ShaderPair BuildShader(boo::D3D11DataFactory::Context& ctx, const SFluidPlaneDoorShaderInfo& info);
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// BindingPair BuildBinding(boo::D3D11DataFactory::Context& ctx, const ShaderPair& pipeline);
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//#endif
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//#if BOO_HAS_METAL
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// static ShaderPair BuildShader(boo::MetalDataFactory::Context& ctx, const SFluidPlaneShaderInfo& info);
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// static ShaderPair BuildShader(boo::MetalDataFactory::Context& ctx, const SFluidPlaneDoorShaderInfo& info);
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// BindingPair BuildBinding(boo::MetalDataFactory::Context& ctx, const ShaderPair& pipeline);
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//#endif
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//#if BOO_HAS_VULKAN
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// static ShaderPair BuildShader(boo::VulkanDataFactory::Context& ctx, const SFluidPlaneShaderInfo& info);
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// static ShaderPair BuildShader(boo::VulkanDataFactory::Context& ctx, const SFluidPlaneDoorShaderInfo& info);
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// BindingPair BuildBinding(boo::VulkanDataFactory::Context& ctx, const ShaderPair& pipeline);
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//#endif
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template <class F>
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static void _Shutdown();
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void PrepareBinding(u32 maxVertCount);
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public:
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CFluidPlaneShader(EFluidType type, const TLockedToken<CTexture>& patternTex1,
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const TLockedToken<CTexture>& patternTex2, const TLockedToken<CTexture>& colorTex,
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const TLockedToken<CTexture>& bumpMap, const TLockedToken<CTexture>& envMap,
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const TLockedToken<CTexture>& envBumpMap, const TLockedToken<CTexture>& lightmap,
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const aurora::gfx::TextureHandle& rippleMap, bool doubleLightmapBlend, bool additive,
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u32 maxVertCount);
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CFluidPlaneShader(const TLockedToken<CTexture>& patternTex1, const TLockedToken<CTexture>& patternTex2,
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const TLockedToken<CTexture>& colorTex, u32 maxVertCount);
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void prepareDraw(const RenderSetupInfo& info);
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void prepareDraw(const RenderSetupInfo& info, const zeus::CVector3f& waterCenter, const CRippleManager& rippleManager,
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const zeus::CColor& colorMul, float rippleNormResolution);
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void bindRegular() {
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if (m_lastBind != 0) {
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// CGraphics::SetShaderDataBinding(m_dataBind.m_regular);
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m_lastBind = 0;
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}
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}
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bool bindTessellation() {
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if (m_lastBind != 1) {
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// CGraphics::SetShaderDataBinding(m_dataBind.m_tessellation);
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m_lastBind = 1;
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}
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return true;
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}
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void doneDrawing() { m_lastBind = -1; }
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void loadVerts(const std::vector<Vertex>& verts, const std::vector<PatchVertex>& pVerts);
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bool isReady() const {
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// return m_pipelines.m_regular->isReady() && (!m_pipelines.m_tessellation || m_pipelines.m_tessellation->isReady());
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return false;
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}
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static void Shutdown();
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};
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} // namespace metaforce
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