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ba01f6dba3
Also move it to MathUtils where it belongs with the rest of the power-of-two functions. This gets rid of pollution of the current scope of any translation unit with b<value> macros that aren't intended to be used directly.
110 lines
3.1 KiB
C++
110 lines
3.1 KiB
C++
// Copyright 2010 Dolphin Emulator Project
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// Licensed under GPLv2+
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// Refer to the license.txt file included.
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#pragma once
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#include <memory>
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#include <vector>
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#include "Common/CommonTypes.h"
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#include "Common/MathUtil.h"
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#include "VideoCommon/RenderState.h"
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#include "VideoCommon/ShaderCache.h"
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class DataReader;
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class NativeVertexFormat;
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class PointerWrap;
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struct PortableVertexDeclaration;
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struct Slope
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{
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float dfdx;
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float dfdy;
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float f0;
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bool dirty;
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};
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class VertexManagerBase
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{
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private:
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// 3 pos
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static constexpr u32 SMALLEST_POSSIBLE_VERTEX = sizeof(float) * 3;
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// 3 pos, 3*3 normal, 2*u32 color, 8*4 tex, 1 posMat
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static constexpr u32 LARGEST_POSSIBLE_VERTEX = sizeof(float) * 45 + sizeof(u32) * 2;
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static constexpr u32 MAX_PRIMITIVES_PER_COMMAND = 65535;
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public:
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static constexpr u32 MAXVBUFFERSIZE =
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MathUtil::NextPowerOf2(MAX_PRIMITIVES_PER_COMMAND * LARGEST_POSSIBLE_VERTEX);
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// We may convert triangle-fans to triangle-lists, almost 3x as many indices.
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static constexpr u32 MAXIBUFFERSIZE = MathUtil::NextPowerOf2(MAX_PRIMITIVES_PER_COMMAND * 3);
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VertexManagerBase();
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// needs to be virtual for DX11's dtor
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virtual ~VertexManagerBase();
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PrimitiveType GetCurrentPrimitiveType() const { return m_current_primitive_type; }
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DataReader PrepareForAdditionalData(int primitive, u32 count, u32 stride, bool cullall);
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void FlushData(u32 count, u32 stride);
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void Flush();
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virtual std::unique_ptr<NativeVertexFormat>
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CreateNativeVertexFormat(const PortableVertexDeclaration& vtx_decl) = 0;
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void DoState(PointerWrap& p);
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std::pair<size_t, size_t> ResetFlushAspectRatioCount();
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// State setters, called from register update functions.
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void SetRasterizationStateChanged() { m_rasterization_state_changed = true; }
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void SetDepthStateChanged() { m_depth_state_changed = true; }
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void SetBlendingStateChanged() { m_blending_state_changed = true; }
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void InvalidatePipelineObject()
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{
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m_current_pipeline_object = nullptr;
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m_pipeline_config_changed = true;
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}
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protected:
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virtual void vDoState(PointerWrap& p) {}
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virtual void ResetBuffer(u32 stride) = 0;
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u8* m_cur_buffer_pointer = nullptr;
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u8* m_base_buffer_pointer = nullptr;
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u8* m_end_buffer_pointer = nullptr;
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u32 GetRemainingSize() const;
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static u32 GetRemainingIndices(int primitive);
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Slope m_zslope = {};
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void CalculateZSlope(NativeVertexFormat* format);
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VideoCommon::GXPipelineUid m_current_pipeline_config;
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VideoCommon::GXUberPipelineUid m_current_uber_pipeline_config;
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const AbstractPipeline* m_current_pipeline_object = nullptr;
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PrimitiveType m_current_primitive_type = PrimitiveType::Points;
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bool m_pipeline_config_changed = true;
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bool m_rasterization_state_changed = true;
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bool m_depth_state_changed = true;
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bool m_blending_state_changed = true;
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bool m_cull_all = false;
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private:
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bool m_is_flushed = true;
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size_t m_flush_count_4_3 = 0;
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size_t m_flush_count_anamorphic = 0;
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virtual void vFlush() = 0;
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virtual void CreateDeviceObjects() {}
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virtual void DestroyDeviceObjects() {}
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void UpdatePipelineConfig();
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void UpdatePipelineObject();
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};
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extern std::unique_ptr<VertexManagerBase> g_vertex_manager;
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