Files
Seele/src/Engine/Graphics/Initializer.h
T
2023-12-11 14:45:37 +01:00

233 lines
7.8 KiB
C++

#pragma once
#include "Enums.h"
#include "Containers/Map.h"
#include "Math/Math.h"
namespace Seele
{
struct GraphicsInitializer
{
const char *applicationName;
const char *engineName;
const char *windowLayoutFile;
/**
* layers defines the enabled Vulkan layers used in the instance,
* if ENABLE_VALIDATION is defined, standard validation is already enabled
* not yet implemented
*/
Array<const char *> layers;
Array<const char *> instanceExtensions;
Array<const char *> deviceExtensions;
void *windowHandle;
GraphicsInitializer()
: applicationName("SeeleEngine")
, engineName("SeeleEngine")
, windowLayoutFile(nullptr)
, layers{"VK_LAYER_LUNARG_monitor"}
, instanceExtensions{}
, deviceExtensions{"VK_KHR_swapchain"}
, windowHandle(nullptr)
{
}
};
struct WindowCreateInfo
{
int32 width;
int32 height;
const char *title;
Gfx::SeFormat preferredFormat = Gfx::SE_FORMAT_MAX_ENUM;
void *windowHandle;
};
struct ViewportCreateInfo
{
URect dimensions;
float fieldOfView = 1.222f; // 70 deg
Gfx::SeSampleCountFlags numSamples;
};
// doesnt own the data, only proxy it
struct DataSource
{
uint64 size = 0;
uint64 offset = 0;
uint8 *data = nullptr;
Gfx::QueueType owner = Gfx::QueueType::GRAPHICS;
};
struct TextureCreateInfo
{
DataSource sourceData = DataSource();
Gfx::SeFormat format = Gfx::SE_FORMAT_R32G32B32A32_SFLOAT;
uint32 width = 1;
uint32 height = 1;
uint32 depth = 1;
uint32 mipLevels = 1;
uint32 layers = 1;
uint32 elements = 1;
uint32 samples = 1;
Gfx::SeImageUsageFlags usage = Gfx::SE_IMAGE_USAGE_SAMPLED_BIT;
Gfx::SeMemoryPropertyFlags memoryProps = Gfx::SE_MEMORY_PROPERTY_DEVICE_LOCAL_BIT;
};
struct SamplerCreateInfo
{
Gfx::SeSamplerCreateFlags flags;
Gfx::SeFilter magFilter = Gfx::SE_FILTER_LINEAR;
Gfx::SeFilter minFilter = Gfx::SE_FILTER_LINEAR;
Gfx::SeSamplerMipmapMode mipmapMode = Gfx::SE_SAMPLER_MIPMAP_MODE_LINEAR;
Gfx::SeSamplerAddressMode addressModeU = Gfx::SE_SAMPLER_ADDRESS_MODE_REPEAT;
Gfx::SeSamplerAddressMode addressModeV = Gfx::SE_SAMPLER_ADDRESS_MODE_REPEAT;
Gfx::SeSamplerAddressMode addressModeW = Gfx::SE_SAMPLER_ADDRESS_MODE_REPEAT;
float mipLodBias = 0.0f;
uint32 anisotropyEnable = 0;
float maxAnisotropy = 0.0f;
uint32 compareEnable = 0;
Gfx::SeCompareOp compareOp = Gfx::SE_COMPARE_OP_NEVER;
float minLod = 0.0f;
float maxLod = 0.0f;
Gfx::SeBorderColor borderColor = Gfx::SE_BORDER_COLOR_FLOAT_OPAQUE_BLACK;
uint32 unnormalizedCoordinates = 0;
};
struct VertexBufferCreateInfo
{
DataSource sourceData = DataSource();
// bytes per vertex
uint32 vertexSize = 0;
uint32 numVertices = 0;
};
struct IndexBufferCreateInfo
{
DataSource sourceData = DataSource();
Gfx::SeIndexType indexType = Gfx::SeIndexType::SE_INDEX_TYPE_UINT16;
};
struct UniformBufferCreateInfo
{
DataSource sourceData = DataSource();
uint8 dynamic = 0;
};
struct ShaderBufferCreateInfo
{
DataSource sourceData = DataSource();
uint64 numElements = 1;
uint8 dynamic = 0;
};
struct ShaderCreateInfo
{
std::string mainModule;
Array<std::string> additionalModules;
std::string name; // Debug info
std::string entryPoint;
Array<Pair<const char*, const char*>> typeParameter;
Map<const char*, const char*> defines;
};
namespace Gfx
{
struct SePushConstantRange
{
SeShaderStageFlags stageFlags;
uint32 offset;
uint32 size;
};
struct RasterizationState
{
uint32 depthClampEnable = 0;
uint32 rasterizerDiscardEnable = 0;
SePolygonMode polygonMode;
SeCullModeFlags cullMode;
SeFrontFace frontFace;
uint32 depthBiasEnable = 0;
float depthBiasConstantFactor = 0;
float depthBiasClamp = 0;
float depthBiasSlopeFactor = 0;
float lineWidth = 0;
};
struct MultisampleState
{
SeSampleCountFlags samples = 1;
uint32 sampleShadingEnable = 0;
float minSampleShading = 1;
uint8 alphaCoverageEnable = 0;
uint8 alphaToOneEnable = 0;
};
struct DepthStencilState
{
uint32 depthTestEnable = 0;
uint32 depthWriteEnable = 0;
SeCompareOp depthCompareOp = Gfx::SE_COMPARE_OP_LESS;
uint32 depthBoundsTestEnable = 0;
uint32 stencilTestEnable = 0;
SeStencilOp front = Gfx::SE_STENCIL_OP_END_RANGE;
SeStencilOp back = Gfx::SE_STENCIL_OP_END_RANGE;
float minDepthBounds;
float maxDepthBounds;
};
struct ColorBlendState
{
struct BlendAttachment
{
uint32 blendEnable = 0;
SeBlendFactor srcColorBlendFactor = Gfx::SE_BLEND_FACTOR_SRC_ALPHA;
SeBlendFactor dstColorBlendFactor = Gfx::SE_BLEND_FACTOR_SRC_ALPHA;
SeBlendOp colorBlendOp = Gfx::SE_BLEND_OP_ADD;
SeBlendFactor srcAlphaBlendFactor = Gfx::SE_BLEND_FACTOR_SRC_ALPHA;
SeBlendFactor dstAlphaBlendFactor = Gfx::SE_BLEND_FACTOR_SRC_ALPHA;
SeBlendOp alphaBlendOp = Gfx::SE_BLEND_OP_ADD;
SeColorComponentFlags colorWriteMask = 0;
};
uint32 logicOpEnable;
SeLogicOp logicOp = Gfx::SE_LOGIC_OP_OR;
uint32 attachmentCount;
StaticArray<BlendAttachment, 16> blendAttachments;
StaticArray<float, 4> blendConstants;
};
DECLARE_REF(VertexShader)
DECLARE_REF(TaskShader)
DECLARE_REF(MeshShader)
DECLARE_REF(FragmentShader)
DECLARE_REF(ComputeShader)
DECLARE_REF(RenderPass)
DECLARE_REF(PipelineLayout)
struct LegacyPipelineCreateInfo
{
SePrimitiveTopology topology;
PVertexShader vertexShader;
PFragmentShader fragmentShader;
PRenderPass renderPass;
OPipelineLayout pipelineLayout;
MultisampleState multisampleState;
RasterizationState rasterizationState;
DepthStencilState depthStencilState;
ColorBlendState colorBlend;
LegacyPipelineCreateInfo();
LegacyPipelineCreateInfo(LegacyPipelineCreateInfo&& rhs) = default;
LegacyPipelineCreateInfo& operator=(LegacyPipelineCreateInfo&& rhs) = default;
~LegacyPipelineCreateInfo();
};
struct MeshPipelineCreateInfo
{
PTaskShader taskShader;
PMeshShader meshShader;
PFragmentShader fragmentShader;
PRenderPass renderPass;
OPipelineLayout pipelineLayout;
MultisampleState multisampleState;
RasterizationState rasterizationState;
DepthStencilState depthStencilState;
ColorBlendState colorBlend;
MeshPipelineCreateInfo();
MeshPipelineCreateInfo(MeshPipelineCreateInfo&& rhs) = default;
MeshPipelineCreateInfo& operator=(MeshPipelineCreateInfo&& rhs) = default;
~MeshPipelineCreateInfo();
};
struct ComputePipelineCreateInfo
{
Gfx::PComputeShader computeShader;
Gfx::OPipelineLayout pipelineLayout;
ComputePipelineCreateInfo();
ComputePipelineCreateInfo(ComputePipelineCreateInfo&& rhs) = default;
ComputePipelineCreateInfo& operator=(ComputePipelineCreateInfo&& rhs) = default;
~ComputePipelineCreateInfo();
};
} // namespace Gfx
} // namespace Seele