mirror of
https://github.com/Laupetin/OpenAssetTools.git
synced 2025-11-22 21:02:07 +00:00
351 lines
14 KiB
C++
351 lines
14 KiB
C++
#include "TechsetDumperT6.h"
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#include "Game/T6/Material/MaterialConstantZoneStateT6.h"
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#include "Game/T6/Techset/TechsetConstantsT6.h"
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#include "Shader/ShaderCommon.h"
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#include "Techset/CommonTechniqueDumper.h"
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#include "Techset/CommonTechsetDumper.h"
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#include "Techset/ShaderDumpingZoneState.h"
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#include "Techset/TechniqueDumpingZoneState.h"
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#include <unordered_set>
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using namespace T6;
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namespace
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{
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void DumpPixelShader(const AssetDumpingContext& context, const MaterialPixelShader& pixelShader)
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{
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const auto shaderFile = context.OpenAssetFile(shader::GetFileNameForPixelShaderAssetName(pixelShader.name));
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if (!shaderFile)
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return;
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shaderFile->write(pixelShader.prog.loadDef.program, pixelShader.prog.loadDef.programSize);
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}
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void DumpVertexShader(const AssetDumpingContext& context, const MaterialVertexShader& vertexShader)
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{
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const auto shaderFile = context.OpenAssetFile(shader::GetFileNameForVertexShaderAssetName(vertexShader.name));
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if (!shaderFile)
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return;
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shaderFile->write(vertexShader.prog.loadDef.program, vertexShader.prog.loadDef.programSize);
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}
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void DumpShaders(AssetDumpingContext& context, const MaterialTechniqueSet& techset)
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{
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auto* shaderState = context.GetZoneAssetDumperState<techset::ShaderDumpingZoneState>();
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for (const auto* technique : techset.techniques)
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{
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if (!technique || !shaderState->ShouldDumpTechnique(technique))
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continue;
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for (auto passIndex = 0u; passIndex < technique->passCount; passIndex++)
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{
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const auto* pixelShader = technique->passArray[passIndex].pixelShader;
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if (pixelShader && shaderState->ShouldDumpPixelShader(pixelShader))
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DumpPixelShader(context, *pixelShader);
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const auto* vertexShader = technique->passArray[passIndex].vertexShader;
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if (vertexShader && shaderState->ShouldDumpVertexShader(vertexShader))
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DumpVertexShader(context, *vertexShader);
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}
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}
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}
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techset::CommonVertexDeclaration ConvertToCommonVertexDeclaration(const MaterialVertexDeclaration* vertexDecl)
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{
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std::vector<techset::CommonStreamRouting> commonRouting;
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if (vertexDecl)
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{
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const auto streamCount = std::min(static_cast<size_t>(vertexDecl->streamCount), std::extent_v<decltype(MaterialVertexStreamRouting::data)>);
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for (auto streamIndex = 0u; streamIndex < streamCount; streamIndex++)
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{
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const auto& routing = vertexDecl->routing.data[streamIndex];
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commonRouting.emplace_back(techset::CommonStreamRouting{
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.m_source = static_cast<techset::CommonStreamSource>(routing.source),
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.m_destination = static_cast<techset::CommonStreamDestination>(routing.dest),
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});
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}
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}
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return techset::CommonVertexDeclaration{
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.m_routing = std::move(commonRouting),
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};
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}
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techset::CommonShaderArg ConvertToCommonArg(const MaterialShaderArgument& arg)
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{
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switch (arg.type)
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{
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case MTL_ARG_CODE_VERTEX_CONST:
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case MTL_ARG_CODE_PIXEL_CONST:
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return techset::CommonShaderArg{
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.m_type = techset::CommonShaderArgType::CODE_CONST,
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.m_destination = {.dx11 =
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{
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.m_location = arg.location.offset,
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.m_size = arg.size,
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.m_buffer = arg.buffer,
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}},
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.m_value = {
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.code_const_source = static_cast<techset::CommonCodeConstSource>(arg.u.codeConst.index),
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}
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};
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case MTL_ARG_MATERIAL_VERTEX_CONST:
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case MTL_ARG_MATERIAL_PIXEL_CONST:
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return techset::CommonShaderArg{
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.m_type = techset::CommonShaderArgType::MATERIAL_CONST,
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.m_destination = {.dx11 =
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{
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.m_location = arg.location.offset,
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.m_size = arg.size,
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.m_buffer = arg.buffer,
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}},
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.m_value = {
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.name_hash = arg.u.nameHash,
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}
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};
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case MTL_ARG_CODE_PIXEL_SAMPLER:
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return techset::CommonShaderArg{
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.m_type = techset::CommonShaderArgType::CODE_SAMPLER,
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.m_destination = {.dx11 =
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{
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.m_location = arg.location.samplerIndex,
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.m_size = arg.size,
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.m_buffer = arg.buffer,
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}},
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.m_value = {
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.code_sampler_source = static_cast<techset::CommonCodeSamplerSource>(arg.u.codeSampler),
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}
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};
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case MTL_ARG_MATERIAL_PIXEL_SAMPLER:
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return techset::CommonShaderArg{
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.m_type = techset::CommonShaderArgType::MATERIAL_SAMPLER,
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.m_destination = {.dx11 =
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{
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.m_location = arg.location.samplerIndex,
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.m_size = arg.size,
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.m_buffer = arg.buffer,
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}},
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.m_value = {
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.name_hash = arg.u.nameHash,
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}
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};
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default:
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case MTL_ARG_LITERAL_VERTEX_CONST:
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case MTL_ARG_LITERAL_PIXEL_CONST:
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if (arg.u.literalConst)
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{
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return techset::CommonShaderArg{
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.m_type = techset::CommonShaderArgType::LITERAL_CONST,
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.m_destination = {.dx11 =
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{
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.m_location = arg.location.offset,
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.m_size = arg.size,
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.m_buffer = arg.buffer,
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}},
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.m_value = {
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.literal_value =
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{
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(*arg.u.literalConst)[0],
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(*arg.u.literalConst)[1],
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(*arg.u.literalConst)[2],
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(*arg.u.literalConst)[3],
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}, }
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};
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}
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return techset::CommonShaderArg{
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.m_type = techset::CommonShaderArgType::LITERAL_CONST,
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.m_destination = {.dx11 =
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{
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.m_location = arg.location.offset,
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.m_size = arg.size,
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.m_buffer = arg.buffer,
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}},
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.m_value = {},
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};
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}
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}
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techset::CommonTechniqueShader ConvertToCommonShader(const MaterialPass& pass, const MaterialVertexShader* vertexShader)
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{
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techset::CommonTechniqueShader result{};
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if (!vertexShader)
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return result;
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if (vertexShader->name)
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result.m_name = vertexShader->name;
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if (vertexShader->prog.loadDef.program)
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{
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result.m_shader_bin = vertexShader->prog.loadDef.program;
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result.m_shader_bin_size = vertexShader->prog.loadDef.programSize;
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}
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if (pass.args)
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{
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const size_t totalArgCount = pass.perPrimArgCount + pass.perObjArgCount + pass.stableArgCount;
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for (auto argIndex = 0uz; argIndex < totalArgCount; argIndex++)
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{
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const auto& arg = pass.args[argIndex];
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switch (arg.type)
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{
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case MTL_ARG_CODE_VERTEX_CONST:
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case MTL_ARG_MATERIAL_VERTEX_CONST:
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case MTL_ARG_LITERAL_VERTEX_CONST:
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result.m_args.emplace_back(ConvertToCommonArg(arg));
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break;
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default:
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break;
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}
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}
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}
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return result;
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}
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techset::CommonTechniqueShader ConvertToCommonShader(const MaterialPass& pass, const MaterialPixelShader* pixelShader)
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{
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techset::CommonTechniqueShader result{};
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if (!pixelShader)
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return result;
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if (pixelShader->name)
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result.m_name = pixelShader->name;
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if (pixelShader->prog.loadDef.program)
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{
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result.m_shader_bin = pixelShader->prog.loadDef.program;
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result.m_shader_bin_size = pixelShader->prog.loadDef.programSize;
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}
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if (pass.args)
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{
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const size_t totalArgCount = pass.perPrimArgCount + pass.perObjArgCount + pass.stableArgCount;
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for (auto argIndex = 0uz; argIndex < totalArgCount; argIndex++)
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{
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const auto& arg = pass.args[argIndex];
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switch (arg.type)
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{
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case MTL_ARG_CODE_PIXEL_CONST:
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case MTL_ARG_CODE_PIXEL_SAMPLER:
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case MTL_ARG_MATERIAL_PIXEL_CONST:
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case MTL_ARG_MATERIAL_PIXEL_SAMPLER:
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case MTL_ARG_LITERAL_PIXEL_CONST:
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result.m_args.emplace_back(ConvertToCommonArg(arg));
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break;
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default:
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break;
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}
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}
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}
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return result;
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}
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techset::CommonTechnique ConvertToCommonTechnique(const MaterialTechnique& technique)
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{
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std::vector<techset::CommonPass> passes;
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for (auto passIndex = 0u; passIndex < technique.passCount; passIndex++)
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{
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const auto& pass = technique.passArray[passIndex];
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passes.emplace_back(techset::CommonPass{
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.m_sampler_flags = pass.customSamplerFlags,
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.m_dx_version = techset::DxVersion::DX11,
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.m_vertex_shader = ConvertToCommonShader(pass, pass.vertexShader),
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.m_pixel_shader = ConvertToCommonShader(pass, pass.pixelShader),
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.m_vertex_declaration = ConvertToCommonVertexDeclaration(pass.vertexDecl),
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});
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}
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return techset::CommonTechnique{
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.m_name = technique.name ? technique.name : std::string(),
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.m_flags = technique.flags,
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.m_passes = std::move(passes),
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};
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}
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void DumpTechniques(AssetDumpingContext& context, const MaterialTechniqueSet& techset)
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{
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static techset::CommonCodeSourceInfos codeSourceInfos(commonCodeConstSources,
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std::extent_v<decltype(commonCodeConstSources)>,
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commonCodeSamplerSources,
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std::extent_v<decltype(commonCodeSamplerSources)>);
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static techset::CommonStreamRoutingInfos routingInfos(
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streamRoutingSources, std::extent_v<decltype(streamRoutingSources)>, streamRoutingDestinations, std::extent_v<decltype(streamRoutingDestinations)>);
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auto* techniqueState = context.GetZoneAssetDumperState<techset::TechniqueDumpingZoneState>();
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const auto* materialConstantState = context.GetZoneAssetDumperState<MaterialConstantZoneState>();
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for (const auto* technique : techset.techniques)
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{
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if (technique && techniqueState->ShouldDumpTechnique(technique))
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{
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const auto commonTechnique = ConvertToCommonTechnique(*technique);
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techset::DumpCommonTechnique(context, commonTechnique, codeSourceInfos, routingInfos, *materialConstantState);
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}
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}
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}
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techset::CommonTechset ConvertToCommonTechset(const MaterialTechniqueSet& techset)
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{
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std::vector<std::string> techniqueNames(std::extent_v<decltype(techniqueTypeNames)>);
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for (auto techniqueIndex = 0u; techniqueIndex < std::extent_v<decltype(techniqueTypeNames)>; techniqueIndex++)
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{
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const auto* technique = techset.techniques[techniqueIndex];
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if (technique && technique->name)
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techniqueNames[techniqueIndex] = technique->name;
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}
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return techset::CommonTechset{
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.m_name = techset.name,
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.m_technique_names = std::move(techniqueNames),
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};
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}
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void DumpTechset(const AssetDumpingContext& context, const MaterialTechniqueSet& techset)
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{
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static techset::CommonTechniqueTypeNames commonNames(techniqueTypeNames, std::extent_v<decltype(techniqueTypeNames)>);
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const auto commonTechset = ConvertToCommonTechset(techset);
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techset::DumpCommonTechset(commonNames, context, commonTechset);
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}
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} // namespace
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namespace techset
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{
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DumperT6::DumperT6(const AssetPool<AssetTechniqueSet::Type>& pool)
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: AbstractAssetDumper(pool)
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{
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}
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void DumperT6::Dump(AssetDumpingContext& context)
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{
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context.GetZoneAssetDumperState<MaterialConstantZoneState>()->EnsureInitialized();
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AbstractAssetDumper::Dump(context);
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}
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void DumperT6::DumpAsset(AssetDumpingContext& context, const XAssetInfo<AssetTechniqueSet::Type>& asset)
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{
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const auto* techniqueSet = asset.Asset();
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DumpTechset(context, *techniqueSet);
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DumpTechniques(context, *techniqueSet);
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DumpShaders(context, *techniqueSet);
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}
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} // namespace techset
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