mirror of
https://github.com/Laupetin/OpenAssetTools.git
synced 2026-03-05 12:33:02 +00:00
fix: use buffer binding point instead of index
This commit is contained in:
@@ -408,12 +408,20 @@ namespace
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{
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assert(m_shader_info);
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auto bufferIndex = 0uz;
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auto usedConstantIndex = 0uz;
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const auto bufferCount = m_shader_info->m_constant_buffers.size();
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while (bufferIndex < bufferCount)
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for (const auto& buffer : m_shader_info->m_constant_buffers)
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{
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const auto& buffer = m_shader_info->m_constant_buffers[bufferIndex];
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const auto bufferBinding =
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std::ranges::find_if(m_shader_info->m_bound_resources,
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[buffer](const d3d11::BoundResource& boundResource)
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{
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return boundResource.m_type == d3d11::BoundResourceType::CBUFFER && boundResource.m_name == buffer.m_name;
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});
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if (bufferBinding == m_shader_info->m_bound_resources.end())
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{
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errorMessage = std::format("Failed to find binding for constant buffer {}", buffer.m_name);
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return false;
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}
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auto variableIterator = buffer.m_variables.begin();
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const auto variableEnd = buffer.m_variables.end();
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@@ -439,15 +447,13 @@ namespace
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const auto variableElementSize = variableIterator->m_size / variableElementCount;
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commonDestination.dx11.m_location.constant_buffer_offset = variableIterator->m_offset + variableElementSize * inputArgumentIndex;
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commonDestination.dx11.m_size = variableElementSize;
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commonDestination.dx11.m_buffer = static_cast<unsigned>(bufferIndex);
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commonDestination.dx11.m_buffer = bufferBinding->m_bind_point;
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isTransposed = variableIterator->m_variable_class == d3d11::VariableClass::MATRIX_COLUMNS;
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m_const_arg_added[usedConstantIndex] = true;
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return true;
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}
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bufferIndex++;
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}
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return false;
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@@ -514,12 +520,20 @@ namespace
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result::Expected<NoResult, std::string> AutoCreateMissingArgs() override
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{
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size_t bufferIndex = 0;
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size_t usedConstantCount = 0;
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size_t textureCount = 0;
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for (const auto& buffer : m_shader_info->m_constant_buffers)
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{
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const auto bufferBinding =
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std::ranges::find_if(m_shader_info->m_bound_resources,
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[buffer](const d3d11::BoundResource& boundResource)
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{
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return boundResource.m_type == d3d11::BoundResourceType::CBUFFER && boundResource.m_name == buffer.m_name;
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});
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if (bufferBinding == m_shader_info->m_bound_resources.end())
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return result::Unexpected(std::format("Failed to find binding for constant buffer {}", buffer.m_name));
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for (const auto& variable : buffer.m_variables)
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{
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if (!variable.m_is_used)
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@@ -528,12 +542,10 @@ namespace
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if (m_const_arg_added[usedConstantCount++])
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continue;
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auto result = AutoCreateConstantArg(variable, bufferIndex);
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auto result = AutoCreateConstantArg(variable, bufferBinding->m_bind_point);
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if (!result)
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return std::move(result);
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}
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bufferIndex++;
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}
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for (const auto& maybeTextureResource : m_shader_info->m_bound_resources)
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@@ -8,6 +8,7 @@
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#include "SearchPath/MockSearchPath.h"
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#include "Shader/ShaderCommon.h"
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#include "Utils/MemoryManager.h"
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#include "catch2/generators/catch_generators.hpp"
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#include <catch2/catch_test_macros.hpp>
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#include <filesystem>
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@@ -72,7 +73,8 @@ TEST_CASE("TechniqueCompilerT6", "[t6][techset][compiler]")
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SECTION("Can compile simple technique")
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{
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searchPath.AddFileData("techniques/pimp_technique_zprepass_example.tech", R"TECHNIQUE(
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const auto [inputName, inputData] = GENERATE(Catch::Generators::table<const char*, const char*>({
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{"auto-create args", R"TECHNIQUE(
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{
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stateMap "passthrough";
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@@ -86,7 +88,28 @@ TEST_CASE("TechniqueCompilerT6", "[t6][techset][compiler]")
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vertex.position = code.position;
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}
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)TECHNIQUE");
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)TECHNIQUE"},
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{"manual args", R"TECHNIQUE(
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{
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stateMap "passthrough";
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vertexShader 4.0 "simple.hlsl"
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{
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worldMatrix = constant.worldMatrix;
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viewProjectionMatrix = constant.viewProjectionMatrix;
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}
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pixelShader 4.0 "simple.hlsl"
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{
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}
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vertex.position = code.position;
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}
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)TECHNIQUE"},
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}));
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CAPTURE(inputName);
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searchPath.AddFileData("techniques/pimp_technique_zprepass_example.tech", inputData);
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GivenVertexShaderFile("simple.hlsl", searchPath);
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GivenPixelShaderFile("simple.hlsl", searchPath);
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@@ -147,7 +170,8 @@ TEST_CASE("TechniqueCompilerT6", "[t6][techset][compiler]")
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SECTION("Can compile advanced technique")
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{
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searchPath.AddFileData("techniques/example_lit_sun_shadow.tech", R"TECHNIQUE(
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const auto [inputName, inputData] = GENERATE(Catch::Generators::table<const char*, const char*>({
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{"auto-create args", R"TECHNIQUE(
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{
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stateMap "passthrough";
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@@ -176,7 +200,47 @@ TEST_CASE("TechniqueCompilerT6", "[t6][techset][compiler]")
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vertex.texcoord[4] = code.texcoord[3];
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vertex.texcoord[5] = code.normalTransform[0];
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}
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)TECHNIQUE");
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)TECHNIQUE"},
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{"manual args", R"TECHNIQUE(
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{
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stateMap "passthrough";
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vertexShader 4.0 "advanced.hlsl"
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{
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worldMatrix = constant.worldMatrix;
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viewProjectionMatrix = constant.viewProjectionMatrix;
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shadowLookupMatrix = constant.shadowLookupMatrix;
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}
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pixelShader 4.0 "advanced.hlsl"
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{
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normalMapSampler = material.normalMap;
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normalMapSampler1 = material.normalMap1;
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colorMapSampler = material.colorMap;
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colorMapSampler1 = material.colorMap1;
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colorMapSampler3 = material.colorMap3;
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colorMapSampler2 = material.colorMap2;
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shadowmapSamplerSun = sampler.shadowmapSamplerSun;
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shadowmapSwitchPartition = constant.shadowmapSwitchPartition;
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sunShadowmapPixelSize = constant.sunShadowmapPixelSize;
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alphaRevealParms1 = material.alphaRevealParms1;
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}
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vertex.position = code.position;
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vertex.color[0] = code.color;
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vertex.texcoord[0] = code.texcoord[0];
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vertex.normal = code.normal;
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vertex.texcoord[2] = code.tangent;
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vertex.texcoord[1] = code.texcoord[1];
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vertex.texcoord[3] = code.texcoord[2];
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vertex.texcoord[4] = code.texcoord[3];
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vertex.texcoord[5] = code.normalTransform[0];
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}
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)TECHNIQUE"},
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}));
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CAPTURE(inputName);
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searchPath.AddFileData("techniques/example_lit_sun_shadow.tech", inputData);
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GivenVertexShaderFile("advanced.hlsl", searchPath);
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GivenPixelShaderFile("advanced.hlsl", searchPath);
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