mirror of
https://github.com/dolphin-emu/dolphin
synced 2024-11-24 06:14:20 -05:00
398 lines
14 KiB
C++
398 lines
14 KiB
C++
// Copyright 2023 Dolphin Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include "VideoCommon/Assets/MaterialAsset.h"
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#include <algorithm>
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#include <string_view>
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#include <vector>
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#include "Common/JsonUtil.h"
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#include "Common/Logging/Log.h"
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#include "Common/StringUtil.h"
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#include "Common/VariantUtil.h"
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#include "VideoCommon/Assets/CustomAssetLibrary.h"
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#include "VideoCommon/ShaderGenCommon.h"
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namespace VideoCommon
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{
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namespace
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{
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// While not optimal, we pad our data to match std140 shader requirements
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// this memory constant indicates the memory stride for a single uniform
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// regardless of data type
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constexpr std::size_t MemorySize = sizeof(float) * 4;
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template <typename ElementType, std::size_t ElementCount>
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bool ParseNumeric(const CustomAssetLibrary::AssetID& asset_id, const picojson::value& json_value,
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std::string_view code_name, MaterialProperty::Value* value)
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{
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static_assert(ElementCount <= 4, "Numeric data expected to be four elements or less");
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if constexpr (ElementCount == 1)
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{
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if (!json_value.is<double>())
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset id '{}' material has attribute '{}' where "
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"a double was expected but not provided.",
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asset_id, code_name);
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return false;
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}
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*value = static_cast<ElementType>(json_value.get<double>());
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}
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else
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{
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if (!json_value.is<picojson::array>())
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset id '{}' material has attribute '{}' where "
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"an array was expected but not provided.",
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asset_id, code_name);
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return false;
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}
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const auto json_data = json_value.get<picojson::array>();
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if (json_data.size() != ElementCount)
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset id '{}' material has attribute '{}' with incorrect number "
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"of elements, expected {}",
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asset_id, code_name, ElementCount);
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return false;
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}
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if (!std::all_of(json_data.begin(), json_data.end(),
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[](const picojson::value& v) { return v.is<double>(); }))
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset id '{}' material has attribute '{}' where "
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"all elements are not of type double.",
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asset_id, code_name);
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return false;
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}
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std::array<ElementType, ElementCount> data;
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for (std::size_t i = 0; i < ElementCount; i++)
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{
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data[i] = static_cast<ElementType>(json_data[i].get<double>());
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}
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*value = std::move(data);
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}
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return true;
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}
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bool ParsePropertyValue(const CustomAssetLibrary::AssetID& asset_id,
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const picojson::value& json_value, std::string_view code_name,
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std::string_view type, MaterialProperty::Value* value)
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{
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if (type == "int")
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{
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return ParseNumeric<s32, 1>(asset_id, json_value, code_name, value);
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}
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else if (type == "int2")
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{
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return ParseNumeric<s32, 2>(asset_id, json_value, code_name, value);
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}
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else if (type == "int3")
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{
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return ParseNumeric<s32, 3>(asset_id, json_value, code_name, value);
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}
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else if (type == "int4")
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{
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return ParseNumeric<s32, 4>(asset_id, json_value, code_name, value);
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}
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else if (type == "float")
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{
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return ParseNumeric<float, 1>(asset_id, json_value, code_name, value);
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}
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else if (type == "float2")
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{
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return ParseNumeric<float, 2>(asset_id, json_value, code_name, value);
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}
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else if (type == "float3")
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{
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return ParseNumeric<float, 3>(asset_id, json_value, code_name, value);
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}
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else if (type == "float4")
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{
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return ParseNumeric<float, 4>(asset_id, json_value, code_name, value);
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}
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else if (type == "bool")
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{
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if (json_value.is<bool>())
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{
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*value = json_value.get<bool>();
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return true;
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}
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}
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else if (type == "texture_asset")
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{
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if (json_value.is<std::string>())
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{
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*value = json_value.get<std::string>();
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return true;
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}
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}
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ERROR_LOG_FMT(VIDEO, "Asset '{}' failed to parse the json, value is not valid for type '{}'",
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asset_id, type);
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return false;
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}
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bool ParseMaterialProperties(const CustomAssetLibrary::AssetID& asset_id,
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const picojson::array& values_data,
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std::vector<MaterialProperty>* material_property)
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{
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for (const auto& value_data : values_data)
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{
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VideoCommon::MaterialProperty property;
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if (!value_data.is<picojson::object>())
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{
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ERROR_LOG_FMT(VIDEO, "Asset '{}' failed to parse the json, value is not the right json type",
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asset_id);
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return false;
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}
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const auto& value_data_obj = value_data.get<picojson::object>();
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const auto type_iter = value_data_obj.find("type");
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if (type_iter == value_data_obj.end())
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{
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ERROR_LOG_FMT(VIDEO, "Asset '{}' failed to parse the json, value entry 'type' not found",
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asset_id);
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return false;
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}
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if (!type_iter->second.is<std::string>())
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset '{}' failed to parse the json, value entry 'type' is not "
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"the right json type",
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asset_id);
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return false;
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}
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std::string type = type_iter->second.to_str();
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Common::ToLower(&type);
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const auto code_name_iter = value_data_obj.find("code_name");
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if (code_name_iter == value_data_obj.end())
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset '{}' failed to parse the json, value entry "
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"'code_name' not found",
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asset_id);
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return false;
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}
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if (!code_name_iter->second.is<std::string>())
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset '{}' failed to parse the json, value entry 'code_name' is not "
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"the right json type",
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asset_id);
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return false;
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}
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property.m_code_name = code_name_iter->second.to_str();
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const auto value_iter = value_data_obj.find("value");
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if (value_iter != value_data_obj.end())
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{
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if (!ParsePropertyValue(asset_id, value_iter->second, property.m_code_name, type,
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&property.m_value))
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{
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return false;
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}
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}
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material_property->push_back(std::move(property));
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}
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return true;
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}
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} // namespace
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void MaterialProperty::WriteToMemory(u8*& buffer, const MaterialProperty& property)
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{
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const auto write_memory = [&](const void* raw_value, std::size_t data_size) {
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std::memcpy(buffer, raw_value, data_size);
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std::memset(buffer + data_size, 0, MemorySize - data_size);
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buffer += MemorySize;
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};
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std::visit(
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overloaded{
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[&](const CustomAssetLibrary::AssetID&) {},
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[&](s32 value) { write_memory(&value, sizeof(s32)); },
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[&](const std::array<s32, 2>& value) { write_memory(value.data(), sizeof(s32) * 2); },
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[&](const std::array<s32, 3>& value) { write_memory(value.data(), sizeof(s32) * 3); },
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[&](const std::array<s32, 4>& value) { write_memory(value.data(), sizeof(s32) * 4); },
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[&](float value) { write_memory(&value, sizeof(float)); },
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[&](const std::array<float, 2>& value) { write_memory(value.data(), sizeof(float) * 2); },
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[&](const std::array<float, 3>& value) { write_memory(value.data(), sizeof(float) * 3); },
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[&](const std::array<float, 4>& value) { write_memory(value.data(), sizeof(float) * 4); },
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[&](bool value) { write_memory(&value, sizeof(bool)); }},
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property.m_value);
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}
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std::size_t MaterialProperty::GetMemorySize(const MaterialProperty& property)
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{
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std::size_t result = 0;
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std::visit(overloaded{[&](const CustomAssetLibrary::AssetID&) {},
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[&](s32) { result = MemorySize; },
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[&](const std::array<s32, 2>&) { result = MemorySize; },
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[&](const std::array<s32, 3>&) { result = MemorySize; },
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[&](const std::array<s32, 4>&) { result = MemorySize; },
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[&](float) { result = MemorySize; },
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[&](const std::array<float, 2>&) { result = MemorySize; },
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[&](const std::array<float, 3>&) { result = MemorySize; },
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[&](const std::array<float, 4>&) { result = MemorySize; },
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[&](bool) { result = MemorySize; }},
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property.m_value);
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return result;
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}
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void MaterialProperty::WriteAsShaderCode(ShaderCode& shader_source,
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const MaterialProperty& property)
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{
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const auto write_shader = [&](std::string_view type, u32 element_count) {
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if (element_count == 1)
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{
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shader_source.Write("{} {};\n", type, property.m_code_name);
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}
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else
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{
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shader_source.Write("{}{} {};\n", type, element_count, property.m_code_name);
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}
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for (std::size_t i = element_count; i < 4; i++)
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{
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shader_source.Write("{} {}_padding_{};\n", type, property.m_code_name, i + 1);
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}
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};
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std::visit(overloaded{[&](const CustomAssetLibrary::AssetID&) {},
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[&](s32 value) { write_shader("int", 1); },
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[&](const std::array<s32, 2>& value) { write_shader("int", 2); },
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[&](const std::array<s32, 3>& value) { write_shader("int", 3); },
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[&](const std::array<s32, 4>& value) { write_shader("int", 4); },
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[&](float value) { write_shader("float", 1); },
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[&](const std::array<float, 2>& value) { write_shader("float", 2); },
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[&](const std::array<float, 3>& value) { write_shader("float", 3); },
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[&](const std::array<float, 4>& value) { write_shader("float", 4); },
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[&](bool value) { write_shader("bool", 1); }},
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property.m_value);
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}
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bool MaterialData::FromJson(const CustomAssetLibrary::AssetID& asset_id,
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const picojson::object& json, MaterialData* data)
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{
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const auto values_iter = json.find("values");
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if (values_iter == json.end())
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{
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ERROR_LOG_FMT(VIDEO, "Asset '{}' failed to parse json, 'values' not found", asset_id);
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return false;
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}
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if (!values_iter->second.is<picojson::array>())
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{
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ERROR_LOG_FMT(VIDEO, "Asset '{}' failed to parse json, 'values' is not the right json type",
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asset_id);
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return false;
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}
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const auto& values_array = values_iter->second.get<picojson::array>();
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if (!ParseMaterialProperties(asset_id, values_array, &data->properties))
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return false;
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const auto shader_asset_iter = json.find("shader_asset");
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if (shader_asset_iter == json.end())
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{
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ERROR_LOG_FMT(VIDEO, "Asset '{}' failed to parse json, 'shader_asset' not found", asset_id);
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return false;
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}
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if (!shader_asset_iter->second.is<std::string>())
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{
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ERROR_LOG_FMT(VIDEO,
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"Asset '{}' failed to parse json, 'shader_asset' is not the right json type",
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asset_id);
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return false;
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}
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data->shader_asset = shader_asset_iter->second.to_str();
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return true;
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}
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void MaterialData::ToJson(picojson::object* obj, const MaterialData& data)
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{
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if (!obj) [[unlikely]]
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return;
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auto& json_obj = *obj;
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picojson::array json_properties;
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for (const auto& property : data.properties)
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{
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picojson::object json_property;
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json_property["code_name"] = picojson::value{property.m_code_name};
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std::visit(overloaded{[&](const CustomAssetLibrary::AssetID& value) {
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json_property["type"] = picojson::value{"texture_asset"};
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json_property["value"] = picojson::value{value};
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},
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[&](s32 value) {
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json_property["type"] = picojson::value{"int"};
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json_property["value"] = picojson::value{static_cast<double>(value)};
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},
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[&](const std::array<s32, 2>& value) {
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json_property["type"] = picojson::value{"int2"};
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json_property["value"] = picojson::value{ToJsonArray(value)};
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},
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[&](const std::array<s32, 3>& value) {
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json_property["type"] = picojson::value{"int3"};
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json_property["value"] = picojson::value{ToJsonArray(value)};
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},
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[&](const std::array<s32, 4>& value) {
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json_property["type"] = picojson::value{"int4"};
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json_property["value"] = picojson::value{ToJsonArray(value)};
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},
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[&](float value) {
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json_property["type"] = picojson::value{"float"};
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json_property["value"] = picojson::value{static_cast<double>(value)};
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},
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[&](const std::array<float, 2>& value) {
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json_property["type"] = picojson::value{"float2"};
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json_property["value"] = picojson::value{ToJsonArray(value)};
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},
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[&](const std::array<float, 3>& value) {
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json_property["type"] = picojson::value{"float3"};
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json_property["value"] = picojson::value{ToJsonArray(value)};
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},
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[&](const std::array<float, 4>& value) {
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json_property["type"] = picojson::value{"float4"};
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json_property["value"] = picojson::value{ToJsonArray(value)};
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},
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[&](bool value) {
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json_property["type"] = picojson::value{"bool"};
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json_property["value"] = picojson::value{value};
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}},
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property.m_value);
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json_properties.emplace_back(std::move(json_property));
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}
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json_obj["values"] = picojson::value{std::move(json_properties)};
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json_obj["shader_asset"] = picojson::value{data.shader_asset};
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}
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CustomAssetLibrary::LoadInfo MaterialAsset::LoadImpl(const CustomAssetLibrary::AssetID& asset_id)
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{
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auto potential_data = std::make_shared<MaterialData>();
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const auto loaded_info = m_owning_library->LoadMaterial(asset_id, potential_data.get());
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if (loaded_info.m_bytes_loaded == 0)
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return {};
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{
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std::lock_guard lk(m_data_lock);
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m_loaded = true;
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m_data = std::move(potential_data);
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}
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return loaded_info;
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}
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} // namespace VideoCommon
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