SP3-13 Assets Management #57

Merged
XiaoQiDigipen merged 7 commits from SP3-13-Assets-Manager into main 2022-09-27 14:27:28 +08:00
16 changed files with 5236 additions and 86 deletions

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4993
Assets/racoon.gltf Normal file

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@ -79,7 +79,7 @@ namespace Sandbox
SHADE::SHSystemManager::RegisterRoutine<SHADE::SHInputManagerSystem, SHADE::SHInputManagerSystem::InputManagerRoutine>();
//TODO: REMOVE AFTER PRESENTATION
SHADE::SHAssetManager::LoadDataTemp("../../Assets/racoon.fbx");
SHADE::SHAssetManager::LoadDataTemp("../../Assets/racoon.gltf");
SHADE::SHAssetManager::LoadDataTemp("../../Assets/RaccoonBag_Color_Ver4.dds");
SHADE::SHAssetManager::LoadDataTemp("../../Assets/RaccoonPreTexturedVer1_Base9.dds");
//TODO: REMOVE AFTER PRESENTATION

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@ -54,6 +54,9 @@ namespace Sandbox
}
graphicsSystem->BuildMeshBuffers();
//Test Textures
auto textures{ SHADE::SHAssetManager::GetAllTextures() };
// Create Materials
auto matInst = graphicsSystem->AddOrGetBaseMaterialInstance();

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@ -1,11 +0,0 @@
#pragma once
#include "tinyddsloader.h"
namespace SHADE
{
struct SHDDSAsset
{
tinyddsloader::DDSFile image;
};
}

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@ -0,0 +1,46 @@
#pragma once
#include "tinyddsloader.h"
#include "Graphics/MiddleEnd/Textures/SHTextureLibrary.h"
#include <memory>
namespace SHADE
{
struct SHTextureAsset
{
uint32_t numBytes;
uint32_t width;
uint32_t height;
SHTexture::TextureFormat format;
std::vector<uint32_t> mipOffsets;
SHTexture::PixelChannel const * pixelData;
SHTextureAsset()
: numBytes{ 0 },
width{ 0 },
height{ 0 },
format{ SHTexture::TextureFormat::eUndefined },
pixelData{ nullptr }
{}
SHTextureAsset(SHTextureAsset const& rhs)
: numBytes{ rhs.numBytes },
width{ rhs.width },
height{ rhs.height },
format{ rhs.format },
mipOffsets{ rhs.mipOffsets },
pixelData(rhs.pixelData)
{}
//SHTextureAsset(SHTextureAsset&& rhs)
// : numBytes{ rhs.numBytes },
// width{ rhs.width },
// height{ rhs.height },
// format{ rhs.format },
// mipOffsets{ rhs.mipOffsets },
// pixelData(std::move(rhs.pixelData))
//{}
};
}

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@ -1,38 +0,0 @@
#include "SHpch.h"
#include "SHDDSLoader.h"
namespace SHADE
{
std::string SHDDSLoader::TinyDDSResultToString(tinyddsloader::Result value)
{
switch (value)
{
case tinyddsloader::Result::ErrorFileOpen:
return "File open err";
case tinyddsloader::Result::ErrorRead:
return "File read err";
case tinyddsloader::Result::ErrorMagicWord:
return "File header magicword err";
case tinyddsloader::Result::ErrorSize:
return "File size err";
case tinyddsloader::Result::ErrorVerify:
return "Pixel format err";
case tinyddsloader::Result::ErrorNotSupported:
return "Unsupported format";
case tinyddsloader::Result::ErrorInvalidData:
return "Invalid data";
default:
return "Unknown";
}
}
void SHDDSLoader::LoadImageAsset(AssetPath path, SHDDSAsset& asset)
{
tinyddsloader::Result loadResult = tinyddsloader::Result::Success;
loadResult = asset.image.Load(path.string().c_str());
if (loadResult != tinyddsloader::Result::Success)
{
SHLOG_ERROR("Unable to load DDS file: {} at {}", TinyDDSResultToString(loadResult), path.string());
}
}
}

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@ -1,18 +0,0 @@
#pragma once
#define TINYDDSLOADER_IMPLEMENTATION
#include "../SHAssetMacros.h"
#include "../Asset Types/SHDDSAsset.h"
#include "tinyddsloader.h"
#include <vector>
namespace SHADE
{
class SHDDSLoader
{
private:
static std::string TinyDDSResultToString(tinyddsloader::Result value);
public:
static void LoadImageAsset(AssetPath paths, SHDDSAsset& image);
};
}

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@ -100,9 +100,7 @@ namespace SHADE
| aiProcess_JoinIdenticalVertices
// join identical vertices/ optimize indexing
| aiProcess_RemoveRedundantMaterials // remove redundant materials
| aiProcess_FindInvalidData
// detect invalid model data, such as invalid normal vectors
| aiProcess_PreTransformVertices // pre-transform all vertices
| aiProcess_FindInvalidData// detect invalid model data, such as invalid normal vectors
| aiProcess_FlipUVs // flip the V to match the Vulkans way of doing UVs
);

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@ -0,0 +1,48 @@
#include "SHpch.h"
#include "SHMeshWriter.h"
#include <fstream>
void SHADE::SHMeshWriter::WriteMeshBinary(SHMeshAsset const& asset, AssetPath path) noexcept
{
std::ofstream file{path, std::ios::out | std::ios::binary};
if (!file.is_open())
{
SHLOG_ERROR("Unable to open file for writing mesh file: {}", path.string());
}
file.write(
reinterpret_cast<char const*>(&(asset.header.vertexCount)),
sizeof(uint32_t)
);
file.write(
reinterpret_cast<const char*>(&(asset.header.indexCount)),
sizeof(uint32_t)
);
auto const vertexVec3Byte {sizeof(SHVec3) * asset.header.vertexCount};
auto const vertexVec2Byte {sizeof(SHVec2) * asset.header.vertexCount};
file.write(
reinterpret_cast<char const*>(asset.vertexPosition.data()),
vertexVec3Byte
);
file.write(
reinterpret_cast<char const*>(asset.vertexTangent.data()),
vertexVec3Byte
);
file.write(
reinterpret_cast<char const*>(asset.vertexNormal.data()),
vertexVec3Byte
);
file.write(
reinterpret_cast<char const*>(asset.texCoords.data()),
vertexVec2Byte
);
file.close();
}

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@ -0,0 +1,14 @@
#pragma once
#include "../Asset Types/SHMeshAsset.h"
#include "../SHAssetMacros.h"
namespace SHADE
{
class SHMeshWriter
{
private:
public:
static void WriteMeshBinary(SHMeshAsset const& asset, AssetPath path) noexcept;
};
}

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@ -0,0 +1,92 @@
#include "SHpch.h"
#include "SHTextureLoader.h"
namespace SHADE
{
std::string SHTextureLoader::TinyDDSResultToString(tinyddsloader::Result value)
{
switch (value)
{
case tinyddsloader::Result::ErrorFileOpen:
return "File open err";
case tinyddsloader::Result::ErrorRead:
return "File read err";
case tinyddsloader::Result::ErrorMagicWord:
return "File header magic word err";
case tinyddsloader::Result::ErrorSize:
return "File size err";
case tinyddsloader::Result::ErrorVerify:
return "Pixel format err";
case tinyddsloader::Result::ErrorNotSupported:
return "Unsupported format";
case tinyddsloader::Result::ErrorInvalidData:
return "Invalid data";
default:
return "Unknown";
}
}
vk::Format SHTextureLoader::ddsLoaderToVkFormat(tinyddsloader::DDSFile::DXGIFormat format, bool isLinear)
{
switch (format)
{
case tinyddsloader::DDSFile::DXGIFormat::BC1_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::BC1_UNorm_SRGB:
return isLinear ? vk::Format::eBc1RgbaUnormBlock : vk::Format::eBc1RgbaSrgbBlock;
case tinyddsloader::DDSFile::DXGIFormat::BC2_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::BC2_UNorm_SRGB:
return isLinear ? vk::Format::eBc2UnormBlock : vk::Format::eBc2SrgbBlock;
case tinyddsloader::DDSFile::DXGIFormat::BC3_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::BC3_UNorm_SRGB:
return isLinear ? vk::Format::eBc3UnormBlock : vk::Format::eBc3SrgbBlock;
case tinyddsloader::DDSFile::DXGIFormat::BC5_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::BC5_SNorm:
return isLinear ? vk::Format::eBc5UnormBlock : vk::Format::eBc5SnormBlock;
case tinyddsloader::DDSFile::DXGIFormat::R8G8B8A8_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::R8G8B8A8_UNorm_SRGB:
return isLinear ? vk::Format::eR8G8B8A8Unorm : vk::Format::eR8G8B8A8Srgb;
case tinyddsloader::DDSFile::DXGIFormat::R8G8B8A8_SNorm:
return vk::Format::eR8G8B8A8Snorm;
case tinyddsloader::DDSFile::DXGIFormat::B8G8R8A8_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::B8G8R8A8_UNorm_SRGB:
return isLinear ? vk::Format::eB8G8R8A8Unorm : vk::Format::eB8G8R8A8Srgb;
case tinyddsloader::DDSFile::DXGIFormat::B8G8R8X8_UNorm:
case tinyddsloader::DDSFile::DXGIFormat::B8G8R8X8_UNorm_SRGB:
return isLinear ? vk::Format::eB8G8R8A8Unorm : vk::Format::eB8G8R8Srgb;
default:
throw std::runtime_error("Unsupported DDS format.");
}
}
void SHTextureLoader::LoadImageAsset(AssetPath path, SHTextureAsset& asset)
{
tinyddsloader::Result loadResult = tinyddsloader::Result::Success;
tinyddsloader::DDSFile file;
loadResult = file.Load(path.string().c_str());
if (loadResult != tinyddsloader::Result::Success)
{
SHLOG_ERROR("Unable to load Texture file: {} at {}", TinyDDSResultToString(loadResult), path.string());
}
size_t totalBytes{ 0 };
std::vector<uint32_t> mipOff(file.GetMipCount());
for (auto i{0}; i < file.GetMipCount(); ++i)
{
mipOff.push_back(totalBytes);
totalBytes += file.GetImageData(i, 0)->m_memSlicePitch;
}
SHTexture::PixelChannel* pixel = new SHTexture::PixelChannel[totalBytes];
std::memcpy(pixel, file.GetDDSData(), totalBytes);
//pixel = std::move(reinterpret_cast<SHTexture::PixelChannel const*>(file.GetDDSData()));
asset.numBytes = totalBytes;
asset.width = file.GetWidth();
asset.height = file.GetHeight();
asset.format = ddsLoaderToVkFormat(file.GetFormat(), true);
asset.mipOffsets = std::move(mipOff);
asset.pixelData = std::move(pixel);
}
}

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@ -0,0 +1,19 @@
#pragma once
#define TINYDDSLOADER_IMPLEMENTATION
#include "../SHAssetMacros.h"
#include "../Asset Types/SHTextureAsset.h"
#include "tinyddsloader.h"
namespace SHADE
{
class SHTextureLoader
{
private:
static std::string TinyDDSResultToString(tinyddsloader::Result value);
static vk::Format ddsLoaderToVkFormat(tinyddsloader::DDSFile::DXGIFormat format, bool isLinear);
public:
static void LoadImageAsset(AssetPath paths, SHTextureAsset& image);
};
}

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@ -69,8 +69,10 @@ enum class AssetType : uint8_t
#define SCENE_EXTENSION ".SHADE"
#define PREFAB_EXTENSION ".SHPrefab"
#define MATERIAL_EXTENSION ".SHMat"
#define TEXTURE_EXTENSION ".dds"
#define TEXTURE_EXTENSION ".shtex"
#define DDS_EXTENSION ".dds"
#define FBX_EXTENSION ".fbx"
#define GLTF_EXTENSION ".gltf"
#define MESH_EXTENSION ".shmesh"
std::string const EXTENSIONS[] = {
@ -79,12 +81,14 @@ std::string const EXTENSIONS[] = {
MATERIAL_EXTENSION,
IMAGE_EXTENSION,
TEXTURE_EXTENSION,
DDS_EXTENSION,
MESH_EXTENSION,
SCRIPT_EXTENSION,
SCENE_EXTENSION,
PREFAB_EXTENSION,
AUDIO_WAV_EXTENSION,
FBX_EXTENSION
FBX_EXTENSION,
GLTF_EXTENSION
};
// Error flags

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@ -15,7 +15,7 @@
#include "Filesystem/SHFileSystem.h"
#include "Libraries/SHMeshLoader.h"
#include "Libraries/SHDDSLoader.h"
#include "Libraries/SHTextureLoader.h"
namespace SHADE
{
@ -26,7 +26,7 @@ namespace SHADE
std::unordered_map<AssetID, SHAsset> SHAssetManager::assetRegistry;
std::unordered_map<AssetID, SHMeshAsset> SHAssetManager::meshCollection;
std::unordered_map<AssetID, SHDDSAsset> SHAssetManager::ddsCollection;
std::unordered_map<AssetID, SHTextureAsset> SHAssetManager::textureCollection;
/****************************************************************************
* \brief Static function to generate asset ID.
@ -199,7 +199,7 @@ namespace SHADE
{
AssetPath path{ p };
if (path.extension().string() == FBX_EXTENSION)
if (path.extension().string() == GLTF_EXTENSION)
{
LoadGLTF(
{
@ -211,7 +211,7 @@ namespace SHADE
}
);
}
else if (path.extension().string() == TEXTURE_EXTENSION)
else if (path.extension().string() == DDS_EXTENSION)
{
LoadDDS(
{
@ -236,10 +236,10 @@ namespace SHADE
return result;
}
std::vector<SHDDSAsset> SHAssetManager::GetAllDDS() noexcept
std::vector<SHTextureAsset> SHAssetManager::GetAllTextures() noexcept
{
std::vector<SHDDSAsset> result;
for (auto const& dds : ddsCollection)
std::vector<SHTextureAsset> result;
for (auto const& dds : textureCollection)
{
result.push_back(dds.second);
}
@ -305,11 +305,11 @@ namespace SHADE
void SHAssetManager::LoadDDS(SHAsset asset) noexcept
{
SHDDSAsset image;
SHTextureAsset image;
SHDDSLoader::LoadImageAsset(asset.path, image);
SHTextureLoader::LoadImageAsset(asset.path, image);
ddsCollection.emplace(GenerateAssetID(AssetType::DDS), image);
textureCollection.emplace(GenerateAssetID(AssetType::DDS), image);
}
/****************************************************************************

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@ -13,7 +13,7 @@
#include "SHAsset.h"
#include "Asset Types/SHMeshAsset.h"
#include "Asset Types/SHDDSAsset.h"
#include "Asset Types/SHTextureAsset.h"
#include "SH_API.h"
namespace SHADE
@ -73,7 +73,7 @@ namespace SHADE
//TODO: TEMPORARY FOR TESTING GLTF & DDS
static void LoadDataTemp(std::string path) noexcept;
static std::vector<SHMeshAsset> GetAllMeshes() noexcept;
static std::vector<SHDDSAsset> GetAllDDS() noexcept;
static std::vector<SHTextureAsset> GetAllTextures() noexcept;
private:
/****************************************************************************
@ -128,6 +128,6 @@ namespace SHADE
static std::unordered_map<AssetID, SHAsset> assetRegistry;
static std::unordered_map<AssetID, SHMeshAsset> meshCollection;
static std::unordered_map<AssetID, SHDDSAsset> ddsCollection;
static std::unordered_map<AssetID, SHTextureAsset> textureCollection;
};
}