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Seele/src/Engine/Graphics/StaticMeshVertexData.cpp
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#include "StaticMeshVertexData.h"
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#include "Graphics.h"
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#include "Graphics/Enums.h"
#include "Mesh.h"
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#include <fstream>
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using namespace Seele;
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extern List<VertexData*> vertexDataList;
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StaticMeshVertexData::StaticMeshVertexData() { vertexDataList.add(this); }
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StaticMeshVertexData::~StaticMeshVertexData() {}
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StaticMeshVertexData* StaticMeshVertexData::getInstance() {
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static StaticMeshVertexData instance;
return &instance;
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}
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void StaticMeshVertexData::loadPositions(uint64 offset, const Array<Vector4>& data) {
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assert(offset + data.size() <= head);
std::memcpy((Vector4*)positions->map() + offset, data.data(), data.size() * sizeof(Vector4));
//positions->updateContents(offset * sizeof(Vector4), data.size() * sizeof(Vector4), data.data());
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dirty = true;
}
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void StaticMeshVertexData::loadTexCoords(uint64 offset, uint64 index, const Array<Vector2>& data) {
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assert(offset + data.size() <= head);
std::memcpy((Vector2*)texCoords[index]->map() + offset, data.data(), data.size() * sizeof(Vector2));
//texCoords[index]->updateContents(offset * sizeof(Vector2), data.size() * sizeof(Vector2), data.data());
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dirty = true;
}
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void StaticMeshVertexData::loadNormals(uint64 offset, const Array<Vector4>& data) {
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assert(offset + data.size() <= head);
std::memcpy((Vector4*)normals->map() + offset, data.data(), data.size() * sizeof(Vector4));
// normals->updateContents(offset * sizeof(Vector4), data.size() * sizeof(Vector4), data.data());
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dirty = true;
}
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void StaticMeshVertexData::loadTangents(uint64 offset, const Array<Vector4>& data) {
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assert(offset + data.size() <= head);
std::memcpy((Vector4*)tangents->map() + offset, data.data(), data.size() * sizeof(Vector4));
//tangents->updateContents(offset * sizeof(Vector4), data.size() * sizeof(Vector4), data.data());
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dirty = true;
}
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void StaticMeshVertexData::loadBiTangents(uint64 offset, const Array<Vector4>& data) {
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assert(offset + data.size() <= head);
std::memcpy((Vector4*)biTangents->map() + offset, data.data(), data.size() * sizeof(Vector4));
// biTangents->updateContents(offset * sizeof(Vector4), data.size() * sizeof(Vector4), data.data());
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dirty = true;
}
void StaticMeshVertexData::loadColors(uint64 offset, const Array<Vector4>& data) {
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assert(offset + data.size() <= head);
std::memcpy((Vector4*)colors->map() + offset, data.data(), data.size() * sizeof(Vector4));
//colors->updateContents(offset * sizeof(Vector4), data.size() * sizeof(Vector4), data.data());
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dirty = true;
}
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void StaticMeshVertexData::serializeMesh(MeshId id, uint64 numVertices, ArchiveBuffer& buffer) {
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VertexData::serializeMesh(id, numVertices, buffer);
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uint64 offset;
{
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std::unique_lock l(vertexDataLock);
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offset = meshOffsets[id];
}
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Array<Vector4> pos(numVertices);
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Array<Vector2> tex[MAX_TEXCOORDS];
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for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
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tex[i].resize(numVertices);
texCoords[i]->readContents(offset * sizeof(Vector2), numVertices * sizeof(Vector2), tex[i].data());
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Serialization::save(buffer, tex[i]);
}
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Array<Vector4> nor(numVertices);
Array<Vector4> tan(numVertices);
Array<Vector4> bit(numVertices);
Array<Vector4> col(numVertices);
positions->readContents(offset * sizeof(Vector4), numVertices * sizeof(Vector4), pos.data());
normals->readContents(offset * sizeof(Vector4), numVertices * sizeof(Vector4), nor.data());
tangents->readContents(offset * sizeof(Vector4), numVertices * sizeof(Vector4), tan.data());
biTangents->readContents(offset * sizeof(Vector4), numVertices * sizeof(Vector4), bit.data());
colors->readContents(offset * sizeof(Vector4), numVertices * sizeof(Vector4), col.data());
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Serialization::save(buffer, pos);
Serialization::save(buffer, nor);
Serialization::save(buffer, tan);
Serialization::save(buffer, bit);
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Serialization::save(buffer, col);
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}
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uint64 StaticMeshVertexData::deserializeMesh(MeshId id, ArchiveBuffer& buffer) {
uint64 result = VertexData::deserializeMesh(id, buffer);
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uint64 offset;
{
std::unique_lock l(vertexDataLock);
offset = meshOffsets[id];
}
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Array<Vector2> tex[MAX_TEXCOORDS];
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for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
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Serialization::load(buffer, tex[i]);
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loadTexCoords(offset, i, tex[i]);
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result += tex[i].size() * sizeof(Vector2);
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}
Array<Vector4> pos;
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Array<Vector4> nor;
Array<Vector4> tan;
Array<Vector4> bit;
Array<Vector4> col;
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Serialization::load(buffer, pos);
Serialization::load(buffer, nor);
Serialization::load(buffer, tan);
Serialization::load(buffer, bit);
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Serialization::load(buffer, col);
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loadPositions(offset, pos);
loadNormals(offset, nor);
loadTangents(offset, tan);
loadBiTangents(offset, bit);
loadColors(offset, col);
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result += pos.size() * sizeof(Vector4);
result += nor.size() * sizeof(Vector4);
result += tan.size() * sizeof(Vector4);
result += bit.size() * sizeof(Vector4);
result += col.size() * sizeof(Vector4);
return result;
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}
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void StaticMeshVertexData::init(Gfx::PGraphics _graphics) {
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VertexData::init(_graphics);
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ShaderBufferCreateInfo createInfo = {
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.sourceData =
{
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.size = verticesAllocated * sizeof(Vector4),
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},
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.numElements = verticesAllocated,
.dynamic = true,
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.vertexBuffer = true,
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.name = "Positions",
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};
positions = graphics->createShaderBuffer(createInfo);
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createInfo.vertexBuffer = false;
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createInfo.name = "Normals";
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normals = graphics->createShaderBuffer(createInfo);
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createInfo.name = "Tangents";
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tangents = graphics->createShaderBuffer(createInfo);
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createInfo.name = "BiTangents";
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biTangents = graphics->createShaderBuffer(createInfo);
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createInfo.name = "Colors";
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colors = graphics->createShaderBuffer(createInfo);
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createInfo.sourceData.size = verticesAllocated * sizeof(Vector2);
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createInfo.name = "TexCoords";
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for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
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texCoords[i] = graphics->createShaderBuffer(createInfo);
}
descriptorLayout = _graphics->createDescriptorLayout("pVertexData");
descriptorLayout->addDescriptorBinding(Gfx::DescriptorBinding{.binding = 0, .descriptorType = Gfx::SE_DESCRIPTOR_TYPE_STORAGE_BUFFER});
descriptorLayout->addDescriptorBinding(Gfx::DescriptorBinding{.binding = 1, .descriptorType = Gfx::SE_DESCRIPTOR_TYPE_STORAGE_BUFFER});
descriptorLayout->addDescriptorBinding(Gfx::DescriptorBinding{.binding = 2, .descriptorType = Gfx::SE_DESCRIPTOR_TYPE_STORAGE_BUFFER});
descriptorLayout->addDescriptorBinding(Gfx::DescriptorBinding{.binding = 3, .descriptorType = Gfx::SE_DESCRIPTOR_TYPE_STORAGE_BUFFER});
descriptorLayout->addDescriptorBinding(Gfx::DescriptorBinding{.binding = 4, .descriptorType = Gfx::SE_DESCRIPTOR_TYPE_STORAGE_BUFFER});
descriptorLayout->addDescriptorBinding(Gfx::DescriptorBinding{
.binding = 5,
.descriptorType = Gfx::SE_DESCRIPTOR_TYPE_STORAGE_BUFFER,
.descriptorCount = MAX_TEXCOORDS,
});
descriptorLayout->create();
descriptorSet = descriptorLayout->allocateDescriptorSet();
}
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void StaticMeshVertexData::destroy() {
VertexData::destroy();
for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
texCoords[i] = nullptr;
}
positions = nullptr;
normals = nullptr;
tangents = nullptr;
biTangents = nullptr;
colors = nullptr;
descriptorSet = nullptr;
descriptorLayout = nullptr;
}
void StaticMeshVertexData::bindBuffers(Gfx::PRenderCommand) {
// TODO: for legacy vertex buffer binding
}
Gfx::PDescriptorLayout StaticMeshVertexData::getVertexDataLayout() { return descriptorLayout; }
Gfx::PDescriptorSet StaticMeshVertexData::getVertexDataSet() { return descriptorSet; }
void StaticMeshVertexData::resizeBuffers() {
positions->rotateBuffer(verticesAllocated * sizeof(Vector4), true);
normals->rotateBuffer(verticesAllocated * sizeof(Vector4), true);
tangents->rotateBuffer(verticesAllocated * sizeof(Vector4), true);
biTangents->rotateBuffer(verticesAllocated * sizeof(Vector4), true);
colors->rotateBuffer(verticesAllocated * sizeof(Vector4), true);
for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
texCoords[i]->rotateBuffer(verticesAllocated * sizeof(Vector2), true);
}
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}
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void StaticMeshVertexData::updateBuffers() {
positions->unmap();
normals->unmap();
tangents->unmap();
biTangents->unmap();
colors->unmap();
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for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
texCoords[i]->unmap();
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}
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descriptorLayout->reset();
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descriptorSet = descriptorLayout->allocateDescriptorSet();
descriptorSet->updateBuffer(0, positions);
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descriptorSet->updateBuffer(1, normals);
descriptorSet->updateBuffer(2, tangents);
descriptorSet->updateBuffer(3, biTangents);
descriptorSet->updateBuffer(4, colors);
for (size_t i = 0; i < MAX_TEXCOORDS; ++i) {
descriptorSet->updateBuffer(5, i, texCoords[i]);
}
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descriptorSet->writeChanges();
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}