Files
2025-10-29 13:20:04 +07:00

114 lines
2.8 KiB
C++

#include "ModelManager.hpp"
#include <array>
#include "Log/Log.hpp"
ModelManager::StaticModel::StaticModel(const std::vector<Vertex>& vertices, const std::vector<uint32_t>& indices,
VkPhysicalDevice physical_device, VkDevice device):
physical_device_(physical_device),
device_(device)
{
}
ModelManager::StaticModel::~StaticModel()
{
}
VkVertexInputBindingDescription ModelManager::Vertex::get_binding_description()
{
VkVertexInputBindingDescription description;
description.binding = 0;
description.stride = sizeof(Vertex);
description.inputRate = VK_VERTEX_INPUT_RATE_VERTEX;
return description;
}
std::array<VkVertexInputAttributeDescription, 2> ModelManager::Vertex::get_vertex_attribute_descriptions()
{
std::array<VkVertexInputAttributeDescription, 2> descriptions;
// Bind vertex loc
descriptions[0].binding = 0;
descriptions[0].location = 0;
descriptions[0].format = VK_FORMAT_R32G32B32_SFLOAT;
descriptions[0].offset = offsetof(Vertex, pos);
// Bind color
descriptions[1].binding = 0;
descriptions[1].location = 1;
descriptions[1].format = VK_FORMAT_R32G32B32_SFLOAT;
descriptions[1].offset = offsetof(Vertex, color);
return descriptions;
}
ModelManager::owner_counter::owner_counter(const owner_counter& other) : counter(other.counter.load()), model(other.model)
{
}
unsigned int ModelManager::FNV1aHash(const char* buf)
{
unsigned int h_val = 0x811c9dc5;
while (*buf)
{
h_val ^= static_cast<unsigned int>(*buf++);
h_val *= 0x01000193;
}
return h_val;
}
ModelManager::ModelManager(VkPhysicalDevice physical_device, VkDevice device):
physical_device_(physical_device),
device_(device)
{}
ModelManager::~ModelManager()
{
models.clear();
}
ModelManager::StaticModel* ModelManager::LoadModel(const std::string& name)
{
if (name.empty())
return nullptr;
unsigned int hash = FNV1aHash(name.c_str());
auto counter = models.find(hash);
if (counter != models.cend())
{
++counter->second.counter;
return counter->second.model;
}
Loging::Log("Load new model: " + name);
std::vector<Vertex> vertices;
std::vector<uint32_t> indices;
// Load model_data
owner_counter new_counter;
new_counter.counter.store(1);
new_counter.model = new StaticModel(vertices, indices, physical_device_, device_);
models.try_emplace(hash, new_counter);
return new_counter.model;
}
void ModelManager::FreeModel(const std::string& name)
{
if (name.empty())
return;
unsigned int hash = FNV1aHash(name.c_str());
auto counter = models.find(hash);
--counter->second.counter;
StaticModel* model = counter->second.model;
if (counter->second.counter.load() == 0)
{
Loging::Log("Free model: " + name);
models.erase(hash);
delete model;
}
}