vk_resource_manager: Implement a command buffer pool with VKFencedPool
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@ -13,8 +13,55 @@
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namespace Vulkan {
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// TODO(Rodrigo): Fine tune these numbers.
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constexpr std::size_t COMMAND_BUFFER_POOL_SIZE = 0x1000;
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constexpr std::size_t FENCES_GROW_STEP = 0x40;
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class CommandBufferPool final : public VKFencedPool {
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public:
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CommandBufferPool(const VKDevice& device)
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: VKFencedPool(COMMAND_BUFFER_POOL_SIZE), device{device} {}
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void Allocate(std::size_t begin, std::size_t end) {
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const auto dev = device.GetLogical();
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const auto& dld = device.GetDispatchLoader();
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const u32 graphics_family = device.GetGraphicsFamily();
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auto pool = std::make_unique<Pool>();
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// Command buffers are going to be commited, recorded, executed every single usage cycle.
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// They are also going to be reseted when commited.
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const auto pool_flags = vk::CommandPoolCreateFlagBits::eTransient |
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vk::CommandPoolCreateFlagBits::eResetCommandBuffer;
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const vk::CommandPoolCreateInfo cmdbuf_pool_ci(pool_flags, graphics_family);
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pool->handle = dev.createCommandPoolUnique(cmdbuf_pool_ci, nullptr, dld);
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const vk::CommandBufferAllocateInfo cmdbuf_ai(*pool->handle,
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vk::CommandBufferLevel::ePrimary,
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static_cast<u32>(COMMAND_BUFFER_POOL_SIZE));
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pool->cmdbufs =
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dev.allocateCommandBuffersUnique<std::allocator<UniqueCommandBuffer>>(cmdbuf_ai, dld);
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pools.push_back(std::move(pool));
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}
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vk::CommandBuffer Commit(VKFence& fence) {
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const std::size_t index = CommitResource(fence);
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const auto pool_index = index / COMMAND_BUFFER_POOL_SIZE;
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const auto sub_index = index % COMMAND_BUFFER_POOL_SIZE;
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return *pools[pool_index]->cmdbufs[sub_index];
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}
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private:
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struct Pool {
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UniqueCommandPool handle;
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std::vector<UniqueCommandBuffer> cmdbufs;
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};
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const VKDevice& device;
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std::vector<std::unique_ptr<Pool>> pools;
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};
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VKResource::VKResource() = default;
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VKResource::~VKResource() = default;
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@ -174,6 +221,7 @@ void VKFencedPool::Grow() {
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VKResourceManager::VKResourceManager(const VKDevice& device) : device{device} {
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GrowFences(FENCES_GROW_STEP);
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command_buffer_pool = std::make_unique<CommandBufferPool>(device);
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}
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VKResourceManager::~VKResourceManager() = default;
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@ -217,6 +265,10 @@ VKFence& VKResourceManager::CommitFence() {
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return *found_fence;
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}
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vk::CommandBuffer VKResourceManager::CommitCommandBuffer(VKFence& fence) {
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return command_buffer_pool->Commit(fence);
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}
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void VKResourceManager::GrowFences(std::size_t new_fences_count) {
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const auto dev = device.GetLogical();
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const auto& dld = device.GetDispatchLoader();
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@ -15,6 +15,8 @@ class VKDevice;
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class VKFence;
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class VKResourceManager;
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class CommandBufferPool;
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/// Interface for a Vulkan resource
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class VKResource {
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public:
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@ -162,13 +164,17 @@ public:
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/// Commits a fence. It has to be sent to a queue and released.
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VKFence& CommitFence();
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/// Commits an unused command buffer and protects it with a fence.
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vk::CommandBuffer CommitCommandBuffer(VKFence& fence);
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private:
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/// Allocates new fences.
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void GrowFences(std::size_t new_fences_count);
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const VKDevice& device; ///< Device handler.
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std::size_t fences_iterator = 0; ///< Index where a free fence is likely to be found.
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std::vector<std::unique_ptr<VKFence>> fences; ///< Pool of fences.
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std::vector<std::unique_ptr<VKFence>> fences; ///< Pool of fences.
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std::unique_ptr<CommandBufferPool> command_buffer_pool; ///< Pool of command buffers.
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};
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} // namespace Vulkan
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