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vk_master_semaphore: Move fence wait on separate thread
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1e398e6c36
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@ -10,11 +10,16 @@
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namespace Vulkan {
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constexpr u64 FENCE_RESERVE_SIZE = 8;
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MasterSemaphore::MasterSemaphore(const Device& device_) : device(device_) {
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if (!device.HasTimelineSemaphore()) {
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static constexpr VkFenceCreateInfo fence_ci{
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.sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO, .pNext = nullptr, .flags = 0};
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fence = device.GetLogical().CreateFence(fence_ci);
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free_queue.resize(FENCE_RESERVE_SIZE);
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std::ranges::generate(free_queue,
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[&] { return device.GetLogical().CreateFence(fence_ci); });
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wait_thread = std::jthread([this](std::stop_token token) { WaitThread(token); });
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return;
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}
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@ -167,16 +172,53 @@ VkResult MasterSemaphore::SubmitQueueFence(vk::CommandBuffer& cmdbuf, VkSemaphor
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.pSignalSemaphores = &signal_semaphore,
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};
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auto fence = GetFreeFence();
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auto result = device.GetGraphicsQueue().Submit(submit_info, *fence);
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if (result == VK_SUCCESS) {
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fence.Wait();
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fence.Reset();
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gpu_tick.store(host_tick);
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gpu_tick.notify_all();
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std::scoped_lock lock{wait_mutex};
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wait_queue.emplace(host_tick, std::move(fence));
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wait_cv.notify_one();
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}
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return result;
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}
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void MasterSemaphore::WaitThread(std::stop_token token) {
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while (!token.stop_requested()) {
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u64 host_tick;
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vk::Fence fence;
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{
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std::unique_lock lock{wait_mutex};
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Common::CondvarWait(wait_cv, lock, token, [this] { return !wait_queue.empty(); });
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if (token.stop_requested()) {
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return;
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}
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std::tie(host_tick, fence) = std::move(wait_queue.front());
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wait_queue.pop();
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}
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fence.Wait();
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fence.Reset();
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gpu_tick.store(host_tick);
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gpu_tick.notify_all();
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std::scoped_lock lock{free_mutex};
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free_queue.push_front(std::move(fence));
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}
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}
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vk::Fence MasterSemaphore::GetFreeFence() {
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std::scoped_lock lock{free_mutex};
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if (free_queue.empty()) {
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static constexpr VkFenceCreateInfo fence_ci{
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.sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO, .pNext = nullptr, .flags = 0};
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return device.GetLogical().CreateFence(fence_ci);
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}
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auto fence = std::move(free_queue.back());
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free_queue.pop_back();
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return fence;
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}
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} // namespace Vulkan
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@ -5,8 +5,10 @@
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#include <atomic>
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#include <condition_variable>
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#include <deque>
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#include <mutex>
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#include <thread>
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#include <queue>
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#include "common/common_types.h"
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#include "common/polyfill_thread.h"
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@ -17,6 +19,8 @@ namespace Vulkan {
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class Device;
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class MasterSemaphore {
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using Waitable = std::pair<u64, vk::Fence>;
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public:
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explicit MasterSemaphore(const Device& device);
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~MasterSemaphore();
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@ -57,13 +61,22 @@ private:
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VkResult SubmitQueueFence(vk::CommandBuffer& cmdbuf, VkSemaphore signal_semaphore,
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VkSemaphore wait_semaphore, u64 host_tick);
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void WaitThread(std::stop_token token);
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vk::Fence GetFreeFence();
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private:
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const Device& device; ///< Device.
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vk::Fence fence; ///< Fence.
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vk::Semaphore semaphore; ///< Timeline semaphore.
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std::atomic<u64> gpu_tick{0}; ///< Current known GPU tick.
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std::atomic<u64> current_tick{1}; ///< Current logical tick.
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std::mutex wait_mutex;
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std::mutex free_mutex;
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std::condition_variable_any wait_cv;
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std::queue<Waitable> wait_queue; ///< Queue for the fences to be waited on by the wait thread.
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std::deque<vk::Fence> free_queue; ///< Holds available fences for submission.
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std::jthread debug_thread; ///< Debug thread to workaround validation layer bugs.
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std::jthread wait_thread; ///< Helper thread that waits for submitted fences.
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};
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} // namespace Vulkan
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