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https://github.com/cemu-project/Cemu.git
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Vulkan: Add explicit synchronization on frame boundaries (#1290)
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1a4d9660e7
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a05bdb172d
@ -146,8 +146,17 @@ void SwapchainInfoVk::Create()
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UnrecoverableError("Failed to create semaphore for swapchain acquire");
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}
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VkFenceCreateInfo fenceInfo = {};
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fenceInfo.sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO;
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fenceInfo.flags = VK_FENCE_CREATE_SIGNALED_BIT;
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result = vkCreateFence(m_logicalDevice, &fenceInfo, nullptr, &m_imageAvailableFence);
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if (result != VK_SUCCESS)
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UnrecoverableError("Failed to create fence for swapchain");
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m_acquireIndex = 0;
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hasDefinedSwapchainImage = false;
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m_queueDepth = 0;
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}
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void SwapchainInfoVk::Cleanup()
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@ -177,6 +186,12 @@ void SwapchainInfoVk::Cleanup()
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m_swapchainFramebuffers.clear();
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if (m_imageAvailableFence)
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{
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WaitAvailableFence();
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vkDestroyFence(m_logicalDevice, m_imageAvailableFence, nullptr);
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m_imageAvailableFence = nullptr;
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}
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if (m_swapchain)
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{
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vkDestroySwapchainKHR(m_logicalDevice, m_swapchain, nullptr);
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@ -189,6 +204,18 @@ bool SwapchainInfoVk::IsValid() const
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return m_swapchain && !m_acquireSemaphores.empty();
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}
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void SwapchainInfoVk::WaitAvailableFence()
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{
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if(m_awaitableFence != VK_NULL_HANDLE)
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vkWaitForFences(m_logicalDevice, 1, &m_awaitableFence, VK_TRUE, UINT64_MAX);
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m_awaitableFence = VK_NULL_HANDLE;
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}
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void SwapchainInfoVk::ResetAvailableFence() const
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{
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vkResetFences(m_logicalDevice, 1, &m_imageAvailableFence);
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}
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VkSemaphore SwapchainInfoVk::ConsumeAcquireSemaphore()
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{
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VkSemaphore ret = m_currentSemaphore;
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@ -198,8 +225,10 @@ VkSemaphore SwapchainInfoVk::ConsumeAcquireSemaphore()
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bool SwapchainInfoVk::AcquireImage()
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{
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ResetAvailableFence();
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VkSemaphore acquireSemaphore = m_acquireSemaphores[m_acquireIndex];
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VkResult result = vkAcquireNextImageKHR(m_logicalDevice, m_swapchain, 1'000'000'000, acquireSemaphore, nullptr, &swapchainImageIndex);
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VkResult result = vkAcquireNextImageKHR(m_logicalDevice, m_swapchain, 1'000'000'000, acquireSemaphore, m_imageAvailableFence, &swapchainImageIndex);
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if (result == VK_ERROR_OUT_OF_DATE_KHR || result == VK_SUBOPTIMAL_KHR)
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m_shouldRecreate = true;
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if (result == VK_TIMEOUT)
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@ -216,6 +245,7 @@ bool SwapchainInfoVk::AcquireImage()
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return false;
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}
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m_currentSemaphore = acquireSemaphore;
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m_awaitableFence = m_imageAvailableFence;
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m_acquireIndex = (m_acquireIndex + 1) % m_swapchainImages.size();
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return true;
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@ -319,6 +349,7 @@ VkExtent2D SwapchainInfoVk::ChooseSwapExtent(const VkSurfaceCapabilitiesKHR& cap
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VkPresentModeKHR SwapchainInfoVk::ChoosePresentMode(const std::vector<VkPresentModeKHR>& modes)
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{
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m_maxQueued = 0;
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const auto vsyncState = (VSync)GetConfig().vsync.GetValue();
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if (vsyncState == VSync::MAILBOX)
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{
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@ -345,6 +376,7 @@ VkPresentModeKHR SwapchainInfoVk::ChoosePresentMode(const std::vector<VkPresentM
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return VK_PRESENT_MODE_FIFO_KHR;
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}
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m_maxQueued = 1;
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return VK_PRESENT_MODE_FIFO_KHR;
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}
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@ -26,6 +26,9 @@ struct SwapchainInfoVk
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bool IsValid() const;
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void WaitAvailableFence();
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void ResetAvailableFence() const;
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bool AcquireImage();
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// retrieve semaphore of last acquire for submitting a wait operation
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// only one wait operation must be submitted per acquire (which submits a single signal operation)
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@ -68,6 +71,9 @@ struct SwapchainInfoVk
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VkSwapchainKHR m_swapchain{};
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Vector2i m_desiredExtent{};
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uint32 swapchainImageIndex = (uint32)-1;
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uint64 m_presentId = 1;
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uint64 m_queueDepth = 0; // number of frames with pending presentation requests
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uint64 m_maxQueued = 0; // the maximum number of frames with presentation requests.
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// swapchain image ringbuffer (indexed by swapchainImageIndex)
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@ -81,6 +87,8 @@ struct SwapchainInfoVk
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private:
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uint32 m_acquireIndex = 0;
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std::vector<VkSemaphore> m_acquireSemaphores; // indexed by m_acquireIndex
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VkFence m_imageAvailableFence{};
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VkFence m_awaitableFence = VK_NULL_HANDLE;
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VkSemaphore m_currentSemaphore = VK_NULL_HANDLE;
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std::array<uint32, 2> m_swapchainQueueFamilyIndices;
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@ -188,6 +188,9 @@ VKFUNC_DEVICE(vkCmdPipelineBarrier2KHR);
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VKFUNC_DEVICE(vkCmdBeginRenderingKHR);
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VKFUNC_DEVICE(vkCmdEndRenderingKHR);
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// khr_present_wait
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VKFUNC_DEVICE(vkWaitForPresentKHR);
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// transform feedback extension
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VKFUNC_DEVICE(vkCmdBindTransformFeedbackBuffersEXT);
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VKFUNC_DEVICE(vkCmdBeginTransformFeedbackEXT);
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@ -47,7 +47,9 @@ const std::vector<const char*> kOptionalDeviceExtensions =
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VK_EXT_FILTER_CUBIC_EXTENSION_NAME, // not supported by any device yet
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VK_EXT_EXTERNAL_MEMORY_HOST_EXTENSION_NAME,
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VK_KHR_SYNCHRONIZATION_2_EXTENSION_NAME,
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VK_KHR_SHADER_FLOAT_CONTROLS_EXTENSION_NAME
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VK_KHR_SHADER_FLOAT_CONTROLS_EXTENSION_NAME,
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VK_KHR_PRESENT_WAIT_EXTENSION_NAME,
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VK_KHR_PRESENT_ID_EXTENSION_NAME
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};
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const std::vector<const char*> kRequiredDeviceExtensions =
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@ -252,12 +254,24 @@ void VulkanRenderer::GetDeviceFeatures()
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pcc.pNext = prevStruct;
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prevStruct = &pcc;
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VkPhysicalDevicePresentIdFeaturesKHR pidf{};
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pidf.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_PRESENT_ID_FEATURES_KHR;
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pidf.pNext = prevStruct;
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prevStruct = &pidf;
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VkPhysicalDevicePresentWaitFeaturesKHR pwf{};
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pwf.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_PRESENT_WAIT_FEATURES_KHR;
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pwf.pNext = prevStruct;
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prevStruct = &pwf;
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VkPhysicalDeviceFeatures2 physicalDeviceFeatures2{};
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physicalDeviceFeatures2.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_FEATURES_2;
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physicalDeviceFeatures2.pNext = prevStruct;
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vkGetPhysicalDeviceFeatures2(m_physicalDevice, &physicalDeviceFeatures2);
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cemuLog_log(LogType::Force, "Vulkan: present_wait extension: {}", (pwf.presentWait && pidf.presentId) ? "supported" : "unsupported");
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/* Get Vulkan device properties and limits */
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VkPhysicalDeviceFloatControlsPropertiesKHR pfcp{};
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prevStruct = nullptr;
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@ -490,6 +504,24 @@ VulkanRenderer::VulkanRenderer()
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customBorderColorFeature.customBorderColors = VK_TRUE;
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customBorderColorFeature.customBorderColorWithoutFormat = VK_TRUE;
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}
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// enable VK_KHR_present_id
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VkPhysicalDevicePresentIdFeaturesKHR presentIdFeature{};
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if(m_featureControl.deviceExtensions.present_wait)
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{
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presentIdFeature.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_PRESENT_ID_FEATURES_KHR;
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presentIdFeature.pNext = deviceExtensionFeatures;
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deviceExtensionFeatures = &presentIdFeature;
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presentIdFeature.presentId = VK_TRUE;
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}
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// enable VK_KHR_present_wait
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VkPhysicalDevicePresentWaitFeaturesKHR presentWaitFeature{};
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if(m_featureControl.deviceExtensions.present_wait)
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{
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presentWaitFeature.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_PRESENT_WAIT_FEATURES_KHR;
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presentWaitFeature.pNext = deviceExtensionFeatures;
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deviceExtensionFeatures = &presentWaitFeature;
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presentWaitFeature.presentWait = VK_TRUE;
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}
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std::vector<const char*> used_extensions;
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VkDeviceCreateInfo createInfo = CreateDeviceCreateInfo(queueCreateInfos, deviceFeatures, deviceExtensionFeatures, used_extensions);
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@ -1047,6 +1079,10 @@ VkDeviceCreateInfo VulkanRenderer::CreateDeviceCreateInfo(const std::vector<VkDe
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used_extensions.emplace_back(VK_KHR_DYNAMIC_RENDERING_EXTENSION_NAME);
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if (m_featureControl.deviceExtensions.shader_float_controls)
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used_extensions.emplace_back(VK_KHR_SHADER_FLOAT_CONTROLS_EXTENSION_NAME);
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if (m_featureControl.deviceExtensions.present_wait)
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used_extensions.emplace_back(VK_KHR_PRESENT_ID_EXTENSION_NAME);
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if (m_featureControl.deviceExtensions.present_wait)
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used_extensions.emplace_back(VK_KHR_PRESENT_WAIT_EXTENSION_NAME);
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VkDeviceCreateInfo createInfo{};
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createInfo.sType = VK_STRUCTURE_TYPE_DEVICE_CREATE_INFO;
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@ -1144,6 +1180,7 @@ bool VulkanRenderer::CheckDeviceExtensionSupport(const VkPhysicalDevice device,
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info.deviceExtensions.shader_float_controls = isExtensionAvailable(VK_KHR_SHADER_FLOAT_CONTROLS_EXTENSION_NAME);
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info.deviceExtensions.dynamic_rendering = false; // isExtensionAvailable(VK_KHR_DYNAMIC_RENDERING_EXTENSION_NAME);
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// dynamic rendering doesn't provide any benefits for us right now. Driver implementations are very unoptimized as of Feb 2022
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info.deviceExtensions.present_wait = isExtensionAvailable(VK_KHR_PRESENT_WAIT_EXTENSION_NAME) && isExtensionAvailable(VK_KHR_PRESENT_ID_EXTENSION_NAME);
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// check for framedebuggers
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info.debugMarkersSupported = false;
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@ -2695,11 +2732,21 @@ void VulkanRenderer::SwapBuffer(bool mainWindow)
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ClearColorImageRaw(chainInfo.m_swapchainImages[chainInfo.swapchainImageIndex], 0, 0, clearColor, VK_IMAGE_LAYOUT_UNDEFINED, VK_IMAGE_LAYOUT_PRESENT_SRC_KHR);
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}
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const size_t currentFrameCmdBufferID = GetCurrentCommandBufferId();
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VkSemaphore presentSemaphore = chainInfo.m_presentSemaphores[chainInfo.swapchainImageIndex];
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SubmitCommandBuffer(presentSemaphore); // submit all command and signal semaphore
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cemu_assert_debug(m_numSubmittedCmdBuffers > 0);
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// wait for the previous frame to finish rendering
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WaitCommandBufferFinished(m_commandBufferIDOfPrevFrame);
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m_commandBufferIDOfPrevFrame = currentFrameCmdBufferID;
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chainInfo.WaitAvailableFence();
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VkPresentIdKHR presentId = {};
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VkPresentInfoKHR presentInfo = {};
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presentInfo.sType = VK_STRUCTURE_TYPE_PRESENT_INFO_KHR;
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presentInfo.swapchainCount = 1;
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@ -2709,6 +2756,24 @@ void VulkanRenderer::SwapBuffer(bool mainWindow)
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presentInfo.waitSemaphoreCount = 1;
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presentInfo.pWaitSemaphores = &presentSemaphore;
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// if present_wait is available and enabled, add frame markers to present requests
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// and limit the number of queued present operations
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if (m_featureControl.deviceExtensions.present_wait && chainInfo.m_maxQueued > 0)
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{
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presentId.sType = VK_STRUCTURE_TYPE_PRESENT_ID_KHR;
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presentId.swapchainCount = 1;
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presentId.pPresentIds = &chainInfo.m_presentId;
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presentInfo.pNext = &presentId;
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if(chainInfo.m_queueDepth >= chainInfo.m_maxQueued)
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{
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uint64 waitFrameId = chainInfo.m_presentId - chainInfo.m_queueDepth;
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vkWaitForPresentKHR(m_logicalDevice, chainInfo.m_swapchain, waitFrameId, 40'000'000);
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chainInfo.m_queueDepth--;
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}
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}
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VkResult result = vkQueuePresentKHR(m_presentQueue, &presentInfo);
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if (result < 0 && result != VK_ERROR_OUT_OF_DATE_KHR)
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{
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@ -2717,6 +2782,12 @@ void VulkanRenderer::SwapBuffer(bool mainWindow)
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if(result == VK_ERROR_OUT_OF_DATE_KHR || result == VK_SUBOPTIMAL_KHR)
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chainInfo.m_shouldRecreate = true;
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if(result >= 0)
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{
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chainInfo.m_queueDepth++;
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chainInfo.m_presentId++;
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}
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chainInfo.hasDefinedSwapchainImage = false;
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chainInfo.swapchainImageIndex = -1;
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@ -450,6 +450,7 @@ private:
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bool synchronization2 = false; // VK_KHR_synchronization2
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bool dynamic_rendering = false; // VK_KHR_dynamic_rendering
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bool shader_float_controls = false; // VK_KHR_shader_float_controls
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bool present_wait = false; // VK_KHR_present_wait
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}deviceExtensions;
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struct
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@ -457,7 +458,7 @@ private:
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bool shaderRoundingModeRTEFloat32{ false };
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}shaderFloatControls; // from VK_KHR_shader_float_controls
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struct
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struct
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{
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bool debug_utils = false; // VK_EXT_DEBUG_UTILS
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}instanceExtensions;
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@ -635,6 +636,7 @@ private:
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size_t m_commandBufferIndex = 0; // current buffer being filled
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size_t m_commandBufferSyncIndex = 0; // latest buffer that finished execution (updated on submit)
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size_t m_commandBufferIDOfPrevFrame = 0;
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std::array<VkFence, kCommandBufferPoolSize> m_cmd_buffer_fences;
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std::array<VkCommandBuffer, kCommandBufferPoolSize> m_commandBuffers;
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std::array<VkSemaphore, kCommandBufferPoolSize> m_commandBufferSemaphores;
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