137 lines
5.4 KiB
C++
137 lines
5.4 KiB
C++
/*
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Created on: Nov 29, 2019
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Copyright 2019 flyinghead
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This file is part of Flycast.
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Flycast is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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Flycast is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Flycast. If not, see <https://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include "vulkan.h"
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#include "vmallocator.h"
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#include "quad.h"
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#include "rend/TexCache.h"
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#include "libretro_vulkan.h"
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extern int screen_width, screen_height;
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static vk::Format findDepthFormat(vk::PhysicalDevice physicalDevice);
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class VulkanContext
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{
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public:
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VulkanContext() { verify(contextInstance == nullptr); contextInstance = this; }
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~VulkanContext() { verify(contextInstance == this); contextInstance = nullptr; }
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bool Init(retro_hw_render_interface_vulkan *render_if);
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void Term();
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u32 GetGraphicsQueueFamilyIndex() const { return retro_render_if->queue_index; }
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void SetWindowSize(u32 width, u32 height) { this->width = screen_width = width; this->height = screen_height = height; }
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void PresentFrame(vk::Image image, vk::ImageView imageView, const vk::Extent2D& extent);
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vk::PhysicalDevice GetPhysicalDevice() const { return physicalDevice; }
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vk::Device GetDevice() const { return device; }
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vk::PipelineCache GetPipelineCache() const { return *pipelineCache; }
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vk::DescriptorPool GetDescriptorPool() const { return *descriptorPool; }
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vk::Extent2D GetViewPort() const { return { width, height }; }
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int GetSwapChainSize() const { u32 m = retro_render_if->get_sync_index_mask(retro_render_if->handle); u32 n = 1; while (m >>= 1) n++; return n; }
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int GetCurrentImageIndex() const { return retro_render_if->get_sync_index(retro_render_if->handle); }
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// FIXME that's not quite correct
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void WaitIdle() const { retro_render_if->wait_sync_index(retro_render_if->handle); }
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void SubmitCommandBuffers(u32 bufferCount, vk::CommandBuffer *buffers, vk::Fence fence) {
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retro_render_if->lock_queue(retro_render_if->handle);
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queue.submit(vk::SubmitInfo(0, nullptr, nullptr, bufferCount, buffers, 0, nullptr), fence);
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retro_render_if->unlock_queue(retro_render_if->handle);
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}
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vk::DeviceSize GetUniformBufferAlignment() const { return uniformBufferAlignment; }
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vk::DeviceSize GetStorageBufferAlignment() const { return storageBufferAlignment; }
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bool IsFormatSupported(TextureType textureType)
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{
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switch (textureType)
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{
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case TextureType::_4444:
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return optimalTilingSupported4444;
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case TextureType::_565:
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return optimalTilingSupported565;
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case TextureType::_5551:
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return optimalTilingSupported1555;
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default:
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return true;
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}
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}
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std::string GetDriverName() const { vk::PhysicalDeviceProperties props; physicalDevice.getProperties(&props); return props.deviceName; }
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std::string GetDriverVersion() const {
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vk::PhysicalDeviceProperties props;
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physicalDevice.getProperties(&props);
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return std::to_string(VK_VERSION_MAJOR(props.driverVersion))
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+ "." + std::to_string(VK_VERSION_MINOR(props.driverVersion))
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+ "." + std::to_string(VK_VERSION_PATCH(props.driverVersion));
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}
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vk::Format GetColorFormat() const { return colorFormat; }
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vk::Format GetDepthFormat() const { return depthFormat; }
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static VulkanContext *Instance() { return contextInstance; }
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bool SupportsSamplerAnisotropy() const { return samplerAnisotropy; }
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bool SupportsDedicatedAllocation() const { return dedicatedAllocationSupported; }
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const VMAllocator& GetAllocator() const { return allocator; }
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vk::DeviceSize GetMaxMemoryAllocationSize() const { return maxMemoryAllocationSize; }
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f32 GetMaxSamplerAnisotropy() const { return samplerAnisotropy ? maxSamplerAnisotropy : 1.f; }
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u32 GetVendorID() const { return vendorID; }
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private:
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VMAllocator allocator;
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u32 width = 0;
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u32 height = 0;
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vk::DeviceSize uniformBufferAlignment = 0;
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vk::DeviceSize storageBufferAlignment = 0;
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u32 maxStorageBufferRange = 0;
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vk::DeviceSize maxMemoryAllocationSize = 0;
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bool optimalTilingSupported565 = false;
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bool optimalTilingSupported1555 = false;
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bool optimalTilingSupported4444 = false;
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public:
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bool samplerAnisotropy = false;
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f32 maxSamplerAnisotropy = 0.f;
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bool dedicatedAllocationSupported = false;
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private:
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u32 vendorID = 0;
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vk::Format colorFormat = vk::Format::eR8G8B8A8Unorm;
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vk::UniqueDescriptorPool descriptorPool;
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vk::Format depthFormat = vk::Format::eUndefined;
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vk::UniquePipelineCache pipelineCache;
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retro_hw_render_interface_vulkan *retro_render_if = nullptr;
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vk::Instance instance;
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vk::PhysicalDevice physicalDevice;
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vk::Device device;
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vk::Queue queue;
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retro_vulkan_image retro_image;
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static VulkanContext *contextInstance;
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};
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const VkApplicationInfo* VkGetApplicationInfo();
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bool VkCreateDevice(retro_vulkan_context* context, VkInstance instance, VkPhysicalDevice gpu,
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VkSurfaceKHR surface, PFN_vkGetInstanceProcAddr get_instance_proc_addr,
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const char** required_device_extensions,
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unsigned num_required_device_extensions,
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const char** required_device_layers, unsigned num_required_device_layers,
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const VkPhysicalDeviceFeatures* required_features);
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