renderer_vulkan.cpp 16 KB

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  1. // Copyright 2018 yuzu Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <algorithm>
  5. #include <array>
  6. #include <cstring>
  7. #include <memory>
  8. #include <optional>
  9. #include <string>
  10. #include <vector>
  11. #include <fmt/format.h>
  12. #include "common/dynamic_library.h"
  13. #include "common/file_util.h"
  14. #include "common/logging/log.h"
  15. #include "common/telemetry.h"
  16. #include "core/core.h"
  17. #include "core/core_timing.h"
  18. #include "core/frontend/emu_window.h"
  19. #include "core/settings.h"
  20. #include "core/telemetry_session.h"
  21. #include "video_core/gpu.h"
  22. #include "video_core/renderer_vulkan/renderer_vulkan.h"
  23. #include "video_core/renderer_vulkan/vk_blit_screen.h"
  24. #include "video_core/renderer_vulkan/vk_device.h"
  25. #include "video_core/renderer_vulkan/vk_memory_manager.h"
  26. #include "video_core/renderer_vulkan/vk_rasterizer.h"
  27. #include "video_core/renderer_vulkan/vk_resource_manager.h"
  28. #include "video_core/renderer_vulkan/vk_scheduler.h"
  29. #include "video_core/renderer_vulkan/vk_state_tracker.h"
  30. #include "video_core/renderer_vulkan/vk_swapchain.h"
  31. #include "video_core/renderer_vulkan/wrapper.h"
  32. // Include these late to avoid polluting previous headers
  33. #ifdef _WIN32
  34. #include <windows.h>
  35. // ensure include order
  36. #include <vulkan/vulkan_win32.h>
  37. #endif
  38. #if !defined(_WIN32) && !defined(__APPLE__)
  39. #include <X11/Xlib.h>
  40. #include <vulkan/vulkan_wayland.h>
  41. #include <vulkan/vulkan_xlib.h>
  42. #endif
  43. namespace Vulkan {
  44. namespace {
  45. using Core::Frontend::WindowSystemType;
  46. VkBool32 DebugCallback(VkDebugUtilsMessageSeverityFlagBitsEXT severity,
  47. VkDebugUtilsMessageTypeFlagsEXT type,
  48. const VkDebugUtilsMessengerCallbackDataEXT* data,
  49. [[maybe_unused]] void* user_data) {
  50. const char* message{data->pMessage};
  51. if (severity & VK_DEBUG_UTILS_MESSAGE_SEVERITY_ERROR_BIT_EXT) {
  52. LOG_CRITICAL(Render_Vulkan, "{}", message);
  53. } else if (severity & VK_DEBUG_UTILS_MESSAGE_SEVERITY_WARNING_BIT_EXT) {
  54. LOG_WARNING(Render_Vulkan, "{}", message);
  55. } else if (severity & VK_DEBUG_UTILS_MESSAGE_SEVERITY_INFO_BIT_EXT) {
  56. LOG_INFO(Render_Vulkan, "{}", message);
  57. } else if (severity & VK_DEBUG_UTILS_MESSAGE_SEVERITY_VERBOSE_BIT_EXT) {
  58. LOG_DEBUG(Render_Vulkan, "{}", message);
  59. }
  60. return VK_FALSE;
  61. }
  62. Common::DynamicLibrary OpenVulkanLibrary() {
  63. Common::DynamicLibrary library;
  64. #ifdef __APPLE__
  65. // Check if a path to a specific Vulkan library has been specified.
  66. char* libvulkan_env = getenv("LIBVULKAN_PATH");
  67. if (!libvulkan_env || !library.Open(libvulkan_env)) {
  68. // Use the libvulkan.dylib from the application bundle.
  69. const std::string filename =
  70. FileUtil::GetBundleDirectory() + "/Contents/Frameworks/libvulkan.dylib";
  71. library.Open(filename.c_str());
  72. }
  73. #else
  74. std::string filename = Common::DynamicLibrary::GetVersionedFilename("vulkan", 1);
  75. if (!library.Open(filename.c_str())) {
  76. // Android devices may not have libvulkan.so.1, only libvulkan.so.
  77. filename = Common::DynamicLibrary::GetVersionedFilename("vulkan");
  78. library.Open(filename.c_str());
  79. }
  80. #endif
  81. return library;
  82. }
  83. vk::Instance CreateInstance(Common::DynamicLibrary& library, vk::InstanceDispatch& dld,
  84. WindowSystemType window_type = WindowSystemType::Headless,
  85. bool enable_layers = false) {
  86. if (!library.IsOpen()) {
  87. LOG_ERROR(Render_Vulkan, "Vulkan library not available");
  88. return {};
  89. }
  90. if (!library.GetSymbol("vkGetInstanceProcAddr", &dld.vkGetInstanceProcAddr)) {
  91. LOG_ERROR(Render_Vulkan, "vkGetInstanceProcAddr not present in Vulkan");
  92. return {};
  93. }
  94. if (!vk::Load(dld)) {
  95. LOG_ERROR(Render_Vulkan, "Failed to load Vulkan function pointers");
  96. return {};
  97. }
  98. std::vector<const char*> extensions;
  99. extensions.reserve(6);
  100. switch (window_type) {
  101. case Core::Frontend::WindowSystemType::Headless:
  102. break;
  103. #ifdef _WIN32
  104. case Core::Frontend::WindowSystemType::Windows:
  105. extensions.push_back(VK_KHR_WIN32_SURFACE_EXTENSION_NAME);
  106. break;
  107. #endif
  108. #if !defined(_WIN32) && !defined(__APPLE__)
  109. case Core::Frontend::WindowSystemType::X11:
  110. extensions.push_back(VK_KHR_XLIB_SURFACE_EXTENSION_NAME);
  111. break;
  112. case Core::Frontend::WindowSystemType::Wayland:
  113. extensions.push_back(VK_KHR_WAYLAND_SURFACE_EXTENSION_NAME);
  114. break;
  115. #endif
  116. default:
  117. LOG_ERROR(Render_Vulkan, "Presentation not supported on this platform");
  118. break;
  119. }
  120. if (window_type != Core::Frontend::WindowSystemType::Headless) {
  121. extensions.push_back(VK_KHR_SURFACE_EXTENSION_NAME);
  122. }
  123. if (enable_layers) {
  124. extensions.push_back(VK_EXT_DEBUG_UTILS_EXTENSION_NAME);
  125. }
  126. extensions.push_back(VK_KHR_GET_PHYSICAL_DEVICE_PROPERTIES_2_EXTENSION_NAME);
  127. const std::optional properties = vk::EnumerateInstanceExtensionProperties(dld);
  128. if (!properties) {
  129. LOG_ERROR(Render_Vulkan, "Failed to query extension properties");
  130. return {};
  131. }
  132. for (const char* extension : extensions) {
  133. const auto it =
  134. std::find_if(properties->begin(), properties->end(), [extension](const auto& prop) {
  135. return !std::strcmp(extension, prop.extensionName);
  136. });
  137. if (it == properties->end()) {
  138. LOG_ERROR(Render_Vulkan, "Required instance extension {} is not available", extension);
  139. return {};
  140. }
  141. }
  142. static constexpr std::array layers_data{"VK_LAYER_LUNARG_standard_validation"};
  143. vk::Span<const char*> layers = layers_data;
  144. if (!enable_layers) {
  145. layers = {};
  146. }
  147. vk::Instance instance = vk::Instance::Create(layers, extensions, dld);
  148. if (!instance) {
  149. LOG_ERROR(Render_Vulkan, "Failed to create Vulkan instance");
  150. return {};
  151. }
  152. if (!vk::Load(*instance, dld)) {
  153. LOG_ERROR(Render_Vulkan, "Failed to load Vulkan instance function pointers");
  154. }
  155. return instance;
  156. }
  157. std::string GetReadableVersion(u32 version) {
  158. return fmt::format("{}.{}.{}", VK_VERSION_MAJOR(version), VK_VERSION_MINOR(version),
  159. VK_VERSION_PATCH(version));
  160. }
  161. std::string GetDriverVersion(const VKDevice& device) {
  162. // Extracted from
  163. // https://github.com/SaschaWillems/vulkan.gpuinfo.org/blob/5dddea46ea1120b0df14eef8f15ff8e318e35462/functions.php#L308-L314
  164. const u32 version = device.GetDriverVersion();
  165. if (device.GetDriverID() == VK_DRIVER_ID_NVIDIA_PROPRIETARY_KHR) {
  166. const u32 major = (version >> 22) & 0x3ff;
  167. const u32 minor = (version >> 14) & 0x0ff;
  168. const u32 secondary = (version >> 6) & 0x0ff;
  169. const u32 tertiary = version & 0x003f;
  170. return fmt::format("{}.{}.{}.{}", major, minor, secondary, tertiary);
  171. }
  172. if (device.GetDriverID() == VK_DRIVER_ID_INTEL_PROPRIETARY_WINDOWS_KHR) {
  173. const u32 major = version >> 14;
  174. const u32 minor = version & 0x3fff;
  175. return fmt::format("{}.{}", major, minor);
  176. }
  177. return GetReadableVersion(version);
  178. }
  179. std::string BuildCommaSeparatedExtensions(std::vector<std::string> available_extensions) {
  180. std::sort(std::begin(available_extensions), std::end(available_extensions));
  181. static constexpr std::size_t AverageExtensionSize = 64;
  182. std::string separated_extensions;
  183. separated_extensions.reserve(available_extensions.size() * AverageExtensionSize);
  184. const auto end = std::end(available_extensions);
  185. for (auto extension = std::begin(available_extensions); extension != end; ++extension) {
  186. if (const bool is_last = extension + 1 == end; is_last) {
  187. separated_extensions += *extension;
  188. } else {
  189. separated_extensions += fmt::format("{},", *extension);
  190. }
  191. }
  192. return separated_extensions;
  193. }
  194. } // Anonymous namespace
  195. RendererVulkan::RendererVulkan(Core::Frontend::EmuWindow& window, Core::System& system)
  196. : RendererBase(window), system{system} {}
  197. RendererVulkan::~RendererVulkan() {
  198. ShutDown();
  199. }
  200. void RendererVulkan::SwapBuffers(const Tegra::FramebufferConfig* framebuffer) {
  201. render_window.PollEvents();
  202. if (!framebuffer) {
  203. return;
  204. }
  205. const auto& layout = render_window.GetFramebufferLayout();
  206. if (layout.width > 0 && layout.height > 0 && render_window.IsShown()) {
  207. const VAddr framebuffer_addr = framebuffer->address + framebuffer->offset;
  208. const bool use_accelerated =
  209. rasterizer->AccelerateDisplay(*framebuffer, framebuffer_addr, framebuffer->stride);
  210. const bool is_srgb = use_accelerated && screen_info.is_srgb;
  211. if (swapchain->HasFramebufferChanged(layout) || swapchain->GetSrgbState() != is_srgb) {
  212. swapchain->Create(layout.width, layout.height, is_srgb);
  213. blit_screen->Recreate();
  214. }
  215. scheduler->WaitWorker();
  216. swapchain->AcquireNextImage();
  217. const auto [fence, render_semaphore] = blit_screen->Draw(*framebuffer, use_accelerated);
  218. scheduler->Flush(false, render_semaphore);
  219. if (swapchain->Present(render_semaphore, fence)) {
  220. blit_screen->Recreate();
  221. }
  222. rasterizer->TickFrame();
  223. }
  224. render_window.PollEvents();
  225. }
  226. bool RendererVulkan::TryPresent(int /*timeout_ms*/) {
  227. // TODO (bunnei): ImplementMe
  228. return true;
  229. }
  230. bool RendererVulkan::Init() {
  231. library = OpenVulkanLibrary();
  232. instance = CreateInstance(library, dld, render_window.GetWindowInfo().type,
  233. Settings::values.renderer_debug);
  234. if (!instance || !CreateDebugCallback() || !CreateSurface() || !PickDevices()) {
  235. return false;
  236. }
  237. Report();
  238. memory_manager = std::make_unique<VKMemoryManager>(*device);
  239. resource_manager = std::make_unique<VKResourceManager>(*device);
  240. const auto& framebuffer = render_window.GetFramebufferLayout();
  241. swapchain = std::make_unique<VKSwapchain>(*surface, *device);
  242. swapchain->Create(framebuffer.width, framebuffer.height, false);
  243. state_tracker = std::make_unique<StateTracker>(system);
  244. scheduler = std::make_unique<VKScheduler>(*device, *resource_manager, *state_tracker);
  245. rasterizer = std::make_unique<RasterizerVulkan>(system, render_window, screen_info, *device,
  246. *resource_manager, *memory_manager,
  247. *state_tracker, *scheduler);
  248. blit_screen = std::make_unique<VKBlitScreen>(system, render_window, *rasterizer, *device,
  249. *resource_manager, *memory_manager, *swapchain,
  250. *scheduler, screen_info);
  251. return true;
  252. }
  253. void RendererVulkan::ShutDown() {
  254. if (!device) {
  255. return;
  256. }
  257. if (const auto& dev = device->GetLogical()) {
  258. dev.WaitIdle();
  259. }
  260. rasterizer.reset();
  261. blit_screen.reset();
  262. scheduler.reset();
  263. swapchain.reset();
  264. memory_manager.reset();
  265. resource_manager.reset();
  266. device.reset();
  267. }
  268. bool RendererVulkan::CreateDebugCallback() {
  269. if (!Settings::values.renderer_debug) {
  270. return true;
  271. }
  272. debug_callback = instance.TryCreateDebugCallback(DebugCallback);
  273. if (!debug_callback) {
  274. LOG_ERROR(Render_Vulkan, "Failed to create debug callback");
  275. return false;
  276. }
  277. return true;
  278. }
  279. bool RendererVulkan::CreateSurface() {
  280. [[maybe_unused]] const auto& window_info = render_window.GetWindowInfo();
  281. VkSurfaceKHR unsafe_surface = nullptr;
  282. #ifdef _WIN32
  283. if (window_info.type == Core::Frontend::WindowSystemType::Windows) {
  284. const HWND hWnd = static_cast<HWND>(window_info.render_surface);
  285. const VkWin32SurfaceCreateInfoKHR win32_ci{VK_STRUCTURE_TYPE_WIN32_SURFACE_CREATE_INFO_KHR,
  286. nullptr, 0, nullptr, hWnd};
  287. const auto vkCreateWin32SurfaceKHR = reinterpret_cast<PFN_vkCreateWin32SurfaceKHR>(
  288. dld.vkGetInstanceProcAddr(*instance, "vkCreateWin32SurfaceKHR"));
  289. if (!vkCreateWin32SurfaceKHR ||
  290. vkCreateWin32SurfaceKHR(*instance, &win32_ci, nullptr, &unsafe_surface) != VK_SUCCESS) {
  291. LOG_ERROR(Render_Vulkan, "Failed to initialize Win32 surface");
  292. return false;
  293. }
  294. }
  295. #endif
  296. #if !defined(_WIN32) && !defined(__APPLE__)
  297. if (window_info.type == Core::Frontend::WindowSystemType::X11) {
  298. const VkXlibSurfaceCreateInfoKHR xlib_ci{
  299. VK_STRUCTURE_TYPE_XLIB_SURFACE_CREATE_INFO_KHR, nullptr, 0,
  300. static_cast<Display*>(window_info.display_connection),
  301. reinterpret_cast<Window>(window_info.render_surface)};
  302. const auto vkCreateXlibSurfaceKHR = reinterpret_cast<PFN_vkCreateXlibSurfaceKHR>(
  303. dld.vkGetInstanceProcAddr(*instance, "vkCreateXlibSurfaceKHR"));
  304. if (!vkCreateXlibSurfaceKHR ||
  305. vkCreateXlibSurfaceKHR(*instance, &xlib_ci, nullptr, &unsafe_surface) != VK_SUCCESS) {
  306. LOG_ERROR(Render_Vulkan, "Failed to initialize Xlib surface");
  307. return false;
  308. }
  309. }
  310. if (window_info.type == Core::Frontend::WindowSystemType::Wayland) {
  311. const VkWaylandSurfaceCreateInfoKHR wayland_ci{
  312. VK_STRUCTURE_TYPE_WAYLAND_SURFACE_CREATE_INFO_KHR, nullptr, 0,
  313. static_cast<wl_display*>(window_info.display_connection),
  314. static_cast<wl_surface*>(window_info.render_surface)};
  315. const auto vkCreateWaylandSurfaceKHR = reinterpret_cast<PFN_vkCreateWaylandSurfaceKHR>(
  316. dld.vkGetInstanceProcAddr(*instance, "vkCreateWaylandSurfaceKHR"));
  317. if (!vkCreateWaylandSurfaceKHR ||
  318. vkCreateWaylandSurfaceKHR(*instance, &wayland_ci, nullptr, &unsafe_surface) !=
  319. VK_SUCCESS) {
  320. LOG_ERROR(Render_Vulkan, "Failed to initialize Wayland surface");
  321. return false;
  322. }
  323. }
  324. #endif
  325. if (!unsafe_surface) {
  326. LOG_ERROR(Render_Vulkan, "Presentation not supported on this platform");
  327. return false;
  328. }
  329. surface = vk::SurfaceKHR(unsafe_surface, *instance, dld);
  330. return true;
  331. }
  332. bool RendererVulkan::PickDevices() {
  333. const auto devices = instance.EnumeratePhysicalDevices();
  334. if (!devices) {
  335. LOG_ERROR(Render_Vulkan, "Failed to enumerate physical devices");
  336. return false;
  337. }
  338. const s32 device_index = Settings::values.vulkan_device;
  339. if (device_index < 0 || device_index >= static_cast<s32>(devices->size())) {
  340. LOG_ERROR(Render_Vulkan, "Invalid device index {}!", device_index);
  341. return false;
  342. }
  343. const vk::PhysicalDevice physical_device((*devices)[static_cast<std::size_t>(device_index)],
  344. dld);
  345. if (!VKDevice::IsSuitable(physical_device, *surface)) {
  346. return false;
  347. }
  348. device = std::make_unique<VKDevice>(*instance, physical_device, *surface, dld);
  349. return device->Create();
  350. }
  351. void RendererVulkan::Report() const {
  352. const std::string vendor_name{device->GetVendorName()};
  353. const std::string model_name{device->GetModelName()};
  354. const std::string driver_version = GetDriverVersion(*device);
  355. const std::string driver_name = fmt::format("{} {}", vendor_name, driver_version);
  356. const std::string api_version = GetReadableVersion(device->GetApiVersion());
  357. const std::string extensions = BuildCommaSeparatedExtensions(device->GetAvailableExtensions());
  358. LOG_INFO(Render_Vulkan, "Driver: {}", driver_name);
  359. LOG_INFO(Render_Vulkan, "Device: {}", model_name);
  360. LOG_INFO(Render_Vulkan, "Vulkan: {}", api_version);
  361. auto& telemetry_session = system.TelemetrySession();
  362. constexpr auto field = Telemetry::FieldType::UserSystem;
  363. telemetry_session.AddField(field, "GPU_Vendor", vendor_name);
  364. telemetry_session.AddField(field, "GPU_Model", model_name);
  365. telemetry_session.AddField(field, "GPU_Vulkan_Driver", driver_name);
  366. telemetry_session.AddField(field, "GPU_Vulkan_Version", api_version);
  367. telemetry_session.AddField(field, "GPU_Vulkan_Extensions", extensions);
  368. }
  369. std::vector<std::string> RendererVulkan::EnumerateDevices() {
  370. vk::InstanceDispatch dld;
  371. Common::DynamicLibrary library = OpenVulkanLibrary();
  372. vk::Instance instance = CreateInstance(library, dld);
  373. if (!instance) {
  374. return {};
  375. }
  376. const std::optional physical_devices = instance.EnumeratePhysicalDevices();
  377. if (!physical_devices) {
  378. return {};
  379. }
  380. std::vector<std::string> names;
  381. names.reserve(physical_devices->size());
  382. for (const auto& device : *physical_devices) {
  383. names.push_back(vk::PhysicalDevice(device, dld).GetProperties().deviceName);
  384. }
  385. return names;
  386. }
  387. } // namespace Vulkan