This commit is contained in:
Martin Slachta
2026-07-18 14:31:15 +02:00
commit a04f0dc262
3343 changed files with 1140208 additions and 0 deletions
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#include <SDL2/SDL_error.h>
#include <SDL_video.h>
#include <volk.h>
#include <stdexcept>
#include "SDLWindow.h"
#include "LoftException.hpp"
#include <SDL2/SDL_vulkan.h>
#include <vector>
#include <vulkan/vulkan_core.h>
namespace lft::win {
//
// Created by martin on 11/12/23.
//
void SDLWindow::resize() {
}
VkExtent2D SDLWindow::get_size() const {
VkExtent2D extent = {};
SDL_GetWindowSize(m_pWindow, (int*)&extent.width, (int*)&extent.height);
return extent;
}
SDLWindow::SDLWindow(std::string name, VkRect2D rect) :
m_extent{rect.extent}
{
if(SDL_Init(SDL_INIT_VIDEO | SDL_INIT_EVERYTHING) < 0) {
throw std::runtime_error("Failed to initialize sdl");
}
m_pWindow = SDL_CreateWindow(name.c_str(),
SDL_WINDOWPOS_CENTERED,
SDL_WINDOWPOS_CENTERED,
rect.extent.width,
rect.extent.height,
SDL_WINDOW_VULKAN | SDL_WINDOW_ALLOW_HIGHDPI |
SDL_WINDOW_RESIZABLE);
if(m_pWindow == nullptr) {
throw GpuException(std::format("Failed to create window:\n{}", SDL_GetError()));
}
}
Surface SDLWindow::create_surface(const Instance* instance) const {
VkSurfaceKHR surface = VK_NULL_HANDLE;
SDL_Vulkan_CreateSurface(m_pWindow, instance->instance(), &surface);
return Surface(instance, surface);
}
bool SDLWindow::is_open() const {
return true;
}
int32_t SDLWindow::poll_event(SDL_Event *pOutEvent) const {
return SDL_PollEvent(pOutEvent);
}
std::vector<std::string> SDLWindow::get_required_extensions() const {
uint32_t count = 0;
SDL_Vulkan_GetInstanceExtensions(m_pWindow, &count, nullptr);
std::vector<const char*> extensions(count);
SDL_Vulkan_GetInstanceExtensions(m_pWindow, &count, extensions.data());
std::vector<std::string> extension_strings(count);
std::transform(extensions.begin(), extensions.end(),
extension_strings.begin(),
[](const char* str) {
return std::string(str);
});
return extension_strings;
}
}
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#include "Swapchain.hpp"
#include "Instance.hpp"
#include <assert.h>
#include <print>
VkSurfaceFormatKHR Swapchain::choose_format() {
uint32_t formatCount = 0;
vkGetPhysicalDeviceSurfaceFormatsKHR(m_gpu->gpu(), m_surface, &formatCount, nullptr);
assert(formatCount > 0);
auto formats = std::vector<VkSurfaceFormatKHR>(formatCount);
vkGetPhysicalDeviceSurfaceFormatsKHR(m_gpu->gpu(), m_surface, &formatCount, formats.data());
for(uint32_t i = 0; i < formatCount; i++) {
if(formats[i].format == VK_FORMAT_B8G8R8A8_UNORM &&
formats[i].colorSpace == VK_COLOR_SPACE_SRGB_NONLINEAR_KHR) {
return formats[i];
}
}
auto result = formats[0];
return result;
}
VkPresentModeKHR Swapchain::choose_present_mode() {
uint32_t presentModeCount = 0;
vkGetPhysicalDeviceSurfacePresentModesKHR(m_gpu->gpu(), m_surface,
&presentModeCount, nullptr);
VkPresentModeKHR presentModeResult = VK_PRESENT_MODE_FIFO_KHR;
auto presentModes = new VkPresentModeKHR[presentModeCount];
vkGetPhysicalDeviceSurfacePresentModesKHR(m_gpu->gpu(), m_surface,
&presentModeCount, presentModes);
for(uint32_t i = 0; i < presentModeCount; i++) {
if(presentModes[i] == VK_PRESENT_MODE_MAILBOX_KHR) {
presentModeResult = presentModes[i];
}
}
delete [] presentModes;
return presentModeResult;
}
VkExtent2D Swapchain::choose_extent(VkExtent2D actualExtent) {
VkSurfaceCapabilitiesKHR capabilities = {};
vkGetPhysicalDeviceSurfaceCapabilitiesKHR(m_gpu->gpu(), m_surface, &capabilities);
VkExtent2D result = {};
if(capabilities.currentExtent.width != UINT32_MAX) {
result = capabilities.currentExtent;
} else {
result.width = std::max(
capabilities.minImageExtent.width,
std::min(capabilities.maxImageExtent.width, actualExtent.width)
);
result.height = std::max(
capabilities.minImageExtent.height,
std::min(capabilities.maxImageExtent.height, actualExtent.height)
);
}
assert(result.width > 0 && result.height > 0);
return result;
}
ResultCode Swapchain::get_images(uint32_t *pOutNumImages, VkImage *pOutImages) {
/* Get images to render to, rendertargets */
EXPECT(vkGetSwapchainImagesKHR(m_gpu->dev(), m_swapchain, pOutNumImages, pOutImages) == VK_SUCCESS,
"Failed to get swapchain images");
return RESULT_OK;
}
ResultCode Swapchain::create_views() {
m_pImageViews = (VkImageView*)malloc(sizeof(VkImageView) * m_numImages);
assert(m_pImageViews);
for(unsigned i = 0; i < m_numImages; i++) {
VkImageViewCreateInfo viewInfo = {
.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
.image = m_pImages[i],
.viewType = VK_IMAGE_VIEW_TYPE_2D,
.format = m_format.format,
.components = {
VK_COMPONENT_SWIZZLE_IDENTITY,
VK_COMPONENT_SWIZZLE_IDENTITY,
VK_COMPONENT_SWIZZLE_IDENTITY,
VK_COMPONENT_SWIZZLE_IDENTITY
},
.subresourceRange = {
.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
.baseMipLevel = 0,
.levelCount = 1,
.baseArrayLayer = 0,
.layerCount = 1
}
};
EXPECT(vkCreateImageView(m_gpu->dev(), &viewInfo, NULL, &m_pImageViews[i]) == VK_SUCCESS,
"Failed to create image view");
}
return RESULT_OK;
}
ResultCode Swapchain::create_swapchain() {
VkSurfaceCapabilitiesKHR capabilities = {};
vkGetPhysicalDeviceSurfaceCapabilitiesKHR(m_gpu->gpu(), m_surface, &capabilities);
VkSwapchainCreateInfoKHR swapchainInfo = {
.sType = VK_STRUCTURE_TYPE_SWAPCHAIN_CREATE_INFO_KHR,
.surface = m_surface,
.minImageCount = m_numImages,
.imageFormat = m_format.format,
.imageColorSpace = m_format.colorSpace,
.imageExtent = m_extent,
.imageArrayLayers = 1,
.imageUsage = VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT,
.preTransform = capabilities.currentTransform,
.compositeAlpha = VK_COMPOSITE_ALPHA_OPAQUE_BIT_KHR,
.presentMode = choose_present_mode(),
.clipped = VK_TRUE
};
/* Allow sharing across graphics and present queue when those two are not
* the same. Meaning we can draw with commands submitted to graphics queue
* to swapchain images, that need to be used by command submitted to
* present queue. */
auto presentQueues = m_gpu->present_queue_ids();
if(presentQueues.size() > 1) {
swapchainInfo.imageSharingMode = VK_SHARING_MODE_CONCURRENT;
swapchainInfo.queueFamilyIndexCount = presentQueues.size();
swapchainInfo.pQueueFamilyIndices = presentQueues.data();
} else {
/* Don't need to share the images */
swapchainInfo.imageSharingMode = VK_SHARING_MODE_EXCLUSIVE;
}
EXPECT(vkCreateSwapchainKHR(m_gpu->dev(), &swapchainInfo, NULL, &m_swapchain) == VK_SUCCESS, "Failed to create swapchain");
return RESULT_OK;
}
void Swapchain::cleanup() {
for(int i = 0; i < m_numImages; i++) {
vkDestroyImageView(m_gpu->dev(), m_pImageViews[i], nullptr);
}
vkDestroySwapchainKHR(m_gpu->dev(), m_swapchain, nullptr);
}
void Swapchain::resize(VkExtent2D extent) {
cleanup();
m_extent = extent;
create_swapchain();
get_images(&m_numImages, NULL);
m_pImages = new VkImage[m_numImages];
get_images(&m_numImages, m_pImages);
create_views();
m_images.resize(m_numImages);
m_views.resize(m_numImages);
for(int i = 0; i < m_numImages; i++) {
m_images[i].img = m_pImages[i];
std::println("View: {:#06x}", (unsigned long)m_pImageViews[i]);
m_views[i].view = m_pImageViews[i];
}
}
Swapchain::Swapchain(const Gpu* gpu, VkExtent2D extent, Surface* surface) :
m_gpu(gpu),
m_surface(surface->surface())
{
VkSurfaceCapabilitiesKHR capabilities = {};
vkGetPhysicalDeviceSurfaceCapabilitiesKHR(m_gpu->gpu(), m_surface, &capabilities);
m_format = choose_format();
m_extent = choose_extent(extent);
uint32_t imageCount = capabilities.minImageCount + 1;
m_numImages = imageCount;
if(capabilities.maxImageCount > 0 &&
imageCount < capabilities.maxImageCount) {
m_numImages = capabilities.maxImageCount;
}
m_numFrames = m_numImages;
create_swapchain();
get_images(&m_numImages, NULL);
m_pImages = new VkImage[m_numImages];
get_images(&m_numImages, m_pImages);
create_views();
m_images.resize(m_numImages);
m_views.resize(m_numImages);
for(int i = 0; i < m_numImages; i++) {
m_images[i].img = m_pImages[i];
m_views[i].view = m_pImageViews[i];
}
}
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#include "../include/event.h"
#include "../include/window.h"
#if PLATFORM_WINDOWS
#include <X11/X.h>
#include <stdlib.h>
#include <stdio.h>
#include <assert.h>
#include <string.h>
#include <X11/Xutil.h>
#include <X11/Xlib.h>
#include <vulkan/vulkan.h>
#include <vulkan/vulkan_xlib.h>
struct WindowHandle_T {
Window window;
/* Used for comparing when ConfigureNotify event occurs, to see if we just
* moved or scaled */
int x, y;
unsigned width, height;
Display *pDisplay;
XVisualInfo *pVisual;
Colormap colormap;
Atom wmDeleteWindow;
int isOpen;
int isMinimized;
};
static int
xlib_debug_callback(Display* display, XErrorEvent* event) {
char* buffer = (char*)malloc(2048);
XGetErrorText(display, event->error_code, buffer, 2048);
printf("Xlib error => %s", buffer);
free(buffer);
return 0;
}
WindowResult window_new(WindowCreateInfo *pInfo, WindowHandle *pOut) {
*pOut = (struct WindowHandle_T*)malloc(sizeof(struct WindowHandle_T));
if(!pOut) {
return WINDOW_ALLOCATION_FAILED;
}
// memset(pOut, 0, sizeof(struct WindowHandle_T));
/* XInitThreads(); */
XSetErrorHandler(xlib_debug_callback);
(*pOut)->pDisplay = XOpenDisplay(NULL);
if(!(*pOut)->pDisplay) {
return WINDOW_CONNECTION_FAILED;
}
long visualMask = VisualScreenMask;
XVisualInfo visualInfo = {};
visualInfo.screen = DefaultScreen((*pOut)->pDisplay);
int visualCount = 0;
(*pOut)->pVisual = XGetVisualInfo((*pOut)->pDisplay, visualMask, &visualInfo, &visualCount);
(*pOut)->colormap = XCreateColormap((*pOut)->pDisplay,
DefaultRootWindow((*pOut)->pDisplay),
(*pOut)->pVisual->visual, AllocNone);
{
XSetWindowAttributes windowAttributes = {};
windowAttributes.colormap = (*pOut)->colormap;
windowAttributes.event_mask = ExposureMask | ButtonPressMask | ButtonReleaseMask | KeyPressMask | KeyReleaseMask | PointerMotionMask | StructureNotifyMask;
windowAttributes.override_redirect = False;
(*pOut)->window = XCreateWindow((*pOut)->pDisplay, DefaultRootWindow((*pOut)->pDisplay),
pInfo->x, pInfo->y,
pInfo->width, pInfo->height, 0,
(*pOut)->pVisual->depth, InputOutput,
(*pOut)->pVisual->visual,
CWColormap | CWEventMask | CWOverrideRedirect,
&windowAttributes);
}
(*pOut)->isOpen = 1;
/* handles closing the window by the user */
(*pOut)->wmDeleteWindow = XInternAtom((*pOut)->pDisplay, "WM_DELETE_WINDOW", False);
XSetWMProtocols((*pOut)->pDisplay, (*pOut)->window, &(*pOut)->wmDeleteWindow, 1);
XMapWindow((*pOut)->pDisplay, (*pOut)->window);
XFlush((*pOut)->pDisplay);
(*pOut)->width = pInfo->width;
(*pOut)->height = pInfo->height;
return WINDOW_SUCCESS;
}
VkSurfaceKHR window_vk_create_surface(VkInstance instance, WindowHandle window) {
VkXlibSurfaceCreateInfoKHR surfaceInfo = {
.sType = VK_STRUCTURE_TYPE_XLIB_SURFACE_CREATE_INFO_KHR,
.dpy = window->pDisplay,
.window = window->window,
};
VkSurfaceKHR result = VK_NULL_HANDLE;
if(vkCreateXlibSurfaceKHR(instance, &surfaceInfo, NULL, &result) != VK_SUCCESS) {
return VK_NULL_HANDLE;
}
return result;
}
int window_solve_event(XEvent *pEvent, WindowEvent *pOutEvent) {
assert(pEvent && pOutEvent);
WindowEvent result = {};
result.type = NONE_EVENT_TYPE;
switch(pEvent->type) {
case KeyPress:
result.type = KEY_EVENT_TYPE;
result.key.state = STATE_PRESSED;
result.key.key = XLookupKeysym(&pEvent->xkey, 0);
break;
case KeyRelease:
result.type = KEY_EVENT_TYPE;
result.key.state = STATE_RELEASED;
result.key.key = XLookupKeysym(&pEvent->xkey, 0);
result.key.txt = XKeysymToString(result.key.key);
break;
case ButtonPress:
result.type = BUTTON_EVENT_TYPE;
result.button.state = STATE_PRESSED;
result.button.button = pEvent->xbutton.button;
result.button.x = pEvent->xbutton.x;
result.button.y = pEvent->xbutton.y;
break;
case ButtonRelease:
result.type = BUTTON_EVENT_TYPE;
result.button.state = STATE_RELEASED;
result.button.button = pEvent->xbutton.button;
result.button.x = pEvent->xbutton.x;
result.button.y = pEvent->xbutton.y;
break;
case MotionNotify:
result.type = MOTION_EVENT_TYPE;
result.motion.x = pEvent->xmotion.x;
result.motion.y = pEvent->xmotion.y;
break;
case ConfigureNotify:
result.type = TRANSFORM_EVENT_TYPE;
result.transform.x = pEvent->xconfigure.x;
result.transform.y = pEvent->xconfigure.y;
result.transform.width = pEvent->xconfigure.width;
result.transform.height = pEvent->xconfigure.height;
break;
}
*pOutEvent = result;
return result.type != NONE_EVENT_TYPE;
}
int window_is_closed(WindowHandle window) {
return !window->isOpen;
}
void window_close(WindowHandle window) {
window->isOpen = 0;
}
int window_next_event(WindowHandle window, WindowEvent *pOutEvent) {
assert(window && pOutEvent);
XEvent event;
int status = XNextEvent(window->pDisplay, &event);
WindowEvent solvedEvent = {};
status = window_solve_event(&event, &solvedEvent);
if(event.type == ClientMessage) {
if(event.xclient.data.l[0] == window->wmDeleteWindow) {
window_close(window);
}
} else if(event.type == MapNotify) {
window->isMinimized = 1;
} else if(event.type == UnmapNotify) {
window->isMinimized = 0;
} else if(event.type == ConfigureNotify) {
window->width = event.xconfigure.width;
window->height = event.xconfigure.height;
}
if(status) {
*pOutEvent = solvedEvent;
return 1;
}
return 0;
}
int window_pending_event(WindowHandle window) {
return XPending(window->pDisplay);
}
void window_destroy(WindowHandle window) {
XDestroyWindow(window->pDisplay, window->window);
XCloseDisplay(window->pDisplay);
}
int window_is_minimized(WindowHandle window) {
return window->isMinimized;
}
void window_get_extent(WindowHandle window, int *pOutWidth, int *pOutHeight) {
*pOutWidth = window->width;
*pOutHeight = window->height;
}
void window_set_clipboard(WindowHandle window, const char *text) {
}
char *window_get_clipboard(WindowHandle window) {
return NULL;
}
WindowCursor window_create_cursor(WindowHandle window, int idx) {
return 0;
}
#endif