mirror of
https://github.com/odin-lang/Odin.git
synced 2025-12-29 01:14:40 +00:00
223 lines
5.1 KiB
Odin
223 lines
5.1 KiB
Odin
#import win32 "sys/windows.odin" when ODIN_OS == "windows";
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#import wgl "sys/wgl.odin" when ODIN_OS == "windows";
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#import "fmt.odin";
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#import "math.odin";
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#import "os.odin";
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#import gl "opengl.odin";
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TWO_HEARTS :: '💕';
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win32_perf_count_freq := win32.GetQueryPerformanceFrequency();
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time_now :: proc() -> f64 {
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assert(win32_perf_count_freq != 0);
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counter: i64;
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win32.QueryPerformanceCounter(^counter);
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result := cast(f64)counter / cast(f64)win32_perf_count_freq;
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return result;
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}
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win32_print_last_error :: proc() {
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err_code := cast(int)win32.GetLastError();
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if err_code != 0 {
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fmt.println("GetLastError: %", err_code);
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}
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}
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// Yuk!
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to_c_string :: proc(s: string) -> []u8 {
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c_str := make([]u8, len(s)+1);
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copy(c_str, cast([]byte)s);
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c_str[len(s)] = 0;
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return c_str;
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}
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Window :: struct {
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width, height: int,
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wc: win32.WndClassExA,
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dc: win32.Hdc,
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hwnd: win32.Hwnd,
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opengl_context, rc: wgl.Hglrc,
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c_title: []u8,
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}
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make_window :: proc(title: string, msg, height: int, window_proc: win32.Wnd_Proc) -> (Window, bool) {
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using win32;
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w: Window;
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w.width, w.height = msg, height;
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class_name := "Win32-Odin-Window\x00";
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c_class_name := ^class_name[0];
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if title[len(title)-1] != 0 {
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w.c_title = to_c_string(title);
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} else {
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w.c_title = cast([]u8)title;
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}
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instance := GetModuleHandleA(nil);
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w.wc = WndClassExA{
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size = size_of(WndClassExA),
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style = CS_VREDRAW | CS_HREDRAW,
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instance = cast(Hinstance)instance,
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class_name = c_class_name,
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wnd_proc = window_proc,
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};
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if RegisterClassExA(^w.wc) == 0 {
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win32_print_last_error();
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return w, false;
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}
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w.hwnd = CreateWindowExA(0,
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c_class_name, ^w.c_title[0],
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WS_VISIBLE | WS_OVERLAPPED | WS_CAPTION | WS_SYSMENU | WS_MINIMIZEBOX,
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CW_USEDEFAULT, CW_USEDEFAULT,
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cast(i32)w.width, cast(i32)w.height,
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nil, nil, instance, nil);
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if w.hwnd == nil {
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win32_print_last_error();
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return w, false;
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}
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w.dc = GetDC(w.hwnd);
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{
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pfd := PIXELFORMATDESCRIPTOR{
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size = size_of(PIXELFORMATDESCRIPTOR),
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version = 1,
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flags = PFD_DRAW_TO_WINDOW | PFD_SUPPORT_OPENGL | PFD_DOUBLEBUFFER,
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pixel_type = PFD_TYPE_RGBA,
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color_bits = 32,
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alpha_bits = 8,
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depth_bits = 24,
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stencil_bits = 8,
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layer_type = PFD_MAIN_PLANE,
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};
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SetPixelFormat(w.dc, ChoosePixelFormat(w.dc, ^pfd), nil);
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w.opengl_context = wgl.CreateContext(w.dc);
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wgl.MakeCurrent(w.dc, w.opengl_context);
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attribs := [8]i32{
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wgl.CONTEXT_MAJOR_VERSION_ARB, 2,
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wgl.CONTEXT_MINOR_VERSION_ARB, 1,
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wgl.CONTEXT_PROFILE_MASK_ARB, wgl.CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB,
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0, // NOTE(bill): tells the proc that this is the end of attribs
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};
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wgl_str := "wglCreateContextAttribsARB\x00";
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wglCreateContextAttribsARB := cast(wgl.Create_Context_Attribs_ARB_Type)wgl.GetProcAddress(^wgl_str[0]);
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w.rc = wglCreateContextAttribsARB(w.dc, nil, ^attribs[0]);
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wgl.MakeCurrent(w.dc, w.rc);
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SwapBuffers(w.dc);
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}
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return w, true;
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}
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destroy_window :: proc(w: ^Window) {
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free(w.c_title);
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}
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display_window :: proc(w: ^Window) {
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win32.SwapBuffers(w.dc);
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}
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run :: proc() {
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using win32;
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using math;
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win32_proc :: proc(hwnd: win32.Hwnd, msg: u32, wparam: win32.Wparam, lparam: win32.Lparam) -> win32.Lresult #no_inline {
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if msg == WM_DESTROY || msg == WM_CLOSE || msg == WM_QUIT {
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os.exit(0);
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return 0;
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}
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return DefWindowProcA(hwnd, msg, wparam, lparam);
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}
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window, window_success := make_window("Odin Language Demo", 854, 480, cast(Wnd_Proc)win32_proc);
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if !window_success {
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return;
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}
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defer destroy_window(^window);
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gl.init();
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prev_time := time_now();
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running := true;
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pos := Vec2{100, 100};
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for running {
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curr_time := time_now();
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dt := cast(f32)(curr_time - prev_time);
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prev_time = curr_time;
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msg: Msg;
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for PeekMessageA(^msg, nil, 0, 0, PM_REMOVE) > 0 {
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if msg.message == WM_QUIT {
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running = false;
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}
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TranslateMessage(^msg);
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DispatchMessageA(^msg);
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}
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if is_key_down(Key_Code.ESCAPE) {
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running = false;
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}
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{
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SPEED :: 500;
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v: Vec2;
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if is_key_down(Key_Code.RIGHT) { v[0] += 1; }
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if is_key_down(Key_Code.LEFT) { v[0] -= 1; }
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if is_key_down(Key_Code.UP) { v[1] += 1; }
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if is_key_down(Key_Code.DOWN) { v[1] -= 1; }
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v = norm(v);
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pos += v * Vec2{SPEED * dt};
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}
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gl.ClearColor(0.5, 0.7, 1.0, 1.0);
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gl.Clear(gl.COLOR_BUFFER_BIT);
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gl.LoadIdentity();
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gl.Ortho(0, cast(f64)window.width,
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0, cast(f64)window.height, 0, 1);
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draw_rect :: proc(x, y, w, h: f32) {
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gl.Begin(gl.TRIANGLES);
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defer gl.End();
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gl.Color3f(1, 0, 0); gl.Vertex3f(x, y, 0);
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gl.Color3f(0, 1, 0); gl.Vertex3f(x+w, y, 0);
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gl.Color3f(0, 0, 1); gl.Vertex3f(x+w, y+h, 0);
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gl.Color3f(0, 0, 1); gl.Vertex3f(x+w, y+h, 0);
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gl.Color3f(1, 1, 0); gl.Vertex3f(x, y+h, 0);
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gl.Color3f(1, 0, 0); gl.Vertex3f(x, y, 0);
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}
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draw_rect(pos.x, pos.y, 50, 50);
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display_window(^window);
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ms_to_sleep := cast(i32)(16 - 1000*dt);
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if ms_to_sleep > 0 {
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win32.Sleep(ms_to_sleep);
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}
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}
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}
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main :: proc() {
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run();
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}
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