#include "my_application.h" #include #include #ifdef GDK_WINDOWING_WAYLAND #include #endif #include "flutter/generated_plugin_registrant.h" #include "mpv/mpv_plugin.h" // On Wayland the mpv video plane is a wl_subsurface stacked *below* this // window's surface, so the window needs an alpha channel for it to show // through. Harmless when the plane is unavailable: the Flutter UI paints // opaque anyway, and X11 sessions refuse video at initialize by design. static void enable_video_plane_transparency(GtkWindow* window, FlView* view) { #ifdef GDK_WINDOWING_WAYLAND GdkDisplay* display = gtk_widget_get_display(GTK_WIDGET(window)); if (!GDK_IS_WAYLAND_DISPLAY(display)) return; GdkScreen* screen = gtk_widget_get_screen(GTK_WIDGET(window)); GdkVisual* visual = gdk_screen_get_rgba_visual(screen); if (visual == nullptr) { // The plane is stacked *below* the toplevel, so without an alpha channel it // is occluded by an opaque Flutter surface and the video area goes blank // with everything else working. GDK's Wayland backend always offers an ARGB // visual, so this is not expected - say so rather than fail silently, since // the symptom on its own points nowhere near here. g_warning("MPV video plane: no RGBA visual; the video plane would be hidden behind an opaque window"); return; } gtk_widget_set_visual(GTK_WIDGET(window), visual); gtk_widget_set_app_paintable(GTK_WIDGET(window), TRUE); // The RGBA visual only reaches the compositor if Flutter stops filling the frame too: fl_view clears to this // colour every frame, so any opaque value would paint over the subsurface whatever the visual says. GdkRGBA transparent = {0.0, 0.0, 0.0, 0.0}; fl_view_set_background_color(view, &transparent); #else (void)window; (void)view; #endif } struct _MyApplication { GtkApplication parent_instance; char** dart_entrypoint_arguments; FlView* flutter_view; }; G_DEFINE_TYPE(MyApplication, my_application, GTK_TYPE_APPLICATION) // Implements GApplication::activate. static void my_application_activate(GApplication* application) { MyApplication* self = MY_APPLICATION(application); GtkWindow* window = GTK_WINDOW(gtk_application_window_new(GTK_APPLICATION(application))); // Default to traditional titlebar. Set GTK_CSD=1 to use a header bar. gboolean use_header_bar = FALSE; const gchar* gtk_csd = g_getenv("GTK_CSD"); if (gtk_csd != nullptr && g_strcmp0(gtk_csd, "1") == 0) { use_header_bar = TRUE; } if (use_header_bar) { GtkHeaderBar* header_bar = GTK_HEADER_BAR(gtk_header_bar_new()); gtk_widget_show(GTK_WIDGET(header_bar)); gtk_header_bar_set_title(header_bar, "Plezy"); gtk_header_bar_set_show_close_button(header_bar, TRUE); gtk_window_set_titlebar(window, GTK_WIDGET(header_bar)); } else { gtk_window_set_title(window, "Plezy"); } gtk_window_set_default_size(window, 1280, 720); g_autoptr(FlDartProject) project = fl_dart_project_new(); fl_dart_project_set_dart_entrypoint_arguments(project, self->dart_entrypoint_arguments); self->flutter_view = fl_view_new(project); enable_video_plane_transparency(window, self->flutter_view); gtk_widget_show(GTK_WIDGET(self->flutter_view)); gtk_container_add(GTK_CONTAINER(window), GTK_WIDGET(self->flutter_view)); // Register Flutter plugins. fl_register_plugins(FL_PLUGIN_REGISTRY(self->flutter_view)); // Register the MPV plugin. Video goes to the native Wayland plane; there is no other path, so a session that // cannot host one is refused by name rather than played into nothing. FlPluginRegistrar* registrar = fl_plugin_registry_get_registrar_for_plugin(FL_PLUGIN_REGISTRY(self->flutter_view), "MpvPlugin"); mpv_plugin_register_with_registrar(registrar); // Register the dedicated audio-only MPV core for music playback (no // video or GL work at all). FlPluginRegistrar* audio_registrar = fl_plugin_registry_get_registrar_for_plugin(FL_PLUGIN_REGISTRY(self->flutter_view), "MpvAudioPlugin"); mpv_audio_plugin_register_with_registrar(audio_registrar); gtk_widget_show(GTK_WIDGET(window)); gtk_widget_grab_focus(GTK_WIDGET(self->flutter_view)); } // Implements GApplication::local_command_line. static gboolean my_application_local_command_line(GApplication* application, gchar*** arguments, int* exit_status) { MyApplication* self = MY_APPLICATION(application); // Strip out the first argument as it is the binary name. self->dart_entrypoint_arguments = g_strdupv(*arguments + 1); g_autoptr(GError) error = nullptr; if (!g_application_register(application, nullptr, &error)) { g_warning("Failed to register: %s", error->message); *exit_status = 1; return TRUE; } g_application_activate(application); *exit_status = 0; return TRUE; } // Implements GApplication::startup. static void my_application_startup(GApplication* application) { G_APPLICATION_CLASS(my_application_parent_class)->startup(application); } // Implements GApplication::shutdown. static void my_application_shutdown(GApplication* application) { G_APPLICATION_CLASS(my_application_parent_class)->shutdown(application); } // Implements GObject::dispose. static void my_application_dispose(GObject* object) { MyApplication* self = MY_APPLICATION(object); g_clear_pointer(&self->dart_entrypoint_arguments, g_strfreev); G_OBJECT_CLASS(my_application_parent_class)->dispose(object); } static void my_application_class_init(MyApplicationClass* klass) { G_APPLICATION_CLASS(klass)->activate = my_application_activate; G_APPLICATION_CLASS(klass)->local_command_line = my_application_local_command_line; G_APPLICATION_CLASS(klass)->startup = my_application_startup; G_APPLICATION_CLASS(klass)->shutdown = my_application_shutdown; G_OBJECT_CLASS(klass)->dispose = my_application_dispose; } static void my_application_init(MyApplication* self) { self->flutter_view = nullptr; } MyApplication* my_application_new() { g_set_prgname(APPLICATION_ID); return MY_APPLICATION(g_object_new( my_application_get_type(), "application-id", APPLICATION_ID, "flags", G_APPLICATION_NON_UNIQUE, nullptr)); }