/* $Id$ */ #include #include #include #include #include #include #include #include #include #include #include "../../external/stb_ds.h" #include "Mw/BaseTypes.h" #include "Mw/LowLevel.h" #include #define WAYLAND_GET_INTERFACE(r, inter) shget(r.wl_protocol_map, inter##_interface.name) static void new_protocol(void* data, struct wl_registry* registry, MwU32 name, const char* interface, MwU32 version) { struct _MwLLWayland* wayland = data; wl_setup_func* func = shget(wayland->wl_protocol_setup_map, interface); if(func != NULL) { // printf("registering interface %s\n", interface); shput(wayland->wl_protocol_map, interface, func(name, data)); } else { // printf("unknown interface %s\n", interface); } }; static void protocol_removed(void* data, struct wl_registry* registry, MwU32 name) { }; static void wl_seat_name(void* data, struct wl_seat* wl_seat, const char* name) {}; static void wl_seat_capabilities(void* data, struct wl_seat* wl_seat, MwU32 capabilities) {}; void xdg_wm_base_ping(void* data, struct xdg_wm_base* xdg_wm_base, MwU32 serial) { // The compositor will send us a ping event to check that we're responsive. // We need to send back a pong request immediately. xdg_wm_base_pong(xdg_wm_base, serial); }; static wayland_protocol_t* wl_shm_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland->shm = wl_registry_bind(wayland->registry, name, &wl_shm_interface, 1); return NULL; } static void buffer_setup(struct _MwLLWayland* wayland) { struct wl_shm_pool* pool; struct wl_buffer* buffer; int x, y; int fd; MwU32 size = wayland->ww * wayland->wh * 4; char temp_name[] = "/tmp/milsko-wl-shm-XXXXXX"; fd = mkstemp(temp_name); unlink(temp_name); if(posix_fallocate(fd, 0, size) != 0) { printf("failure setting up wl_shm: could not fallocate. %s.\n", strerror(errno)); close(fd); return; } if(ftruncate(fd, size) != 0) { printf("failure setting up wl_shm: could not truncate. %s.\n", strerror(errno)); close(fd); return; } lseek(fd, 0, SEEK_SET); wayland->mapped_buffer = mmap(NULL, size, PROT_WRITE, MAP_SHARED, fd, 0); memset(wayland->mapped_buffer, 0xFF, size); wayland->mapped_buffer_size = size; fsync(fd); if(!(pool = wl_shm_create_pool(wayland->shm, fd, size))) { printf("failure setting up wl_shm: could not create pool.\n"); } buffer = wl_shm_pool_create_buffer(pool, 0, wayland->ww, wayland->wh, wayland->ww * 4, WL_SHM_FORMAT_ARGB8888); if(wayland->configured) { wl_surface_attach(wayland->surface, buffer, 0, 0); wl_surface_commit(wayland->surface); } wl_buffer_destroy(buffer); wl_shm_pool_destroy(pool); close(fd); } static wayland_protocol_t* wl_seat_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland_protocol_t* proto = malloc(sizeof(wayland_protocol_t)); proto->listener = malloc(sizeof(struct wl_seat_listener)); ((struct wl_seat_listener*)proto->listener)->name = wl_seat_name; ((struct wl_seat_listener*)proto->listener)->capabilities = wl_seat_capabilities; proto->context = wl_registry_bind(wayland->registry, name, &wl_seat_interface, 1); wl_seat_add_listener(proto->context, proto->listener, wayland); return proto; } static wayland_protocol_t* wl_compositor_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland->compositor = wl_registry_bind(wayland->registry, name, &wl_compositor_interface, 1); return NULL; } static wayland_protocol_t* wl_subcompositor_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland->subcompositor = wl_registry_bind(wayland->registry, name, &wl_subcompositor_interface, 1); return NULL; } static wayland_protocol_t* xdg_wm_base_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland_protocol_t* proto = malloc(sizeof(wayland_protocol_t)); proto->listener = malloc(sizeof(struct xdg_wm_base_listener)); ((struct xdg_wm_base_listener*)proto->listener)->ping = xdg_wm_base_ping; proto->context = wl_registry_bind(wayland->registry, name, &xdg_wm_base_interface, 1); xdg_wm_base_add_listener(proto->context, proto->listener, wayland); return proto; } static wayland_protocol_t* wp_cursor_shape_manager_v1_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland_protocol_t* proto = malloc(sizeof(wayland_protocol_t)); proto->listener = NULL; proto->context = wl_registry_bind(wayland->registry, name, &wp_cursor_shape_manager_v1_interface, 1); return proto; } typedef struct zxdg_decoration_manager_v1_context { struct zxdg_decoration_manager_v1* manager; // struct zxdg_decoration_toplevel_v1* toplevel; struct zxdg_toplevel_decoration_v1* decoration; } zxdg_decoration_manager_v1_context_t; static wayland_protocol_t* zxdg_decoration_manager_v1_setup(MwU32 name, struct _MwLLWayland* wayland) { wayland_protocol_t* proto = malloc(sizeof(wayland_protocol_t)); zxdg_decoration_manager_v1_context_t* ctx = malloc(sizeof(zxdg_decoration_manager_v1_context_t)); proto->listener = NULL; ctx->manager = wl_registry_bind(wayland->registry, name, &zxdg_decoration_manager_v1_interface, 1); ; proto->context = ctx; return proto; } static void xdg_toplevel_configure(void* data, struct xdg_toplevel* xdg_toplevel, MwI32 width, MwI32 height, struct wl_array* states) { MwLL self = data; if(width != 0 && height != 0) { self->wayland.ww = width; self->wayland.wh = height; xdg_surface_set_window_geometry(self->wayland.toplevel->xdg_surface, self->wayland.x, self->wayland.y, self->wayland.ww, self->wayland.wh); MwLLSetWH(self, width, height); MwLLDispatch(self, resize, NULL); }; MwLLForceRender(self); return; }; static void decoration_configure( void* data, struct zxdg_toplevel_decoration_v1* zxdg_toplevel_decoration_v1, MwU32 mode) { } static void xdg_toplevel_close( void* data, struct xdg_toplevel* xdg_toplevel) { MwLL self = data; // Stop running if the user requests to close the toplevel self->wayland.toplevel->running = MwFALSE; }; static void xdg_surface_configure( void* data, struct xdg_surface* xdg_surface, MwU32 serial) { MwLL self = data; // The compositor configures our surface, acknowledge the configure event xdg_surface_ack_configure(xdg_surface, serial); if(self->wayland.configured) { // If this isn't the first configure event we've received, we already // have a buffer attached, so no need to do anything. Commit the // surface to apply the configure acknowledgement. // wl_surface_attach(self->surface, self->buffer, 0, 0); wl_surface_commit(self->wayland.surface); } self->wayland.configured = MwTRUE; } #define WL_INTERFACE(interface) \ shput(wayland->wl_protocol_setup_map, interface##_interface.name, (wl_setup_func*)interface##_setup); static void setup_callbacks(struct _MwLLWayland* wayland) { wayland->registry_listener.global = new_protocol; wayland->registry_listener.global_remove = protocol_removed; wayland->wl_protocol_setup_map = NULL; wayland->wl_protocol_map = NULL; WL_INTERFACE(wl_shm); WL_INTERFACE(wl_compositor); WL_INTERFACE(wl_subcompositor); if(wayland->type == MWLL_WAYLAND_TOPLEVEL) { WL_INTERFACE(wl_seat); WL_INTERFACE(xdg_wm_base); WL_INTERFACE(zxdg_decoration_manager_v1); WL_INTERFACE(wp_cursor_shape_manager_v1); } } #undef WL_INTERFACE static MwBool flush_display(struct wl_display* display) { while(wl_display_flush(display) == -1) { if(errno != EAGAIN) { return MwFALSE; } struct pollfd fd = {wl_display_get_fd(display), POLL_OUT}; while(poll(&fd, 1, -1) == -1) { if(errno != EINTR && errno != EAGAIN) return MwFALSE; } } return MwTRUE; } static void setup_toplevel(MwLL r, int x, int y, int width, int height) { r->wayland.type = MWLL_WAYLAND_TOPLEVEL; r->wayland.toplevel = malloc(sizeof(struct _MwLLWaylandTopLevel)); setup_callbacks(&r->wayland); // Connect to the Wayland compositor r->wayland.display = wl_display_connect(NULL); if(r->wayland.display == NULL) { printf("wayland: failed to create display\n"); r->common.success = MwFALSE; return; } // Do a roundtrip to ensure all interfaces are setup. r->wayland.registry = wl_display_get_registry(r->wayland.display); wl_registry_add_listener(r->wayland.registry, &r->wayland.registry_listener, r); if(wl_display_roundtrip(r->wayland.display) == -1) { printf("roundtrip failed\n"); r->common.success = MwFALSE; return; } // Check that all globals we require are available if( r->wayland.compositor == NULL || WAYLAND_GET_INTERFACE(r->wayland, xdg_wm_base)->context == NULL || WAYLAND_GET_INTERFACE(r->wayland, wl_seat)->context == NULL) { printf("no wl_shm, wl_compositor, wl_seat, or xdg_wm_base support\n"); r->common.success = MwFALSE; return; } r->wayland.toplevel->xkb_context = xkb_context_new(XKB_CONTEXT_NO_FLAGS); // Create a wl_surface, a xdg_surface and a xdg_toplevel r->wayland.surface = wl_compositor_create_surface(r->wayland.compositor); r->wayland.toplevel->xdg_surface = xdg_wm_base_get_xdg_surface(WAYLAND_GET_INTERFACE(r->wayland, xdg_wm_base)->context, r->wayland.surface); r->wayland.toplevel->xdg_top_level = xdg_surface_get_toplevel(r->wayland.toplevel->xdg_surface); // setup mandatory listeners r->wayland.toplevel->xdg_surface_listener.configure = xdg_surface_configure; r->wayland.toplevel->xdg_toplevel_listener.configure = xdg_toplevel_configure; r->wayland.toplevel->xdg_toplevel_listener.close = xdg_toplevel_close; xdg_surface_add_listener(r->wayland.toplevel->xdg_surface, &r->wayland.toplevel->xdg_surface_listener, r); xdg_toplevel_add_listener(r->wayland.toplevel->xdg_top_level, &r->wayland.toplevel->xdg_toplevel_listener, r); xdg_toplevel_set_title(r->wayland.toplevel->xdg_top_level, "Milsko Wayland App"); xdg_toplevel_set_app_id(r->wayland.toplevel->xdg_top_level, "MilskoWaylandApp"); // Perform the initial commit and wait for the first configure event wl_surface_commit(r->wayland.surface); while(wl_display_dispatch(r->wayland.display) != -1 && !r->wayland.configured) { } // setup decorations if we can if(WAYLAND_GET_INTERFACE(r->wayland, zxdg_decoration_manager_v1)->context != NULL) { zxdg_decoration_manager_v1_context_t* dec = WAYLAND_GET_INTERFACE(r->wayland, zxdg_decoration_manager_v1)->context; dec->decoration = zxdg_decoration_manager_v1_get_toplevel_decoration( dec->manager, r->wayland.toplevel->xdg_top_level); zxdg_toplevel_decoration_v1_set_mode( dec->decoration, ZXDG_TOPLEVEL_DECORATION_V1_MODE_SERVER_SIDE); } else { printf("zxdg null\n"); } buffer_setup(&r->wayland); wl_surface_commit(r->wayland.surface); } static void setup_subsurface(MwLL parent, MwLL r, int x, int y, int width, int height) { struct wl_compositor* compositor = parent->wayland.compositor; struct wl_subcompositor* subcompositor = parent->wayland.subcompositor; struct wl_surface* parent_surface = parent->wayland.surface; r->wayland.type = MWLL_WAYLAND_SUBSURFACE; r->wayland.display = parent->wayland.display; r->wayland.surface = wl_compositor_create_surface(compositor); r->wayland.subsurface = wl_subcompositor_get_subsurface(subcompositor, r->wayland.surface, parent_surface); wl_subsurface_set_position(r->wayland.subsurface, x, y); // printf("position %d %d\n", x, y); setup_callbacks(&r->wayland); r->wayland.registry = wl_display_get_registry(parent->wayland.display); r->wayland.display = parent->wayland.display; wl_registry_add_listener(r->wayland.registry, &r->wayland.registry_listener, r); if(wl_display_roundtrip(r->wayland.display) == -1) { printf("roundtrip failed\n"); raise(SIGTRAP); return; } r->wayland.configured = MwTRUE; buffer_setup(&r->wayland); wl_surface_commit(parent->wayland.surface); } static MwLL MwLLCreateImpl(MwLL parent, int x, int y, int width, int height) { MwLL r; r = malloc(sizeof(*r)); MwLLCreateCommon(r); // r->common.copy_buffer = 1; r->common.type = MwLLBackendWayland; if(width == 0) width = parent->wayland.ww; if(height == 0) height = parent->wayland.wh; r->wayland.ww = width; r->wayland.wh = height; r->common.success = MwTRUE; if(parent == NULL) { setup_toplevel(r, x, y, width, height); } else { setup_subsurface(parent, r, x, y, width, height); } return r; } static void MwLLDestroyImpl(MwLL handle) { MwLLDestroyCommon(handle); free(handle); } static void MwLLGetXYWHImpl(MwLL handle, int* x, int* y, unsigned int* w, unsigned int* h) { *x = handle->wayland.x; *y = handle->wayland.y; *w = handle->wayland.ww; *h = handle->wayland.wh; } static void MwLLSetXYImpl(MwLL handle, int x, int y) { handle->wayland.x = x; handle->wayland.y = y; if(handle->wayland.type == MWLL_WAYLAND_TOPLEVEL) { xdg_surface_set_window_geometry(handle->wayland.toplevel->xdg_surface, handle->wayland.x, handle->wayland.y, handle->wayland.ww, handle->wayland.wh); } else { wl_subsurface_set_position(handle->wayland.subsurface, x, y); } } static void MwLLSetWHImpl(MwLL handle, int w, int h) { handle->wayland.ww = w; handle->wayland.wh = h; if(handle->wayland.type == MWLL_WAYLAND_TOPLEVEL) { xdg_surface_set_window_geometry(handle->wayland.toplevel->xdg_surface, handle->wayland.x, handle->wayland.y, handle->wayland.ww, handle->wayland.wh); } else { // setup the buffer again with the new size. buffer_setup(&handle->wayland); } } // fractional part of x static float fpart(float x) { return x - floor(x); } static float rfpart(float x) { return x - fpart(x); } #define IMAGE_POS_GET(x, y, o) handle->wayland.mapped_buffer[(((y * handle->wayland.ww) + x) * 4) + o] #define IMAGE_POS_SET(x, y, o, v) IMAGE_POS_GET(x, y, o) = v; #define IMAGE_PLOT(x, y, color) \ IMAGE_POS_SET(x, y, 0, color->common.blue); \ IMAGE_POS_SET(x, y, 1, color->common.green); \ IMAGE_POS_SET(x, y, 2, color->common.red); \ IMAGE_POS_SET(x, y, 3, 255); static void line_draw(MwLL handle, int x0, int y0, int x1, int y1, MwLLColor color) { int dx = abs(x1 - x0), sx = x0 < x1 ? 1 : -1; int dy = -abs(y1 - y0), sy = y0 < y1 ? 1 : -1; int err = dx + dy, e2; for(;;) { IMAGE_PLOT(x0, y0, color); if(x0 == x1 && y0 == y1) break; e2 = 2 * err; if(e2 >= dy) { err += dy; x0 += sx; } if(e2 <= dx) { err += dx; y0 += sy; } } } static void MwLLPolygonImpl(MwLL handle, MwPoint* points, int points_count, MwLLColor color) { int i; int lx = 65536, ly = 65536; int hx = 0, hy = 0; int x, y; for(i = 0; i < points_count - 1; i++) { MwPoint p1 = points[i]; MwPoint p2 = points[i + 1]; if(p1.x < lx) lx = p1.x; if(p1.y < ly) ly = p1.y; if(p1.x > hx) hx = p1.x; if(p1.y > hy) hy = p1.y; } // for(y = ly; y < hy; y++) { // for(x = lx; x < hx; x++) { // IMAGE_PLOT(x, y, color); // } // } for(i = 0; i < points_count - 1; i++) { MwPoint p1 = points[i]; MwPoint p2 = points[i + 1]; line_draw(handle, p1.x, p1.y, p2.x, p2.y, color); } } static void MwLLLineImpl(MwLL handle, MwPoint* points, MwLLColor color) { MwPoint p1 = points[0]; MwPoint p2 = points[1]; line_draw(handle, p1.x, p1.y, p2.x, p2.y, color); } static MwLLColor MwLLAllocColorImpl(MwLL handle, int r, int g, int b) { MwLLColor c = malloc(sizeof(*c)); c->common.red = r; c->common.blue = b; c->common.green = g; return c; } static void MwLLColorUpdateImpl(MwLL handle, MwLLColor c, int r, int g, int b) { c->common.red = r; c->common.blue = b; c->common.green = g; } static void MwLLFreeColorImpl(MwLLColor color) { free(color); } static int MwLLPendingImpl(MwLL handle) { enum { DISPLAY_FD, KEYREPEAT_FD, CURSOR_FD }; struct pollfd fd; int timeout = 1; if(handle->wayland.force_redraw) { return 1; } if(handle->wayland.display == NULL) { return 0; } fd.fd = wl_display_get_fd(handle->wayland.display); fd.events = POLLIN; while(wl_display_prepare_read(handle->wayland.display) != 0) { if(wl_display_dispatch_pending(handle->wayland.display) > 0) { return 0; } } // If an error other than EAGAIN happens, we have likely been disconnected // from the Wayland session if(!flush_display(handle->wayland.display)) { wl_display_cancel_read(handle->wayland.display); handle->wayland.toplevel->running = MwFALSE; return 0; } // Condition where no events are being sent. if(!poll(&fd, 1, timeout)) { wl_display_cancel_read(handle->wayland.display); // In this case, we need to commit the surface for any animations, etc. wl_surface_commit(handle->wayland.surface); return 0; } if(fd.revents & POLLIN) { wl_display_read_events(handle->wayland.display); if(wl_display_dispatch_pending(handle->wayland.display) > 0) { } } else { wl_display_cancel_read(handle->wayland.display); } return 1; } static void MwLLNextEventImpl(MwLL handle) { MwBool render; render = handle->wayland.force_redraw; if(render) { int x, y; unsigned int w, h; MwLLGetXYWH(handle, &x, &y, &w, &h); MwLLDispatch(handle, draw, NULL); handle->wayland.force_redraw = MwFALSE; } } static void MwLLSetTitleImpl(MwLL handle, const char* title) { if(handle->wayland.type == MWLL_WAYLAND_TOPLEVEL) { xdg_toplevel_set_title(handle->wayland.toplevel->xdg_top_level, title); } } static MwLLPixmap MwLLCreatePixmapImpl(MwLL handle, unsigned char* data, int width, int height) { MwLLPixmap r = malloc(sizeof(*r)); r->common.width = width; r->common.height = height; r->common.raw = data; return r; } static void MwLLPixmapUpdateImpl(MwLLPixmap r) { } static void MwLLDestroyPixmapImpl(MwLLPixmap pixmap) { free(pixmap); } static void MwLLDrawPixmapImpl(MwLL handle, MwRect* rect, MwLLPixmap pixmap) { } static void MwLLSetIconImpl(MwLL handle, MwLLPixmap pixmap) { } static void MwLLForceRenderImpl(MwLL handle) { // event_loop(handle); wl_surface_damage(handle->wayland.surface, 0, 0, handle->wayland.ww, handle->wayland.wh); wl_surface_commit(handle->wayland.surface); handle->wayland.force_redraw = MwTRUE; } static void MwLLSetCursorImpl(MwLL handle, MwCursor* image, MwCursor* mask) { } static void MwLLDetachImpl(MwLL handle, MwPoint* point) { } static void MwLLShowImpl(MwLL handle, int show) { } static void MwLLMakePopupImpl(MwLL handle, MwLL parent) { } static void MwLLSetSizeHintsImpl(MwLL handle, int minx, int miny, int maxx, int maxy) { if(handle->wayland.type == MWLL_WAYLAND_TOPLEVEL) { xdg_toplevel_set_min_size(handle->wayland.toplevel->xdg_top_level, minx, miny); xdg_toplevel_set_max_size(handle->wayland.toplevel->xdg_top_level, maxx, maxy); } } static void MwLLMakeBorderlessImpl(MwLL handle, int toggle) { if(handle->wayland.type == MWLL_WAYLAND_TOPLEVEL) { if(WAYLAND_GET_INTERFACE(handle->wayland, zxdg_decoration_manager_v1)->context != NULL) { zxdg_decoration_manager_v1_context_t* dec = WAYLAND_GET_INTERFACE(handle->wayland, zxdg_decoration_manager_v1)->context; dec->decoration = zxdg_decoration_manager_v1_get_toplevel_decoration( dec->manager, handle->wayland.toplevel->xdg_top_level); zxdg_toplevel_decoration_v1_set_mode( dec->decoration, ZXDG_TOPLEVEL_DECORATION_V1_MODE_CLIENT_SIDE); } else { // TODO: hide our custom window decorations when we have them. printf("zxdg null\n"); } } } static void MwLLFocusImpl(MwLL handle) { } static void MwLLGrabPointerImpl(MwLL handle, int toggle) { } static void MwLLSetClipboardImpl(MwLL handle, const char* text) { } static char* MwLLGetClipboardImpl(MwLL handle) { char* r = NULL; return r; } static void MwLLMakeToolWindowImpl(MwLL handle) { } static void MwLLGetCursorCoordImpl(MwLL handle, MwPoint* point) { } static void MwLLGetScreenSizeImpl(MwLL handle, MwRect* rect) { } static void MwLLBeginStateChangeImpl(MwLL handle) { MwLLShow(handle, 0); } static void MwLLEndStateChangeImpl(MwLL handle) { MwLLShow(handle, 1); } static int MwLLWaylandCallInitImpl(void) { #ifdef __linux__ if(strcmp(getenv("XDG_SESSION_TYPE"), "wayland")) { return 1; } #endif return 0; } #include "call.c" CALL(Wayland);