graphene_rect_init (&bounds, 0, 0, clip.width, clip.height);
graphene_matrix_init_translate (&m, graphene_point3d_init (&tmp, clip.x, clip.y, 0.f));
+ /* Compatibility mode: if the widget does not have a render node, we draw
+ * using gtk_widget_draw() on a temporary node
+ */
if (klass->get_render_node == NULL)
{
GskRenderNode *tmp;
cairo_t *cr;
+ char *str;
+
+ str = g_strconcat ("Fallback<", G_OBJECT_TYPE_NAME (widget), ">", NULL);
tmp = gsk_renderer_create_render_node (renderer);
- gsk_render_node_set_name (tmp, "Draw Fallback");
+ gsk_render_node_set_name (tmp, str);
gsk_render_node_set_bounds (tmp, &bounds);
gsk_render_node_set_transform (tmp, &m);
cr = gsk_render_node_get_draw_context (tmp);
cairo_destroy (cr);
+ g_free (str);
+
node = tmp;
}
else
{
node = klass->get_render_node (widget, renderer);
- if (klass->draw != NULL ||
- g_signal_has_handler_pending (widget, widget_signals[DRAW], 0, FALSE))
+ /* Compatibility mode: if there's a ::draw signal handler, we add a
+ * child node with the contents of the handler
+ */
+ if (g_signal_has_handler_pending (widget, widget_signals[DRAW], 0, FALSE))
{
GskRenderNode *tmp;
gboolean result;
cairo_t *cr;
+ char *str;
+
+ str = g_strconcat ("DrawSignal<", G_OBJECT_TYPE_NAME (widget), ">", NULL);
tmp = gsk_renderer_create_render_node (renderer);
- gsk_render_node_set_name (tmp, "Draw Signal Handler");
+ gsk_render_node_set_name (tmp, str);
gsk_render_node_set_bounds (tmp, &bounds);
gsk_render_node_set_transform (tmp, &m);
cr = gsk_render_node_get_draw_context (tmp);
- if (g_signal_has_handler_pending (widget, widget_signals[DRAW], 0, FALSE))
- {
- g_signal_emit (widget, widget_signals[DRAW], 0, cr, &result);
- }
- else if (klass->draw != NULL)
- {
- klass->draw (widget, cr);
- }
+ g_signal_emit (widget, widget_signals[DRAW], 0, cr, &result);
cairo_destroy (cr);
+ g_free (str);
+
if (node != NULL)
{
gsk_render_node_append_child (node, tmp);